CN116423112B - Production method and device for steel wire net rack composite rock wool board - Google Patents
Production method and device for steel wire net rack composite rock wool board Download PDFInfo
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- CN116423112B CN116423112B CN202310699389.2A CN202310699389A CN116423112B CN 116423112 B CN116423112 B CN 116423112B CN 202310699389 A CN202310699389 A CN 202310699389A CN 116423112 B CN116423112 B CN 116423112B
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- rock wool
- lining plate
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23K—SOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
- B23K37/00—Auxiliary devices or processes, not specially adapted for a procedure covered by only one of the other main groups of this subclass
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23K—SOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
- B23K31/00—Processes relevant to this subclass, specially adapted for particular articles or purposes, but not covered by any single one of main groups B23K1/00 - B23K28/00
- B23K31/02—Processes relevant to this subclass, specially adapted for particular articles or purposes, but not covered by any single one of main groups B23K1/00 - B23K28/00 relating to soldering or welding
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23K—SOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
- B23K2101/00—Articles made by soldering, welding or cutting
- B23K2101/22—Nets, wire fabrics or the like
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
- Y02A30/24—Structural elements or technologies for improving thermal insulation
- Y02A30/244—Structural elements or technologies for improving thermal insulation using natural or recycled building materials, e.g. straw, wool, clay or used tires
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Wire Processing (AREA)
Abstract
The invention discloses a production method and a production device of a steel wire net rack composite rock wool board, wherein the production device comprises a straight column, a bearing mechanism and a driving mechanism, wherein the straight column is connected with a transversely extending truss, a material taking assembly is arranged on the truss, the bearing mechanism comprises a first lining plate hinged on the straight column and a second lining plate rotationally connected with the first lining plate through a movable assembly, one side of the first lining plate and one side of the second lining plate are respectively provided with a side rail assembly for inserting the steel wire net rack, through grooves are respectively formed in the first lining plate and the second lining plate, a net bag assembly is arranged on each through groove, the driving mechanism comprises a first telescopic source and a pivoting assembly, and the first telescopic source can drive the first lining plate and the second lining plate to be unfolded or folded through the pivoting assembly; the rock wool board body is not required to be carried or turned over in the production process, so that the rock wool board body is always consistent with the steel wire net frame in position, dislocation is effectively avoided, the steel wire net frame can be completely covered on the side face of the rock wool board body, and the production quality is high.
Description
Technical Field
The invention relates to the technical field of heat preservation plate production, in particular to a method and a device for producing a steel wire mesh frame composite rock wool plate.
Background
The steel wire net frame composite rock wool board is a novel light heat-insulating, energy-saving and high-strength building board, and is formed by adding steel wire net frames on two board surfaces of a rock wool board body, so that the heat-insulating composite board with light weight, high strength and good stability is formed.
When the heat-insulating plate is produced, the steel wire racks are required to be covered on two sides of the rock wool plate body and welded through the steel wire pieces, the rock wool plate body is required to be carried or turned over in the production process, the labor intensity is high, the production efficiency is low, meanwhile, due to the fact that the rock wool plate body is moved, dislocation occurs on the steel wire racks on the two sides, the steel wire pieces cannot be correspondingly welded at required positions, deflection occurs after welding of the steel wire pieces, and an area without covering the steel wire racks is further caused on the outer side of the rock wool plate body.
Disclosure of Invention
The invention aims to provide a production method and a production device of a steel wire mesh frame composite rock wool board, which are used for solving the problems in the background technology.
In order to achieve the above purpose, the present invention provides the following technical solutions: a steel wire mesh frame composite rock wool board production device, comprising:
the straight column is connected with a transversely extending truss, and a material taking assembly is arranged on the truss and used for clamping the rock wool board body to suspend and keep a vertical state;
the bearing mechanism comprises a first lining plate hinged on a straight column and a second lining plate rotationally connected with the first lining plate through a movable assembly, one side of the first lining plate and one side of the second lining plate are respectively provided with a side rail assembly for inserting a steel wire net rack, through grooves are formed in the first lining plate and the second lining plate, each through groove is provided with a net bag assembly, and the two groups of net bag assemblies can form welding guide for the clamped rock wool plate body;
the driving mechanism comprises a first telescopic source and a pivoting assembly, the first telescopic source can drive the first lining plate and the second lining plate to be unfolded or folded through the pivoting assembly, the first lining plate and the second lining plate are used for placing the steel wire net frame when being unfolded, and the first lining plate and the second lining plate can drive the steel wire net frame to be attached to two sides of the rock wool board body when being folded.
