Laminated board transfer device
By using an adjustable fixing structure, a track and slider combination, a rotating support platform, and a threaded rod and pressure plate structure, the problems of poor adaptability, inadequate fixing effect, and inconvenient material handling in laminate transfer devices are solved, achieving stable, safe, and efficient laminate transfer.
Patent Information
- Application Number
- CN202520718907.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-16
AI Technical Summary
Existing laminate transfer devices cannot adapt to laminates of different sizes, have poor fixing effect, are inconvenient to pick up materials, and lack effective anti-slip measures, which affect the safety and efficiency of transfer.
It adopts an adjustable fixing structure, a track and slider combination, a rotating support platform and a threaded rod and pressure plate structure to achieve flexible support, stable fixation and convenient material handling of the laminate.
This improved the device's adaptability to laminates of different sizes, ensured stability and safety during the transfer process, reduced the difficulty of material handling, and increased operational efficiency.
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Figure CN223949192U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to laminated board transfer technical field, concretely relates to a laminated board transfer device. BACKGROUND
[0002] Laminated board as a kind of material widely used in building, furniture manufacturing and electronic field, its production, storage and transfer process need to use special equipment to ensure the integrity and safety of laminated board.In practical application, laminated board is prone to slip, tilt or fall in the transfer process due to its large size, heavy weight, affect production efficiency and operation safety.Therefore, the stable transfer and access mode optimization of laminated board become the important research direction of relevant technical field.
[0003] At present, laminated board transfer device on the market usually uses fixed support structure or simple clamping mechanism to fix, but these ways have certain limitations.For example, fixed support structure is difficult to adapt to laminated board of different sizes, cannot be flexibly adjusted according to the specification of laminated board, lead to equipment application range is limited.The traditional clamping mechanism is complex in operation when laminated board is taken out, needs larger manpower to pull out laminated board, lead to low material taking efficiency.In addition, part of device lacks effective antiskid measure, is prone to laminated board to fall due to vibration or tilt in the transfer process, influence transfer safety. UTILITARIAN CONTENT
[0004] In view of the problems in prior art, the purpose of the utility model is to provide a laminated board transfer device, the device can flexibly adjust the position of support structure according to the size of laminated board, and realize stable fixation through the cooperation of slider and track.At the same time, the device is equipped with pressing plate mechanism, can effectively press laminated board through pressing strip, prevent laminated board from loosening or falling in the transfer process.In addition, the support table of the device can rotate, and cooperate with the height adjustment of slider, realize the inclined taking out function of laminated board, make material taking more convenient, reduce the difficulty of manual operation, improve work efficiency.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] The utility model provides a kind of laminated board transfer device, including chassis, the chassis is hollow rectangular structure, mobile wheel is installed at the chassis bottom four corners, screw rod is rotatably installed in the chassis, fixed plate is vertically provided on the chassis upper surface rear side, mobile crossbeam is slidably installed in the chassis inside, the mobile crossbeam is screwed on screw rod, movable plate is vertically provided on the mobile crossbeam top, the fixed plate and movable plate are parallel, laminated board is uniformly stacked between the fixed plate and movable plate, track is symmetrically provided on the side of the fixed plate and movable plate, and the track is vertically provided, sliding block is slidably installed on the track surface, support table is rotatably installed on the sliding block surface, the support table upper surface is plane, the support table upper surface is provided with anti-skid pattern, and the support table of four same heights supports laminated board.
[0007] Further, the track surface is uniformly provided with positioning hole, and a plurality of positioning holes are vertically distributed.
[0008] Further, positioning bolt is slidably installed in the convex bolt, and the end of the positioning bolt is matched with the inner size of the positioning hole.
[0009] Further, pull rod is provided on the outside of the positioning bolt, the pull rod penetrates the end face of the convex bolt, spring is sleeved on the surface of the pull rod, the spring is arranged in the convex bolt, and one end of the spring is in contact with the surface of the positioning bolt.
