Binding mechanism for producing wood pallets
By designing a binding mechanism for wooden pallet production, and using a feeding rack and electric slide table to drive the pusher seat to automatically push the timber, the problems of slow speed and poor consistency of traditional manual operation are solved, and the high-speed production line achieves efficient and accurate positioning and multi-specification adaptability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUHAN XINTIANDI PLASTIC WOOD PACKING CO LTD
- Filing Date
- 2025-03-24
- Publication Date
- 2026-04-10
AI Technical Summary
Traditional wooden pallet binding processes rely on manual operation, resulting in slow production speed, poor product consistency, and difficulty in meeting the cycle time requirements of high-speed production lines.
Design a binding mechanism for producing wooden pallets, which uses two vertical feeding racks that are not on the same horizontal plane to alternately transport wooden blocks, combined with an electric slide table to drive the pusher seat for automatic pushing, and uses limit plates and slide rails to achieve precise positioning and position adjustment of the wooden blocks.
It achieves efficient and automated conveying and precise positioning of timber, matches the cycle time requirements of high-speed production lines, improves production efficiency and product consistency, and adapts to the production needs of wooden pallets of different specifications.
Smart Images

Figure CN224104997U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wood pallet field especially relates to a binding mechanism for producing wood pallet. BACKGROUND
[0002] Wood pallet as the basic carrier of logistics transportation, its production quality and efficiency directly affect the overall performance of supply chain. In the traditional wood pallet binding process, the stacking and positioning of the wood are mainly dependent on manual operation, through the workers carry, align and fix the wood to the specified position, then carry out the subsequent binding operation (such as nail, glue, etc.).
[0003] In order to solve the deficiency of manual operation, part of the automation improvement scheme has appeared in the prior art. For example, through the mechanical arm or the conveying belt to assist the wood carrying and preliminary positioning, or using the simple clamp device to limit the wood.
[0004] The existing manual stacking speed is slow, which is difficult to meet the rhythm requirement of high-speed production line, and the wood spacing, verticality and other parameters depend on the manual experience, resulting in poor product consistency. INVENTION CONTENTS
[0005] In order to solve the above problems, the utility model realizes the following technical scheme.
[0006] A binding mechanism for producing wood pallet, comprising: a binding table; two feeding racks are arranged on the binding table and are used for alternately conveying wood, the conveying directions of the two feeding racks are perpendicular and not in the same horizontal plane; the feeding rack comprises: a plurality of grooves are arranged on the feeding rack, and the grooves are linearly arranged; a moving groove is arranged on the bottom wall of the groove, and the bottom wall of the moving groove is provided with a through hole; a pushing seat is arranged in the groove, the pushing seat is arranged to move in the groove, when the pushing seat approaches the binding table, the pushing seat moves in the groove, when the pushing seat moves away from the binding table, the pushing seat moves in the moving groove, and the pushing seat is used for pushing the wood in the groove to the binding table; a moving rod is installed in the through hole, and the moving rod is connected with the bottom of the pushing seat.
[0007] Preferably, the feeding rack further comprises: a telescopic rod, a connecting groove is arranged at the top end of the moving rod, the telescopic rod is installed in the connecting groove, and the top end of the telescopic rod is connected with the bottom of the pushing seat.
[0008] Preferably, the moving rod comprises: a lead screw is installed in the connecting groove, one end of the lead screw is connected with the telescopic rod through threads; a gear is installed on the lead screw; two control boards are arranged, one end of the two control boards is respectively installed on the inner walls on both sides of the through hole, connecting holes are arranged on the inner walls on both sides of the connecting groove, the control boards penetrate through the connecting holes and are connected with the gear.
[0009] Preferably, the control plate comprises: a plurality of fixing grooves arranged linearly on one side of the control plate; a plurality of movable teeth installed in the corresponding fixing grooves and engaged with the gear; and an elastic member having one end installed on the inner wall of the fixing groove and the other end installed on the movable tooth.
[0010] Preferably, one end of the movable tooth is provided with an inclined surface.
[0011] Preferably, the pushing seat comprises: a groove arranged on one side of the pushing seat; a telescopic head installed in the groove; and a first elastic member having one end installed on the inner wall of the groove and the other end installed on the telescopic head.
[0012] Preferably, the device further comprises: a bottom plate arranged at the bottom of the feeding frame, and the moving rod is connected with the bottom plate; and an electric sliding platform installed at the bottom of the feeding frame, and the bottom plate is connected with the electric sliding platform.
