A steelless pallet cutting, turning and stacking all-in-one machine

By designing an integrated cutting, flipping, and stacking machine without steel pallets, which integrates wall panel longitudinal movement, cutting, transverse movement, flipping, and stacking mechanisms, the problem of not being able to achieve fully automated production in existing technologies has been solved, and efficient factory production has been realized.

CN112277173BActive Publication Date: 2025-11-21HENAN ZHONGBANG WEIYE TECH CO LTD
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Patent Information

Application Number
CN202010900468.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-31
Publication Date
2025-11-21
Estimated Expiration
2040-08-31

AI Technical Summary

Technical Problem

In the current wall panel production process, cutting, conveying, flipping, and stacking cannot be fully automated, which affects production efficiency. Furthermore, it is affected by ground flatness and inclement weather, making factory production impossible.

Method used

Design a steel pallet-free cutting, flipping and stacking integrated machine that integrates wall panel longitudinal movement, cutting, transverse movement, flipping and stacking mechanisms to achieve integrated cutting, conveying, flipping and stacking. It adopts synchronous chain drive, cylinder adjustment and flipping mechanism to improve the degree of automation.

Benefits of technology

It improves the automation and efficiency of wall panel production, enabling factory production unaffected by ground flatness or inclement weather.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a steel-free supporting plate cutting and turning and stacking integrated machine, and relates to the field of wallboard processing equipment.The machine comprises a rack, a wallboard longitudinal moving mechanism, a wallboard cutting mechanism, a wallboard transverse moving mechanism and a wallboard turning and stacking mechanism.The wallboard longitudinal moving mechanism comprises conveying supporting rollers arranged side by side on the rack along the longitudinal moving direction of the wallboard, rubber sleeves axially sleeved on the conveying supporting rollers, chain wheels coaxially arranged at one end of the conveying supporting rollers, and synchronous chains arranged on the chain wheels.The wallboard cutting mechanism is arranged on the rack corresponding to the conveying starting end of the wallboard longitudinal moving mechanism.The wallboard transverse moving mechanism is arranged on the rack corresponding to the position of the wallboard longitudinal moving mechanism.The conveying directions of the wallboard longitudinal moving mechanism and the wallboard transverse moving mechanism are perpendicular to each other.The wallboard turning and stacking mechanism comprises a turning frame assembly and a supporting plate frame assembly, and has the advantages of high automation degree and high production efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of wallboard processing equipment, and particularly relates to a steel-plate-free cutting and turning and stacking all-in-one machine. BACKGROUND

[0002] At present, the production of building wall materials such as hollow lightweight partition wallboard, solid lightweight partition wallboard, hollow concrete partition wallboard or solid lightweight partition wallboard mostly applies spiral extrusion forming machines, which not only need large-area production ground, but also require absolutely flat ground. The production cannot be carried out due to the influence of ground flatness, adverse weather, temperature and other unfavorable factors. The main machine needs material conveying machinery and many manpower during operation. Additional hoisting mechanical equipment is needed during product transportation process, and mechanical factory production cannot be carried out. At the same time, the existing wallboard production process is a split type machine for conveying, cutting and stacking, and cannot realize full-automatic production, which affects the overall wallboard production efficiency. SUMMARY

[0003] The present application aims to overcome the problems existing in the current wallboard cutting and conveying process, and provides a steel-plate-free cutting and turning and stacking all-in-one machine, which is designed in an integrated manner for cutting, conveying, turning and stacking, and has the advantages of high automation degree and high production efficiency.

[0004] In order to achieve the above purpose, the present application adopts the following technical scheme: a steel-plate-free cutting and turning and stacking all-in-one machine, comprising a rack, wherein a wallboard longitudinal moving mechanism, a wallboard cutting mechanism, a wallboard transverse moving mechanism and a wallboard turning and stacking mechanism are arranged on the rack,

[0005] The wallboard longitudinal moving mechanism comprises conveying carrier rollers arranged side by side on the rack along the wallboard longitudinal moving direction, rubber sleeves are sleeved on the conveying carrier rollers in the axial direction, a chain wheel is coaxially arranged at one end of the conveying carrier roller, a synchronous chain is arranged on the chain wheel, the conveying carrier rollers are synchronously rotated through the synchronous chain, and a driving motor is connected to the chain wheel through a driving chain; the wallboard cutting mechanism is arranged on the rack corresponding to the conveying starting end of the wallboard longitudinal moving mechanism, the wallboard cutting mechanism comprises a cutting frame, the cutting frame is arranged on the rack corresponding to the starting end position of the conveying carrier roller, a cutting cutter head is rotatably arranged on the cutting frame, a driving source is connected to the cutting cutter head, and a cutter head moving mechanism for moving the cutting cutter head along a direction perpendicular to the wallboard longitudinal moving direction is further arranged on the cutting frame;

