Cutting bed with easy transfer of cloth

By setting up a transfer mechanism on the cutting bed and using a fan to blow up the bottom of the fabric, the problem of misalignment of multi-layered fabrics during movement is solved, achieving highly efficient and automated fabric cutting, and improving production efficiency and product quality.

CN224531327UActive Publication Date: 2026-07-21WUHAN ZUWANG GARMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN ZUWANG GARMENT CO LTD
Filing Date
2025-09-10
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing fabric cutting beds are prone to misalignment between upper and lower layers during the movement of multiple layers of fabric, resulting in low processing efficiency.

Method used

The system employs a transfer mechanism that uses discs on the cutting table and a fan system to blow up the bottom of the stacked fabric, reducing friction between the fabric and the cutting table, thereby preventing misalignment between upper and lower layers and achieving automated lifting and transportation.

Benefits of technology

It improves the processing efficiency of fabric cutting, reduces fabric finishing time, and enhances production efficiency and product yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of cutting bed of easy transfer cloth belongs to clothing processing field.The cutting bed includes cutting table and transfer mechanism, and transfer mechanism is set on cutting table, and transfer mechanism includes disc, fan and gas pipe, disc is provided with multiple, rectangular array distribution is in the top of cutting table, air hole is set on disc, fan and gas pipe are set in the bottom of cutting table, one end of gas pipe is communicated with fan, and other end is communicated with air hole.The cutting bed of easy transfer cloth provided in the utility model embodiment can solve the problem of low processing efficiency in the prior art.
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Description

Technical Field

[0001] This utility model relates to the field of garment processing, and in particular to a cutting bed for easy transfer of fabric. Background Technology

[0002] Fabric is a sheet material made from natural or chemical fibers through spinning and weaving processes. It is widely used in clothing, home furnishings, industry, and medical fields, and is an indispensable basic material in human daily life and production. With the increasing demand for efficient and precise cutting in the traditional clothing, home textile, and automotive interior industries, the processing requirements for fabrics are also constantly increasing. However, early fabric cutting relied on manual operation, which resulted in low efficiency and poor precision. In particular, misalignment or scrapping was prone to occur when cutting multi-layered fabrics. At this time, a fabric cutting bed is needed.

[0003] In the existing technology, the fabric cutting bed mainly consists of a cutting table and a cutting machine. When using it, multiple layers of fabric need to be laid on one side of the cutting table. After the previous batch of fabric is cut, the multiple layers of fabric are moved to the cutting area to perform the cutting work. However, during the movement of multiple layers of fabric, the bottom layer of fabric has greater frictional resistance with the cutting table, while the top layer of fabric is easily affected by inertia or traction, causing relative displacement between the upper and lower layers of fabric.

[0004] In existing cutting beds, multiple layers of fabric are moved by dragging them directly on the cutting table, which causes misalignment between the upper and lower layers. After moving the multiple layers of fabric to the cutting area, time is required to arrange the fabric before the cutting process can begin, resulting in low processing efficiency. Utility Model Content

[0005] This utility model provides a cutting bed for easily transportable fabrics, which can solve the problem of low processing efficiency in the prior art. The technical solution is as follows: A cutting bed for easy fabric transfer includes: a cutting table and a transfer mechanism. The transfer mechanism is installed on the cutting table. The transfer mechanism includes a disc, a fan, and an air supply pipe. Multiple discs are arranged in a rectangular array on the top of the cutting table. Ventilation holes are opened on the discs. The fan and the air supply pipe are installed at the bottom of the cutting table. One end of the air supply pipe is connected to the fan, and the other end is connected to the ventilation hole.

[0006] Optionally, multiple vent holes are provided, and the multiple vent holes are distributed in a circular array on the disc.

[0007] Optionally, the cutting table is provided with a paper-laying mechanism, which includes a first support plate, a second support plate, and a support shaft. The first support plate and the second support plate are respectively vertically arranged on both sides of the cutting table, and the support shaft is mounted between the first support plate and the second support plate. A paper roll is provided on the support shaft.

[0008] Optionally, the paper roll is provided with a plurality of ventilation holes, which are distributed in a rectangular array on the paper roll.

[0009] Optionally, a gear is provided on the side of the first support plate near the cutting table, and a horizontally arranged motor is provided on the side of the first support plate away from the cutting table. The output shaft of the motor is connected to the center of the gear. A rack is provided on the side of the cutting table along the length direction, and the gear and the rack mesh.