[0010] Further, frame body is fixed on the top of the sliding block, threaded rod is rotatably installed on the inside of the frame body, pressing plate is slidably installed on the surface of the frame body, and the pressing plate is screwed on the surface of the threaded rod.
[0011] Further, the pressing plate extends forward to above the support table, the end surface of the pressing plate is provided with downward protruding pressing strip, and the pressing strip presses and fixes laminated board arranged on the surface of the support table.
[0012] Compared with the prior art, the utility model has the beneficial effects that:
[0013] The utility model provides a kind of laminated board transfer device, by adjustable fixed structure, the adaptability of different sizes laminated board is improved, the stability of laminated board in the process of transfer is guaranteed, and the convenience of taking material is improved, solve the problems, such as poor adaptability of transfer device in prior art, poor fixing effect, inconvenient taking material etc.
[0014] The utility model discloses a fixed plate and movable plate structure can be adjusted, wherein the fixed plate and movable plate are parallel to each other and can be adjusted according to the width of the laminated board. The spacing between the movable plate and the fixed plate can be flexibly adjusted according to the size of different laminated boards by rotating the lead screw to drive the movement of the moving beam, thereby effectively adapting to laminated boards of different specifications, overcoming the problem of limited application range caused by the unadjustable fixed support structure of the existing device, and improving the versatility and practicality of the device.
[0015] The utility model discloses the cooperation structure of track and sliding block, sets up vertical track in the inboard of fixed plate and movable plate, and is equipped with a plurality of positioning hole on the track surface, and the sliding block can slide up and down along the track and is automatically locked through the positioning bolt. The structure not only makes the support platform can adjust the height according to the thickness of laminated board, ensures the uniform stress of laminated board, avoids the inclination or falling of laminated board when storing due to uneven support, and simultaneously makes the positioning bolt can be automatically embedded in the positioning hole through the action of spring, improves the fixed stability and adjustment convenience of sliding block, and solves the problem of lacking flexible support structure in traditional transfer device.
[0016] The utility model discloses the support platform adopts rotatable structure, and its surface is equipped with antiskid line, to improve the stability of laminated board. The antiskid line adopts the design of evenly spaced stripe-shaped convex, can effectively increase the friction between laminated board and support platform, prevents the slippage of laminated board in the transfer process due to vibration or shaking. The rotating structure of support platform can cooperate with the height adjustment of sliding block when taking material, makes laminated board can be inclined and slide out, avoids the problem of needing to pull laminated board with great force in traditional device, improves the convenience and operation efficiency of taking material.
[0017] The utility model discloses the structure of threaded rod and pressing plate, wherein the threaded rod can drive the pressing plate to slide in the vertical direction, and the end of the pressing plate is provided with a pressing strip made of high-hardness rubber material, which can provide a certain buffering effect when pressing the laminated board to avoid damage due to uneven stress. The pressing plate can effectively press and fix the laminated board to prevent loosening or falling due to vibration or tilting during the transfer process, improve the stability and safety of the transfer, and solve the problem of lacking effective fixing measures in the existing device.
