CN114046853B - Material level gauge fixing seat, feed bin equipment and stirring equipment - Google Patents
Material level gauge fixing seat, feed bin equipment and stirring equipment Download PDFInfo
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- CN114046853B CN114046853B CN202111433462.9A CN202111433462A CN114046853B CN 114046853 B CN114046853 B CN 114046853B CN 202111433462 A CN202111433462 A CN 202111433462A CN 114046853 B CN114046853 B CN 114046853B
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- 238000003756 stirring Methods 0.000 title claims abstract description 10
- 239000000463 material Substances 0.000 title abstract description 39
- 238000007789 sealing Methods 0.000 claims abstract description 92
- 238000003825 pressing Methods 0.000 claims description 44
- 230000000149 penetrating effect Effects 0.000 claims description 3
- 238000001514 detection method Methods 0.000 description 15
- 238000000034 method Methods 0.000 description 6
- 230000009286 beneficial effect Effects 0.000 description 4
- 230000008901 benefit Effects 0.000 description 4
- 230000000694 effects Effects 0.000 description 4
- 230000008569 process Effects 0.000 description 4
- 238000009434 installation Methods 0.000 description 3
- 230000000903 blocking effect Effects 0.000 description 2
- 230000008859 change Effects 0.000 description 2
- 238000007906 compression Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 230000001788 irregular Effects 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- NJPPVKZQTLUDBO-UHFFFAOYSA-N novaluron Chemical compound C1=C(Cl)C(OC(F)(F)C(OC(F)(F)F)F)=CC=C1NC(=O)NC(=O)C1=C(F)C=CC=C1F NJPPVKZQTLUDBO-UHFFFAOYSA-N 0.000 description 2
- 239000000843 powder Substances 0.000 description 2
- 239000000565 sealant Substances 0.000 description 2
- 239000011343 solid material Substances 0.000 description 2
- 230000009471 action Effects 0.000 description 1
- 230000006978 adaptation Effects 0.000 description 1
- 238000000354 decomposition reaction Methods 0.000 description 1
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- 230000002452 interceptive effect Effects 0.000 description 1
- 230000006798 recombination Effects 0.000 description 1
- 238000005215 recombination Methods 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01F—MEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
- G01F23/00—Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm
- G01F23/04—Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm by dip members, e.g. dip-sticks
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- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- General Physics & Mathematics (AREA)
- Measurement Of Levels Of Liquids Or Fluent Solid Materials (AREA)
Abstract
The application relates to a material level gauge fixing seat, a material bin device and a stirring device. The charge level indicator fixing base includes: the device comprises a seat body, wherein a cavity capable of accommodating a material level gauge is formed in the seat body, and a plurality of groups of connecting structures are arranged on the outer side wall of the seat body at intervals along a first direction; the fixing component is arranged on the outer side of the base body and is fixedly connected with the storage bin, and the fixing component can be detachably connected with any group of connecting structures so as to adjust the position of the base body in the first direction; and the sealing assembly is arranged corresponding to the fixing assembly so as to seal the joint of the seat body and the storage bin. According to the technical scheme, the position of the material level gauge fixing seat can be adjusted according to the requirement, so that the depth of the material level gauge extending into the bin is adjusted, the material levels at different positions are detected, the structural stability is high, and the material level gauge fixing seat is suitable for large bin equipment.
Description
Technical Field
The application relates to the technical field of bin equipment, in particular to a bin level gauge fixing seat, bin equipment and stirring equipment.
Background
The level detection of the material (e.g. powder) in the sealed container is usually achieved by providing a level gauge on the bin, which is usually fixedly mounted at a certain position of the bin, and is commonly used in stirring equipment. Because the solid material forms irregular shape, especially powder material easily after piling up in the feed bin, there is the difference in the material level of different positions in the feed bin, and prior art charge level indicator fixed mounting in a certain position of feed bin, this leads to current charge level indicator to be difficult to detect the material level of different positions.
Disclosure of Invention
In view of the above, the present application provides a level gauge fixing seat, a bin device and a stirring device for solving the above technical problems.
The application provides a level gauge fixing seat, which is applied to a storage bin and comprises the following components: the seat body comprises a first end and a second end, the seat body extends from the first end to the second end, a cavity capable of accommodating the level gauge is formed in the seat body, and a plurality of groups of connecting structures are arranged on the outer side wall of the seat body at intervals along the extending direction of the seat body; the fixing component is arranged on the outer side of the base body and used for being connected with the storage bin, and the fixing component can be detachably connected with any one group of connecting structures so as to adjust the position of the base body relative to the storage bin.
In one possible implementation, each set of connection structures includes a wing plate, the wing plate is connected with an outer side wall of the seat body, and the wing plate extends in a direction away from the seat body; the fixing component comprises a mounting seat which can be detachably connected with the wing plate in any group of connecting structures.
In one possible implementation manner, each group of connecting structures comprises a plurality of wing plates, and the plurality of wing plates are arranged at intervals along the circumferential direction of the seat body; the fixing component comprises a plurality of mounting seats, the plurality of mounting seats are arranged on the outer side of the seat body at intervals, and the plurality of mounting seats can be detachably connected with a plurality of wing plates in any one group of connecting structures in a one-to-one correspondence manner.