[0010] Optionally, a connecting plate is provided between the first support plate and the second support plate.

[0011] Optionally, a transmission assembly is provided inside the first support plate. The transmission assembly includes a first sprocket, a second sprocket, and a chain. The first sprocket is disposed on the output shaft of the motor, the second sprocket is arranged at intervals above the first sprocket, one end of the support shaft is connected to the second sprocket, and the chain is wound around the first sprocket and the second sprocket.

[0012] Optionally, limit blocks are provided at both ends of the support shaft, a transmission column is provided on the second sprocket, and a connecting column is provided on the second bracket plate. Limiting grooves matching the limit blocks are provided on both the transmission column and the connecting column.

[0013] Optionally, the second support plate is provided with a disassembly mechanism, which includes a support plate, a double-ended threaded screw, two connecting rods, and two nut seats. The support plate is disposed between the first support plate and the second support plate, and the connecting column is disposed on the support plate. The support plate and the second support plate are arranged parallel to each other at intervals. The double-ended threaded screw is vertically and rotatably disposed in the second support plate. The two nut seats are respectively disposed on the threads at both ends of the double-ended threaded screw. Each nut seat is connected to one of the connecting rods. One end of the connecting rod is hinged to the nut seat, and the other end is hinged to the support plate.

[0014] Optionally, a horizontally arranged guide rod is fixedly provided on the side of the support plate near the second bracket plate, and a horizontal guide hole is provided on the second bracket plate, and the guide rod is slidably disposed in the guide hole.

[0015] The beneficial effects of the technical solution provided by this utility model embodiment include at least the following: This utility model provides a cutting bed for easily transportable fabric. After the fabric is stacked and laid on the cutting table using an external fabric spreading machine, the stacked fabric needs to be transported from the spreading area to the cutting area for cutting. By setting up a transfer mechanism, after the fan is started, the flowing air is discharged from the ventilation holes on the disc through the air supply pipe. Since the stacked fabric is laid on the ventilation holes, when air is introduced, the bottom of the stacked fabric will be blown up, which facilitates subsequent lifting and transportation from the bottom of the stacked fabric. Since there are multiple ventilation holes evenly distributed on the cutting table, the friction between the stacked fabric and the cutting table can be reduced when the stacked fabric is dragged and transported on the cutting table, thereby preventing relative displacement between the upper and lower layers of the stacked fabric. This allows the stacked fabric to be cut immediately after being transported to the cutting area, reducing the time spent on fabric preparation, improving garment production efficiency, and effectively solving the problem of low processing efficiency in the prior art. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the overall structure provided in an embodiment of the present utility model; Figure 2 This is provided by the embodiment of the present utility model. Figure 1 Enlarged view of point A; Figure 3 This is a side view of the overall structure provided in an embodiment of the present utility model; Figure 4 This is a schematic diagram of the paper-laying mechanism provided in this embodiment of the utility model; Figure 5 This is a schematic diagram of the transmission component structure provided in an embodiment of the present utility model; Figure 6 This is a schematic diagram of the disassembly mechanism provided in an embodiment of the present utility model; Figure 7 This is a schematic diagram of the side structure of the second support plate provided in an embodiment of the present invention.

[0018] In the diagram: 1-Cutting table; 11-Rack; 2-Transfer mechanism; 21-Circular piece; 211-Ventilation hole; 22-Fan; 23-Air supply pipe; 3-Paper laying mechanism; 31-First support plate; 32-Second support plate; 321-Guide hole; 322-Guide groove; 33-Support shaft; 331-Limiting block; 34-Paper roll; 341-Ventilation hole; 35-Gear; 36-Motor; 37-Connecting plate; 4-Transmission assembly; 41-First sprocket; 42-Second sprocket; 43-Chain; 44-Transmission column; 45-Connecting column; 46-Limiting groove; 5-Disassembly mechanism; 51-Support plate; 52-Double-ended screw with positive and negative threads; 53-Connecting rod; 54-Nut seat; 55-Guide rod; 56-Knob; 57-Limiting ring. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0020] Figure 1 This is a schematic diagram of the overall structure provided in an embodiment of the present utility model; Figure 2 This is provided by the embodiment of the present utility model. Figure 1 Enlarged view of point A; Figure 3 This is a side view of the overall structure provided in an embodiment of the present utility model; Figure 4 This is a schematic diagram of the paper-laying mechanism provided in this embodiment of the utility model; Figure 5 This is a schematic diagram of the transmission component structure provided in an embodiment of the present utility model; Figure 6 This is a schematic diagram of the disassembly mechanism provided in an embodiment of the present utility model; Figure 7 This is a schematic diagram of the side structure of the second support plate provided in an embodiment of this utility model. Figures 1 to 7 The cutting bed for easily transportable fabric shown includes: a cutting table 1 and a transfer mechanism 2. The transfer mechanism 2 is disposed on the cutting table 1 and includes a circular plate 21, a fan 22 and an air supply pipe 23. Multiple circular plates 21 are disposed in a rectangular array on the top of the cutting table 1. Ventilation holes 211 are opened on the circular plates 21. The fan 22 and the air supply pipe 23 are disposed at the bottom of the cutting table 1. One end of the air supply pipe 23 is connected to the fan 22 and the other end is connected to the ventilation hole 211.

