Vertical conveyor
Technical Field
The utility model relates to the technical field of conveyors, in particular to a vertical conveyor.
Background
The existing conveyor is mostly belt-type conveying, namely, materials are placed on a conveying belt, and the motor rotates to drive the conveying belt to move so as to convey the materials to corresponding heights or specified positions. And after the materials are conveyed to the corresponding height by the conveyor, the materials are further taken and placed by matching with a manipulator and the like. Although the material lifting function can be realized, the material transferring function is not realized, and the conveying function is single and the adjustability is low from the structural design, so the improvement is needed.
Disclosure of utility model
The present utility model is directed to a vertical conveyor that solves at least one of the problems set forth in the background art.
The technical scheme of the utility model is as follows:
a vertical conveyor, comprising:
The first conveying mechanism comprises a first sliding rail, a first sliding block and a first driving device, and the first driving device drives the first sliding block to slide along the first sliding rail;
The lifting mechanism is fixedly arranged on the first sliding block and comprises a second sliding rail, a second sliding block and a second driving device, and the second driving device drives the second sliding block to slide along the second sliding rail;
The second conveying mechanism is fixedly arranged on the second sliding block and is a conveying belt assembly.
Further, the conveyor belt assembly comprises a driving roller and a driven roller, the driving roller and the driven roller are sleeved with belt pulleys, and the driving roller and the driven roller are connected through a first connecting plate.
Further, the first slider is fixedly connected with a second connecting plate, and the second connecting plate is fixedly connected with the first connecting plate through a connecting column.
Further, baffles are arranged on two sides of the conveying belt, and the baffles are fixedly connected with the first connecting plate.
Further, the second sliding rail is fixedly connected with an upright post, and the upright post is fixedly arranged on the second sliding block.
Further, the side wall of the upright post is fixedly connected with a reinforcing plate, and the bottom surface of the reinforcing plate is fixedly connected with the second sliding block.
Further, a plurality of holes are formed in the reinforcing plate.
Further, a bottom plate is fixedly connected below the first sliding rail.
Further, a plurality of supporting legs are uniformly arranged around the bottom plate.
Further, the first sliding rail and the second sliding rail are both provided with two, the first sliding block is in sliding connection with the two first sliding rails, and the second sliding block is in sliding connection with the second sliding rail.
The utility model provides a vertical conveyor through improvement, and compared with the prior art, the vertical conveyor has at least the following improvement and beneficial effects:
1. The utility model is provided with a first conveying mechanism, a lifting mechanism and a second conveying mechanism. The first conveying mechanism, the lifting mechanism and the second conveying mechanism are used for treating multi-directional movement of materials, and efficient conveying of the materials in different directions can be ensured by conveying the materials in multiple directions.
2. According to the utility model, under the cooperation of the first conveying mechanism and the lifting mechanism, after the materials are conveyed to the corresponding height, the materials do not need to be further taken and placed by cooperation with a mechanical arm and the like. Through being provided with tree hole area subassembly, can enough realize the function that the material promoted, have the function that can realize the material transfer, transport function is various, can cooperate the feed bin of different height and position, can realize the transfer and the putting of material through a machine.
Drawings
The utility model is further explained below with reference to the drawings and examples:
FIG. 1 is a schematic view of a conveyor according to the present utility model;
FIG. 2 is a schematic view of the first conveying mechanism according to the present utility model;
FIG. 3 is a schematic view of the elevating mechanism according to the present utility model;
Fig. 4 is a schematic structural view of the second conveying mechanism according to the present utility model.
Reference numerals illustrate:
1. The device comprises a first conveying mechanism, a lifting mechanism, a second conveying mechanism, a first slide rail, a first slide block, a first driving device, a bottom plate, 141, supporting legs, 21 and a second slide rail, wherein the first conveying mechanism, the lifting mechanism, the second conveying mechanism, the first slide rail, the first slide block, the first driving device, the bottom plate, the 141, the supporting legs, the second slide rail and the second slide rail;
22. The second slide block, 23, a second driving device, 24, a column, 25, a reinforcing plate, 251 and a hole;
31. Driving roller 32, driven roller 33, belt pulley 34, first connecting plate 35, second connecting plate 36, connecting column 37 and baffle.
Detailed Description
The following detailed description of the utility model clearly and completely describes the technical solution in the embodiments of the utility model.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
In the description of the present utility model, the meaning of a plurality is one or more, the meaning of a plurality is two or more, and greater than, less than, exceeding, etc. are understood to exclude the present number, and above, below, within, etc. are understood to include the present number. It should also be understood that the term "and/or" as used in the present specification and the appended claims refers to any and all possible combinations of one or more of the associated listed items, and includes such combinations. The terms "comprising," "including," "having," and variations thereof mean "including but not limited to," unless expressly specified otherwise.
Furthermore, the terms "first," "second," "third," and the like in the description of the present specification and in the appended claims, are used for distinguishing between descriptions and not necessarily for indicating or implying a relative importance.
In the description of the present utility model, unless explicitly defined otherwise, terms such as arrangement, installation, connection, etc. should be construed broadly and the specific meaning of the terms in the present utility model can be reasonably determined by a person skilled in the art in combination with the specific contents of the technical scheme.
