A wood board raw material intelligent suspension conveying system for wood board bed production
By employing a combined design of track body, sliding seat, suspension frame, rotating rod and hydraulic chamber in the intelligent suspended conveying system for wooden plank production, the stability and safety of timber during the conveying process are achieved, and the problem of inertial fall is solved.
Patent Information
- Application Number
- CN202510850630.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-06-24
AI Technical Summary
In existing intelligent suspended conveyor systems for wooden plank bed production, timber is prone to falling due to inertia when the device moves too fast, affecting the stability of the device.
The device employs a combined design of track body, sliding seat, suspension frame, rotating rod, hydraulic chamber and locking assembly, and improves the stability of the device through friction deceleration, rotation of protective plate and locking operation.
This effectively prevents timber from falling due to inertia during transportation, improving the stability and safety of the device.
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Figure CN120462848B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wood board conveying, in particular to a wood board raw material intelligent suspension conveying system for wood bed production. BACKGROUND
[0002] In the production process of wood beds, the transportation of wood board raw materials is an important link. Traditional manual handling and mechanical conveying methods often have problems such as low efficiency, high labor intensity, and poor precision. With the continuous development of intelligent technology, how to improve production efficiency and reduce labor intensity has become a difficult problem that needs to be solved in the wood bed production industry. The intelligent suspension conveying device, as a new type of transportation method, uses advanced automatic control systems and sensing technology to realize intelligent transportation and suspension conveying of wood board raw materials. Unlike traditional ground conveying systems, the suspension conveying system suspends the transported objects in the air, which can avoid occupying ground space, save production workshop space, reduce material wear and tear caused by contact with the ground, and ensure that the wood board raw materials are not easily deformed or damaged during transportation.
[0003] The existing wood board raw material intelligent suspension conveying system for wood bed production includes a suspension type conveying track, a walking seat, and two storage boxes. The walking seat is arranged on the suspension type conveying track and walks along the length direction of the suspension type conveying track. The bottom of the walking seat is fixed with a traction rope, and the end of the traction rope away from the walking seat is fixed with a hook. The top of the storage box is fixed with a hanging ring, and the hook is hung on the hanging ring. One end of the storage box is provided with an opening, and a bearing plate is arranged in the storage box and moves along the height direction of the storage box.
[0004] In the above application file, the cut wood is stacked and conveyed to the next processing station. However, when the device moves too fast during conveying, the wood on the device may fall due to inertia when the device stops at the designated position, which affects the use of the device. SUMMARY
[0005] To overcome the deficiencies of the prior art, the present application provides a wood board raw material intelligent suspension conveying system for wood bed production, which solves the problems raised in the background art. To achieve the above purpose, the present application is implemented by the following technical scheme: a wood board raw material intelligent suspension conveying system for wood bed production, comprising:
[0006] A track body is internally connected with a lead screw;
[0007] A sliding seat is assembled on the track body and is in a sliding connection state with the track body. The bottom of the sliding seat is assembled with a suspension bracket;
[0008] The bottom of the track body is equipped with a fixed tooth rod, the side of the sliding seat is rotationally connected with a rotating rod one, the outer side of the rotating rod one is fixedly connected with a gear, the top of the suspension frame is equipped with a hydraulic chamber one, the top of the hydraulic chamber one is slidably connected with a transmission rod one through setting a piston, the top of the transmission rod one is rotationally connected with a friction wheel, the transmission part for transmission is equipped between the friction wheel and the rotating rod one, the side of the suspension frame is equipped with a protection assembly for protecting the wood board, and the inside of the suspension frame is equipped with a locking assembly for locking operation. Through the setting of the device, the stability during use is improved.
[0009] Preferably, the transmission part comprises a hydraulic chamber two equipped on the outer side of the rotating rod one, the inner wall of the hydraulic chamber two is slidably connected with a moving block through setting a spring one, one end of the hydraulic chamber two away from the moving block is slidably connected with an arc-shaped rod one through setting a piston, and the end of the hydraulic chamber one away from the transmission rod one is slidably connected with a force receiving rod one through setting a piston. The side of the force receiving rod one is equipped with a spring two.
[0010] Preferably, the gear is located at the bottom of the fixed tooth rod and is in meshing state with the fixed tooth rod.
