Sleeve sewing machine facilitating quick die change

By introducing a slider, elastic return structure, and positioning structure into the sleeve-mounting machine, the problem of inconvenient mold material replacement was solved, enabling fast, accurate, and stable mold material replacement of the support plate, thus improving the efficiency and quality of garment processing.

CN223951357UActive Publication Date: 2026-02-27DALIAN DAYANG GARMENT CUSTOMIZATION TECH CO LTD
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Patent Information

Application Number
CN202520304476.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2026-02-27
Estimated Expiration
2035-02-25

AI Technical Summary

Technical Problem

In the current process of changing the mold material for the sleeve-upper machine, the small distance between the support plate and the sleeve-upper machine makes the mold material change inconvenient, cumbersome, and prone to damage or inaccurate installation, which affects the sewing effect and garment quality.

Method used

The design incorporates a slider and elastic return structure, combined with a positioning structure. The support plate can be moved quickly and positioned stably through the slide groove and positioning screw. The attraction of the magnetic blocks and magnetic sheets enables the support plate to return automatically and be temporarily fixed, simplifying the operation process.

Benefits of technology

It improves the efficiency and convenience of mold material replacement, reduces the difficulty of operation and labor intensity, ensures the accuracy and stability of mold material installation, and improves the efficiency and quality of garment processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of garment processing equipment, in particular to a sleeve sewing machine convenient for quickly changing a mold, and solves the problem that a mold material is inconvenient to change due to the fact that the distance between a bearing plate and the sleeve sewing machine is small in the prior art. A sleeve attaching machine facilitating quick die changing comprises a machining table, a bearing plate and a sleeve attaching machine body. The bearing plate is arranged at the bottom of the sleeve sewing machine and connected with the machining table through a supporting frame, a fixing plate is arranged at the top of the supporting frame, a sliding block is connected to the fixing plate in a sliding mode, and the top of the sliding block is connected with the bottom of the bearing plate and provided with an elastic return structure and a positioning structure in a matched mode. Through the sliding design of the bearing plate, the operation space is greatly expanded, an operator does not need to carry out tedious and fine operation in a narrow space, and therefore the operation difficulty and the labor intensity are greatly reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to clothing processing technical field especially, relate to a sleeve machine of convenient quick change mould. BACKGROUND

[0002] As the key equipment in the clothing processing industry, the sleeve machine plays an irreplaceable role especially in the sleeve sewing link. It can ensure the perfect combination of sleeves and body and improve the overall quality and wearing comfort of clothes through precise mechanical structure and efficient sewing technology. In the working process of the sleeve machine, the replacement of the mold material is an indispensable link because different clothing styles and sizes require different mold materials to complete the sewing task.

[0003] However, the replacement of the mold material has become a problem to be solved in the use of the existing sleeve machine. When the sleeve machine is in use, the mold material needs to be placed on the supporting plate, and then the sleeve machine is used for sewing. However, the small distance between the supporting plate and the sleeve machine greatly reduces the convenience of mold material replacement in actual operation.

[0004] Specifically, the narrow distance forces the operator to perform tedious and delicate operations when replacing the mold material, which not only requires a lot of time and effort, but also easily causes damage to the mold material or inaccurate installation position due to improper operation, thereby affecting the subsequent sewing effect and clothing quality.

[0005] Therefore, in view of the obvious limitations and technical problems of the existing sleeve machine in the replacement of the mold material, we urgently need a sleeve machine that is convenient for quick mold replacement to solve this problem. Such a sleeve machine should significantly improve the efficiency and convenience of mold replacement, reduce the operation difficulty and labor intensity, and ensure the accuracy and stability of the mold installation, providing strong support for the continuous development and efficiency improvement of the clothing processing industry. UTILITY MODEL CONTENT

[0006] The utility model aims at providing a sleeve machine that is convenient for quick mold replacement, solving the problem that the distance between the supporting plate and the sleeve machine is small in the prior art, which greatly reduces the convenience of mold replacement in actual operation.

[0007] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0008] A sleeve machine that is convenient for quick mold replacement, comprising a processing table, a supporting plate and a sleeve machine.

[0009] The supporting plate is arranged at the bottom of the upper sleeve machine, the bottom of the supporting plate is provided with a supporting frame connected with the top of the processing table, the top of the supporting frame is connected with a fixed plate, the top of the fixed plate is connected with a sliding block in a sliding mode, the top of the sliding block is connected with the bottom of the supporting plate, and one side is provided with an elastic return structure and a positioning structure.

