CN213499799U - Pull plate conveying mechanism of laminated plate multi-layer blank hot press molding production line - Google Patents
Pull plate conveying mechanism of laminated plate multi-layer blank hot press molding production line Download PDFInfo
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- CN213499799U CN213499799U CN202021973784.3U CN202021973784U CN213499799U CN 213499799 U CN213499799 U CN 213499799U CN 202021973784 U CN202021973784 U CN 202021973784U CN 213499799 U CN213499799 U CN 213499799U
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Abstract
The utility model provides a pulling plate conveying mechanism of a laminating plate multi-layer stack blank hot-press molding production line, which comprises a hook device for pulling a supporting plate and a conveying device for conveying the supporting plate; the trip device comprises a trip part and a reciprocating driving device for driving the trip part. After the hot press main body finishes the hot press forming process, the purpose of discharging the multi-layer plate blank on the supporting plate after hot press forming is realized by the hook device and the conveying device of the pull plate conveying mechanism, and the multi-layer plate blank subjected to hot press forming on the supporting plate can be conveniently discharged in the subsequent process; degree of automation is high, realizes the process of automatic layer board feeding and the ejection of compact, reduces the cost of labor, improves production efficiency.
Description
Technical Field
The utility model discloses it relates to plywood processing equipment technical field to glue, concretely relates to multi-layer group embryo hot briquetting production line's of tectorial membrane board arm-tie conveying mechanism.
Background
Plywood is a three-layer or multi-layer plate material made up by using wood segments and making them be rotary-cut into single board or sliced into thin wood and using adhesive to make them be glued together, and usually using odd number of layers of single board and making the fibre directions of adjacent layers of single board be mutually perpendicular.
The plywood is one of common furniture materials, is one of three large plates of an artificial plate, and can also be used as a material for airplanes, ships, trains, automobiles, buildings, packing boxes and the like. A group of veneers are typically assembled and glued perpendicular to each other in the direction of the adjacent layers of wood grain, and the skins and inner sheets are typically symmetrically disposed on either side of the center layer or core. The glued veneer is pressed into the wood grain board blank by the criss-cross matching of the glued veneer according to the wood grain direction under the condition of heating or not heating. The number of layers is generally odd, and a few are even. The difference of physical and mechanical properties in the longitudinal and transverse directions is small. The types of plywood commonly used are plywood, plywood and the like. The plywood can improve the utilization rate of the wood and is a main way for saving the wood.
Along with the demand for the plywood on the market is higher and higher, traditional production line production efficiency that relies on manual work is low, and degree of automation is not high, can't satisfy the demand already.
Accordingly, the present inventors have made extensive studies to solve the above problems and have made the present invention.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a stripper conveying mechanism of many packet of embryo hot briquetting production line of tectorial membrane board to the degree of automation who mentions in the solution background art is low, problem that production efficiency is low.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a pulling plate conveying mechanism of a laminated plate multi-layer blank hot-press molding production line comprises a hook device for pulling a supporting plate and a conveying device for conveying the supporting plate; the trip device comprises a trip part and a reciprocating driving device for driving the trip part.
Furthermore, the clamping hook part comprises a first clamping hook, a second clamping hook, a first mounting seat, a second mounting seat and a bearing plate for bearing the first mounting seat and the second mounting seat; the first mounting seat and the second mounting seat are mounted on the bearing plate, a first through groove is formed in one end of the first mounting seat, a second through groove is formed in one end of the second mounting seat, the first clamping hook is mounted in the first through groove in a supporting mode through a first torsion spring, and the second clamping hook is mounted in the second through groove in a supporting mode through a second torsion spring.
Further, the output end of the reciprocating driving device is connected with the middle part of the bearing plate.
Furthermore, the hook part also comprises a guiding device for horizontally guiding the first hook and the second hook.
Further, the guiding device comprises a first guiding rail and a second guiding rail, and the first guiding rail and the second guiding rail are connected with the supporting plate in a sliding mode.
Further, the conveying device comprises a first conveying belt, a second conveying belt and a transmission driving device for driving the first conveying belt and the second conveying belt.
Further, the transmission driving device comprises a rotating shaft for transmitting the first conveying belt and the second conveying belt, and a motor for driving the rotating shaft to rotate; the one end and the first conveyer belt of pivot rotate to be connected, and the other end and the second conveyer belt of pivot rotate to be connected, the motor passes through the belt and is connected with the pivot transmission.