[0018] The utility model discloses the manufacturing of high-strength material, such as the chassis adopts Q235 carbon steel, the lead screw adopts high-strength alloy steel, the sliding block and the track adopt stainless steel or aluminum alloy structure, and the support platform adopts high-strength engineering plastic, which not only ensures the carrying capacity of the device, but also reduces the overall weight, improves the durability and corrosion resistance of the device, and prolongs the service life. Compared with the prior art, the utility model has a reasonable structure, is easy to install, is suitable for the storage, transfer and efficient material taking of laminated boards, and improves the efficiency and safety of production operation. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is the installation three-dimensional structure schematic view of the utility model;
[0020] Figure 2 It is the movable board installation structure schematic view of the utility model;
[0021] Figure 3 It is the laminated board inclined slide out state structure schematic view of the utility model;
[0022] Figure 4 It is the slider and support table structure schematic view of the utility model;
[0023] Figure 5 It is the right view structure schematic view of the utility model; Figure 4
[0024] Figure 6 It is the section structure schematic view of the utility model; Figure 4
[0025] In the drawing, the component list represented by each sign is as follows:
[0026] 1, bottom bracket;2, moving wheel;3, screw;4, moving crossbeam;51, fixed plate;52, movable plate;6, track;61, positioning hole;7, slider;71, protruding bolt;8, support table;81, anti-skid line;9, positioning bolt;91, pull rod;10, spring;11, frame body;12, threaded rod;13, pressing plate;131, pressing strip. Specific implementation
[0027] In order to make the purpose and the advantage of the utility model more clearly, the following is specifically explained to the utility model with example. It should be understood that the following text is only used to describe one or several specific implementation manners of the utility model, and does not strictly limit the protection scope specifically requested by the utility model.
[0028] Example 1:
[0029] Reference Figures 1-6 As shown, a kind of laminated board transfer device, including chassis 1, chassis 1 is the rectangular structure of hollow inside, to reduce overall weight and improve structural stability;Chassis 1 is made of Q235 carbon steel material, with higher load capacity and impact resistance;Chassis 1 bottom four corners are all equipped with mobile wheel 2, mobile wheel 2 adopts polyurethane outer package material, to enhance wear resistance and reduce friction resistance when moving, while mobile wheel 2 is internally provided with ball bearing to ensure the smoothness of movement;Chassis 1 is rotatably installed with lead screw 3, lead screw 3 diameter is 20mm, pitch is 5mm, adopts high-strength alloy steel material, and is subjected to surface nickel plating treatment to improve corrosion resistance;Chassis 1 upper surface rear side is vertically provided with fixed plate 51, fixed plate 51 thickness is 8mm, is processed using cold-rolled steel sheet, and is sprayed with rust-proof coating on surface to improve durability;Chassis 1 inner side is slidably installed with moving cross beam 4, moving cross beam 4 adopts aluminum alloy material, with higher rigidity and lighter mass, to facilitate lead screw 3 to drive moving cross beam 4 to be stably adjusted;Moving cross beam 4 is screwed on lead screw 3, moving cross beam 4 top is vertically provided with movable plate 52, movable plate 52 is the same in structure and material as fixed plate 51, to ensure overall strength and durability;Fixed plate 51 and movable plate 52 are parallel, and laminated boards are evenly stacked between fixed plate 51 and movable plate 52, and the side of fixed plate 51 and movable plate 52 close to each other is symmetrically provided with track 6, track 6 adopts C-shaped stainless steel guide rail, and is subjected to precision grinding processing, to ensure the smooth sliding of sliding block 7 on track 6;Track 6 is vertically arranged, and sliding block 7 is slidably installed on the surface of track 6, and support table 8 is rotatably installed on the surface of sliding block 7, support table 8 is made of high-strength engineering plastic, to reduce overall weight and provide good impact resistance;The upper surface of support table 8 is flat, and the upper surface of support table 8 is provided with anti-skid lines 81, which are in the form of stripe-shaped protrusions with a spacing of 3mm, to effectively enhance the friction and prevent the laminated boards from sliding during transfer;Four support tables 8 of the same height support the laminated boards, to ensure that the laminated boards are evenly stressed, and avoid tilting or falling due to unstable support.
[0030] Referring to Figure 2 and Figure 3 As shown, a plurality of positioning holes 61 are evenly formed on the surface of track 6, the diameter of positioning hole 61 is 8mm, the depth is 5mm, and the vertical direction of track 6 is arranged at intervals of 20mm, to facilitate the height adjustment of sliding block 7;A plurality of positioning holes 61 are vertically distributed, and convex bolt 71 is arranged below the surface of sliding block 7, convex bolt 71 is made of high-strength stainless steel material, and the outer surface is subjected to anodic oxidation treatment to enhance wear resistance and corrosion resistance;Convex bolt 71 is hollow inside, to facilitate the sliding adjustment of internal structure and improve positioning stability.