In one possible implementation, an external thread structure is further provided on the outer side wall of the seat body, and the external thread structure is used for being in threaded connection with the bin.
In one possible implementation, the device further includes a seal assembly, the seal assembly including: the first sealing structures are arranged on the outer side wall of the base body at intervals along the extending direction of the base body and correspond to the plurality of groups of connecting structures one by one; the first sealing structure is used for being filled between the outer side wall of the seat body and the bin wall of the bin under the condition that the corresponding connecting structure and the fixing assembly are in a connecting state.
In one possible implementation, the seal assembly further comprises: the second sealing structure is arranged on the outer side of the seat body and is used for at least covering the edge, which is far away from the seat body, of the first sealing structure filled between the outer side wall of the seat body and the bin wall of the bin under the condition that the fixing assembly is in a connection state with any group of connecting structures; the pressing piece is arranged on the second sealing structure, and under the condition that the fixing assembly is in a connection state with any group of connecting structures, the second sealing structure is arranged between the pressing piece and the first sealing structure filled between the outer side wall of the seat body and the bin wall of the bin.
In one possible implementation manner, the second sealing structure is arranged around the seat body in the circumferential direction of the seat body, and is formed by enclosing a plurality of sub-sealing structures, wherein at least two sub-sealing structures are detachably connected; the compressing piece is arranged around the base body in the circumferential direction of the base body, and is formed by encircling a plurality of sub-compressing pieces, wherein at least two sub-compressing pieces are detachably connected.
In one possible implementation, the securing assembly includes a mount, the mount including: the supporting plate is used for being connected with the storage bin; the mounting plate is connected to the supporting plate, extends towards the direction close to the seat body and can be detachably connected with any group of connecting structures; wherein, the second sealing structure and the pressing piece are both positioned between the supporting plate and the seat body; in the extending direction of the seat body, the pressing piece is positioned between the second sealing structure and the mounting plate.
In one possible implementation, the first end of the base is provided with a first through hole, and the first through hole is used for extending the detection end of the level gauge out of the base.
The application also provides a bin device comprising: the feed bin is provided with a mounting through hole penetrating through the bin wall of the feed bin; the level gauge fixing seat in any one of the above, at least part of the seat body is penetrated in the installation through hole, the fixing component is connected with the storage bin, and the fixing component is connected with one group of connecting structures on the seat body.
In one possible implementation, each set of connection structures includes a wing plate connected to an outer sidewall of the base and extending in a direction away from the base, and the fixing assembly includes a mounting seat; the edge of the mounting through hole is provided with a notch structure matched with the wing plate, and the notch structure is staggered with the mounting seat in the circumferential direction of the mounting through hole; the seat body can rotate relative to the storage bin, the seat body can move relative to the storage bin along the extending direction of the seat body when rotating to a first angle, and the wing plate can pass through the notch structure; when the seat body rotates to a second angle, the mounting seat can be detachably connected with the wing plate of one group of connecting structures on the seat body.
The application also provides stirring equipment which comprises the level gauge fixing seat in any one of the above or the bin equipment in any one of the above.
The beneficial effects of the application are as follows:
1. when the material level detector is assembled in the material bin, the position of the material level detector fixing seat can be adjusted according to the requirement, so that the depth of the material level detector extending into the material bin is adjusted, the material levels at different positions are detected, and the material level detector can be fixedly connected with the material bin after being adjusted to a target position, and the stability is high; 2. the adjustment operation process of the material level gauge fixing seat is simple, and the material level gauge fixing seat is suitable for large-scale bin equipment.
Drawings
Fig. 1 shows a cross-sectional view of a magazine apparatus according to an embodiment of the present application.
Fig. 2 shows a cross-sectional view of a magazine apparatus according to an embodiment of the present application.
Fig. 3 shows a cross-sectional view of a magazine apparatus according to an embodiment of the present application.
Fig. 4 shows a cross-sectional view of a magazine apparatus according to an embodiment of the present application.
Fig. 5 shows a top view of a magazine apparatus according to an embodiment of the present application.
Fig. 6 shows a cross-sectional view of a magazine apparatus according to an embodiment of the present application.
Fig. 7 shows a partly cut-away perspective view of a magazine apparatus according to an embodiment of the application.
Fig. 8 is an enlarged view of area a of fig. 2.
Fig. 9 is an exploded view of a bin apparatus according to an embodiment of the application.
Fig. 10 shows a cross-sectional view of a magazine apparatus according to an embodiment of the present application.
Reference numerals illustrate:
1 charge level indicator fixing seat, 11 pedestal, 111 connection structure, 1101 first end, 1102 second end, 1111 pterygoid lamina, 1112 external screw thread structure, 112 first through hole, 12 fixed subassembly, 121 mount pad, 1211 backup pad, 1212 mounting plate, 1213 first clearance, 13 seal assembly, 131 first seal structure, 132 second seal structure, 1321 sub seal structure, 133 compressing piece, 1331 sub compressing piece, 21 charge level indicator, 211 detection end, 3 feed bin equipment, 31 feed bin, 311 mounting through hole, 312 breach structure, 313 internal screw thread structure.