After the structure of the oil-water separator is adopted, the utility model relates to a pull plate conveying mechanism of multi-layer packet embryo hot briquetting production line of tectorial membrane board, it has following beneficial effect at least:
when the supporting plate is transported to a transporting mechanism for transporting the supporting plate before the pulling plate transporting mechanism, the reciprocating driving device on the pulling plate transporting mechanism drives the clamping hook part to move towards the direction of the supporting plate, until the supporting plate is hooked, the reciprocating driving device drives the clamping hook part to move in the opposite direction, the supporting plate is pulled into the upper surface of the transporting device, the transporting device and the clamping hook device jointly drive the supporting plate to move towards the direction of a hot press main body, and the conveying device and the clamping hook device jointly act on the supporting plate to transport the supporting plate to the next mechanism; after the hot press main body finishes the hot press forming process, the purpose of discharging the multi-layer plate blank on the supporting plate after hot press forming is realized by the hook device and the conveying device of the pull plate conveying mechanism, and the multi-layer plate blank subjected to hot press forming on the supporting plate can be conveniently discharged in the subsequent process; degree of automation is high, realizes the process of automatic layer board feeding and the ejection of compact, reduces the cost of labor, improves production efficiency.
Drawings
Fig. 1 is a schematic structural view of a pulling plate conveying mechanism of a laminated board multi-layer blank hot press molding production line of the utility model;
fig. 2 is the utility model relates to a structural sketch of layer board of tectorial membrane board multilayer group embryo hot briquetting production line.
In the figure: 1-pulling plate conveying mechanism, 2-supporting plate, 11-clamping hook device, 12-conveying device, 111-clamping hook part, 112-reciprocating driving device, 1111-first clamping hook, 1112-second clamping hook, 1113-first mounting seat, 1114-second mounting seat, 1115-supporting plate, 1116-first through groove, 1117-second through groove, 1118-first torsion spring, 1119-second torsion spring, 113-guiding device, 1131-first guide rail, 1132-second guide rail, 121-first conveying belt, 122-second conveying belt, 123-transmission driving device, 1231-rotating shaft and 1232-motor.
Detailed Description
In order to further explain the technical solution of the present invention, the following is a detailed explanation through specific examples.
As shown in fig. 1 and fig. 2, in a pulling plate conveying mechanism 1 of a laminated board multi-layer blank hot press molding production line of the present invention, the pulling plate conveying mechanism 1 includes a hook device 11 for pulling a supporting plate 2, and a conveying device 12 for conveying the supporting plate 2; the hook device 11 includes a hook portion 111, and a reciprocating driving device 112 driving the hook portion 111.
Thus, when the supporting plate 2 is transported to the transporting mechanism of the previous transporting supporting plate 2 of the pulling plate transporting mechanism 1, the reciprocating driving device 112 on the hook device 11 drives the hook part 111 to move towards the direction of the supporting plate 2 through the hook device 11 on the pulling plate transporting mechanism 1, until the supporting plate 2 is hooked, the reciprocating driving device 112 drives the hook part 111 to move in the opposite direction, the supporting plate 2 is pulled into the upper surface of the transporting device 12, the transporting device 12 and the hook device 11 jointly drive the supporting plate 2 to move towards the direction of the hot press main body, and the supporting plate 2 is transported to the next mechanism through the combined action of the transporting device 12 and the hook device 11 on the supporting plate 2; after the hot press main body finishes the hot press forming process, the purpose of discharging the multi-layer plate blank on the supporting plate 2 after hot press forming is realized by the hook device 11 and the conveying device 12 of the pull plate conveying mechanism 1, and the multi-layer plate blank subjected to hot press forming on the supporting plate 2 is conveniently discharged in the subsequent process; degree of automation is high, realizes the process of the 2 feeding of automatic layer board and the ejection of compact, reduces the cost of labor, improves production efficiency.
Preferably, the hook part 111 includes a first hook 1111, a second hook 1112, a first mounting seat 1113, a second mounting seat 1114, and a support plate 1115 for supporting the first mounting seat 1113 and the second mounting seat 1114; the first mounting seat 1113 and the second mounting seat 1114 are mounted on the support plate 1115, a first through groove 1116 is formed in one end of the first mounting seat 1113, a second through groove 1117 is formed in one end of the second mounting seat 1114, the first clamping hook 1111 is mounted in the first through groove 1116 in a propping mode through a first torsion spring 1118, and the second clamping hook 1112 is mounted in the second through groove 1117 in a propping mode through a second torsion spring 1119. Specifically, the supporting plate 2 is provided with a hook part of a hook of the pulling plate conveying mechanism 1; preferably, one end of the supporting plate 2 is fixedly connected with a first connecting rod and a second connecting rod which are perpendicular to each other; when the first hook 1111 and the second hook 1112 contact the hook of the pallet 2, the first hook 1111 and the second hook 1112 are subjected to resistance of the hook, so that the first hook 1111 rotates downwards through the first torsion spring 1118, the second hook 1112 rotates downwards through the second torsion spring 1119 until the hook of the pallet 2 no longer has resistance to the first hook 1111 and the second hook 1112, and after the hook passes through the hook, the first hook 1111 and the second hook 1112 reset to block the hook of the pallet 2, thereby pulling the pallet 2.