[0006] The wallboard transverse moving mechanism is arranged on the rack corresponding to the position of the wallboard longitudinal moving mechanism, the conveying directions of the wallboard longitudinal moving mechanism and the wallboard transverse moving mechanism are perpendicular to each other, the wallboard transverse moving mechanism comprises a conveying drag chain assembly arranged on the rack along a direction perpendicular to the wallboard longitudinal moving direction, a height-adjusting pneumatic cylinder is arranged at the bottom of one end of the conveying drag chain assembly close to the wallboard longitudinal moving mechanism, the height-adjusting pneumatic cylinder is hingedly connected to the upper end of the conveying drag chain assembly, and the lower end of the height-adjusting pneumatic cylinder is hingedly connected to the rack.

[0007] The wallboard overturning and stacking mechanism comprises an overturning frame assembly and a supporting plate frame assembly, the overturning frame assembly is movably arranged on the frame corresponding to the position of the conveying drag chain assembly, and the supporting plate frame assembly is movably arranged on the frame corresponding to the position of one end of the overturning frame assembly.

[0008] In order to further optimize the present application, the following technical solutions can be preferred:

[0009] Preferably, the bottom of the frame is provided with a whole machine transfer sliding rail side by side, the frame is provided with a plurality of transfer pulleys matched with the transfer sliding rail corresponding to the position of the transfer sliding rail, and the whole machine transfer sliding rail is an integrally formed I-shaped steel.

[0010] Preferably, the frame is further provided with a pressing plate mechanism corresponding to the position of the wallboard longitudinal movement mechanism, the pressing plate mechanism comprises a pressing plate cylinder arranged downward on the cutting frame, the top of the pressing plate cylinder is fixedly arranged on the frame, and the bottom of the pressing plate cylinder is connected with a pressing plate block.

[0011] Preferably, the conveying drag chain assembly comprises a chain support, a chain driving shaft, a chain driving sprocket, a chain driven sprocket and a conveying drag chain, the chain support is arranged on the frame, the chain driving shaft is rotatably arranged on the chain support in a direction perpendicular to the longitudinal movement direction of the wallboard, the chain driving sprocket is coaxially arranged on the chain driving shaft, the chain driven sprocket is arranged on the chain support close to one end of the wallboard longitudinal movement mechanism, the conveying drag chain is connected with the chain driving sprocket and the chain driven sprocket in sequence, the upper end of the conveying drag chain forms a conveying plane, and the chain driving shaft is connected with a driving motor through a chain.

[0012] Preferably, the chain support is further provided with a plate separating mechanism on the outer side wall, the plate separating mechanism comprises a plate separating cylinder and a supporting pressing plate, the plate separating cylinder is arranged upward on the frame, the supporting pressing plate is arranged on the upper end face of the plate separating cylinder, the upper end face of the supporting pressing plate is provided with a pressing plate skin pad, the upper end face of the pressing plate skin pad is not higher than the conveying plane of the conveying drag chain, and the lower end face of the supporting pressing plate is connected with the plate separating cylinder.

[0013] Preferably, the conveying drag chain is arranged on the chain support corresponding to the position between the two conveying rollers.

[0014] Preferably, the cutter disc movement mechanism comprises a cutting movement plate movably arranged on the cutting frame, the cutting movement plate is provided with a driving motor, the driving motor is connected downward with a driving gear, and the cutting frame is provided with a rack matched with the driving gear in a direction perpendicular to the longitudinal movement direction of the wallboard.

[0015] Preferably, the cutting frame is provided with a guide strip along a direction perpendicular to the longitudinal displacement direction of the wallboard, the guide strip comprises a columnar guide part at the upper part and a triangular prism type guide part at the lower part, a guide block is provided on the cutting moving plate at a position corresponding to the guide strip, and a guide groove is formed in the guide block and matched with the guide strip.