As a preferred embodiment of the present invention, the side rail assembly includes a top rail provided at the top of the first lining board and the top of the second lining board, and a bottom rail provided at the bottom of the first lining board and the bottom of the second lining board, and the top rail and the bottom rail are respectively slidably connected with removable backing plates.
As a preferable technical scheme of the invention, the base plate on the bottom rail is connected with the pressing plate through the elastic piece, the pressing plate and the base plate on the top rail are respectively provided with the side grooves, the steel wire net rack is placed on the pressing plate, and the steel wire net rack is pressed upwards through the pressing plate and clamped between the two side grooves.
As a preferable technical scheme of the invention, the mesh bag assembly comprises a supporting plate and a plurality of bag bodies arranged on the supporting plate, the bag bodies on the two groups of mesh bag assemblies are in one-to-one correspondence, and the steel wire pieces can transversely penetrate through the rock wool board body along the two corresponding bag bodies.
As a preferable technical scheme of the invention, the inner diameter of the bag body is gradually increased from one end close to the steel wire net frame to one end far away from the steel wire net frame, the penetrated steel wire pieces are limited, and the welding head can be adjusted along the inner ring of the bag body during welding.
As a preferable technical scheme of the invention, the movable assembly comprises a first movable block and a first propping block which are arranged on a first lining plate, and a second movable block and a second propping block which are arranged on a second lining plate, wherein the first movable block and the second movable block are provided with matched connecting holes and are inserted with a shaft rod, and the first propping block and the second propping block prop against each other when the first lining plate and the second lining plate are folded, so that the first lining plate and the second lining plate are flush.
As a preferable technical scheme of the invention, the first telescopic source is hinged on the straight column, the movable end of the first telescopic source is hinged with the first lining plate, the pivoting assembly comprises a rotary plate rotatably arranged on the first lining plate, one end of the rotary plate is connected with a first rotary arm, the other end of the rotary plate is connected with a second rotary arm, the first rotary arm is hinged with the straight column, and the second rotary arm is hinged with the second lining plate.
According to the technical scheme, the material taking assembly comprises a linear guide rail arranged on a truss, the linear guide rail is connected with a movable plate, a second telescopic source is arranged on the movable plate and is connected with two clamping plates in a sliding mode, the movable end of the second telescopic source is connected with a horizontal touch plate, two sides of the horizontal touch plate are respectively and rotatably provided with a traction rod, each traction rod extends outwards and is hinged with one clamping plate, the second telescopic source drives the horizontal touch plate to be in flush contact with the top of the rock wool plate body, and the traction rods drive the two clamping plates to clamp the rock wool plate body in the left-right horizontal direction.
The production method of the steel wire mesh frame composite rock wool board is realized by any one of the technical schemes, and specifically comprises the following steps:
s1, a first telescopic source drives a first lining plate and a second lining plate to be unfolded through a pivot assembly, and steel wire net racks are respectively inserted and placed on side rail assemblies on the unfolded first lining plate and the unfolded second lining plate;
s2, the rock wool board body clamped by the material taking assembly keeps vertical state and moves to a position close to the first lining board and the second lining board;
s3, the first telescopic source drives the first lining plate and the second lining plate to be folded through the pivot assembly, so that the first lining plate and the second lining plate respectively drive the steel wire net frame to be positioned on different sides of the rock wool plate body;
s4, sequentially splicing and welding the steel wire pieces through two groups of net bag components, so that the two steel wire net racks and the rock wool board body are stably connected to form a steel wire net rack composite rock wool board;
s5, discharging the steel wire mesh frame composite rock wool board by the material taking assembly.
