Cutting equipment for fabric processing

By combining a servo motor with a toothed plate, rotating shaft, and connecting rod, and integrating a DC motor with a lead screw and limit post, the horizontal and vertical positions of the fabric cutting equipment can be adjusted, solving the problem of insufficient flexibility of existing equipment and achieving precise positioning and high-precision cutting.

CN223522881UActive Publication Date: 2025-11-07NANTONG ETEX TEXTILE
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Patent Information

Application Number
CN202423125340.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-07
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Existing fabric processing cutting equipment cannot simultaneously adjust the horizontal and vertical positions, resulting in insufficient equipment flexibility and versatility, making it difficult to adapt to the specific cutting needs of multi-layered fabrics.

Method used

The horizontal position adjustment of the cutting component is achieved by combining a servo motor with a toothed plate, a rotating shaft, and a connecting rod; the vertical position adjustment of the cutting component is achieved by combining a DC motor with a lead screw and a limit post, thereby precisely controlling the positioning and cutting of the fabric.

Benefits of technology

It achieves precise positioning and high-precision cutting of fabrics, improves the flexibility and versatility of cutting equipment, and adapts to the cutting needs of fabric layers of different thicknesses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses cutting equipment for fabric processing, which relates to the technical field of fabric processing and comprises a support plate, a support is fixedly arranged on the upper surface of the support plate, a cutting component is arranged below the support, toothed plates are symmetrically and fixedly arranged on the upper surface of the support, a servo motor is arranged on the upper surface of the support in a sliding manner, and the cutting component is arranged below the toothed plates. The cutting equipment for fabric processing comprises a servo motor, a rotating shaft is fixedly arranged at the output end of the servo motor, gears are symmetrically and fixedly connected to the outer surface of the rotating shaft in a sleeved mode, the gears are connected with the corresponding toothed plates in a meshed mode, and a connecting rod is movably connected to the outer surface of the rotating shaft in a sleeved mode. A servo motor is matched with a toothed plate, a rotating shaft, a connecting rod and the like, so that the horizontal position of the cutting assembly can be accurately controlled; the combination of the direct current motor, the lead screw and the limiting column can precisely adjust the vertical position of the cutting assembly, so that precise positioning cutting of the fabric is achieved, and the cutting precision and quality are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of fabric processing, specifically to cutting equipment for fabric processing. BACKGROUND

[0002] Fabric is a sheet or linear material made of fibers through various processing methods, widely used in clothing, home textiles, industry and many other fields, and fabric processing is a complex process involving multiple steps and processes, including cutting processing of fabric.

[0003] However, the prior art still has the following problems:

[0004] The cutting equipment for fabric processing of the prior art mostly cannot adjust the height while adjusting the horizontal position of the cutting structure, which greatly limits the flexibility and versatility of the equipment. For some multi-level fabric products, it may be necessary to move the cutting assembly in the horizontal direction to complete the cutting of a specific shape, while adjusting the height in the vertical direction to adapt to fabric layers of different thicknesses or achieve special cutting effects. Most equipment cannot adjust the height in the vertical direction to adapt to fabric layers of different thicknesses or achieve special cutting effects.

[0005] To solve the above problems, the inventors propose a cutting equipment for fabric processing to solve the above problems. SUMMARY

[0006] To solve the problem of the cutting structure of the cutting equipment for fabric processing not being convenient for horizontal position adjustment while adjusting the height, the purpose of the utility model is to provide a cutting equipment for fabric processing.

[0007] To solve the above technical problems, the utility model adopts the following technical scheme: a cutting equipment for fabric processing, comprising a support plate, a support is fixedly arranged on the upper surface of the support plate, and a cutting assembly is arranged below the support, a toothed plate is fixedly arranged symmetrically on the upper surface of the support, a servo motor is slidably arranged on the upper surface of the support, a rotating shaft is fixedly arranged at the output end of the servo motor, a gear is fixedly arranged symmetrically on the outer surface of the rotating shaft, and the gear is meshingly connected with the corresponding toothed plate, a connecting rod is movably arranged on the outer surface of the rotating shaft, a through groove for matching the connecting rod is formed in the upper surface of the support, a carrier plate is fixedly arranged at the lower end of the connecting rod, and the cutting assembly is arranged below the carrier plate.