Detailed Description
In the description of the present application, the meaning of "plurality" means at least two, for example, two, three, etc., unless specifically defined otherwise. All directional indications (such as up, down, left, right, front, rear, top, bottom … …) in embodiments of the present application are merely used to explain the relative positional relationship, movement, etc. between the components in a particular gesture (as shown in the figures), and if the particular gesture changes, the directional indication changes accordingly. Furthermore, the terms "comprise" and "have," as well as any variations thereof, are intended to cover a non-exclusive inclusion. For example, a process, method, system, article, or apparatus that comprises a list of steps or elements is not limited to only those listed steps or elements but may include other steps or elements not listed or inherent to such process, method, article, or apparatus.
Furthermore, references herein to "an embodiment" mean that a particular feature, structure, or characteristic described in connection with the embodiment may be included in at least one embodiment of the present application. The appearances of such phrases in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. Those of skill in the art will explicitly and implicitly appreciate that the embodiments described herein may be combined with other embodiments.
The following description of the embodiments of the present application will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present application, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the application without making any inventive effort, are intended to be within the scope of the application.
In one embodiment of the present application, a level gauge holder 1 is provided, which can be applied to a bin 31.
As shown in fig. 1, the level gauge fixing base 1 includes a base body 11 and a fixing assembly 12. The seat 11 is used for installing the level gauge 21, and the fixed subassembly 12 is used for connecting the seat 11 and the feed bin 31 when the seat 11 is assembled in the feed bin 31. The housing includes a first end 1101 and a second end 1102, and the housing 11 extends from the first end 1101 to the second end 1102; the inside of the seat body 11 is provided with a cavity which can accommodate the level gauge 21; the outer side wall of the seat 11 is provided with a plurality of groups of connecting structures 111, and the plurality of groups of connecting structures 111 are arranged at intervals along the extending direction of the seat 11. The outer side of the seat body 11 is provided with a fixing component 12, and the fixing component 12 can form detachable connection with any group of connecting structures 111; when the level gauge fixing seat 1 is assembled to the bin 31, the fixing assembly 12 can be connected with the bin 31, so that the seat 11 and the bin 31 are detachably connected.
In a normal working state, the level gauge 21 is assembled on the stock bin 31 with the level gauge fixing seat 1 in the embodiment, the seat body 11 is in a connection state with the fixing assembly 12 through a group of connection structures 111, and at the moment, the detection end 211 of the level gauge 21 is in an initial position; when the detection position of the level gauge 21 needs to be changed, the connection between the base 11 and the fixing component 12 is released, so that the position of the base 11 is adjusted, the level gauge 21 is driven to displace in the extending direction of the base 11, and after the detection end 211 of the level gauge 21 is adjusted to the target position, the level gauge 21 is connected and fixed with a corresponding group of connecting structures 111 on the base 11 through the fixing component 12 again, so that the level gauge 21 can perform level detection.
It will be appreciated that for some solid materials (e.g. powdery materials), the stacking shape in the bin 31 is generally in an irregular state, and the material levels at different positions in the bin 31 are different, so that the accuracy of the material level detection result can be effectively improved by adjusting the position of the detection end 211 of the level gauge 21.
When the level gauge fixing base 1 is assembled to the bin 31 of the bin device 3, the base 11 may be disposed on any one of the walls of the bin 31, for example, on the top wall or the side wall of the bin 31. The fixed connection described in the embodiments of the present application includes, but is not limited to, welding, riveting, bolting, and the detachable connection includes, but is not limited to, bolting, pin connection, and clamping, and will not be described in detail.
The level gauge fixing seat 1 in this embodiment can adjust the position of the level gauge fixing seat 1 as required when being assembled in the feed bin to adjust the depth that the level gauge 21 stretches into in the feed bin 31, realize the level detection to different positions, and still can be connected with the feed bin 31 after the level gauge fixing seat 1 is in the adjustment position, stability is strong. In addition, the adjustment operation process of the material level meter fixing seat 1 is simple, the material level meter fixing seat is suitable for large-scale material bin equipment, and the adjustment operation effect is obvious.
In some embodiments of the present application, as shown in fig. 2 and 3, each set of connection structures 111 includes a wing 1111, the wing 1111 extends laterally from an outer side wall of the base 11, and the wing 1111 is connected to the outer side wall of the base 11; correspondingly, the fixing assembly 12 comprises a mounting seat 121, and the mounting seat 121 can be detachably connected with the wing plates 1111 of any group of connecting structures 111.
In the operating state, the level gauge 21 is mounted on the bin 31 having the level gauge holder 1 in the present embodiment, and the base 11 is connected to the mounting base 121 through the wing plates 1111 of the set of connection structures 111 (the state shown in fig. 2). When the position of the detecting end 211 of the level gauge 21 needs to be adjusted, the connection between the wing plate 1111 and the mounting seat 121 can be released, then the position of the seat 11 is adjusted along the extending direction of the seat 11, the level gauge 21 is driven to move into the bin 31 or out of the bin 31, when the detecting end 211 of the level gauge 21 reaches the target position, the mounting seat 121 is connected with the wing plate 1111 of the corresponding group of connecting structures 111, so that the level gauge fixing seat 1 and the level gauge 21 are fixed at the current position (the state shown in fig. 4), and the position adjustment of the detecting end 211 of the level gauge 21 is completed. Wherein the number of wings 1111 in each set of connection structures 111 may be one or more. The seat 11 may be moved to the outside of the bin 31 as shown in fig. 4, and may be moved to the inside of the bin 31 as needed.