[0013] Preferably, the binding table is connected with a sliding rail, the feeding frame is connected with the binding table through the sliding rail, and the feeding frame is arranged to move on the binding table to adjust the feeding position.
[0014] Preferably, one side of the binding table is connected with a power source, and a power shaft of the power source is connected with the bottom of the feeding frame.
[0015] Preferably, the binding table comprises: a limiting plate installed on the binding table and used for limiting the position of the wood square.
[0016] The utility model provides a kind of binding mechanism for producing wood pallet.Compared with prior art, it has the following beneficial effects:
[0017] Two feeding frames are used to alternately transport wood square, and the electric sliding platform drives the pushing seat to automatically push, so as to speed up the conveying speed of wood square, effectively match the beat requirement of high-speed production line, and more wood square can be conveyed and stacked in unit time.
[0018] The linearly arranged grooves on the feeding frame ensure that the wood square is arranged in order, and the pushing seat accurately pushes the wood square to the limiting plate of the binding table for positioning, so that the placement position of each wood square is accurate.
[0019] The feeding frame can be flexibly moved along the sliding rail on the binding table by the power source, and the feeding position can be quickly adjusted according to the production requirements of wood pallets of different sizes, so that good adaptability to the production of wood pallets of various specifications is realized. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1The utility model provides a three-dimensional structure schematic diagram.
[0021] Figure 2 Another perspective three-dimensional structure schematic diagram that the utility model provides.
[0022] Figure 3 Feeding frame structure schematic diagram that the utility model provides.
[0023] Figure 4 Feeding frame cross section schematic diagram that the utility model provides.
[0024] Figure 5 Feeding frame, push material seat and mobile rod structure schematic diagram that the utility model provides.
[0025] Figure 6 Push material seat, telescopic rod and mobile rod structure schematic diagram that the utility model provides.
[0026] Figure 7 Mobile rod, telescopic rod and push material seat cross section schematic diagram that the utility model provides.
[0027] Figure 8 Control panel cross section schematic diagram that the utility model provides.
[0028] The reference numerals in the drawing are:
[0029] 100, binding table;101, limiting plate;
[0030] 200, feeding frame;201, trough;202, power source;203, moving groove;204, through hole;
[0031] 300, push material seat;301, telescopic rod;302, mobile rod;303, connecting groove;304, screw;305, gear;306, telescopic head;307, first elastic part;308, recess;
[0032] 400, control panel;401, fixed groove;402, movable tooth;403, second elastic part;
[0033] 500, bottom plate;501, electric sliding table. DETAILED DESCRIPTION
[0034] The utility model will be further explained in conjunction with specific embodiment, and it should be understood that these embodiments are only for illustrating the utility model and are not for limiting the protection scope of the utility model.
[0035] The embodiments of the present application will be described in detail with specific examples. Those skilled in the art can easily understand other advantages and functions of the present application from the content disclosed in the specification. The present application can also be implemented or applied in other different embodiments, and the details in the specification can be modified or changed based on different viewpoints and applications without departing from the spirit of the present application.
[0036] Referring to Figures 1-8 The binding mechanism for producing the wood pallet comprises a binding table 100, two feeding frames 200 arranged on the binding table 100 and used for alternately feeding the wood blocks, and the feeding directions of the two feeding frames 200 are perpendicular and not on the same horizontal plane.
[0037] The wood blocks can be stacked on the designated positions on the binding table 100 with the same spacing and accurate positions by feeding the wood blocks to the binding table 100 through the two feeding frames 200. The feeding directions of the two feeding frames 200 are perpendicular and not on the same horizontal plane, so that the wood blocks can be fed in different directions to meet the requirement of cross arrangement of the wood blocks in the production of the wood pallet. The heights of the two feeding frames 200 can be adjusted individually, so that the horizontal wood blocks can be fed first or the vertical wood blocks can be fed first. After the horizontal wood blocks and the vertical wood blocks are placed on the binding table 100, the cross points can be bound by using the air nail gun.