[0008] Preferably, an L-shaped plate is fixedly arranged on the lower surface of the carrier plate, a lead screw is rotatably arranged between the L-shaped plate and the carrier plate, a DC motor is fixedly arranged on the upper surface of the carrier plate, the output end of the DC motor penetrates the carrier plate and is fixedly connected with the lead screw, a lifting plate is threadedly sleeved on the outer surface of the lead screw, and the upper surface of the lifting plate is fixedly connected with the cutting assembly.

[0009] Compared with the prior art, the utility model has the beneficial effects that:

[0010] 1、 The utility model discloses a cooperation of servo motor and gear plate, pivot, connecting rod etc., can accurate control the horizontal position of cutting assembly, the combination of direct current motor and screw rod, limit post can accurately adjust the vertical position of cutting assembly, thereby realizes accurate positioning cutting of fabric, improves cutting precision and quality. BRIEF DESCRIPTION OF DRAWINGS

[0011] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, the following will be to the embodiment or prior art description needed to use the drawing briefly introduce, obviously, the following description in the drawing only some embodiments of the utility model, for ordinary skilled person in the art comes, under the premise of not paying creative labor, can also obtain other drawings according to these drawings.

[0012] Figure 1 It is the whole structure schematic diagram of the utility model.

[0013] Figure 2 It is the support and the backplate and the side glass plate structure explosion drawing of the utility model.

[0014] Figure 3 It is the support section and partial structure explosion drawing of the utility model.

[0015] Figure 4 It is the structure schematic diagram on the carrier plate of the utility model.

[0016] In the drawing: 1, support plate;2, support;21, servo motor;22, pivot;23, gear;24, gear plate;25, connecting rod;26, through slot;28, sliding block;29, sliding slot;210, limit plate;3, carrier plate;31, L-shaped plate;32, screw rod;33, direct current motor;34, lifting plate;35, cutting assembly;36, limit post;37, reinforcing block;4, electric push rod;41, pressing plate;5, backplate;51, side glass plate. DETAILED DESCRIPTION

[0017] The technical scheme in the embodiment of the utility model will be clearly and completely described in the following by combining the drawings in the embodiment of the utility model, obviously, the described embodiment only is a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by ordinary skilled person in the art without making creative labor belong to the scope of protection of the utility model.

[0018] Embodiment: as Figures 1-3The utility model provides a cutting equipment for fabric processing, including support plate 1, support plate 1 is as the basic support structure of whole equipment, provides stable platform for the installation of subsequent components, the upper surface of support plate 1 is fixedly arranged with support 2, and the lower of support 2 is equipped with cutting assembly 35, cutting assembly 35 is the existing mature technology, therefore does not make too much repetition, the upper surface of support 2 is fixedly arranged with symmetrical tooth plate 24, the upper surface of support 2 is slidably equipped with servo motor 21, the upper surface of support 2 is equipped with the sliding slot 29 of opening, the lower surface of servo motor 21 is fixedly arranged with sliding block 28, and sliding block 28 is clamped in sliding slot 29, by the cooperation of sliding block 28 and sliding slot 29, make servo motor 21 can stably slide along specific trajectory in the operation process, the output of servo motor 21 is fixedly arranged with the shaft 22, the outer surface of the shaft 22 is fixedly sleeved with symmetrical gear 23, and gear 23 is engaged with corresponding tooth plate 24, the outer surface of the shaft 22 is movably sleeved with connecting rod 25, the upper surface of support 2 is equipped with the through type's through groove 26 of the cooperation connecting rod 25, the outer surface of connecting rod 25 is fixedly sleeved with limit plate 210, and the upper surface of limit plate 210 is movably contacted with support 2, limit plate 210 can prevent the excessive displacement or shaking of connecting rod 25 in the process of moving up and down, guarantee its movement stability and accuracy, the lower end of connecting rod 25 is fixedly arranged with carrier plate 3, cutting assembly 35 is located below carrier plate 3, places the fabric on the support plate, adjusts the position and cuts through cutting assembly 35, when servo motor 21 works, its output end drives the rotation of the shaft 22, because the gear 23 on the shaft 22 is engaged with the tooth plate 24 on the support 2, and servo motor 21 is slidably connected with the sliding slot 29 of support 2, so that the shaft 22 can move horizontally along the tooth plate 24 during rotation, the movement of the shaft 22 drives the movement of the connecting rod 25 connected thereto, and then the carrier plate 3 moves horizontally, thereby adjusting the horizontal position of the cutting assembly 35.