[0011] Preferably, the force receiving rod one is located at the side of the arc-shaped rod one and is in mutual contact with the arc-shaped rod one.
[0012] Preferably, the protection assembly comprises a hydraulic chamber three equipped on the side of the sliding seat, one end of the hydraulic chamber three is slidably connected with a force receiving rod two through setting a piston, the other end of the hydraulic chamber three is slidably connected with an arc-shaped rod two through setting a piston, the bottom of the force receiving rod two is equipped with a spring three, the side of the suspension frame is rotationally connected with a rotating rod two, and the side of the rotating rod two is equipped with a protection plate. Through the setting of the protection assembly, the wood being conveyed is prevented from falling due to inertia.
[0013] Preferably, the force receiving rod two is located at the bottom of the arc-shaped rod one and is in mutual contact with the arc-shaped rod one.
[0014] Preferably, the protection plate is located at the side of the arc-shaped rod two and is in fixed state with the arc-shaped rod two.
[0015] Preferably, the locking assembly comprises a locking buckle assembled on the side of the protective plate and a locking slot formed in the hanging frame, the side of the hanging frame is assembled with a hydraulic bin four, the side of the hydraulic bin four is slidably connected with a transmission rod two through a piston, the side of the transmission rod two is connected with a limiting block through a spring four, the side of the transmission rod two is assembled with a spring five, and the end of the hydraulic bin four away from the transmission rod two is slidably connected with a stress rod three through a piston, and the bottom of the track body is assembled with a limiting rod. Through the setting of the locking assembly, the protective plate can be locked on both sides of the hanging frame during conveying, and the stability of the device during use is further improved.
[0016] Preferably, the end of the spring five away from the transmission rod two is assembled on the inner wall of the hydraulic bin four.
[0017] Preferably, the limiting rod is located at the top of the stress rod three and is in contact with the limiting rod.
[0018] The present application provides a kind of wood board raw material intelligent suspension conveying system for wood bed production.There are following beneficial effects:
[0019] (1) When the wood board raw material intelligent suspension conveying system for wood bed production is used to convey the wood placed on the hanging frame, the rotating rod one moves together, cooperates with the fixed toothed rod, gear, hydraulic bin one, transmission rod one, hydraulic bin two, spring one, moving block, arc-shaped rod one, stress rod one and spring two, so that the friction wheel moves upward to the bottom of the track body and is in contact with the track body, thereby performing friction deceleration, and the stability of the device during use is improved.
[0020] (2) When the arc-shaped rod one is extended synchronously during rotation, the wood board raw material intelligent suspension conveying system for wood bed production can extrude the stress rod two, so that the stress rod two moves downward, cooperates with the arc-shaped rod two, spring three and rotating rod two, so that the two protective plates are rotated to the two sides of the hanging frame respectively, to prevent the wood being conveyed from falling due to inertia.
[0021] (3) When the protective plate is rotated to the two sides of the hanging frame, the locking buckle assembled on the protective plate is rotated into the locking slot, cooperates with the hydraulic bin four, transmission rod two, spring four, limiting block, spring five, stress rod three and limiting rod, so that the protective plate can be locked on both sides of the hanging frame during conveying, and the stability of the device during use is further improved. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a three-dimensional structure schematic view of part of the present application.
[0023] Figure 2Fig. 1 is a schematic view of the overall sectional three-dimensional structure of the present application;
[0024] Figure 3 Fig. 2 is a schematic view of the overall sectional three-dimensional structure of the present application from another perspective;
[0025] Figure 4 Fig. 3 is a schematic view of the partial component three-dimensional structure of the present application;
[0026] Figure 5 Fig. 4 is a schematic view of the protection assembly three-dimensional structure of the present application;
[0027] Figure 6 Fig. 5 is a schematic view of the Figure 5 Fig. 6 is an enlarged structure schematic view of position A in Fig. 5;
[0028] Figure 7 Fig. 7 is a schematic view of the locking assembly three-dimensional structure of the present application;
[0029] Figure 8 Fig. 8 is a schematic view of the Figure 7 Fig. 9 is an enlarged structure schematic view of position B in Fig. 8;
[0030] Figure 9 Fig. 10 is a schematic view of the Figure 7 Fig. 11 is an enlarged structure schematic view of position C in Fig. 10.