[0031] Referring to Figure 4 and Figure 6As shown, the positioning pin 9 is slidably installed inside the protruding stud 71, the end of the positioning pin 9 is matched with the inner size of the positioning hole 61, the positioning pin 9 is made of wear-resistant stainless steel, and is processed by precise numerical control to ensure the close fit between the positioning pin 9 and the positioning hole 61, ensuring the stability of the sliding block 7 at the set position; the sliding block 7 is fixed by the cooperation of the positioning pin 9 and the positioning hole 61, and the positioning pin 9 can be automatically embedded into the positioning hole 61 under the action of the spring 10, so as to realize the quick locking of the sliding block 7 and improve the convenience and safety of the structure.
[0032] Reference Figure 6 As shown, a pull rod 91 is provided outside the positioning pin 9, the pull rod 91 penetrates the end face of the protruding stud 71, and a spring 10 is sleeved on the surface of the pull rod 91, the spring 10 is made of 65Mn spring steel and is subjected to heat treatment process to improve elasticity and fatigue life; the spring 10 is placed inside the protruding stud 71, one end of the spring 10 is in contact with the surface of the positioning pin 9, ensuring that the positioning pin 9 is always subjected to elastic force, so that the sliding block 7 can be stably fixed, and at the same time, it is convenient to remove the fixation by pulling the pull rod 91 when adjusting the position of the sliding block 7, improving the flexibility of the device.
[0033] Reference Figure 4 And Figure 6 As shown, the sliding block 7 is fixed with a frame body 11 at the top, the frame body 11 is made of aluminum alloy material and is processed by CNC precise machining to ensure the installation accuracy, a threaded rod 12 is vertically rotatably installed inside the frame body 11, the threaded rod 12 is made of 40Cr alloy steel with a diameter of 10mm and is subjected to carburizing treatment to improve wear resistance and carrying capacity; a pressing plate 13 is vertically slidably installed on the surface of the frame body 11, the pressing plate 13 is 5mm thick and is made of cold-rolled steel plate and is subjected to surface oxidation treatment to improve corrosion resistance, the pressing plate 13 is screwed on the surface of the threaded rod 12, and the up and down movement of the pressing plate 13 can be realized by rotating the threaded rod 12, so as to adjust the pressing force on the laminated plate.
[0034] Reference Figure 5 And Figure 6 As shown, the pressing plate 13 extends forward above the support table 8, the end surface of the pressing plate 13 is provided with a downward protruding pressing strip 131, the pressing strip 131 is made of high-hardness rubber material to provide a buffering effect when pressing the laminated plate, reducing the risk of damage caused by uneven stress on the surface of the laminated plate, and the pressing strip 131 presses and fixes the laminated plate placed on the surface of the support table 8, ensuring that the laminated plate will not slip or fall during transportation due to vibration or shaking, improving the overall stability of the transportation.
[0035] Example 2: Adjustable fixing structure adapts to laminated plates of different sizes
[0036] This embodiment provides a laminated plate transportation device based on an adjustable fixing structure, which can be flexibly adjusted according to the size of the laminated plate to adapt to laminated plates of different specifications, improving the versatility and adaptability of the equipment.
[0037] The chassis 1 of the device is made of Q235 carbon steel material, the overall structure is designed as a rectangular hollow, the length is 1200mm, the width is 600mm, and the height is 800mm, to ensure the overall stability and reduce the weight; The high-strength alloy steel wire rod 3 with a diameter of 20mm is arranged inside the chassis 1, the pitch of the screw rod 3 is 5mm, which is connected with the moving beam 4 through the ball screw structure, to realize the stable movement of the moving beam 4; The fixed plate 51 and the movable plate 52 are both made of 8mm thick cold-rolled steel plate, the fixed plate 51 is installed at the rear side of the chassis 1, and the movable plate 52 moves along the horizontal direction through the adjustment of the moving beam 4, so as to change the distance between the fixed plate 51 and the movable plate 52, to adapt to the laminated board of different width.