Compared with the prior art, the invention has the beneficial effects that: according to the production method and the production device for the steel wire net rack composite rock wool board, the rock wool board body is not required to be carried or turned over in the production process, the production efficiency is high, the rock wool board body is always kept consistent with the steel wire net rack in position, dislocation is effectively avoided, the steel wire net rack can be completely covered on the side face of the rock wool board body, and the production quality is high;
the wire spare transversely wears to establish along two corresponding bag bodies, and the wire spare passes rock wool board body, increases gradually from being close to wire rack one end to keeping away from wire rack one end through the internal diameter of bag body for it is more convenient when wearing to establish the wire spare, and the less one end of two sets of bag body internal diameters is aimed at in wire rack, and the wire spare of wearing to establish is difficult for the skew.
Drawings
FIG. 1 is a first angular view of the overall structure of the present invention;
FIG. 2 is a second angular view of the overall structure of the present invention;
FIG. 3 is a schematic diagram of the driving relationship between the driving mechanism and the first and second liners according to the present invention;
FIG. 4 is a schematic diagram showing a first liner plate connected with a second liner plate through a movable assembly;
FIG. 5 is a schematic view of a head rail structure of the present invention;
FIG. 6 is a schematic view of the bottom rail structure of the present invention;
FIG. 7 is a schematic view of the structure of the bag of the present invention;
FIG. 8 is a schematic view of a take-off assembly according to the present invention;
in the figure: 100. a straight column; 200. truss; 300. a material taking assembly; 310. a linear guide rail; 320. a moving plate; 330. a second telescoping source; 331. a horizontal touch plate; 332. a traction rod; 340. a clamping plate; 400. a carrying mechanism; 410. a first liner plate; 420. a second liner plate; 430. a movable assembly; 431. a first movable block; 432. a second movable block; 433. a first abutment; 434. a second abutting block; 440. a side rail assembly; 441. a head rail; 442. a bottom rail; 443. a backing plate; 444. an elastic member; 445. a pressing plate; 446. a side groove; 450. a mesh bag assembly; 451. a support plate; 452. a bag body; 500. a driving mechanism; 510. a first telescoping source; 520. a pivoting assembly; 521. a rotating plate; 522. a first rotary arm; 523. and a second rotary arm.
Detailed Description
The following description of the embodiments of the present invention 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 invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-8, the present invention provides a technical solution: a steel wire net rack composite rock wool board production device comprises a straight column 100, a bearing mechanism 400 and a driving mechanism 500.
Referring to fig. 1 and 2, the vertical column 100 is fixedly connected to the ground, and particularly, a welding or bolt or other manner may be adopted to maintain the overall stability of the vertical column 100, the vertical column 100 is connected with a transversely extending truss 200, a material taking assembly 300 is mounted on the truss 200, the material taking assembly 300 is used for holding a rock wool board body to suspend and keep a vertical state, the rock wool board body is manually erected on a supporting table, and the material taking assembly 300 holds the rock wool board body away from the supporting table.
Referring to fig. 1 and 2, the bearing mechanism 400 includes a first lining board 410 hinged on the column 100 and a second lining board 420 rotatably connected with the first lining board 410 through a movable component 430, one sides of the first lining board 410 and the second lining board 420 are respectively provided with a side rail component 440 for inserting a steel wire rack, through grooves are respectively formed in the first lining board 410 and the second lining board 420, a mesh bag component 450 is respectively configured on each through groove, two groups of mesh bag components 450 can form welding guidance for a clamped rock wool board body, the first lining board 410 and the second lining board 420 can be respectively inserted and connected with the steel wire rack through the side rail component 440, the two steel wire racks correspond to two sides of the rock wool board body, and steel wire pieces can be inserted into the rock wool board body and welded with the two steel wire racks through the through grooves formed in the first lining board 410 and the second lining board 420 and the mesh bag component 450.
Referring to fig. 1 and 2, the driving mechanism 500 includes a first telescopic source 510 and a pivoting assembly 520, the first telescopic source 510 is preferably an electric cylinder, an air cylinder, and other telescopic components, the first telescopic source 510 can drive the first lining board 410 and the second lining board 420 to be unfolded or folded through the pivoting assembly 520, the first lining board 410 and the second lining board 420 are used for placing a wire rack when being unfolded, and the first lining board 410 and the second lining board 420 drive the wire rack to be attached to two sides of the rock wool board body when being folded, so that the two wire racks are kept in a fixed state on the side rail assembly 440.