Further, as shown in fig. 2 and 3, in some embodiments, each set of connection structures 111 includes a plurality of sets of wings 1111, and the plurality of wings 1111 are spaced apart in the circumferential direction of the seat 11. For example, two wings 1111 of each group shown in fig. 5, and the two wings 1111 are symmetrically disposed at both sides of the seat 11. Correspondingly, the fixing assembly 12 also comprises a plurality of mounting seats 121, and the plurality of mounting seats 121 are arranged at intervals in the circumferential direction of the seat body 11; the plurality of mounting seats 121 can be detachably connected with the plurality of wing plates 1111 in any one group of connecting structures 111 respectively, so that the plurality of mounting seats 121 are in one-to-one correspondence with the plurality of wing plates 1111 in the same group, the number of connecting points of the seat body 11 is increased, and the connection stability and strength of the seat body 11 are enhanced.
It should be noted that the number of the wings 1111 in each set of the connection structures 111 is not limited to two as shown in the present embodiment, but may be other numbers greater than two, and the number of the mounting seats 121 matches the number of the wings 1111 in each set of the connection structures 111.
In some embodiments of the present application, as shown in fig. 6, an external thread structure 1112 may be further provided on an outer sidewall of the base 11, and when the base 11 is assembled with the bin 31, the base 11 may be screwed into or out of the bin 31 through the external thread structure 1112, so as to adjust a position of the base 11. Wherein, the position on the bin 31 corresponding to the external thread structure 1112 may be provided with an internal thread structure 313 to be matched with the external thread structure 1112.
In some embodiments of the present application, the level gauge holder 1 further comprises a sealing assembly 13, as shown in fig. 2 and 3. The seal assembly 13 includes a plurality of first seal structures 131, the plurality of first seal structures 131 being disposed on an outer sidewall of the housing 11, and the plurality of first seal structures 131 being disposed at intervals in an extending direction of the housing 11. The plurality of first sealing structures 131 are in one-to-one correspondence with the plurality of groups of connecting structures 111, and when any one group of connecting structures 111 is connected with the mounting seat 121, the corresponding one of the first sealing structures 131 can be filled between the outer side wall of the seat 11 and the bin wall of the bin 31 so as to seal gaps between the seat and the bin, thereby enhancing the tightness of the bin 31. Preferably, when the first sealing structure 131 is filled between the outer side wall of the seat 11 and the wall of the bin 31, the first sealing structure 131 is flush with the surface of the wall of the bin 31. In particular, the first sealing structure 131 may be a sealing ring or a sealing flange.
Further, as shown in fig. 2, 7 and 8, the sealing assembly 13 further includes a second sealing structure 132 and a pressing member 133. The second sealing structure 132 is disposed on the outer side of the base 11, and the second sealing structure 132 is capable of covering at least the edge of the first sealing structure 131 filled between the outer side wall of the base 11 and the side wall of the silo 31 away from the base 11 in a state where the fixing assembly 12 is connected with any one of the sets of connection structures 111. For example, when the level gauge fixing seat 1 is assembled in the bin 31, the fixing assembly 12 and one of the sets of connecting structures 111 are in a connection state, the first sealing structure 131 corresponding to the set of connecting structures 111 is filled between the outer side wall of the seat 11 and the bin wall of the bin 31, and at this time, the second sealing structure 132 covers the edge of the first sealing structure 131 away from the seat 11, so as to seal the gap between the first sealing structure 131 and the bin wall of the bin 31, thereby being beneficial to further improving the tightness of the bin 31. Wherein, when the first sealing structure 131 is flush with the surface of the bin wall of the bin 31, the sealing effect of the second sealing structure 132 is better. The pressing member 133 is disposed at a side of the second sealing structure 132 away from the bin 31, and when the fixing assembly 12 is in a connection state with any one of the sets of connection structures 111, the second sealing structure 132 is disposed between the pressing member 133 and the first sealing structure 131 filled between the outer side wall of the seat 11 and the bin wall of the bin 31, so as to press the second sealing structure 132, thereby further improving the tightness of the bin 31. Specifically, the second sealing structure 132 may be a sealant plate, the pressing member 133 may be a pressing plate, and the pressing member 133 may be detachably connected with the bin 31 by a bolt.
It should be noted that the pressing member 133 may be detachably connected to the bin 31, for example, the pressing member 133 may be connected to the bin 31 by a bolt, and of course, the pressing member 133 may be connected to the bin 31 by other manners. In addition, when the level gauge fixing seat 1 is disposed on the top wall of the bin 31, the pressing member 133 is located above the second sealing structure 132, at this time, the pressing member 133 may not be connected to the bin 31, and the pressing member 133 may press the second sealing structure 132 under the action of gravity.