[0021] For example, in this embodiment of the present invention, the circular piece 21 is at the same height as the upper surface of the cutting table 1. Multiple countersunk holes can be opened on the cutting table 1 for mounting the circular piece 21. The vent hole 211 is set on the circular piece 21, making the vent hole 211 modular. When the vent hole 211 is blocked or damaged, a new circular piece 21 can be directly replaced, and the air supply pipe 23 can be connected to the vent hole 211 on the new circular piece 21, so that the transfer mechanism can continue to operate, thereby improving the ease of operation of the structure. In traditional technology, stacked fabrics are usually dragged and transported directly on the cutting table 1. Due to the excessive friction between the cutting table 1 and the stacked fabrics, misalignment occurs between the upper and lower layers of the stacked fabrics. If the misaligned stacked fabrics are cut directly, some edges of the fabrics may be damaged, thus reducing the yield of garment production. In this embodiment, by setting up a transfer mechanism 2, the friction between the stacked fabrics and the cutting table 1 is reduced, thereby reducing the possibility of misalignment between the upper and lower layers of the stacked fabrics. This saves time on fabric preparation and improves processing efficiency.

[0022] This utility model provides a cutting bed for easily transportable fabric. After the fabric is stacked and laid on the cutting table using an external fabric spreading machine, the stacked fabric needs to be transported from the spreading area to the cutting area for cutting. By setting up a transfer mechanism 2 and starting the fan 22, the flowing air is discharged from the ventilation holes 211 on the disc 21 through the air supply pipe 23. Since the stacked fabric is laid on the ventilation holes 211, when air is ventilated, the bottom of the stacked fabric will be blown up, which facilitates subsequent lifting and transportation from the bottom of the stacked fabric. Since there are multiple ventilation holes 211 evenly distributed on the cutting table 1, the friction between the stacked fabric and the cutting table 1 can be reduced when the stacked fabric is dragged and transported on the cutting table, thereby preventing relative displacement between the upper and lower layers of the stacked fabric. This allows the stacked fabric to be cut immediately after being transported to the cutting area, reducing the time spent on sorting the fabric, improving garment production efficiency, and effectively solving the problem of low processing efficiency in the prior art.

[0023] Optionally, multiple vent holes 211 are provided, and the multiple vent holes 211 are distributed in a circular array on the disc 21.

[0024] Exemplary, in embodiments of this utility model, such as Figure 2 As shown, by setting multiple ventilation holes 211 on a single disc 21, the ventilation volume can be increased, the lifting force on the bottom of the stacked fabric can be improved, thereby enabling the transfer mechanism 2 to lift heavier stacked fabric, thus expanding the applicability of this cutting bed.

[0025] Optionally, a paper-laying mechanism 3 is provided on the cutting table 1. The paper-laying mechanism 3 includes a first support plate 31, a second support plate 32 and a support shaft 33. The first support plate 31 and the second support plate 32 are respectively vertically arranged on both sides of the cutting table 1. The support shaft 33 is mounted between the first support plate 31 and the second support plate 32. A paper roll 34 is provided on the support shaft 33.