The first telescopic source 510 drives the first lining plate 410 and the second lining plate 420 to be unfolded through the pivoting component 520, then the steel wire net rack is inserted and placed on the side rail component 440 on the first lining plate 410 and the second lining plate 420 respectively, the material taking component 300 is controlled to clamp the rock wool board body, the rock wool board body is suspended and kept in a vertical state, the first telescopic source 510 drives the first lining plate 410 and the second lining plate 420 to be folded through the pivoting component 520, the steel wire net racks are driven to be attached to two sides of the rock wool board body, the steel wire pieces are sequentially inserted and welded through the two groups of net bag components 450, the two steel wire net racks and the rock wool board body are stably connected to form the steel wire net rack composite rock wool board, the steel wire net rack composite rock wool board is discharged through the material taking component 300, the rock wool board body does not need to be carried or turned over in the production process, the production efficiency is high, the rock wool board body is kept consistent with the steel wire net rack, dislocation is effectively avoided, the steel wire net rack can be completely covered on the side surface of the rock wool board body, and the production quality is high.
Referring to fig. 4, 5 and 6, the side rail assembly 440 includes a top rail 441 disposed at the top of the first lining board 410 and the top of the second lining board 420, and a bottom rail 442 disposed at the bottom of the first lining board 410 and the bottom of the second lining board 420, wherein the top rail 441 and the bottom rail 442 are respectively slidably connected with removable backing plates 443, the backing plates 443 on the bottom rail 442 are connected with a pressing plate 445 through elastic members 444, the pressing plate 445 and the backing plates 443 on the top rail 441 are respectively provided with side grooves 446, the wire mesh frame is placed on the pressing plate 445, and the wire mesh frame is pressed upwards by the pressing plate 445 to be clamped between the two side grooves 446;
referring to fig. 5 and 6, the elastic member 444 includes a telescopic rod and a spring wound around the telescopic rod, when the steel wire rack is inserted and placed, the pad 443 is removed from the top rail 441 and the bottom rail 442, the steel wire rack is firstly placed on the pressing plate 445 of the bottom rail 442, the bottom of the steel wire rack is embedded into the side groove 446 of the pressing plate 445, the steel wire rack contacts with the pad 443 on the top rail 441 under the elastic action of the elastic member 444, so that the top of the steel wire rack is embedded into the side groove 446 of the pad 443, the steel wire rack is clamped between the two side grooves 446 in a vertical state, and then the pad 443 is pushed inwards, so that the steel wire rack can be inserted and placed smoothly, the situation that the bottom and the top opening of the steel wire rack are scratched and rubbed is generated, meanwhile, the steel wire rack can be removed again along with the pad 443 after welding is completed, the pressing plate 445 is pressed downwards by manpower, so that the steel wire rack composite rock wool board can leave the side rail assembly 440, and the discharging is convenient.
Referring to fig. 4 and 7, the mesh bag assembly 450 includes a supporting plate 451 and a plurality of bag bodies 452 disposed on the supporting plate 451, the plurality of bag bodies 452 on the two sets of mesh bag assemblies 450 are in one-to-one correspondence, the steel wire members can transversely penetrate through the rock wool board body along the two corresponding bag bodies 452, the inner diameter of the bag bodies 452 gradually increases from one end close to the steel wire net frame to one end far away from the steel wire net frame, the penetrated steel wire members are limited, and the welding heads can be adjusted along the inner ring of the bag bodies 452 during welding.
During welding, the steel wire pieces transversely penetrate through the two corresponding bag bodies 452, the steel wire pieces penetrate through the rock wool plate body, the inner diameter of the bag bodies 452 is gradually increased from one end close to the steel wire rack to one end far away from the steel wire rack, so that the welding is more convenient and rapid when the steel wire pieces are penetrated, the two groups of the bag bodies 452 are aligned to the steel wire rack at the smaller inner diameter end, the penetrated steel wire pieces are not easy to deflect, the welding heads can adjust the angle along the inner ring of the bag bodies 452, and the welding firmness degree of the steel wire pieces and the steel wire rack is improved.