Preferably, the output end of the reciprocating drive 112 is coupled to the middle of the support plate 1115. The support plate 1115 is reciprocated by the reciprocating drive 112.
Preferably, the hooking portion 111 further includes a guide 113 for horizontally guiding the first and second hooks 1111 and 1112. The guide device 113 makes the first hook 1111 and the second hook 1112 operate stably and reliably.
Preferably, the guide device 113 includes a first guide rail 1131 and a second guide rail 1132, and the first guide rail 1131 and the second guide rail 1132 are slidably connected to the support plate 1115. The support plate 1115 slides on the first guide rail 1131 and the second guide rail 1132, so that the structure is more stable and reliable.
Preferably, the conveying device 12 includes a first conveyor belt 121, a second conveyor belt 122, and a transmission driving device 123 that drives the first conveyor belt 121 and the second conveyor belt 122. The purpose of conveying the pallets 2 by the first conveyor belt 121 and the second conveyor belt 122 is achieved by the transmission driving device 123.
Preferably, the transmission driving device 123 includes a rotating shaft 1231 for transmitting the first conveying belt 121 and the second conveying belt 122, and a motor 1232 for driving the rotating shaft 1231 to rotate; one end of the rotating shaft 1231 and the first conveying belt 121 are rotatably connected to the other end of the rotating shaft 1231 and the second conveying belt 122, and the motor 1232 is in transmission connection with the rotating shaft 1231 through a belt. The motor 1232 drives the rotating shaft 1231 to rotate, so that the rotating shaft 1231 drives the first conveying belt 121 and the second conveying belt 122 to rotate, and the purpose of conveying the conveying belts is achieved.
The product form of the present invention is not limited to the drawings and embodiments of the present application, and any person can properly change or modify the product form of the present invention without departing from the scope of the present invention.
Claims (7)
1. The utility model provides a lifter conveying mechanism of multilayer stack embryo hot briquetting production line of tectorial membrane board which characterized in that: the pulling plate conveying mechanism comprises a clamping hook device for pulling the supporting plate and a conveying device for conveying the supporting plate; the trip device comprises a trip part and a reciprocating driving device for driving the trip part.
2. The pulling plate conveying mechanism of the laminated plate multi-layer blank hot-press molding production line according to claim 1, characterized in that: the clamping hook part comprises a first clamping hook, a second clamping hook, a first mounting seat, a second mounting seat and a bearing plate for bearing the first mounting seat and the second mounting seat; the first mounting seat and the second mounting seat are mounted on the bearing plate, a first through groove is formed in one end of the first mounting seat, a second through groove is formed in one end of the second mounting seat, the first clamping hook is mounted in the first through groove in a supporting mode through a first torsion spring, and the second clamping hook is mounted in the second through groove in a supporting mode through a second torsion spring.
3. The pulling plate conveying mechanism of the laminated plate multi-layer blank hot-press molding production line according to claim 2, characterized in that: the output end of the reciprocating driving device is connected with the middle part of the bearing plate.
4. The pulling plate conveying mechanism of the laminated plate multi-layer blank hot-press molding production line according to claim 3, characterized in that: the hook part also comprises a guide device for horizontally guiding the first hook and the second hook.
5. The pulling plate conveying mechanism of the laminated plate multi-layer blank hot-press molding production line according to claim 4, characterized in that: the guide device comprises a first guide rail and a second guide rail, and the first guide rail and the second guide rail are in sliding connection with the bearing plate.
6. The pulling plate conveying mechanism of the laminated plate multi-layer blank hot-press molding production line according to claim 5, characterized in that: the conveying device comprises a first conveying belt, a second conveying belt and a transmission driving device for driving the first conveying belt and the second conveying belt.
7. The pulling plate conveying mechanism of the laminated plate multi-layer blank hot-press molding production line according to claim 6, characterized in that: the transmission driving device comprises a rotating shaft for transmitting the first conveying belt and the second conveying belt and a motor for driving the rotating shaft to rotate; the one end and the first conveyer belt of pivot rotate to be connected, and the other end and the second conveyer belt of pivot rotate to be connected, the motor passes through the belt and is connected with the pivot transmission.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021973784.3U CN213499799U (en) | 2020-09-10 | 2020-09-10 | Pull plate conveying mechanism of laminated plate multi-layer blank hot press molding production line |
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CN202021973784.3U CN213499799U (en) | 2020-09-10 | 2020-09-10 | Pull plate conveying mechanism of laminated plate multi-layer blank hot press molding production line |
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CN213499799U true CN213499799U (en) | 2021-06-22 |
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CN202021973784.3U Active CN213499799U (en) | 2020-09-10 | 2020-09-10 | Pull plate conveying mechanism of laminated plate multi-layer blank hot press molding production line |
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