[0031] Fig. 1 is a schematic view of the overall sectional three-dimensional structure of the present application;
[0032] 100, track main body; 200, screw rod; 300, sliding seat; 400, suspension frame; 501, fixed tooth rod; 502, rotating rod one; 503, gear; 504, hydraulic chamber one; 505, transmission rod one; 506, friction wheel; 507, hydraulic chamber two; 508, spring one; 509, moving block; 510, arc-shaped rod one; 511, force receiving rod one; 512, spring two;
[0033] 600, protection assembly; 601, hydraulic chamber three; 602, force receiving rod two; 603, arc-shaped rod two; 604, spring three; 605, rotating rod two; 606, protection plate;
[0034] 700, locking assembly; 701, locking buckle; 702, locking groove; 703, hydraulic chamber four; 704, transmission rod two; 705, spring four; 706, limiting block; 707, spring five; 708, force receiving rod three; 709, limiting rod. DETAILED DESCRIPTION
[0035] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application.
[0036] Embodiment one, please refer to Figures 1-4The application discloses a wood board raw material intelligent suspension conveying system for wood board bed production.
[0037] The track main body 100 is internally rotationally connected with a lead screw 200;
[0038] The sliding seat 300 is assembled on the track main body 100 and is in a sliding connection state with the track main body 100, the bottom of the sliding seat 300 is assembled with a suspension frame 400, wood to be conveyed is placed on the suspension frame 400, the lead screw 200 driven by the motor is started to rotate, the sliding seat 300 connected with the lead screw 200 through threads is limited by the track main body 100 in a sliding connection state, the sliding seat 300 drives the suspension frame 400 to move, and the wood placed on the suspension frame 400 is correspondingly conveyed.
[0039] The bottom of the track main body 100 is assembled with a fixed toothed rod 501, the side of the sliding seat 300 is rotationally connected with a rotating rod 502, the outer side of the rotating rod 502 is fixedly connected with a gear 503, the gear 503 is located at the bottom of the fixed toothed rod 501 and is in an engagement state with the fixed toothed rod 501. When the sliding seat 300 moves, the rotating rod 502 rotationally connected with the side of the sliding seat 300 moves together, the gear 503 fixed to the outer side of the rotating rod 502 moves, and the gear 503 is limited by the fixed toothed rod 501 in an engagement state in the moving process, so that the gear 503 rapidly rotates in the moving process, thereby driving the rotating rod 502 fixedly connected with the gear 503 to rapidly rotate.
[0040] The top of the suspension frame 400 is equipped with a hydraulic chamber one 504, the top of the hydraulic chamber one 504 is slidably connected with a transmission rod one 505 through a piston, the top of the transmission rod one 505 is rotatably connected with a friction wheel 506, a transmission part for transmission is equipped between the friction wheel 506 and the rotating rod one 502, the transmission part comprises a hydraulic chamber two 507 equipped on the outer side of the rotating rod one 502, the inner wall of the hydraulic chamber two 507 is slidably connected with a moving block 509 through a spring one 508, one end of the hydraulic chamber two 507 away from the moving block 509 is slidably connected with an arc-shaped rod one 510 through a piston, one end of the hydraulic chamber one 504 away from the transmission rod one 505 is slidably connected with a stress rod one 511 through a piston, the stress rod one 511 is located at the side of the arc-shaped rod one 510 and in contact with the arc-shaped rod one 510. When the rotating rod one 502 rotates quickly, the rotating rod one 502 drives the hydraulic chamber one 504 equipped on the outer side thereof to rotate quickly, the moving block 509 in the hydraulic chamber one 504 moves under the action of centrifugal force and stretches the spring one 508, thereby pushing the oil in the hydraulic chamber one 504, so that the oil originally stored in the hydraulic chamber one 504 moves to the side close to the arc-shaped rod one 510, pushing the arc-shaped rod one 510 to stretch out of the hydraulic chamber one 504, at this time the arc-shaped rod one 510 stretches out synchronously in the process of rotation, thereby pressing the stress rod one 511, so that the stress rod one 511 presses the oil originally stored in the hydraulic chamber two 507, the oil immediately moves to the side close to the transmission rod one 505, pushing the transmission rod one 505 to move upwards, the friction wheel 506 assembled on the transmission rod one 505 and rotatably connected with the transmission rod one 505 immediately moves upwards to the bottom position of the track main body 100 and in contact with the track main body 100, thereby performing friction deceleration, improving the stability of the device during use.