[0016] Preferably, the turning plate frame assembly comprises a turning plate rod rotatably arranged on the rack, an L-shaped turning plate frame is arranged on the outer wall of the turning plate rod, a plurality of turning plate frames are arranged side by side along the longitudinal displacement direction of the wallboard, a turning block is arranged on the turning plate rod, a turning cylinder is arranged on the rack at a position corresponding to the turning plate rod, one end of the turning cylinder is hingedly connected to the rack, and the other end of the turning cylinder is hingedly connected to the turning block.

[0017] Preferably, the supporting plate frame assembly comprises a supporting plate frame base, a plurality of walking wheels are arranged on the bottom of the supporting plate frame base, guide rails are arranged on the rack at positions corresponding to the walking wheels, a plurality of L-shaped supporting plate frames are arranged side by side on the upper end surface of the supporting plate frame base along the longitudinal displacement direction of the wallboard, a supporting plate moving screw for driving the movement of the supporting plate frame is arranged on the rack, a screw sleeve matched with the supporting plate moving screw is arranged on the supporting plate frame base, and the supporting plate moving screw is connected with a driving motor.

[0018] The beneficial effects of the present application are:

[0019] 1. The device integrates cutting, conveying, turning plate and stacking, improves the degree of automation and production efficiency of the overall wallboard, and further, by applying the machine to the intelligent production line of building wall materials, the machine is not affected by the ground and bad weather, and the building wall materials can realize factory production.

[0020] 2. The wallboard cutting mechanism in the device comprises a cutting frame arranged on the rack at a position corresponding to the starting end of the conveying supporting roller, a cutting cutter head rotatably arranged on the cutting frame, a driving source connected with the cutting cutter head, and a cutter head moving mechanism arranged on the cutting frame and used for driving the cutting cutter head to move along a direction perpendicular to the longitudinal displacement direction of the wallboard. Meanwhile, a pressing plate mechanism is arranged on the rack, and the pressing plate mechanism and the cutter head moving mechanism can greatly improve the stability and safety of the wallboard cutting process. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a schematic view of the three-dimensional structure of the whole machine;

[0022] Figure 2 It is a schematic view of the front structure of the whole machine;

[0023] Figure 3 It is a schematic view of the turning plate working state of the whole machine;

[0024] Figure 4The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0025] Figure 5 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0026] Figure 6 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0027] Figure 7 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0028] Figure 8 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0029] Figure 9 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0030] Figure 10 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0031] Figure 11 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0032] Figure 12 The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0033] The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0034] The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0035] The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0036] The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0037] The schematic diagram of the wallboard cutting mechanism is shown in FIG. 4.

[0038] 601-Plate holder base, 602-Plate holder, 603-Walking wheel, 604-Screw sleeve, 605-Plate holder moving screw, 606-Drive motor four.

[0039] Specific implementation party

[0040] In the description of this invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0041] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0042] Example 1:

[0043] like Figures 1-12 As shown, a steel pallet-free cutting, flipping, and stacking integrated machine includes a frame 1. The frame 1 is equipped with a wall panel longitudinal movement mechanism 3, a wall panel cutting mechanism 2, a wall panel transverse movement mechanism, and a wall panel flipping and stacking mechanism. A whole machine transfer slide rail is installed side by side at the bottom of the frame. A plurality of transfer pulleys 8 are installed on the frame corresponding to the positions of the transfer slide rails and cooperate with the transfer slide rails. The whole machine transfer slide rail is an integrally formed I-beam. The whole machine transfer slide rail 7 cooperates with the transfer pulleys to move the whole equipment, which is convenient for multiple production lines to share and improves the overall practicality.