Referring to fig. 2 and 4, the movable assembly 430 includes a first movable block 431 and a first abutting block 433 disposed on the first lining plate 410, and a second movable block 432 and a second abutting block 434 disposed on the second lining plate 420, wherein the first movable block 431 and the second movable block 432 are provided with matched connection holes and are inserted with a shaft rod, the first abutting block 433 and the second abutting block 434 abut against each other when the first lining plate 410 and the second lining plate 420 are folded, so that the first lining plate 410 and the second lining plate 420 are flush with each other, the first telescopic source 510 is hinged on the straight column 100, the movable end of the first telescopic source is hinged with the first lining plate 410, the pivot assembly 520 includes a rotary plate 521 rotatably disposed on the first lining plate 410, one end of the rotary plate 521 is connected with a first rotary arm 522, the other end of the rotary arm 522 is connected with a second rotary arm 522, the first rotary arm 523 is hinged with the straight column 100, the second rotary arm 523 is hinged with the second lining plate 420, the first lining plate 410 is driven to rotate by shrinkage or extension of the first telescopic source 510, the first lining plate 410 is driven by the first telescopic source 521, the first lining plate 522 and the second rotary arm 420 are driven by the second telescopic source 510, so that the first lining plate 410 and the second lining plate 420 are not flush with each other, and the first wire frame 420 is kept flush with the second frame 420, and the first frame is kept flush with the second frame 420, when the first frame is folded, and the second frame is kept flush with the second frame 420, and the frame is kept flush with the second frame, and the frame is compressed, and the frame is kept by the frame, and the frame is folded.
Referring to fig. 8, the material taking assembly 300 includes a linear guide rail 310 installed on the truss 200, the linear guide rail 310 is connected with a moving plate 320, the linear guide rail 310 includes a screw rod and a servo motor for driving the screw rod to rotate, the linear guide rail 310 can drive the moving plate 320 to move transversely, a second telescopic source 330 is installed on the moving plate 320 and is slidably connected with two clamping plates 340, a movable end of the second telescopic source 330 is connected with a horizontal touch plate 331, traction rods 332 are respectively arranged on two sides of the horizontal touch plate 331 in a rotating manner, each traction rod 332 extends outwards and is hinged with one clamping plate 340, the second telescopic source 330 drives the horizontal touch plate 331 to be in flush contact with the top of the rock wool plate body and drives two clamping plates 340 to clamp the rock wool plate body in the left-right horizontal direction through the traction rods 332, the second telescopic source 330 preferably uses electric cylinders, cylinders and other telescopic components are driven by the linear guide rail 310 to move to be close to a supporting table, the second telescopic source 330 drives the horizontal touch plate 331 to be in contact with the top of the rock wool plate body, the clamped rock wool plate body cannot deflect, the rock wool plate body cannot be parallel to the width of the rock wool body, the two clamping plates are enabled to extend from the two sides of the two clamping plates 340 to the front side of the rock wool body, and the two clamping plates are smaller than the two clamping plates 340 extend from the front side of the two clamping plates are smaller than the front clamping plates 340.