[0038] The feeding frame 200 comprises a plurality of grooves 201 arranged in a linear array on the feeding frame 200, a moving groove 203 arranged on the bottom wall of the groove 201, a through hole 204 arranged on the bottom wall of the moving groove 203, a pushing seat 300 arranged in the groove 201, the pushing seat 300 being arranged to move in the groove 201, the pushing seat 300 moving in the moving groove 203 when the pushing seat 300 moves away from the binding table 100, the pushing seat 300 being used for pushing the wood blocks in the groove 201 to the binding table 100, a moving rod 302 installed in the through hole 204 and connected with the bottom of the pushing seat 300, and an extension rod 301, the top end of the moving rod 302 being provided with a connecting groove 303, the extension rod 301 being installed in the connecting groove 303 and connected with the bottom of the pushing seat 300.
[0039] Each of the above-mentioned troughs 201 is used to store a wooden square, and the design of the trough 201 enables the wooden squares to be arranged in order on the feeding frame 200, facilitating subsequent pushing operation. The size and shape of the trough 201 should be designed according to the specifications of the wooden square to ensure that the wooden square can be smoothly put in and taken out; the moving groove 203 provides a moving space for the pushing seat 300 to move away from the binding table 100, so that the pushing seat 300 can be hidden in the moving groove 203 when it does not perform the pushing operation, avoiding affecting the work of other components. The through hole 204 is used to install the moving rod 302, so that the moving rod 302 can be connected with the bottom of the pushing seat 300, thereby realizing the driving of the pushing seat 300; the pushing seat 300 is arranged in the trough 201, and its main function is to push the wooden square in the trough 201 to the binding table 100. The pushing seat 300 is designed to move in the trough 201 and the moving groove 203, when the pushing seat 300 approaches the binding table 100, it moves in the trough 201, pushes the wooden square out of the trough 201 and sends it to the binding table 100; when the pushing seat 300 moves away from the binding table 100, it moves in the moving groove 203 and returns to the initial position, preparing for the next pushing.
[0040] The telescopic head 306 is installed in the recess 308 and can be telescopic under the action of the first elastic member 307. When the pushing seat 300 pushes the wooden square, the telescopic head 306 can be in contact with the wooden square, and the first elastic member 307 can play a role in buffering and adjusting the pressure, avoiding damage to the wooden square during the pushing process. At the same time, the telescopic property of the telescopic head 306 can also adapt to wooden squares of different lengths, improving the versatility of the pushing seat 300. The first elastic member 307 adopts a spring, and can also adopt an elastic component such as an elastic block, which provides elastic force to enable the telescopic head 306 to be in close contact with the wooden square, and absorbs a certain impact force during the pushing process, protecting the wooden square and the pushing seat 300. Moreover, through the telescopic movement range of the telescopic head 306, the pushing seat 300 can continue to move a distance after the wooden square is pushed to the binding table 100, at which time the telescopic head 306 is retracted into the recess 308, and the purpose is to enable the movable teeth 402 to engage with the gear 305 and control the rotation of the lead screw 304.
[0041] The moving rod 302 comprises: a lead screw 304 installed in the connecting groove 303, one end of the lead screw 304 being connected with the telescopic rod 301 through threads; a gear 305 installed on the lead screw 304; two control plates 400, one end of each of the two control plates 400 being installed on the inner wall of the through hole 204 on both sides, and a connecting hole being formed in the inner wall of the connecting groove 303 on both sides, the control plates 400 penetrating the connecting hole and being connected with the gear 305.
[0042] The control plate 400 comprises: a plurality of fixing grooves 401 arranged linearly on one side of the control plate 400; a plurality of movable teeth 402 installed in the corresponding fixing grooves 401, the movable teeth 402 being engaged with the gear 305; an elastic member having one end installed on the inner wall of the fixing groove 401 and the other end installed on the movable tooth 402; and the movable tooth 402 being provided with an inclined surface at one end.
[0043] The pushing seat 300 comprises: a groove 308 arranged on one side of the pushing seat 300; a telescopic head 306 installed in the groove 308; and a first elastic member 307 having one end installed on the inner wall of the groove 308 and the other end installed on the telescopic head 306.
[0044] The moving rod 302 is installed in the through hole 204, the top end of the moving rod 302 being connected to the bottom of the pushing seat 300, and the main function of the moving rod 302 being to drive the pushing seat 300 to move. The moving rod 302 is connected to the bottom plate 500, and the moving rod 302 realizes linear motion under the driving of the electric slide 501, thereby driving the pushing seat 300 to move in the chute 201 and the moving groove 203; the lead screw 304 is installed in the connecting groove 303 at the top end of the moving rod 302, and one end of the lead screw 304 is connected to the telescopic rod 301 through a thread. The function of the lead screw 304 is to convert rotary motion into linear motion, and the telescopic rod 301 is realized through the thread cooperation with the telescopic rod 301, thereby adjusting the height of the pushing seat 300. For example, when the position of the pushing seat 300 needs to be adjusted to adapt to different thicknesses of the wooden bars, the length of the telescopic rod 301 can be changed by rotating the lead screw 304.