[0041] The side of the stress rod one 511 is equipped with a spring two 512. When the suspension frame 400 moves to the specified position and stops moving, the rotating rod one 502 no longer rotates, so that the moving block 509 loses the action of centrifugal force and resets under the action of the spring one 508, and the arc-shaped rod one 510 resets in the same way, so that the stress rod one 511 loses the limitation of the arc-shaped rod one 510 and resets under the action of the spring two 512, thereby completing the reset of the device for the next use of the device.
[0042] In use, the wood to be transported is placed on the hanging frame 400, the screw rod 200 driven by the motor is started to rotate, and the sliding seat 300 connected with the screw rod 200 through threads is limited by the track body 100 connected with the sliding seat 300 through sliding to move the sliding seat 300 and the hanging frame 400 to transport the wood placed on the hanging frame 400; the rotating rod one 502 connected with the sliding seat 300 moves to make the gear 503 fixed on the outer side of the rotating rod one 502 move, and the gear 503 moves to rotate quickly under the limitation of the fixed gear rod 501 engaged with the gear 503 to make the rotating rod one 502 rotate quickly, the hydraulic chamber one 504 assembled on the outer side of the rotating rod one 502 rotates quickly to make the moving block 509 in the hydraulic chamber one 504 move under the centrifugal force to stretch the spring one 508 and push the oil in the hydraulic chamber one 504 to move to the side close to the arc-shaped rod one 510 to push the arc-shaped rod one 510 to stretch out of the hydraulic chamber one 504, at this time, the arc-shaped rod one 510 stretches out synchronously in the rotating process to press the stress rod one 511 to make the stress rod one 511 press the oil originally stored in the hydraulic chamber two 507, the oil moves to the side close to the transmission rod one 505 to push the transmission rod one 505 to move upward, the friction wheel 506 assembled on the transmission rod one 505 and connected with the transmission rod one 505 rotates to move upward to the bottom position of the track body 100 and contact with the track body 100 to frictionally decelerate; when the hanging frame 400 moves to the specified position and stops moving, the rotating rod one 502 does not rotate any more to make the moving block 509 reset under the action of the spring one 508, and the arc-shaped rod one 510 resets to make the stress rod one 511 reset under the action of the spring two 512 to make the device reset.
[0043] Embodiment two, please refer to Figures 1-6 On the basis of embodiment one, the side of the hanging frame 400 is assembled with the protection assembly 600 for protecting the wood board, the protection assembly 600 comprises the hydraulic chamber three 601 assembled on the side of the sliding seat 300, one end of the hydraulic chamber three 601 is connected with the stress rod two 602 through the piston, the stress rod two 602 is located at the bottom position of the arc-shaped rod one 510 and contacts with the arc-shaped rod one 510; when the arc-shaped rod one 510 stretches out synchronously in the rotating process, the stress rod two 602 is pressed to move downward, and the stress rod two 602 presses the oil originally stored in the hydraulic chamber three 601 because the stress rod two 602 is connected with the hydraulic chamber three 601 through the piston.
[0044] The other end of the hydraulic bin three 601 is connected with the arc-shaped rod two 603 through the setting of the piston sliding connection, the bottom of the force rod two 602 is equipped with the spring three 604, the side of the suspension frame 400 is rotatably connected with the rotating rod two 605, the side of the rotating rod two 605 is equipped with the protective plate 606, the protective plate 606 is located at the side of the arc-shaped rod two 603, and is in a fixed state with the arc-shaped rod two 603. When the oil in the hydraulic bin three 601 is extruded, the oil in the hydraulic bin three 601 can be moved to the side close to the arc-shaped rod two 603, so that the arc-shaped rod two 603 is extruded to move, driving the protective plate 606 fixedly connected therewith to rotate, at this time, the protective plate 606 can be rotated to the both sides of the suspension frame 400, preventing the wood being transported from falling due to inertia.