The production method of the steel wire net rack composite rock wool board specifically comprises the following steps:
s1, a first telescopic source 510 drives a first lining plate 410 and a second lining plate 420 to be unfolded through a pivot assembly 520, and a side rail assembly 440 on the unfolded first lining plate 410 and the unfolded second lining plate 420 are respectively inserted and connected with a steel wire net rack;
s2, the rock wool board body clamped by the material taking assembly 300 keeps vertical state and moves to the positions close to the first lining plate 410 and the second lining plate 420;
s3, the first telescopic source 510 drives the first lining plate 410 and the second lining plate 420 to be folded through the pivot assembly 520, so that the first lining plate 410 and the second lining plate 420 respectively drive the steel wire net rack to be positioned on different sides of the rock wool board body;
s4, sequentially splicing and welding the steel wire pieces through two groups of net bag assemblies 450, so that the two steel wire net racks and the rock wool board body are stably connected to form a steel wire net rack composite rock wool board;
s5, discharging the steel wire mesh frame composite rock wool board by the material taking assembly 300.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
1. The utility model provides a steel wire rack composite rock wool board apparatus for producing which characterized in that includes: the straight column is connected with a transversely extending truss, and a material taking assembly is arranged on the truss and used for clamping the rock wool board body to suspend and keep a vertical state; the bearing mechanism comprises a first lining plate hinged on a straight column and a second lining plate rotationally connected with the first lining plate through a movable assembly, one side of the first lining plate and one side of the second lining plate are respectively provided with a side rail assembly for inserting a steel wire net rack, through grooves are formed in the first lining plate and the second lining plate, each through groove is provided with a net bag assembly, and the two groups of net bag assemblies can form welding guide for the clamped rock wool plate body; the driving mechanism comprises a first telescopic source and a pivoting assembly, the first telescopic source can drive the first lining plate and the second lining plate to be unfolded or folded through the pivoting assembly, the first lining plate and the second lining plate are used for placing the steel wire net frame when being unfolded, and the first lining plate and the second lining plate drive the steel wire net frame to be attached to two sides of the rock wool plate body when being folded; the first telescopic source is hinged on the straight column, the movable end of the first telescopic source is hinged with the first lining plate, the pivoting assembly comprises a rotary plate rotatably arranged on the first lining plate, one end of the rotary plate is connected with a first rotary arm, the other end of the rotary plate is connected with a second rotary arm, the first rotary arm is hinged with the straight column, and the second rotary arm is hinged with the second lining plate; the material taking assembly comprises a linear guide rail arranged on a truss, the linear guide rail is connected with a movable plate, a second telescopic source is arranged on the movable plate and is connected with two clamping plates in a sliding mode, the movable end of the second telescopic source is connected with a horizontal touch plate, traction rods are respectively arranged on two sides of the horizontal touch plate in a rotating mode, each traction rod extends outwards and is hinged to one clamping plate, the second telescopic source drives the horizontal touch plate to be in contact with the top flush of the rock wool plate body, and the two clamping plates are driven to clamp the rock wool plate body in the left-right horizontal direction through the traction rods.
2. The steel wire mesh frame composite rock wool board production device according to claim 1, wherein the side rail assembly comprises a top rail arranged at the top of the first lining board and the top of the second lining board and a bottom rail arranged at the bottom of the first lining board and the bottom of the second lining board, and the top rail and the bottom rail are respectively connected with a removable backing plate in a sliding mode.
3. The steel wire net rack composite rock wool board production device according to claim 2, wherein the base plate on the bottom rail is connected with a pressing plate through an elastic piece, side grooves are respectively formed in the pressing plate and the base plate on the top rail, the steel wire net rack is placed on the pressing plate, and the steel wire net rack is pressed upwards through the pressing plate to be clamped between the two side grooves.
4. The steel wire mesh frame composite rock wool board production device according to claim 1, wherein the mesh bag assembly comprises a supporting plate and a plurality of bag bodies arranged on the supporting plate, the bag bodies on the two groups of mesh bag assemblies are in one-to-one correspondence, and the steel wire pieces can transversely penetrate through the rock wool board body along the two corresponding bag bodies.
5. The steel wire mesh frame composite rock wool board production device according to claim 4, wherein the inner diameter of the bag body gradually increases from one end close to the steel wire mesh frame to one end far away from the steel wire mesh frame, the penetrated steel wire pieces are limited, and the welding head can be adjusted along the inner ring of the bag body during welding.
6. The steel wire net rack composite rock wool board production device according to claim 1, wherein the movable assembly comprises a first movable block and a first abutting block which are arranged on a first lining board, and a second movable block and a second abutting block which are arranged on a second lining board, wherein the first movable block and the second movable block are provided with matched connecting holes and are inserted with shaft rods, and the first abutting block and the second abutting block abut against each other when the first lining board and the second lining board are folded, so that the first lining board and the second lining board are flush.