[0045] The function of the gear 305 is to realize the rotation of the lead screw 304 under the action of the control plate 400, thereby controlling the extension and retraction of the telescopic rod 301. The control plate 400 is two in number, one end of the control plate 400 being installed on the inner wall of the through hole 204 on both sides, the other end of the control plate 400 penetrating the connecting hole of the connecting groove 303 on both sides of the inner wall and being connected with the gear 305. The main function of the control plate 400 is to control the rotation direction and angle of the lead screw 304, thereby realizing the accurate control of the extension and retraction of the telescopic rod 301.
[0046] The number of the movable teeth 402 is several, which are installed in the corresponding fixed slots 401 and engaged with the gear 305. One end of the movable teeth 402 is provided with a slope, which makes the gear 305 normally engaged with the movable teeth 402 when the gear 305 approaches the control plate 400, so that the movable teeth 402 can drive the gear 305 to rotate and drive the lead screw 304 to rotate; when the gear 305 moves away from the control plate 400, the teeth on the gear 305 are in contact with the slope of the movable teeth 402, the gear 305 extrudes the movable teeth 402, the movable teeth 402 retract into the fixed slots 401 and extrude the second elastic member 403, and the second elastic member 403 can drive the movable teeth 402 to reset after the gear 305 passes the movable teeth 402, so as to avoid the reverse rotation of the lead screw 304 and realize the function of one-way driving.
[0047] The second elastic member 403 adopts a spring, and can also adopt a elastic block, which provides elastic force to make the movable teeth 402 closely engaged with the gear 305 and ensure the effective control of the control plate 400 on the lead screw 304.
[0048] The telescopic rod 301 is installed in the connecting slot 303 at the top of the moving rod 302 and connected with the bottom of the pushing seat 300. The telescopic rod 301 adjusts the height of the pushing seat 300 to adapt to the wood blocks of different thicknesses, and can be telescoped in the connecting slot 303 through the rotation of the lead screw 304, so as to change the position of the pushing seat 300.
[0049] Further comprising a bottom plate 500 arranged at the bottom of the feeding frame 200, and the moving rod 302 is connected with the bottom plate 500; and an electric sliding platform 501 installed at the bottom of the feeding frame 200, and the bottom plate 500 is connected with the electric sliding platform 501.
[0050] The bottom plate 500 provides support and fixation for the moving rod 302, so that the moving rod 302 can reciprocate at the bottom of the feeding frame 200 and continuously control the pushing seat 300 to transport the wood blocks.
[0051] The electric sliding platform 501 is a driving device capable of realizing linear motion, which drives the lead screw 304 or a transmission mechanism such as a belt through a motor, so that the bottom plate 500 and the moving rod 302 connected therewith linearly move at the bottom of the feeding frame 200, thereby driving the pushing seat 300 to realize the pushing and resetting operations. The use of the electric sliding platform 501 can realize the automatic control of the pushing process, improve the production efficiency and the accuracy of pushing.
[0052] The binding table 100 is connected with a sliding rail, the feeding frame 200 is connected with the binding table 100 through the sliding rail, the feeding frame 200 is arranged to move on the binding table 100, and the feeding position is adjusted; one side of the binding table 100 is connected with a power source 202, and a power shaft of the power source 202 is connected with the bottom of the feeding frame 200.
[0053] The sliding rail provides a moving track for the feeding frame 200, and the feeding frame 200 can move along a specific direction on the binding table 100 through the connection with the sliding rail, so that the feeding frame 200 can flexibly adjust the feeding position according to actual production requirements to adapt to the production requirements of wood pallets of different specifications, and when wood pallets of different sizes are produced, the feeding frame 200 can be moved on the sliding rail to accurately deliver the wood to a suitable binding position; the power source 202 is a pneumatic cylinder, and a linear motor can also be used; the power shaft of the power source 202 is connected with the bottom of the feeding frame 200, which provides power support for the movement of the feeding frame 200 on the sliding rail. Through the driving of the power source 202, the feeding frame 200 can realize automatic position adjustment, improve production efficiency and feeding accuracy.