[0045] When the arc-shaped rod one 510 resets, the force rod two 602 loses the limitation, and can reset under the action of the spring three 604, and the protective plate 606 resets in the same way, so that the protective assembly 600 completes the reset, for the next use of the protective assembly 600.
[0046] In use, on the basis of example one, when the arc-shaped rod one 510 is synchronously stretched out in the rotating process, the force rod two 602 can be extruded, so that the force rod two 602 moves downward, because the force rod two 602 and the hydraulic bin three 601 are connected through the setting of the piston sliding connection, so that the force rod two 602 can extrude the oil originally stored in the hydraulic bin three 601 at this time, the oil in the hydraulic bin three 601 is moved to the side close to the arc-shaped rod two 603, so that the arc-shaped rod two 603 is extruded to move, driving the protective plate 606 fixedly connected therewith to rotate, at this time, the protective plate 606 can be rotated to the both sides of the suspension frame 400; when the arc-shaped rod one 510 resets, the force rod two 602 loses the limitation, and can reset under the action of the spring three 604, and the protective plate 606 resets in the same way, so that the protective assembly 600 completes the reset.
[0047] Example three, please refer to Figures 1-9 On the basis of example one and example two, the suspension frame 400 is internally equipped with a locking assembly 700 for locking operation, the locking assembly 700 comprises a locking buckle 701 equipped on the side of the protective plate 606 and a locking groove 702 opened in the suspension frame 400. When the protective plate 606 rotates to the both sides of the suspension frame 400, the locking buckle 701 equipped on the protective plate 606 rotates into the locking groove 702.
[0048] The side of the suspension frame 400 is equipped with the hydraulic bin four 703, the side of the hydraulic bin four 703 is slidably connected with the transmission rod two 704 by setting the piston, the side of the transmission rod two 704 is connected with the limiting block 706 by setting the spring four 705. In the process of rotating into the locking slot 702, the locking buckle 701 first extrudes the limiting block 706, the limiting block 706 compresses the spring four 705 to generate a certain distance movement to the transmission rod two 704, so that the locking buckle 701 can pass through the limiting block 706 and continue to move to the depth of the locking slot 702, when the groove on the locking buckle 701 moves to the limiting block 706, the limiting block 706 loses the limitation, that is, it can move to the groove under the action of the spring four 705, and the locking of the locking buckle 701 is completed. In this way, the protective plate 606 can be locked on both sides of the suspension frame 400 during conveying, further improving the stability of the device during use.
[0049] The side of the transmission rod two 704 is equipped with the spring five 707, the end of the spring five 707 away from the transmission rod two 704 is equipped on the inner wall of the hydraulic bin four 703, the end of the hydraulic bin four 703 away from the transmission rod two 704 is slidably connected with the stress rod three 708 by setting the piston, the bottom of the track main body 100 is equipped with the limiting rod 709, the limiting rod 709 is located at the top of the stress rod three 708, and is in contact with the limiting rod 709. When the wood is conveyed to the designated position, the stress rod three 708 moves to the vacancy of the limiting rod 709, so that the stress rod three 708 loses the limitation of the limiting rod 709, and because the stress rod three 708 and the transmission rod two 704 are slidably connected with the hydraulic bin four 703 by setting the piston, the transmission rod two 704 loses the limitation, and can slide into the hydraulic bin four 703 under the action of the spring five 707. At this time, the transmission rod two 704 can pull the limiting block 706 out of the groove on the locking buckle 701 through the spring four 705, release the locking state of the locking buckle 701, and cancel the locking of the protective plate 606 by the locking buckle 701. In this way, the locking assembly 700 can be reset to facilitate the next use of the locking assembly 700.