[0044] The wallboard longitudinal moving mechanism comprises conveying rollers 301 installed side by side on the frame along the wallboard longitudinal moving direction, rubber sleeves 302 axially sleeved on the conveying rollers, chain wheels 305 coaxially installed at one end of the conveying rollers, synchronous chains installed on the chain wheels, the conveying rollers synchronously rotating through the synchronous chains 303, and drive motors 304 connected with the chain wheels through drive chains; the wallboard cutting mechanism is installed on the frame corresponding to the conveying starting end of the wallboard longitudinal moving mechanism, and comprises a cutting frame installed on the frame corresponding to the starting end position of the conveying rollers, a cutting cutter disc rotatably installed on the cutting frame, a driving source connected with the cutting cutter disc, and a cutter disc moving mechanism installed on the cutting frame 201 and driving the cutting cutter disc to move along the direction perpendicular to the wallboard longitudinal moving direction; the cutter disc moving mechanism comprises a cutting moving plate 209 movably installed on the cutting frame, a drive motor 208 installed on the cutting moving plate, a driving gear downwardly connected with the drive motor, a rack cooperated with the driving gear and installed on the cutting frame along the direction perpendicular to the wallboard longitudinal moving direction, a guide strip 206 installed on the cutting frame along the direction perpendicular to the wallboard longitudinal moving direction, a guide block 207 installed on the cutting moving plate corresponding to the guide strip, a guide groove 214 cooperated with the guide strip and formed on the guide block, and a pressing plate mechanism 10 installed on the frame corresponding to the position directly above the wallboard longitudinal moving mechanism; the pressing plate mechanism 10 comprises a pressing plate cylinder downwardly installed on the cutting frame, the top of the pressing plate cylinder being fixedly installed on the frame, and a pressing plate block 204 connected with the bottom of the pressing plate cylinder 205; the stability and safety of the wallboard 9 cutting process can be greatly improved through the cooperation of the pressing plate mechanism and the cutter disc moving mechanism.

[0045] The wallboard transverse moving mechanism is installed on the rack corresponding to the position of the wallboard longitudinal moving mechanism, the conveying directions of the wallboard longitudinal moving mechanism and the wallboard transverse moving mechanism are perpendicular to each other, the wallboard transverse moving mechanism comprises a conveying drag chain assembly 4 installed on the rack along a direction perpendicular to the wallboard longitudinal moving direction, a height adjusting cylinder 410 is installed at the bottom of the conveying drag chain assembly close to one end of the wallboard longitudinal moving mechanism, the upper end of the height adjusting cylinder is hinged to the conveying drag chain assembly, and the lower end of the height adjusting cylinder is hinged to the rack; the conveying drag chain assembly comprises a chain support frame 401, a chain driving shaft 402, a chain driving sprocket 407, a chain driven sprocket 406 and a conveying drag chain 405; the chain support frame is installed on the rack, the chain driving shaft is rotatably installed on the chain support frame along a direction perpendicular to the wallboard longitudinal moving direction, the chain driving sprocket is coaxially sleeved and installed on the chain driving shaft, the chain driven sprocket is installed on the chain support frame close to one end of the wallboard longitudinal moving mechanism, and the conveying drag chain is sequentially connected to the chain driving sprocket and the chain driven sprocket; the upper end of the conveying drag chain forms a conveying plane, the chain driving shaft is connected with a driving motor three 403 through a driving chain 404, and a board separating mechanism 11 is further installed on the outer side wall of the chain support frame; the board separating mechanism 11 comprises a board separating cylinder and a supporting pressing plate 408, the board separating cylinder is upwardly installed on the rack, the supporting pressing plate is installed on the upper end face of the board separating cylinder 409, a pressing plate skin pad is installed on the upper end face of the supporting pressing plate, the upper end face of the pressing plate skin pad is not higher than the conveying plane of the conveying drag chain, the lower end face of the supporting pressing plate is connected with the board separating cylinder, and the wallboard is supported and separated through the board separating cylinder, so that the subsequent plate turning and plate stacking are facilitated.

[0046] The wallboard turning and stacking mechanism comprises a plate turning frame assembly 5 and a plate supporting frame assembly 6, the plate turning frame assembly is movably installed on the rack corresponding to the conveying end position of the conveying drag chain assembly, and the plate supporting frame assembly is movably installed on the rack corresponding to the position of one end of the plate turning frame assembly on the outer side; the plate turning frame assembly comprises a plate turning rod 501 rotatably installed on the rack, an L-shaped plate turning frame 503 is installed on the outer side wall of the plate turning rod, a plurality of plate turning frames are installed side by side along the wallboard longitudinal moving direction, a turning block 502 is installed on the plate turning rod, a turning cylinder 504 is installed on the rack corresponding to the position of the plate turning rod, one end of the turning cylinder is hinged to the rack, and the other end of the turning cylinder is hinged to the turning block; the plate supporting frame assembly comprises a plate supporting frame base 601, a plurality of walking wheels 603 are installed at the bottom of the plate supporting frame base, guide rails are installed on the rack corresponding to the positions of the walking wheels, a plurality of L-shaped plate supporting frames 602 are installed side by side on the upper end face of the plate supporting frame base along the wallboard longitudinal moving direction, a supporting frame moving screw 605 is installed on the rack for driving the plate supporting frame to move, a screw sleeve 604 is installed on the plate supporting frame base and matched with the supporting frame moving screw, and the supporting frame moving screw is connected with a driving motor four 606; through the integrated design of cutting, conveying, plate turning and plate stacking, the degree of automation and the production efficiency of the whole wallboard are improved, further, the machine is applied to the intelligent production line of building wall materials, a large area of production land is not needed, and the machine is not affected by the land and bad weather, so that the factory production of building wall materials is realized.