In some embodiments of the present application, as shown in fig. 7 and 9, the second sealing structure 132 is disposed around the seat 11 in the circumferential direction of the seat 11, and the second sealing structure 132 includes a plurality of sub-sealing structures 1321, the plurality of sub-sealing structures 1321 being enclosed in the circumferential direction of the seat 11 to form an integral second sealing structure 132, wherein at least two sub-sealing structures 1321 are detachably connected; similarly, the pressing member 133 is disposed around the base 11 in the circumferential direction of the base 11, and the pressing member 133 includes a plurality of sub-pressing members 1331, the plurality of sub-pressing members 1331 enclosing the pressing member 133 integrally in the circumferential direction of the base 11, wherein at least two sub-pressing members 1331 are detachably connected.
For example, as shown in fig. 9, the second sealing structure 132 may include two semicircular sub-sealing structures 1321, where, when assembled, the two sub-sealing structures 1321 enclose and cover a circle of the seat 11; correspondingly, the pressing member 133 includes two semicircular sub-pressing members 1331, and the two sub-pressing members 1331 enclose and cover one circumference of the seat body 11. When the position of the level gauge needs to be adjusted, the two sub-pressing pieces 1331 and the two sub-sealing structures 1321 can be detached and taken out, and at this time, the seat 11 is moved again, so that blocking and interference can not be caused to the connecting structure 111 and the first sealing structure 131. Note that the number of the sub-seal structure 1321 and the sub-pressing piece 1331 is not limited to the example in the present embodiment, and may be other number.
In some embodiments of the present application, as shown in fig. 8, the securing assembly 12 includes a mounting block 121, the mounting block 121 specifically including a support plate 1211 and a mounting plate 1212. The support plate 1211 is used for connecting with the bin 31, the mounting plate 1212 is connected to the support plate 1211, and the mounting plate 1212 extends in a direction approaching the base 11 so as to be connected with the connection structure 111 on the outer sidewall of the base 11. Wherein the mounting plate 1212 is detachably connectable to any one of the plurality of connection structures 111 on the housing 11. For example, bolt holes are provided in the mounting plate 1212, corresponding mounting locations are provided in the connection structure 111, and the connection structure 111 is bolted to the mounting plate 1212. Wherein, in the extending direction of the seat 11, the space between the mounting plate 1212 and the bin 31 provides a mounting space for the second sealing structure 132 and the pressing member 133, and the pressing member 133 is located between the second sealing structure 132 and the mounting plate 1212.
In some embodiments of the present application, as shown in FIG. 1, the first end 1101 of the housing 11 is further provided with a first through hole 112 for mounting the level gauge 21. Specifically, when the level gauge 21 is located in the cavity of the base 11, the detection end 211 of the level gauge 21 extends out of the base 11 through the first through hole 112, so as to perform level detection on the material in the bin 31.
In some embodiments of the present application, the seat 11 of the level gauge fixing seat 1 is specifically disposed on the top wall of the bin 31, for example, in the state shown in fig. 1 to 5, at this time, the extending direction of the seat 11 is the height direction, one end of the seat 11 near the top wall of the bin 31 is the first end 1101, one end of the seat 11 far from the top wall of the bin 31 is the second end 1102, and according to the different material states in the bin 31, the height of the seat 11 can be adjusted, so as to change the height position of the detecting end 211 of the level gauge 21, so as to match the material level of the material. In other embodiments of the present application, as shown in fig. 10, the base 11 of the level gauge fixing seat 1 is disposed on a side wall of the bin 31, at this time, the extending direction of the base 11 is in a horizontal direction, one end of the base 11, which is close to the side wall of the bin 31, is a first end 1101, and one end of the base 11, which is far away from the side wall of the bin 31, is a second end 1102, and according to different states of materials in the bin 31, the position of the base 11 in the horizontal direction can be adjusted, so as to change the horizontal position of the detecting end 211 of the level gauge 21 in the bin 31 to match with the level of the materials. Of course, the setting mode of the seat 11 is not limited to the example in this embodiment, and the seat 11 may be set at a certain inclination angle with the top wall or the side wall of the bin 31, which is not described herein.
In one embodiment of the application there is also provided a magazine apparatus 3, as shown in fig. 1, the magazine apparatus 3 comprising a magazine 31 and a level gauge holder 1 according to any of the embodiments described above.
The bin wall of the bin 31 is provided with a mounting through hole 311 penetrating through the bin wall, and the level gauge fixing seat 1 is arranged on the bin wall provided with the mounting through hole 311 on the bin 31. At least part of the base body 11 of the level gauge fixing base 1 penetrates into the storage bin 31 through the mounting through hole 311, the fixing component 12 of the level gauge fixing base 1 is connected with the storage bin 31, and the fixing component 12 is connected with one group of connecting structures 111 on the base body 11. When the level gauge 21 is assembled on the level gauge fixing seat 1, the detecting end 211 of the level gauge 21 extends into the bin 31 to detect the level of the material in the bin 31. The seat 11 can be adjusted relative to the bin 31, so as to drive the level gauge 21 to displace in the extending direction of the seat 11, so as to adjust the position of the detection end 211 of the level gauge 21, match the material level of materials in different states, and after the adjustment operation, the seat 11 can be connected with the bin 31 through the fixing component 12, so that the seat 11 is fixed and has high stability.