[0019] The lower surface of support 2 is fixedly arranged with three electric push rods 4 distributed at equal intervals, and the output end of the electric push rod 4 is fixedly arranged with a pressing plate 41. The electric push rod 4 drives the pressing plate 41 to press the fabric tightly during cutting, preventing the fabric from shifting during cutting and ensuring the smoothness of cutting and the accuracy of cutting size.

[0020] The lower surface of support 2 is fixedly arranged with a side glass plate 51, and the lower surface of support 2 is fixedly arranged with a guard plate 5 on one side. The side glass plate 51 and the guard plate 5 on the lower surface of support 2 can protect the operator from being injured by splashing during cutting, and facilitate the operator to observe the cutting process and the processing of the fabric, so as to adjust the processing parameters in time or find problems.

[0021] The lower surface of the carrier plate 3 is fixedly provided with an L-shaped plate 31, and a lead screw 32 is rotatably arranged between the L-shaped plate 31 and the carrier plate 3. The lead screw 32 serves as a transmission component in the vertical direction and can convert the rotary motion of a direct current motor 33 into the linear motion of a lifting plate 34. The upper surface of the carrier plate 3 is fixedly provided with the direct current motor 33, and the output end of the direct current motor 33 penetrates through the carrier plate 3 and is fixedly connected with the lead screw 32. The outer surface of the lead screw 32 is threadedly sleeved with the lifting plate 34, and the upper surface of the lifting plate 34 is fixedly connected with a cutting assembly 35. Two limiting columns 36 are symmetrically fixed between the L-shaped plate 31 and the carrier plate 3, and the limiting columns 36 penetrate through the lifting plate 34. When the direct current motor 33 works, the lead screw 32 is driven to rotate. Since the lead screw 32 is threadedly connected with the lifting plate 34 and the limiting columns 36 serve as the limiting guide for the lifting plate 34, when the lead screw 32 rotates, the lifting plate 34 will move up and down along the direction of the limiting columns 36, thereby driving the cutting assembly 35 to move up and down, so as to realize the position adjustment of the cutting assembly 35 in the vertical direction.

[0022] The upper surface of the lifting plate 34 is fixedly provided with a reinforcing block 37, and the reinforcing block 37 is threadedly sleeved on the lead screw 32. The reinforcing block 37 prolongs the part of the lifting plate 34 that is threadedly connected with the lead screw 32, thereby improving the stability of the lifting plate 34 during lifting.

[0023] Working principle: the fabric is placed on the supporting plate, and after the position is adjusted, the cutting is performed by the cutting assembly 35. When the servo motor 21 works, the output end thereof drives the rotating shaft 22 to rotate. Since the gear 23 on the rotating shaft 22 is engaged with the toothed plate 24 on the support 2, and the servo motor 21 is slidably connected with the support 2 through the sliding block 28 and the sliding groove 29 of the support 2, the servo motor 21 can move horizontally along the direction of the toothed plate 24 during the rotation of the rotating shaft 22. The movement of the rotating shaft 22 drives the connecting rod 25 connected therewith to move, thereby driving the carrier plate 3 to move horizontally, so as to adjust the horizontal position of the cutting assembly 35.

[0024] The electric push rod 4 drives the pressing plate 41 to press the fabric during cutting, so as to prevent the fabric from moving during cutting, and to ensure the smooth cutting and the accuracy of the cutting size.