[0050] In use, on the basis of Embodiment One and Embodiment Two, when the protective plate 606 is rotated to the position on both sides of the hanger 400, the locking buckle 701 assembled on the protective plate 606 is rotated into the locking slot 702, and in the process of movement, the locking buckle 701 first extrudes the limiting block 706, the limiting block 706 compresses the spring four 705 to generate a certain distance of movement to the transmission rod two 704, so that the locking buckle 701 can pass through the limiting block 706 and continue to move to the depth of the locking slot 702, when the groove on the locking buckle 701 moves to the position of the limiting block 706, the limiting block 706 loses the limitation, and can move into the groove under the action of the spring four 705, to complete the locking of the locking buckle 701; when the wood is conveyed to the designated position, the force rod three 708 moves to the vacancy of the limiting rod 709, so that the force rod three 708 loses the limitation of the limiting rod 709, and because the force rod three 708 and the transmission rod two 704 are both slidably connected with the hydraulic bin four 703 through the setting of the piston, the transmission rod two 704 loses the limitation, and can slide into the hydraulic bin four 703 under the action of the spring five 707, at this time, the transmission rod two 704 can pull the limiting block 706 out of the groove on the locking buckle 701 through the spring four 705, to release the locking state of the locking buckle 701 and cancel the locking of the protective plate 606 through the locking buckle 701.
[0051] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. An intelligent suspended conveying system for wood raw materials used in the production of wooden plank beds, characterized in that, include: The track body has a lead screw rotatably connected inside it. A sliding seat is mounted on the track body and is slidably connected to the track body. A suspension bracket is mounted on the bottom of the sliding seat. The bottom of the track body is equipped with a fixed toothed rod. A rotating rod is rotatably connected to the side of the sliding seat. A gear is fixedly connected to the outer side of the rotating rod. A hydraulic chamber is equipped at the top of the suspension frame. A transmission rod is slidably connected to the top of the hydraulic chamber via a piston. A friction wheel is rotatably connected to the top of the transmission rod. A transmission component for transmission is assembled between the friction wheel and the rotating rod. A protective component for protecting the wooden board is equipped on the side of the suspension frame. A locking component for locking is assembled inside the suspension frame. When the wood placed on the suspension frame is conveyed, the rotating rod moves along with it, causing the friction wheel to move upward to the bottom position of the track body and contact the track body.
2. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 1, characterized in that: The transmission component includes a hydraulic chamber two mounted on the outside of a rotating rod one. The inner wall of the hydraulic chamber two is slidably connected to a moving block via a spring one. The end of the hydraulic chamber two away from the moving block is slidably connected to an arc-shaped rod one via a piston one. The end of the hydraulic chamber one away from the transmission rod one is slidably connected to a force-bearing rod one via a piston one. A spring two is mounted on the side of the force-bearing rod one.
3. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 2, characterized in that: The gear is located at the bottom of the fixed rack and is in mesh with the fixed rack.
4. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 2, characterized in that: The first force-bearing rod is located on the side of the first arc-shaped rod and is in contact with the first arc-shaped rod.
5. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 2, characterized in that: The protective assembly includes a hydraulic chamber three mounted on the side of the sliding seat. One end of the hydraulic chamber three is slidably connected to a force-bearing rod two via a piston. The other end of the hydraulic chamber three is slidably connected to an arc-shaped rod two via a piston. A spring three is mounted at the bottom of the force-bearing rod two. A rotating rod two is rotatably connected to the side of the suspension frame. A protective plate is mounted on the side of the rotating rod two.
6. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 5, characterized in that: The second force-bearing rod is located at the bottom of the first arc-shaped rod and is in contact with the first arc-shaped rod.
7. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 5, characterized in that: The protective plate is located on the side of the second arc-shaped rod and is fixed to the second arc-shaped rod.
8. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 5, characterized in that: The locking assembly includes a locking buckle mounted on the side of the protective plate and a locking groove opened in the suspension frame. A hydraulic chamber four is mounted on the side of the suspension frame. A transmission rod two is slidably connected to the side of the hydraulic chamber four via a piston. A limiting block is connected to the side of the transmission rod two via a spring four. A spring five is mounted on the side of the transmission rod two. A force-bearing rod three is slidably connected to the end of the hydraulic chamber four away from the transmission rod two via a piston. A limiting rod is mounted at the bottom of the track body.
9. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 8, characterized in that: The end of the spring five furthest from the transmission rod two is mounted on the inner wall of the hydraulic chamber four.
10. The intelligent suspended conveying system for wood raw materials in the production of wooden plank beds according to claim 8, characterized in that: The limiting rod is located at the top of the force-bearing rod three and is in contact with the limiting rod.
Citation Information
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