It should be noted that the mounting through hole 311 may be disposed on any bin wall of the bin 31, for example, on a top wall or a side wall of the bin 31, and the level gauge fixing base 1 may be assembled on the bin wall provided with the mounting through hole 311.
In addition, the bin device 3 in this embodiment has all the beneficial effects of the level gauge fixing seat 1 in any of the above embodiments, and will not be described herein.
In some embodiments of the present application, each set of connection structures 111 of the level gauge fixing base 1 includes a wing plate 1111, where the wing plate 1111 is connected to an outer sidewall of the base 11 and extends in a direction away from the base 11; the fixing assembly 12 of the level gauge fixing base 1 comprises a mounting seat 121. Correspondingly, a notch structure 312 is arranged at the edge of the mounting through hole 311 of the storage bin 31, and the notch structure 312 is matched with the wing plate 1111; the notch structure 312 and the mounting seat 121 are offset from each other in the circumferential direction of the mounting through hole 311. When the seat 11 and the fixing assembly 12 are in a non-connection state, the seat 11 can rotate relative to the bin 31, when the position of the seat 11 needs to be adjusted, the seat 11 can be rotated to a first angle to align the wing plate 1111 with the notch structure 312, and at the moment, the seat 11 can move along the extending direction of the seat 11 so as to drive the level gauge 21 to adjust the position, and the wing plate 1111 can pass through the corresponding notch structure 312; when the adjustment is performed to the target position, the seat body 11 may be rotated to a second angle, at this time, the mounting seat 121 is aligned with the wing plate 1111 of one of the connection structures 111, at this time, the mounting seat 121 may be detachably connected with the corresponding wing plate 1111 to fix the seat body 11, and the adjustment operation is completed.
Specifically, the number of notch structures 312 matches the number of wings 1111 in each set of connection structures 111 to prevent the seat 11 from blocking or interfering with the wings 1111 during movement.
Further, the base 11 may be a hollow cylindrical structure, and the mounting through hole 311 is a round hole adapted to the base 11.
The following is a specific embodiment of the silo apparatus 3 of the present application:
as shown in fig. 1, the bin device 3 comprises a bin 31 and a level gauge holder 1. The top wall of the stock bin 31 is provided with a through mounting through hole 311, and the level gauge fixing seat 1 is arranged on the top wall of the stock bin 31 and is assembled in the mounting through hole 311 along the height direction.
The level gauge fixing seat 1 comprises a seat body 11, a fixing component 12 and a sealing component 13, as shown in fig. 2 and 3, the seat body 11 is specifically of a hollow cylindrical structure, correspondingly, a mounting through hole 311 of the storage bin 31 is a round hole matched with the seat body 11, and when the level gauge fixing seat is assembled, a first end 1101 of the seat body 11 extends into the storage bin 31 from the mounting through hole 311. The inside of the seat body 11 is provided with a cavity which can accommodate the level gauge 21; the first end 1101 of the housing 11 is provided with a first through hole 112, and the cavity of the housing 11 communicates with the bin 31 through the first through hole 112, and when the level gauge 21 is assembled in the housing 11, the detection end 211 of the level gauge 21 extends into the bin 31 from the first through hole 112 to detect the level of the material in the bin 31. The outer side wall of the seat 11 is provided with a plurality of groups of connecting structures 111, and the plurality of groups of connecting structures 111 are arranged at intervals along the extending direction of the seat 11. For example, in fig. 2 and 3, the connection structure 111 is four groups, each group includes two wing plates 1111, the two wing plates 1111 are symmetrically disposed on two sides of the base 11, each wing plate 1111 extends laterally from an outer side wall of the base 11, and the wing plates 1111 are fixedly connected with the base 11.
The outside of pedestal 11 is provided with fixed subassembly 12, and corresponding with connection structure 111, fixed subassembly 12 includes two mount pads 121, and two mount pads 121 symmetry set up, and mount pad 121 accessible bolt forms detachable connection with arbitrary a set of pterygoid lamina 1111. The edge symmetry of installation through-hole 311 is provided with two breach structures 312, and breach structure 312 and the shape looks adaptation of pterygoid lamina 1111, and in the circumferencial direction of installation through-hole 311, breach structure 312 and mount pad 121 stagger the setting.
As shown in fig. 6 and 7, the mount 121 specifically includes a support plate 1211 and a mounting plate 1212. The supporting plate 1211 is fixedly connected with the top wall of the bin 31, the mounting plate 1212 is connected to one end, far away from the bin 31, of the supporting plate 1211, the mounting plate 1212 extends towards the direction close to the seat 11, bolt holes are formed in the mounting plate 1212, corresponding mounting positions are formed in the wing plates 1111, and the wing plates 1111 and the mounting plate 1212 can be connected through bolts. Wherein, in the extending direction of the seat 11, a first gap 1213 is formed between the mounting plate 1212 and the bin 31.