The utility model provides a vertical conveyor through improvement, and the technical scheme of the utility model is as follows:
As shown in figure 1 of the drawings,
A vertical conveyor comprises a first conveying mechanism 1, a lifting mechanism 2 and a second conveying mechanism 3. The first conveying mechanism 1, the lifting mechanism 2 and the second conveying mechanism 3 are used for processing multi-directional movement of materials, and efficient conveying of the materials in different directions can be ensured by conveying the materials in multiple directions.
As shown in fig. 2, the first conveying mechanism 1 includes a first slide rail 11, a first slider 12, and a first driving device 13, and the first driving device 13 drives the first slider 12 to slide along the first slide rail 11. In some embodiments, the first driving device 13 is a motor, the first driving device 13 is fixedly disposed on the first slider 12, a rack is disposed in the center of the first sliding rail 11, and a gear is fixedly connected to the motor and meshed with the rack. So as to realize that the first driving device 13 drives the first sliding block 12 to slide along the first sliding rail 11. In some embodiments, a screw rod may be further disposed in the center of the sliding rail, the first driving device 13 is also a motor, the motor is fixedly connected with the screw rod, a nut is fixedly disposed below the first slider 12, and the nut is sleeved on the screw rod, so that the first driving device 13 drives the first slider 12 to slide along the first sliding rail 11. The first driving device 13 may be other mechanical structures, and may be capable of driving the first slider 12 to slide, and the specific structure is not limited in this embodiment.
As shown in fig. 3, the lifting mechanism 2 is fixedly disposed on the first slider 12, the lifting mechanism 2 includes a second slide rail 21, a second slider 22, and a second driving device 23, and the second driving device 23 drives the second slider 22 to slide along the second slide rail 21. In some embodiments, the second driving device 23 is a motor, a chain is disposed in the center of the second sliding rail 21, and the motor is fixedly connected with a sprocket, and the sprocket is in driving connection with the chain, and the chain is fixedly connected with the first slider 12. In some embodiments, the second driving device 23 is a motor, the second driving device 23 is fixedly disposed on the second slider 22, a rack is disposed in the center of the second sliding rail 21, and a gear is fixedly connected to the motor and meshed with the rack. So as to realize that the second driving device 23 drives the second sliding block 22 to slide along the second sliding rail 21. In some embodiments, a screw rod may be further disposed in the center of the sliding rail, the second driving device 23 is also a motor, the motor is fixedly connected with the screw rod, a nut is fixedly disposed below the second slider 22, and the nut is sleeved on the screw rod, so that the second driving device 23 drives the second slider 22 to slide along the second sliding rail 21. The second driving device 23 may be other mechanical structures, and may be capable of driving the second slider 22 to slide, and the specific structure is not limited in this embodiment.
As shown in fig. 1, the second conveying mechanism 3 is fixedly disposed on the second slider 22, and the second conveying mechanism 3 is a conveying belt assembly. After the lifting mechanism 2 and the first conveying mechanism 1 are driven to move to the position where the material is required to be discharged, the conveying belt assembly is used for discharging the material.
As shown in fig. 4, the conveyor belt assembly includes a driving roller 31 and a driven roller 32, the driving roller 31 and the driven roller 32 are sleeved with a belt pulley 33, and the driving roller 31 and the driven roller 32 are connected through a first connecting plate 34. The first slider 12 is fixedly connected with a second connecting plate 35, and the second connecting plate 35 is fixedly connected with the first connecting plate 34 through a connecting column 36. The first connecting plate 34, the second connecting plate 35 and the connecting post 36 are used for fixedly connecting the conveyor belt assembly and the second slider 22 together.
As shown in fig. 4, two sides of the conveyor belt are provided with a baffle 37, and the baffle 37 is fixedly connected with the first connecting plate 34. The baffle 37 is used for shielding materials on the conveyor belt assembly and preventing the materials from falling out in the moving process.
As shown in fig. 3, the second sliding rail 21 is fixedly connected with a stand column 24, and the stand column 24 is fixedly disposed on the second sliding block 22. The upright 24 is used to support the second transport mechanism. The side wall of the upright post 24 is fixedly connected with a reinforcing plate 25, and the bottom surface of the reinforcing plate 25 is fixedly connected with the second sliding block 22. The reinforcement plate 25 serves to increase the load bearing performance of the upright 24, preventing the upright 24 from being bent. The reinforcing plate 25 is provided with a plurality of holes 251. The holes 251 are arranged for saving materials, so that the whole machine is lighter and easy to transport.
As shown in fig. 2, a bottom plate 14 is fixedly connected below the first sliding rail 11. The bottom plate 14 is used for supporting and fixing the first sliding rail 11. A plurality of supporting legs 141 are uniformly arranged around the bottom plate 14. The legs 141 serve to increase the contact area of the bottom plate 14 with the ground, supporting the bottom plate 14.
In some embodiments, two first slide rails 11 and two second slide rails 21 are provided, the first slider 12 is slidably connected to the two first slide rails 11, and the second slider 22 is slidably connected to the second slide rail 21. Two first slide rails 11 and second slide rails 21 are provided, so that the sliding of the first slider 12 and the second slider 22 is more stable.
The present utility model is not limited to the above-mentioned embodiments, and any changes or substitutions that can be easily understood by those skilled in the art within the technical scope of the present utility model are intended to be included in the scope of the present utility model.