[0038] By rotating the hand wheel or electric drive mechanism (optional servo motor, rated power 100W) at the end of the screw rod 3, the moving range of the movable plate 52 can be controlled, so that the width of the laminated board storage area can be adjusted between 300mm and 800mm, to meet the storage requirements of laminated boards of different thickness and size.
[0039] Comparative case 1:
[0040] The traditional laminated board transfer device usually adopts a fixed support frame structure, which cannot be flexibly adjusted according to the specifications of the laminated board. For example, the fixed frame size of some devices is 600mm×400mm, which means that only laminated boards of a specific specification can be stored. If the size of the laminated board is larger or smaller, the device cannot be used, which limits the scope of application. The adjustable fixed structure of the embodiment overcomes the poor adaptability of traditional devices, making it applicable to laminated boards of different specifications, improving the flexibility and practicality of the equipment.
[0041] Embodiment 3: slider and track structure improves support stability
[0042] The embodiment provides a laminated board support structure with track and slider cooperation, which improves the support stability of the laminated board through the height-adjustable slider and automatic positioning and locking mechanism, and ensures the uniform stress of the laminated board during storage.
[0043] The track 6 adopts a C-shaped stainless steel guide rail with a thickness of 4 mm. Positioning holes 61 are uniformly arranged every 20 mm in the vertical direction of the track 6. Each positioning hole 61 has a diameter of 8 mm and a depth of 5 mm, so that the slider 7 can be adjusted in height along the track 6. The slider 7 is made of high-strength aluminum alloy material and the surface is treated by anodic oxidation to improve wear resistance. The lower part of the slider 7 is provided with a protruding bolt 71. The protruding bolt 71 is internally slidably mounted with a positioning bolt 9 made of stainless steel with a diameter of 6 mm. The positioning bolt 9 is externally connected to a pull rod 91. The pull rod 91 penetrates the end face of the protruding bolt 71 and is sleeved with a spring 10 made of 65Mn spring steel with an elastic coefficient of 980 N / m. The spring 10 can ensure that the slider 7 can be quickly fixed at a specific height of the track 6 after adjustment.
[0044] By adjusting the height of the slider 7, the support table 8 can always be kept within a suitable height range to ensure that the laminated board is uniformly stressed and to avoid the risk of tilting and falling. At the same time, the action of the spring 10 enables the positioning bolt 9 to automatically embed into the corresponding positioning hole 61 when the slider 7 reaches the target height, thereby improving the stability of the device.
[0045] Comparative Case 2:
[0046] Some traditional devices use a welded fixed support structure that cannot be adjusted according to the thickness of the laminated board. For example, a laminated board storage rack used by a certain enterprise adopts a fixedly welded support rod, which can only store laminated boards of a specific thickness. If the laminated board is thicker, the spacing between the support rods is insufficient, making it impossible to store the laminated board. If the laminated board is thinner, it cannot be uniformly supported and is prone to tilting or falling. The present embodiment uses a slider and track cooperation structure to adjust the height of the support table and ensure the stability of the slider 7 at different heights, thereby solving the problem of fixed support structure and poor adaptability of traditional devices.
[0047] Embodiment 4: Rotating support table improves convenience of taking materials
[0048] The present embodiment provides a rotating support table structure that can keep the laminated board stable during storage and can be tilted and slid out during material taking, thereby reducing the difficulty of operation during material taking and improving the convenience of use.