As shown in fig. 6 and 7, the seal assembly 13 includes a plurality of first seal structures 131, second seal structures 132, and pressing members 133. The plurality of first sealing structures 131 are arranged at intervals in the extending direction of the seat body 11, specifically, the first sealing structures 131 are sealing rings or sealing flanges, the number of the first sealing structures 131 is four, and the four first sealing structures 131 and the four groups of wing plates 1111 are alternately arranged in the extending direction of the seat body 11. When any one set of wing plates 1111 is connected to the mounting seat 121, a corresponding one of the first sealing structures 131 is located at the position of the mounting through hole 311 and fills the space between the seat 11 and the top wall of the bin 31, and at this time, the first sealing structure 131 is flush with the top wall surface of the bin 31.
As shown in fig. 6 and 7, the second sealing structure 132 and the pressing member 133 are disposed outside the seat 11 and within the first gap 1213. As shown in fig. 8, the second sealing structure 132 specifically includes two semicircular sub-sealing structures 1321, and in the assembled state, the two sub-sealing structures 1321 enclose and cover a circumference of the base 11, and cover an edge of the first sealing structure 131 filled between the top wall of the bin 31 and the outer side wall of the base 11 away from the base 11, and at the same time cover an edge of the notch structure 312 of the bin 31 to seal the gap. The pressing piece 133 is arranged on one side, far away from the storage bin 31, of the second sealing structure 132, the pressing piece 133 comprises two semicircular sub pressing pieces 1331, the two sub pressing pieces 1331 encircle and cover one circle of the base body 11 in an assembling state, and the sub pressing pieces 1331 are detachably connected with the storage bin 31 through bolts so as to press the second sealing structure 132, and accordingly tightness of the storage bin 31 is improved. Specifically, the second sealing structure 132 may be a sealant plate, and the pressing member may be a pressing plate.
When the level gauge 21 needs to adjust the position of the detection end 211 (as shown in the initial state of fig. 2), the connection between the wing plate 1111 and the mounting seat 121 can be released, the connection between the sub-compression piece 1331 and the bin 31 is released, the two sub-compression pieces 1331 and the two sub-sealing structures 1321 are separated and taken out, then the seat 11 is rotated to align the wing plate 1111 with the notch structure 312, at this time, the seat 11 is operated to move in the height direction to drive the level gauge 21 assembled on the seat 11 to move, and meanwhile, the wing plate 1111 can pass through the notch structure 312; when the detecting end 211 of the level gauge 21 moves to the target position, the seat body 11 is rotated again to align the corresponding other set of wing plates 1111 with the mounting seat 121, at this time, the set of wing plates 1111 are connected with the mounting seat 121 to fix the positions of the seat body 11 and the level gauge 21 again (as shown in fig. 4), so as to complete the position adjustment of the detecting end 211 of the level gauge 21, and then the sub sealing structure 1321 and the sub pressing piece 1331 are mounted and fixed to realize the sealing of the joint of the seat body 11 and the bin 31.
In one embodiment of the present application, there is also provided a stirring device, the level gauge holder 1 of any of the above embodiments or the bin device 3 of any of the above embodiments. The stirring device in this embodiment has all the beneficial effects of the bin device 3 in any of the foregoing embodiments, and will not be described in detail herein.
It should be noted that the above embodiments are only preferred embodiments of the present application, and are not limiting to the embodiments of the present application. Other means may be adopted instead of the solution in the above embodiment, for example, the level gauge fixing seat may be provided with no sealing component, or only a first sealing structure, or a first sealing structure and a second sealing structure are provided without a pressing member, and the second sealing structure adopts a thicker and harder sealing rubber plate; the wing plate and the seat body can be designed into a split structure and are connected through bolts or other connecting pieces; the seat body can be directly connected with the through hole of the storage bin through a threaded structure without arranging a wing plate.
The basic principles of the present application have been described above in connection with specific embodiments, however, it should be noted that the advantages, benefits, effects, etc. mentioned in the present application are merely examples and not intended to be limiting, and these advantages, benefits, effects, etc. are not to be considered as essential to the various embodiments of the present application. Furthermore, the specific details disclosed herein are for purposes of illustration and understanding only, and are not intended to be limiting, as the application is not necessarily limited to practice with the above described specific details.
The block diagrams of the devices, apparatuses, devices, systems referred to in the present application are only illustrative examples and are not intended to require or imply that the connections, arrangements, configurations must be made in the manner shown in the block diagrams. As will be appreciated by one of skill in the art, the devices, apparatuses, devices, systems may be connected, arranged, configured in any manner. Words such as "including," "comprising," "having," and the like are words of openness and mean "including but not limited to," and are used interchangeably therewith. The terms "or" and "as used herein refer to and are used interchangeably with the term" and/or "unless the context clearly indicates otherwise. The term "such as" as used herein refers to, and is used interchangeably with, the phrase "such as, but not limited to.
It should also be noted that in the apparatus and device of the present application, the components may be disassembled and/or assembled. Such decomposition and/or recombination should be considered as equivalent aspects of the present application.
The previous description of the disclosed aspects is provided to enable any person skilled in the art to make or use the present application. Various modifications to these aspects will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other aspects without departing from the scope of the application. Thus, the present application is not intended to be limited to the aspects shown herein but is to be accorded the widest scope consistent with the principles and novel features herein.