[0047] The working principle of the device is as follows:

[0048] Firstly, the whole machine device is moved along the track to the corresponding wallboard production line outlet position, the produced wallboard is cut into blocks according to the size requirement under the action of the wallboard cutting mechanism, then the cut wallboard is moved forward under the action of the wallboard longitudinal moving mechanism, then the cylinder at the bottom of the conveying drag chain assembly lifts one end of the conveying drag chain assembly, then the wallboard is moved right under the action of the conveying drag chain assembly, the wallboard on the conveying drag chain assembly is separated under the action of the wallboard separating mechanism (the left wallboard is lifted by the two end cylinders below, and the right wallboard moves with the drag chain), then the wallboard at the right end of the conveying drag chain assembly is rotated 90 degrees under the action of the wallboard turning mechanism and placed on the supporting plate rack, wherein the left wallboard is lowered, the previous turning action is repeated, then the supporting plate rack moves right during the production process, each time one station is moved, which is also the thickness of the wallboard, the stacking function is realized, and the cutting, conveying, turning and stacking integration of the whole machine is realized. The device can realize the cutting, conveying, turning and stacking integration of multiple lines through moving on the guide rail.

[0049] Finally, it should be noted that: the above only describes the preferred embodiments of the present application and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced equivalently, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A steel pallet-free cutting, flipping, and stacking integrated machine, comprising a frame, characterized in that: The frame is equipped with a wall panel longitudinal movement mechanism, a wall panel cutting mechanism, a wall panel transverse movement mechanism, and a wall panel flipping and stacking mechanism. The wall panel longitudinal movement mechanism includes conveying rollers arranged side-by-side on the frame along the longitudinal movement direction of the wall panel. Each conveying roller is fitted with a rubber sleeve along its axial direction. A sprocket is coaxially mounted at one end of each conveying roller, and a synchronous chain is mounted on the sprocket. The conveying rollers rotate synchronously via the synchronous chain, and the sprocket is connected to a drive motor via a drive chain. The wall panel cutting mechanism is located on the frame corresponding to the starting end of the wall panel longitudinal movement mechanism. The wall panel cutting mechanism includes a cutting frame, which is located on the frame corresponding to the starting end of the conveying rollers. A cutting disc is rotatably mounted on the cutting frame, and the cutting disc is connected to a drive source. The cutting frame also includes a disc moving mechanism that drives the cutting disc to move perpendicular to the longitudinal movement direction of the wall panel. The wall panel transverse movement mechanism is set on the frame at the position corresponding to the wall panel longitudinal movement mechanism. The conveying directions of the wall panel longitudinal movement mechanism and the wall panel transverse movement mechanism are perpendicular to each other. The wall panel transverse movement mechanism includes a conveying drag chain assembly set on the frame along the direction perpendicular to the wall panel longitudinal movement. A height adjustment cylinder is set at the bottom of the conveying drag chain assembly near the wall panel longitudinal movement mechanism. The upper end of the height adjustment cylinder is hinged to the conveying drag chain assembly, and the lower end of the height adjustment cylinder is hinged to the frame. The conveyor cable assembly includes a cable support frame, a cable support drive wheel shaft, a cable support drive sprocket, a cable support driven sprocket, and a conveyor cable. The cable support frame is mounted on a frame. The cable support drive wheel shaft is rotatably mounted on the cable support frame along a direction perpendicular to the longitudinal movement of the wall panel. The cable support drive sprocket is coaxially mounted on the cable support drive wheel shaft. The cable support driven sprocket is mounted on the cable support frame near the end of the longitudinal movement mechanism of the wall panel. The conveyor cable is sequentially connected to the cable support drive sprocket and the cable support driven sprocket. The upper end of the conveyor cable forms a conveying plane. The cable support drive wheel shaft is connected to a drive motor via a chain. A panel separation mechanism is also provided on the outer side wall of the cable tray. The panel separation mechanism includes a panel separation cylinder and a support pressure plate. The panel separation cylinder is mounted upward on the frame. The support pressure plate is located on the upper end face of the panel separation cylinder. A pressure plate pad is provided on the upper end face of the support pressure plate. The upper end face of the pressure plate pad is not higher than the conveying plane of the cable tray. The lower end face of the support pressure plate is connected to the panel separation cylinder. The panel separation cylinder separates the wall panel support, which facilitates subsequent flipping and stacking of panels. The wall panel flipping and stacking mechanism includes a flipping frame assembly and a pallet frame assembly. The flipping frame assembly is movably mounted on the frame at the end of the conveying cable chain assembly. The pallet frame assembly is movably mounted on the frame at one end of the outer side of the flipping frame assembly. The flipping frame assembly is matched with the conveying rhythm of the conveying cable chain assembly. The pallet frame assembly can move a distance of one wall panel thickness after receiving a wall panel to achieve continuous stacking.