[0026] Exemplary, in embodiments of this utility model, such as Figure 4 As shown, by setting up the paper-laying mechanism 3, the paper can be laid on the cutting table 1. The first support plate 31 and the second support plate 32 provide support for the support shaft 33, which in turn provides support for the paper roll 34. The paper roll 34 is formed by winding the paper. Since the fabric material may be relatively soft and easily penetrated by wind, the paper can be laid flat on the laying area of ​​the cutting table 1 before stacking the fabric. Then, the external fabric-laying mechanism is used to stack the fabric on the paper. The transfer mechanism 2 provides lifting force to the paper, which can prevent the wind generated by the fan 22 from being directly dissipated through the stacked fabric, thereby improving the transfer efficiency. Moreover, the paper has less elastic deformation than the fabric. When dragging and transporting the fabric, the paper can be dragged to prevent the fabric from deforming and to prevent misalignment between the upper and lower layers of the fabric, thus improving the ease of operation of this cutting table.

[0027] Optionally, the paper roll 34 is provided with a plurality of air vents 341, which are arranged in a rectangular array on the paper roll 34.

[0028] Exemplary, in embodiments of this utility model, such as Figure 4 As shown, by setting multiple ventilation holes 341 on the paper support roll 34, when the paper support is laid flat on the cutting table 1, the flowing air generated by the ventilation holes 211 can be evenly applied to the bottom of the stacked fabric through the ventilation holes 341, preventing excessive local wind force or wind force concentrated in one direction, which would cause the stacked fabric to tilt or even overturn. The flowing air between the paper support and the cutting table 1 can be discharged through the ventilation holes 341, thereby ensuring the stability of the transfer mechanism 2 during operation.

[0029] Optionally, a gear 35 is provided on the side of the first support plate 31 near the cutting table 1, and a horizontally arranged motor 36 is provided on the side of the first support plate 31 away from the cutting table 1. The output shaft of the motor 36 is connected to the center of the gear 35. A rack 11 arranged along the length direction is provided on the side of the cutting table 1, and the gear 35 and the rack 11 mesh.

[0030] Exemplary, in embodiments of this utility model, such as Figure 1 and Figure 4As shown, a guide groove 322 can be provided on the side of the second support plate 32 near the cutting table 1. The guide groove 322 matches the side of the cutting table 1. The motor 36 provides driving force for the rotation of the gear 35. Through the cooperation of the gear 35 and the rack 11, the paper-laying mechanism 3 can move along the cutting table 1. The guide groove 322 provides guiding force for the paper-laying mechanism 3, so that the position of the paper-laying can be easily adjusted, thereby further improving the ease of operation of this cutting bed.

[0031] Optionally, a connecting plate 37 is provided between the first support plate 31 and the second support plate 32.

[0032] Exemplary, in embodiments of this utility model, such as Figure 4 As shown, by setting the connecting plate 37, the connection strength between the first support plate 31 and the second support plate 32 can be strengthened, thereby making the paper-laying mechanism 3 more stable when moving along the cutting table 1 and improving the structural strength of the paper-laying mechanism 3. Furthermore, when the support shaft 33 is detachably connected to the first support plate 31 and the second support plate 32, the connecting plate 37 can be used to fix the first support plate 31 and the second support plate 32, preventing relative displacement between them. This makes it easier to install the support shaft 33 between the first support plate 31 and the second support plate 32, further improving the ease of operation of this cutting table.

[0033] Optionally, a transmission assembly 4 is provided inside the first support plate 31. The transmission assembly 4 includes a first sprocket 41, a second sprocket 42 and a chain 43. The first sprocket 41 is disposed on the output shaft of the motor 36. The second sprocket 42 is arranged at intervals above the first sprocket 41. One end of the support shaft 33 is connected to the second sprocket 42. The chain 43 is wound around the first sprocket 41 and the second sprocket 42.

[0034] Exemplary, in embodiments of this utility model, such as Figure 5 As shown, by setting the transmission component 4, the motor 36 can drive the first sprocket 41 to rotate when it rotates. Due to the transmission action of the chain 43, the second sprocket 42 is driven to rotate. One end of the support shaft 33 is fixed on the second sprocket 42, and the other end is rotatably connected to the second support plate 32, so that the support shaft 33 is rotatably set between the first support plate 31 and the second support plate 32. This allows the paper-laying mechanism 3 to drive the support shaft 33 to rotate while moving along the cutting table 1, thereby causing the paper roll 34 located on the support shaft 33 to rotate. The paper will automatically fall and be laid on the cutting table 1 without the need for manual dragging of the paper. By setting this structure, the automation level of this cutting bed is improved.

[0035] Optionally, limit blocks 331 are provided at both ends of the support shaft 33, a transmission column 44 is provided on the second sprocket 42, and a connecting column 45 is provided on the second bracket plate 32. Both the transmission column 44 and the connecting column 45 are provided with limit grooves 46 that match the limit blocks 331.