[0049] The support table 8 is made of high-strength engineering plastic and has anti-slip patterns 81 on the surface. The anti-slip patterns 81 are designed as 3 mm spaced stripe-shaped protrusions to increase friction and prevent the laminated board from sliding. The support table 8 is connected to the slider 7 through a rotating shaft. The rotating shaft is made of stainless steel with a diameter of 12 mm and is provided with a bidirectional limiting mechanism to ensure that the support table 8 rotates within a specific angle range. The maximum rotation angle can reach 15°.
[0050] When taking out the material, the slider 7 on one side can be controlled to move downward by 20-40 mm while keeping the slider 7 on the other side unchanged. Since the support table 8 can rotate around the rotation axis, the laminated board will tilt after being released from the pressing state of the pressing plate 13, and can slide out along the tilt direction, thereby reducing the force required for manually pulling out the laminated board and improving the material taking efficiency.
[0051] Comparative case 3:
[0052] The traditional laminated board storage device needs to manually lift the laminated board completely for taking out the material, especially when the laminated board is heavy, which requires two people to cooperate to carry, thereby increasing the labor intensity and possibly causing damage to the laminated board due to improper carrying. For example, the fixed storage rack used by a certain factory needs to manually lift the laminated board completely for taking out the material, and the weight of the single laminated board is 15 kg, which results in low material taking efficiency and difficult operation. The present embodiment can automatically tilt and slide out the laminated board after being released from the fixation, thereby reducing the force required for manually pulling out the laminated board and improving the convenience and safety of taking out the material.
[0053] Embodiment 5: Screw rod and pressing plate structure ensure the stability of the laminated board
[0054] The present embodiment provides a screw rod driven pressing plate fixation structure, which can provide stable downward pressing fixation after storing the laminated board and prevent the laminated board from loosening or falling during the transfer process.
[0055] The screw rod 12 is made of 40Cr alloy steel with a diameter of 10 mm and is subjected to carburizing treatment to improve the wear resistance and carrying capacity; the pressing plate 13 is made of cold-rolled steel plate with a thickness of 5 mm and is subjected to surface oxidation treatment to enhance the corrosion resistance; the pressing plate 13 is provided with a pressing strip 131 below the end portion, and the pressing strip 131 is made of high-hardness rubber material with a width of 20 mm, which can provide a buffering effect when pressing the laminated board and avoid damage to the laminated board due to uneven stress on the surface.
[0056] By rotating the screw rod 12, the pressing plate 13 can be controlled to press downward along the vertical direction, so that the pressing strip 131 can uniformly apply pressure to the laminated board to ensure that the laminated board does not loosen due to vibration or shaking during the transfer process, thereby improving the transfer stability.
[0057] Comparative case 4:
[0058] The traditional laminated board transfer device usually relies on side clamps or gravity self-stabilization to fix the laminated board, which has poor stability. For example, the side clamp fixation device used by a certain enterprise may cause the laminated board to loosen or fall off due to vehicle shaking during the transfer process, which poses a great safety hazard. The present embodiment uses a screw rod driven pressing plate fixation structure to firmly fix the laminated board, which can maintain stability even in a bumpy environment, thereby improving the safety of the transfer.
[0059] The working principle of the utility model is: according to the width of the layer board to be transported, the distance between the fixed plate 51 and the movable plate 52 is adjusted, when adjusting, the knob at the end of the lead screw 3 is rotated to control the rotation of the lead screw 3, and then the movement of the moving beam 4 is controlled, then the sliding block 7 is respectively slid into the inner side of the track 6 through the top, due to the existence of the spring 10, the positioning bolt 9 has an outward force, and then the positioning bolt 9 will automatically cooperate with the positioning hole 61 at the corresponding position to keep the fixing of the sliding block 7, the two sliding blocks 7 on the surface of the fixed plate 51 and the two sliding blocks 7 on the surface of the movable plate 52 are adjusted to the same horizontal height, then the layer board is placed on the upper surface of the four supporting tables 8, the anti-skid lines 81 can improve the anti-skid property, prevent the layer board from sliding out and falling during the transportation, after the position adjustment is completed, the hexagonal head at the top of the threaded rod 12 is rotated to control the rotation of the threaded rod 12, and then the downward movement of the pressing plate 13 is controlled, the layer board is fixed through the pressing strip 131 to prevent the layer board from falling during the transportation, so that the transportation work of the layer boards of different sizes is adapted, and the stacking distance between the layer boards can be flexibly adjusted;
[0060] When the layer board needs to be taken out through one side, the sliding block 7 on one side can be controlled to move downward by a distance, and the height of the other side remains unchanged, since the supporting table 8 can rotate, after the pressing of the pressing plate 13 is released, the layer board will tilt with the downward movement of the sliding block 7 on one side, so as to be tilted and slid downward through one side, improve the convenience during taking, reduce the force for pulling out the layer board, and achieve the effect of saving labor.