2. The integrated cutting, flipping, and stacking machine without steel pallets according to claim 1, characterized in that: The bottom of the frame is provided with a whole machine transfer slide rail arranged side by side. The frame is provided with a number of transfer pulleys that cooperate with the transfer slide rails. The whole machine transfer slide rail is a one-piece molded I-beam.

3. The integrated cutting, flipping, and stacking machine without steel pallets according to claim 1, characterized in that: A pressure plate mechanism is also provided on the frame directly above the wall panel longitudinal movement mechanism. The pressure plate mechanism includes a pressure plate cylinder that is set downward on the cutting frame. The top of the pressure plate cylinder is fixedly mounted on the frame, and the bottom of the pressure plate cylinder is connected to a pressure plate.

4. The integrated cutting, flipping, and stacking machine without steel pallets according to claim 1, characterized in that: The conveyor chain is positioned on the chain frame between two corresponding conveyor rollers.

5. The integrated cutting, flipping, and stacking machine without steel pallets according to claim 1, characterized in that: The cutting disc moving mechanism includes a cutting moving plate movably mounted on the cutting frame, a drive motor mounted on the cutting moving plate, a drive gear connected downward to the drive motor, and a rack that meshes with the drive gear on the cutting frame along the direction perpendicular to the longitudinal movement of the wall panel.

6. The integrated cutting, flipping, and stacking machine without steel pallets according to claim 5, characterized in that: The cutting frame is provided with guide bars along the direction perpendicular to the longitudinal movement of the wall panel. The guide bars include the upper part... The columnar guide portion and the triangular prism-shaped guide portion located at the bottom are provided. A guide block is provided on the cutting moving plate corresponding to the position of the guide strip. A guide groove that cooperates with the guide strip is provided on the guide block.

7. The integrated cutting, flipping, and stacking machine without steel pallets according to claim 1, characterized in that: The flip-plate assembly includes a flip-plate rod rotatably mounted on a frame. An L-shaped flip-plate frame is provided on the outer wall of the flip-plate rod. Multiple flip-plate frames are arranged side by side along the longitudinal direction of the wall panel. A flip-plate block is provided on the flip-plate rod. A flip-plate cylinder is provided on the frame corresponding to the position of the flip-plate rod. One end of the flip-plate cylinder is hinged to the frame, and the other end of the flip-plate cylinder is hinged to the flip-plate block.

8. The integrated cutting, flipping, and stacking machine without steel pallets according to claim 1, characterized in that: The pallet frame assembly includes a pallet frame base, with multiple casters at the bottom of the base. Guide rails are provided on the frame corresponding to the casters. Multiple L-shaped pallets are arranged side-by-side on the upper surface of the pallet frame base along the longitudinal direction of the wall panel. A pallet frame moving screw is provided on the frame for driving the pallet frame to move. A threaded sleeve that mates with the pallet frame moving screw is provided on the pallet frame base. The pallet frame moving screw is connected to a drive motor.

Citation Information

Patent Citations

  • Manufacturing method and manufacturing device for construction wallboard

    CN102248597A

  • Wait device that hovers when panel is carried

    CN205739405U

  • Steel-support-plate-free cutting, plate turning and plate stacking all-in-one machine

    CN212421824U