The foregoing is only illustrative of the present application and is not to be construed as limiting thereof, but rather as presently claimed, and is intended to cover all modifications, alternatives, and equivalents falling within the spirit and scope of the application.
Claims (8)
1. The utility model provides a charge level indicator fixing base is applied to the feed bin, which is characterized in that includes:
the seat body comprises a first end and a second end, the seat body extends from the first end to the second end, a cavity capable of accommodating a level gauge is arranged in the seat body, and a plurality of groups of connecting structures are arranged on the outer side wall of the seat body at intervals along the extending direction of the seat body;
the fixing component is arranged on the outer side of the base body and is used for being connected with a storage bin, and the fixing component can be detachably connected with any group of connecting structures so as to adjust the position of the base body relative to the storage bin;
each group of connecting structures comprises a wing plate, the wing plates are connected with the outer side wall of the seat body and extend in the direction deviating from the seat body, and mounting positions are arranged on the wing plates;
the fixing assembly comprises a mounting seat, a bolt hole corresponding to the mounting position is formed in the mounting seat, and the mounting seat can be connected with the wing plate in any group of connecting structures through bolts; and
a seal assembly comprising a plurality of first seal structures and second seal structures;
the first sealing structures are arranged on the outer side wall of the base body at intervals along the extending direction of the base body, the first sealing structures are in one-to-one correspondence with the plurality of groups of connecting structures, and the first sealing structures are used for being filled between the outer side wall of the base body and the bin wall of the bin under the condition that the corresponding connecting structures are in a connecting state with the fixing assembly;
the second sealing structure is arranged on the outer side of the base body and is used for at least covering the edge, far away from the base body, of the first sealing structure, which is filled between the outer side wall of the base body and the bin wall of the bin under the condition that the fixing assembly is in a connection state with any group of connecting structures.
2. The level gauge holder according to claim 1, wherein,
each group of the connecting structures comprises a plurality of wing plates, and the plurality of wing plates are arranged at intervals along the circumferential direction of the seat body;
the fixing assembly comprises a plurality of mounting seats, the mounting seats are arranged at intervals on the outer side of the seat body, and the mounting seats can be detachably connected with a plurality of wing plates in any group of connecting structures in one-to-one correspondence.
3. The level gauge mounting of claim 1, wherein the seal assembly further comprises:
the pressing piece is arranged on the second sealing structure, and the second sealing structure is arranged between the pressing piece and the first sealing structure filled between the outer side wall of the base body and the bin wall of the bin under the condition that the fixing assembly is in a connection state with any group of connecting structures.
4. A level gauge holder according to claim 3, wherein,
the second sealing structure is arranged around the seat body in the circumferential direction of the seat body and is formed by encircling a plurality of sub sealing structures, wherein at least two sub sealing structures are detachably connected;
the compressing piece is arranged around the base body in the circumferential direction of the base body, and is formed by encircling a plurality of sub-compressing pieces, wherein at least two sub-compressing pieces are detachably connected.
5. A level gauge mounting according to claim 3, wherein the mounting assembly comprises a mounting base comprising:
the supporting plate is used for being connected with the stock bin;
the mounting plate is connected to the supporting plate, extends towards the direction close to the seat body and can be detachably connected with any group of connecting structures;
wherein the second sealing structure and the pressing piece are both positioned between the supporting plate and the seat body; in the extending direction of the base, the pressing piece is located between the second sealing structure and the mounting plate.
6. A magazine apparatus, comprising:
the storage bin is provided with a mounting through hole penetrating through the wall of the storage bin;
the level gauge mounting of any one of claims 1 to 5, wherein at least a portion of the housing is disposed through the mounting hole, the securing assembly is coupled to the bin, and the securing assembly is coupled to one of the plurality of connection structures on the housing.
7. The silo apparatus of claim 6, wherein the storage container is configured to store the storage container,
each group of connecting structures comprises a wing plate which is connected with the outer side wall of the seat body and extends in the direction away from the seat body, and the fixing assembly comprises a mounting seat;
the edge of the mounting through hole is provided with a notch structure matched with the wing plate, and the notch structure and the mounting seat are staggered in the circumferential direction of the mounting through hole;
the seat body can rotate relative to the storage bin, the seat body can move relative to the storage bin along the extending direction of the seat body when rotating to a first angle, and the wing plate can penetrate through the notch structure; when the base body rotates to a second angle, the mounting seat can be detachably connected with one group of wing plates of the connecting structure on the base body.
8. A stirring device, comprising:
the level gauge holder of any one of claims 1 to 5; or (b)
The silo apparatus of claim 6 or 7.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202111433462.9A CN114046853B (en) | 2021-11-29 | 2021-11-29 | Material level gauge fixing seat, feed bin equipment and stirring equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202111433462.9A CN114046853B (en) | 2021-11-29 | 2021-11-29 | Material level gauge fixing seat, feed bin equipment and stirring equipment |
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| CN114046853A CN114046853A (en) | 2022-02-15 |
| CN114046853B true CN114046853B (en) | 2023-09-26 |
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