7. A method for producing a steel wire mesh frame composite rock wool board, which is realized by the steel wire mesh frame composite rock wool board production device according to any one of claims 1 to 6, and is characterized by comprising the following steps:
s1, a first telescopic source drives a first lining plate and a second lining plate to be unfolded through a pivot assembly, and steel wire net racks are respectively inserted and placed on side rail assemblies on the unfolded first lining plate and the unfolded second lining plate;
s2, the rock wool board body clamped by the material taking assembly keeps vertical state and moves to a position close to the first lining board and the second lining board;
s3, the first telescopic source drives the first lining plate and the second lining plate to be folded through the pivot assembly, so that the first lining plate and the second lining plate respectively drive the steel wire net frame to be positioned on different sides of the rock wool plate body;
s4, sequentially splicing and welding the steel wire pieces through two groups of net bag components, so that the two steel wire net racks and the rock wool board body are stably connected to form a steel wire net rack composite rock wool board;
s5, discharging the steel wire mesh frame composite rock wool board by the material taking assembly.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
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| CN202310699389.2A CN116423112B (en) | 2023-06-14 | 2023-06-14 | Production method and device for steel wire net rack composite rock wool board |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202310699389.2A CN116423112B (en) | 2023-06-14 | 2023-06-14 | Production method and device for steel wire net rack composite rock wool board |
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| CN116423112A CN116423112A (en) | 2023-07-14 |
| CN116423112B true CN116423112B (en) | 2023-08-08 |
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Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS62276146A (en) * | 1986-05-24 | 1987-12-01 | 清水建設株式会社 | 3D wire-mesh truss composite wall |
| CN209736835U (en) * | 2019-03-23 | 2019-12-06 | 郑州中天建筑节能有限公司 | A vertical steel wire grid insulation board wire inserting machine |
| CN210848861U (en) * | 2019-10-11 | 2020-06-26 | 河南盛都环保科技集团有限公司 | Device for manually welding net rack plate |
| CN211708475U (en) * | 2020-01-19 | 2020-10-20 | 郑州中天建筑节能有限公司 | Welding tool for steel wire net rack of welding insulation board |
| CN113042947A (en) * | 2021-04-27 | 2021-06-29 | 山东斯普瑞节能科技有限公司 | Production line and production method of steel wire mesh frame composite insulation board |
| CN215200252U (en) * | 2021-04-27 | 2021-12-17 | 山东斯普瑞节能科技有限公司 | Automatic welding device for steel wire net frame of heat-insulation board |
| CN216686458U (en) * | 2022-02-21 | 2022-06-07 | 山东龙泰友和建材科技有限公司 | A clamping machine constructs for rock wool board processing |
| CN116252033A (en) * | 2023-02-20 | 2023-06-13 | 山东斯普瑞节能科技有限公司 | Welding equipment and method suitable for composite heat-insulating plates with steel wire meshes of various specifications |
-
2023
- 2023-06-14 CN CN202310699389.2A patent/CN116423112B/en active Active
Patent Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS62276146A (en) * | 1986-05-24 | 1987-12-01 | 清水建設株式会社 | 3D wire-mesh truss composite wall |
| CN209736835U (en) * | 2019-03-23 | 2019-12-06 | 郑州中天建筑节能有限公司 | A vertical steel wire grid insulation board wire inserting machine |
| CN210848861U (en) * | 2019-10-11 | 2020-06-26 | 河南盛都环保科技集团有限公司 | Device for manually welding net rack plate |
| CN211708475U (en) * | 2020-01-19 | 2020-10-20 | 郑州中天建筑节能有限公司 | Welding tool for steel wire net rack of welding insulation board |
| CN113042947A (en) * | 2021-04-27 | 2021-06-29 | 山东斯普瑞节能科技有限公司 | Production line and production method of steel wire mesh frame composite insulation board |
| CN215200252U (en) * | 2021-04-27 | 2021-12-17 | 山东斯普瑞节能科技有限公司 | Automatic welding device for steel wire net frame of heat-insulation board |
| CN216686458U (en) * | 2022-02-21 | 2022-06-07 | 山东龙泰友和建材科技有限公司 | A clamping machine constructs for rock wool board processing |
| CN116252033A (en) * | 2023-02-20 | 2023-06-13 | 山东斯普瑞节能科技有限公司 | Welding equipment and method suitable for composite heat-insulating plates with steel wire meshes of various specifications |
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| CN116423112A (en) | 2023-07-14 |
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