[0036] Exemplary, in embodiments of this utility model, such as Figure 4 and Figure 5 As shown, the limiting block 331 has a square structure, and correspondingly, the limiting groove 46 is also a square groove. The connecting column 45 is rotatably mounted on the second support plate 32. By matching the limiting block 331 with the limiting groove 46, slippage during the rotation of the support shaft 33 can be prevented, the power transmission of the second sprocket 42 to the support shaft 33 can be strengthened, and the support shaft 33 can be made to rotate more stably between the first support plate 31 and the second support plate 32, thereby improving the structural stability of this cutting bed.

[0037] Optionally, a disassembly mechanism 5 is provided on the second support plate 32. The disassembly mechanism 5 includes a support plate 51, a double-ended screw 52 with positive and negative threads, two connecting rods 53, and two nut seats 54. The support plate 51 is located between the first support plate 31 and the second support plate 32. The connecting column 45 is located on the support plate 51. The support plate 51 and the second support plate 32 are arranged parallel and spaced apart. The double-ended screw 52 with positive and negative threads is vertically rotatably located inside the second support plate 32. The two nut seats 54 are respectively located on the threads at both ends of the double-ended screw 52 with positive and negative threads. Each nut seat 54 is connected to a connecting rod 53. One end of the connecting rod 53 is hinged to the nut seat 54, and the other end is hinged to the support plate 51.

[0038] Exemplary, in embodiments of this utility model, such as Figure 6As shown, when the paper roll 34 on the support shaft 33 is used up, the support shaft 33 can be disassembled and the paper roll 34 on it can be replaced by setting the disassembly mechanism 5. Since the connecting post 45 is mounted on the support plate 51, the support plate 51 provides support for one end of the support shaft 33. By rotating the double-ended screw 52 with positive and negative threads, the two nut seats 54 can move closer or further apart on it, as shown in the figure. When the two nut seats 54 move closer together, since the two ends of the connecting rod 53 are hinged to the nut seats 54 and the support plate 51 respectively, the support plate 51 moves closer to the second bracket plate 32, and the distance between the support plate 51 and the first bracket plate 31 increases. At this time, the support shaft 33 can be easily removed from between the connecting post 45 and the transmission post 44. When a new paper roll 34 is replaced, the support shaft 33 is placed between the connecting post 45 and the transmission post 44, and the double-ended screw 52 with positive and negative threads is controlled to move further apart, so that the support plate 51 moves away from the second bracket plate 32, and the distance between the support plate 51 and the first bracket plate 31 decreases, thereby fixing the support shaft 33 between the connecting post 45 and the transmission post 44. Furthermore, a knob 56 can be provided at the end of the double-ended screw 52 with both positive and negative threads. The knob 56 is located outside the second support plate 32, which facilitates the operator to provide rotational force to the double-ended screw 52 with both positive and negative threads. By setting a support plate 51 to provide support force to the end of the support shaft 33 near the second support plate 32, and setting the support plate 51 with an adjustable distance from the first support plate 31, it is convenient to disassemble or install the support shaft 33 between the first support plate 31 and the support plate 51. This further facilitates the disassembly of the support shaft 33 and the replacement of the paper roll 34 on it, thereby further improving the ease of operation of this cutting bed.

[0039] Optionally, a horizontally arranged guide rod 55 is fixedly provided on the side of the support plate 51 near the second bracket plate 32, and a horizontal guide hole 321 is provided on the second bracket plate 32, in which the guide rod 55 is slidably disposed.

[0040] Exemplary, in embodiments of this utility model, such as Figure 6 and Figure 7 As shown, by providing a guide hole 321 and a guide rod 55, a guiding force can be provided for the support plate 51 as it moves closer to or further away from the second support plate 32, preventing offset during movement and thus avoiding difficulties in installing the support shaft 33. A limit ring 57 can also be provided at the end of the guide rod 55. The limit ring 57 is located on the outside of the second support plate 32 and can limit the maximum stroke of the support plate 51, reducing the ineffective stroke of the support plate 51 and thereby improving the working efficiency of the disassembly mechanism 5.