[0061] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary technical personnel in the technical field, without departing from the principle of the utility model, a number of improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection range of the utility model. The structures, devices and operation methods not specifically described and explained in the utility model are implemented according to the conventional means in the field, unless otherwise specified and limited.
Claims
1. A transfer device for laminated panels comprising a chassis (1), characterized in that: The bottom frame (1) is a rectangular structure with hollow interior, the bottom frame (1) is provided with moving wheels (2) at the four corners of the bottom, the bottom frame (1) is rotatably provided with a lead screw (3) inside, the bottom frame (1) is vertically provided with a fixed plate (51) on the upper surface of the rear side, the bottom frame (1) is slidably provided with a moving cross beam (4) inside, the moving cross beam (4) is screwed on the lead screw (3), the moving cross beam (4) is vertically provided with a movable plate (52) on the top, the fixed plate (51) and the movable plate (52) are parallel, the laminated boards are uniformly laminated and placed between the fixed plate (51) and the movable plate (52), the fixed plate (51) and the movable plate (52) are symmetrically provided with rails (6) on the side close to each other, the rails (6) are vertically provided, the rails (6) are slidably provided with sliding blocks (7) on the surface, the sliding blocks (7) are rotatably provided with support tables (8) on the surface, the upper surface of the support table (8) is a plane, the upper surface of the support table (8) is provided with anti-skid lines (81), the support tables (8) of the same height support the laminated boards.
2. The laminate transport apparatus of claim 1, wherein: The rails (6) are uniformly provided with positioning holes (61) on the surface, a plurality of positioning holes (61) are vertically distributed, the sliding blocks (7) are provided with convex bolts (71) below the surface, the convex bolts (71) are hollow inside.
3. The laminate transport apparatus of claim 2, wherein: The convex bolts (71) are slidably provided with positioning bolts (9) inside, the positioning bolts (9) are adapted to the inner size of the positioning holes (61) at the end, the sliding blocks (7) are fixed by the cooperation of the positioning bolts (9) and the positioning holes (61).
4. The laminate transport apparatus of claim 3, wherein: The positioning bolts (9) are provided with pull rods (91) outside, the pull rods (91) penetrate the end surface of the convex bolts (71), the pull rods (91) are provided with springs (10) on the surface, the springs (10) are placed in the convex bolts (71), one end of the spring (10) is in contact with the surface of the positioning bolt (9).
5. The laminate transport apparatus of claim 1, wherein: The sliding blocks (7) are fixed with frame bodies (11) on the top, the frame bodies (11) are vertically rotatably provided with threaded rods (12) inside, the frame bodies (11) are vertically slidably provided with pressing plates (13) on the surface, the pressing plates (13) are screwed on the surface of the threaded rods (12).
6. A transfer device for a laminated board according to claim 5, characterized in that: The pressing plates (13) extend forward above the support tables (8), the pressing plates (13) are provided with downward protruding pressing strips (131) on the lower surface of the end, the pressing strips (131) press and fix the laminated boards placed on the surface of the support tables (8).