[0054] The binding table 100 comprises a limiting plate 101 installed on the binding table 100, and the limiting plate 101 is used to limit the position of the wood.
[0055] The limiting plate 101 is installed on the binding table 100, and its main function is to limit the position of the wood. After the wood is delivered to the binding table 100, the limiting plate 101 can ensure that the wood accurately stays at the predetermined binding position, preventing the wood from shifting during the binding process, thereby ensuring the binding quality and precision of the wood pallet. For example, when the wood is pushed to the binding table 100, the limiting plate 101 can block and position the wood from the side or end, so that the wood maintains the correct spacing and angle with other woods.
[0056] In use, the wood to be processed is placed in the grooves 201 of the two feeding frames 200 according to the specifications, one wood is placed in each groove 201, and the woods are arranged in the grooves 201 in an orderly and consistent manner.
[0057] According to the size of the target wood pallet, the power source 202 on one side of the binding table 100 drives the feeding frame 200 to move along the sliding rail on the binding table 100, adjusts the positions of the two feeding frames 200 on the binding table 100, and makes the feeding positions meet the cross arrangement requirements of wood pallet production.
[0058] Assuming that the crosswise timber transportation is carried out first, the electric sliding table 501 installed at the bottom of the feeding frame 200 is started, the electric sliding table 501 drives the bottom plate 500 and the moving rod 302 connected with the bottom plate 500 to move linearly to the direction close to the binding table 100 through the transmission mechanism such as the motor-driven screw rod 304 or belt. The timber is pushed into the binding table 100 by the pushing seat 300 in the groove 201 until the timber is blocked by the limiting plate 101 and positioned at the predetermined position, so that the distance between the timbers is accurate. When the pushing seat 300 approaches the binding table 100, one of the control plates 400 on the inner wall of the through hole 204 enters the connecting hole. At this time, when the gear 305 approaches the control plate 400, the gear 305 is normally engaged with the movable teeth 402, the movable teeth 402 can drive the gear 305 to rotate, and the gear 305 can drive the screw rod 304 to rotate. When the gear 305 moves away from the control plate 400, the teeth on the gear 305 are in contact with the inclined surface of the movable teeth 402, the gear 305 extrudes the movable teeth 402, the movable teeth 402 retract into the fixed groove 401 and extrude the second elastic member 403, the second elastic member 403 can drive the movable teeth 402 to reset after the gear 305 passes the movable teeth 402, the gear 305 can drive the screw rod 304 to rotate, and the screw rod 304 controls the telescopic rod 301 and the pushing seat 300 to move downward, and the pushing seat 300 enters the moving groove 203. At the same time, the electric sliding table 501 moves reversely, drives the moving rod 302 and the pushing seat 300 to retreat until the other control plate 400 enters from the other connecting hole and approaches the gear 305, the gear 305 is engaged with the movable teeth 402 on the control plate 400 again and rotates, the telescopic rod 301 and the pushing seat 300 can move upward and enter the groove 201, and the next timber can be pushed.
[0059] The longitudinal feeding frame 200 starts to work in the same way, and the feeding direction is perpendicular to the crosswise feeding frame 200 and not in the same horizontal plane. By adjusting the height of the feeding frame 200, the longitudinal timbers can be stacked on the crosswise timbers in a staggered manner. The two feeding frames 200 work alternately according to the preset order, and continuously push the timbers from the respective grooves 201 to the binding table 100 to form a timber structure arranged in a staggered manner on the binding table 100.
[0060] When the crosswise and longitudinal timbers are arranged in a staggered manner on the binding table 100 and are positioned in place to form a complete timber tray frame, the operator uses the air nail gun to bind the intersection of the timbers to fix and connect the timbers, and completes the binding work of the timber tray.
[0061] After the binding is completed, the finished timber tray is removed from the binding table 100 manually or with the aid of mechanical equipment, and the feeding frame 200 is driven by the power source 202 to return to the initial position along the sliding rail, and is ready for the next round of production.
[0062] Compared with the prior art, the following beneficial effects are achieved:
[0063] Through the two feeding racks 200 alternately conveying the wood square, the electric sliding table 501 drives the pushing seat 300 to automatically push, accelerates the wood square conveying speed, can effectively match the rhythm requirement of high-speed production line, can complete more quantity wood square conveying and stacking in unit time, makes the whole wood tray production cycle greatly shorten, improves the output per unit time.