[0025] The side glass plate 51 on the lower surface of the support 2 and the guard plate 5 can protect the operator from being injured by splashing during cutting, and the side glass plate 51 is convenient for the operator to observe the cutting process and the processing of the fabric, so as to timely adjust the processing parameters or find problems.

[0026] When the direct current motor 33 works, the lead screw 32 is driven to rotate. Since the lead screw 32 is threadedly connected with the lifting plate 34, and the limiting columns 36 serve as the limiting guide for the lifting plate 34, when the lead screw 32 rotates, the lifting plate 34 will move up and down along the direction of the limiting columns 36, thereby driving the cutting assembly 35 to move up and down, so as to realize the position adjustment of the cutting assembly 35 in the vertical direction.

[0027] The reinforcing block 37 prolongs the part of the lifting plate 34 threaded with the screw rod 32, and improves the stability of the lifting plate 34 lifting.

[0028] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalent technologies, the present application also intends to include these modifications and variations.

Claims

1. A cutting apparatus for fabric processing comprising a support plate (1), characterized in that: The upper surface of the support plate (1) is fixedly provided with a support (2), and the lower surface of the support (2) is provided with a cutting assembly (35). The upper surface of the support (2) is fixedly provided with a toothed plate (24) in a symmetrical manner. The upper surface of the support (2) is slidably provided with a servo motor (21). The output end of the servo motor (21) is fixedly provided with a rotating shaft (22). The outer surface of the rotating shaft (22) is fixedly provided with a gear (23) in a symmetrical manner. The gear (23) is in meshing connection with the corresponding toothed plate (24). The outer surface of the rotating shaft (22) is movably sleeved with a connecting rod (25). The upper surface of the support (2) is provided with a through groove (26) for matching the connecting rod (25). The lower end of the connecting rod (25) is fixedly provided with a carrier plate (3). The cutting assembly (35) is located below the carrier plate (3).

2. A cutting apparatus for fabric processing as defined in claim 1, characterized by: The lower surface of the carrier plate (3) is fixedly provided with an L-shaped plate (31). The L-shaped plate (31) and the carrier plate (3) are rotatably provided with a lead screw (32). The upper surface of the carrier plate (3) is fixedly provided with a DC motor (33). The output end of the DC motor (33) penetrates the carrier plate (3) and is fixedly connected with the lead screw (32). The outer surface of the lead screw (32) is threadedly sleeved with a lifting plate (34). The upper surface of the lifting plate (34) is fixedly connected with the cutting assembly (35).

3. A cutting apparatus for fabric processing as defined in claim 1, wherein: The lower surface of the support (2) is fixedly provided with three electric push rods (4) distributed at equal intervals. The output end of the electric push rod (4) is fixedly provided with a pressing plate (41).

4. A cutting apparatus for fabric processing as defined in claim 1, wherein: The lower surface of the support (2) is fixedly provided with a side glass plate (51) in a symmetrical manner. One side of the lower surface of the support (2) is fixedly provided with a guard plate (5).

5. A cutting apparatus for fabric processing as defined in claim 1, wherein: The upper surface of the support (2) is provided with a sliding groove (29). The lower surface of the servo motor (21) is fixedly provided with a sliding block (28). The sliding block (28) is clamped in the sliding groove (29).

6. A cutting apparatus for fabric processing as defined in claim 1, wherein: The outer surface of the connecting rod (25) is fixedly sleeved with a limiting plate (210). The upper surface of the limiting plate (210) is movably contacted with the support (2).

7. A cutting apparatus for fabric processing as defined in claim 2, wherein: The L-shaped plate (31) and the carrier plate (3) are fixedly provided with two limiting columns (36) in a symmetrical manner. The limiting columns (36) penetrate the lifting plate (34).

8. A cutting apparatus for fabric processing as defined in claim 2, wherein: The upper surface of the lifting plate (34) is fixedly provided with a reinforcing block (37). The reinforcing block (37) is threadedly sleeved on the lead screw (32).