[0041] Unless otherwise defined, the technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this invention pertains. The terms “first,” “second,” and similar terms used in this patent application specification and claims do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Similarly, the terms “an” or “a” and similar terms do not indicate a quantity limitation, but rather indicate the presence of at least one. The terms “comprising” or “including” and similar terms mean that the elements or objects preceding “comprising” or “including” encompass the elements or objects listed following “comprising” or “including” and their equivalents, and do not exclude other elements or objects. The terms “connected” or “linked” and similar terms are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. The terms “upper,” “lower,” “left,” and “right” are used only to indicate relative positional relationships; when the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0042] The above description is only an optional embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A cutting bed for easily transportable fabrics, characterized in that, include: Cutting table (1) and transfer mechanism (2). The transfer mechanism (2) is set on the cutting table (1). The transfer mechanism (2) includes a disc (21), a fan (22) and an air supply pipe (23). Multiple discs (21) are arranged in a rectangular array on the top of the cutting table (1). Ventilation holes (211) are opened on the discs (21). The fan (22) and the air supply pipe (23) are set at the bottom of the cutting table (1). One end of the air supply pipe (23) is connected to the fan (22), and the other end is connected to the ventilation hole (211).

2. The cutting bed for easily transportable fabric according to claim 1, characterized in that, The ventilation holes (211) are provided in multiple ways, and the multiple ventilation holes (211) are distributed in a circular array on the disc (21).

3. The cutting bed for easily transportable fabric according to claim 1, characterized in that, The cutting table (1) is provided with a paper-laying mechanism (3), which includes a first support plate (31), a second support plate (32) and a support shaft (33). The first support plate (31) and the second support plate (32) are respectively vertically arranged on both sides of the cutting table (1). The support shaft (33) is erected between the first support plate (31) and the second support plate (32). A paper roll (34) is provided on the support shaft (33).

4. A cutting bed for easily transportable fabric according to claim 3, characterized in that, The paper roll (34) is provided with a plurality of air holes (341), which are arranged in a rectangular array on the paper roll (34).

5. A cutting bed for easily transportable fabric according to claim 3, characterized in that, A gear (35) is provided on the side of the first support plate (31) near the cutting table (1), and a motor (36) is arranged horizontally on the side of the first support plate (31) away from the cutting table (1). The output shaft of the motor (36) is connected to the center of the gear (35). A rack (11) is arranged along the length direction on the side of the cutting table (1), and the gear (35) and the rack (11) mesh.

6. A cutting bed for easily transportable fabric according to claim 5, characterized in that, A connecting plate (37) is provided between the first support plate (31) and the second support plate (32).

7. A cutting bed for easily transportable fabric according to claim 5, characterized in that, The first support plate (31) is provided with a transmission assembly (4), which includes a first sprocket (41), a second sprocket (42) and a chain (43). The first sprocket (41) is disposed on the output shaft of the motor (36), and the second sprocket (42) is arranged at intervals above the first sprocket (41). One end of the support shaft (33) is connected to the second sprocket (42), and the chain (43) is wound around the first sprocket (41) and the second sprocket (42).

8. A cutting bed for easily transportable fabric according to claim 7, characterized in that, Limiting blocks (331) are provided at both ends of the support shaft (33), a transmission column (44) is provided on the second sprocket (42), and a connecting column (45) is provided on the second bracket plate (32). Limiting grooves (46) matching the limiting blocks (331) are provided on both the transmission column (44) and the connecting column (45).

9. A cutting bed for easily transportable fabric according to claim 8, characterized in that, The second support plate (32) is provided with a disassembly mechanism (5). The disassembly mechanism (5) includes a support plate (51), a double-ended screw (52) with positive and negative threads, two connecting rods (53) and two nut seats (54). The support plate (51) is disposed between the first support plate (31) and the second support plate (32). The connecting column (45) is disposed on the support plate (51). The support plate (51) and the second support plate (32) are arranged parallel to each other. The double-ended screw (52) with positive and negative threads is vertically and rotatably disposed in the second support plate (32). The two nut seats (54) are respectively disposed on the threads at both ends of the double-ended screw (52). Each nut seat (54) is connected to one of the connecting rods (53). One end of the connecting rod (53) is hinged to the nut seat (54), and the other end is hinged to the support plate (51).

10. A cutting bed for easily transportable fabric according to claim 9, characterized in that, A horizontally arranged guide rod (55) is fixedly provided on the side of the support plate (51) near the second bracket plate (32). A horizontal guide hole (321) is provided on the second bracket plate (32), and the guide rod (55) is slidably disposed in the guide hole (321).