[0064] The linear array distribution of the trough 201 on the feeding rack 200 ensures the wood square to be arranged in order, and the pushing seat 300 accurately pushes the wood square to the limiting plate 101 of the binding table 100 to position, ensures the accurate placement position of each wood square, and the uniform wood square spacing, avoids the spacing uneven caused by the experience difference of manual operation.
[0065] The feeding rack 200 can be flexibly moved along the slide rail on the binding table 100 through the power source 202, quickly adjusts the feeding position according to the production requirement of different size wood trays, realizes the good adaptability of the production of various specifications of wood trays, does not need to frequently re-plan and adjust the stacking mode for different specifications like manual operation, improves the flexibility and universality of production.
[0066] Therefore, although the utility model has been described in the text with reference to its specific embodiments, modifications, various changes and substitutions are also within the above disclosure, and it should be understood that in some cases, some features of the utility model will be used without corresponding use of other features without departing from the scope and spirit of the proposed utility model. Therefore, many modifications can be made to adapt the specific environment or material to the substantial scope and spirit of the utility model. The utility model is not intended to be limited to the specific terms used in the following claims and / or the specific embodiments disclosed as the best mode for carrying out the utility model, but the utility model will include any and all embodiments and equivalents falling within the scope of the appended claims. Therefore, the scope of the utility model will only be determined by the appended claims.
Claims
1. A stapling mechanism for producing wooden pallets, characterized in that, The utility model relates to a wood square feeding device for wood square binding machine, which comprises a binding table (100) and two feeding racks (200) arranged on the binding table (100) for alternately feeding wood squares. The feeding racks (200) comprise a plurality of grooves (201) arranged linearly on the feeding racks (200), a moving groove (203) formed in the bottom wall of the groove (201), a through hole (204) formed in the bottom wall of the moving groove (203), a pushing seat (300) arranged in the groove (201), a moving rod (302) installed in the through hole (204) and connected to the bottom of the pushing seat (300). The feeding racks (200) further comprise a telescopic rod (301) installed in a connecting groove (303) formed at the top end of the moving rod (302). The moving rod (302) comprises a lead screw (304) installed in the connecting groove (303) and connected to the telescopic rod (301) by screwing, and a gear (305) installed on the lead screw (304). The control boards (400) comprise a plurality of fixed grooves (401) arranged linearly on one side of the control boards (400), a plurality of movable teeth (402) installed in the corresponding fixed grooves (401) and engaged with the gear (305), and a second elastic member (403) installed at one end on the inner wall of the fixed groove (401) and at the other end on the movable tooth (402). The movable tooth (402) has an inclined surface at one end. The pushing seat (300) comprises a recess (308) formed on one side of the pushing seat (300), a telescopic head (306) installed in the recess (308), and a first elastic member (307) installed at one end on the inner wall of the recess (308) and at the other end on the telescopic head (306). The utility model further comprises 2. The binding mechanism for producing wooden pallets according to claim 1, characterized in that, 3. The binding mechanism for producing wooden pallets according to claim 2, characterized in that, 4. The binding mechanism for producing wooden pallets according to claim 3, characterized in that, 5. The binding mechanism for producing wooden pallets according to claim 4, characterized in that, 6. The binding mechanism for producing wooden pallets according to claim 1, characterized in that, 7. The binding mechanism for producing wooden pallets according to claim 1, characterized in that, A bottom plate (500) is arranged at the bottom of the feeding frame (200), and the moving rod (302) is connected with the bottom plate (500); An electric sliding table (501) is installed at the bottom of the feeding frame (200), and the bottom plate (500) is connected with the electric sliding table (501).
8. The binding mechanism for producing wooden pallets according to claim 1, characterized in that, A slide rail is connected to the binding table (100), the feeding frame (200) is connected with the binding table (100) through the slide rail, and the feeding frame (200) is arranged to move on the binding table (100) to adjust the feeding position.
9. A binding mechanism for producing wooden pallets according to claim 1, characterized in that, A power source (202) is connected to one side of the binding table (100), and a power shaft of the power source (202) is connected with the bottom of the feeding frame (200).
10. The binding mechanism for producing wooden pallets according to claim 1, characterized in that, The binding table (100) comprises: A limiting plate (101) is installed on the binding table (100), and the limiting plate (101) is used for limiting the position of the wood square.