[0010] Preferably, the top of the fixed plate is provided with a sliding groove, the sliding block is arranged in the sliding groove in a sliding mode, one side of the bottom of the fixed plate is provided with a positioning screw rod penetrating through the fixed plate, and one side of the bottom of the supporting plate is provided with a screw hole matched with the positioning screw rod.

[0011] Preferably, the elastic return structure comprises a guide rod and two elastic members, one end of the guide rod is connected with the inner wall of the sliding groove through a sliding sleeve penetrating through the sliding block, the two elastic members are symmetrically arranged on the two sides of the guide rod, one end of the elastic member is connected with the side wall of the sliding block, and the other end is connected with the inner wall of the sliding groove.

[0012] Preferably, the positioning structure comprises a magnet block, the magnet block is fixedly connected to the end of the guide rod away from the positioning screw rod, and one side of the sliding block is connected with a magnet piece.

[0013] Preferably, the elastic member is a return spring, one end of the return spring is elastically connected with the side wall of the sliding block, and the other end is elastically connected with the inner wall of the sliding groove.

[0014] Preferably, one side of the sliding block is provided with a handle, the handle is arranged in an inclined mode, and one end is connected with the bottom of the supporting plate.

[0015] The utility model at least has the following beneficial effects:

[0016] The utility model improves the efficiency and convenience of the die material replacement. The sliding design of the supporting plate greatly expands the operation space, and the operator does not need to perform complicated and delicate operation in a narrow space, so that the operation difficulty and labor intensity are greatly reduced. Meanwhile, the introduction of the elastic return structure enables the supporting plate to automatically return after the die material replacement is completed, further simplifies the operation process, and improves the working efficiency. DRAWINGS

[0017] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings in the following description are some embodiments of the utility model, and for the ordinary skilled in the art, other drawings can also be obtained according to these drawings without creating labor.

[0018] Figure 1 It is a structural schematic diagram of the utility model;

[0019] Figure 2The utility model support frame and fixed plate structure schematic drawing is shown in the figure.

[0020] Figure 3 The utility model handle and screw hole structure schematic drawing is shown in the figure.

[0021] Figure 4 The utility model chute and slider structure schematic drawing is shown in the figure.

[0022] Figure 5 The utility model guide rod and magnet block structure schematic drawing is shown in the figure.

[0023] In the figure: 1, processing table, 2, supporting plate, 3, upper sleeve machine, 4, support frame, 5, fixed plate, 6, handle, 7, screw hole, 8, chute, 9, slider, 10, positioning screw, 11, magnet block, 12, guide rod, 13, return spring, 14, magnet sheet. DETAILED DESCRIPTION

[0024] In order to make the utility model's purpose, technical scheme and advantage more clearly, the following is in conjunction with the figure and example, and this utility model is further detailedly explained.It should be understood that the specific example described here is only used to explain the utility model, and is not used to limit the utility model.

[0025] Example one

[0026] Please refer to Figure 1 A kind of upper sleeve machine of the embodiment of the utility model for facilitating quick die change, as shown in the figure 1-5, including processing table 1, supporting plate 2 and upper sleeve machine 3;

[0027] Processing table 1: as the basis support platform of upper sleeve machine, processing table 1 provides stable working environment, ensures that upper sleeve machine 3 and its accessory components can be stably installed and run.Processing table 1: the cornerstone of entire upper sleeve machine system, carries the entire weight and vibration of upper sleeve operation.

[0028] Supporting plate 2: supporting plate 2 is an important component below upper sleeve machine 3, and supporting plate 2 directly supports and fixes the sleeve piece or other mold materials of clothes to be processed.Through the movement of supporting plate 2, the quick replacement of mold material can be conveniently realized, and simultaneously, its stable support also guarantees the precision and stability of the upper sleeve process.

[0029] Upper sleeve machine 3: upper sleeve machine 3 is responsible for performing specific upper sleeve operation.According to the preset program and parameter, the sleeve piece on supporting plate 2 is accurately sewn to the clothes body, and the upper sleeve operation is completed.

[0030] Support frame 4: support frame 4 is connected between the bottom of supporting plate 2 and processing table 1, and plays a key supporting and connecting role.

[0031] The fixed plate 5 is installed on the top of the support frame 4, providing a sliding track and base for the sliding block 9. The fixed plate 5 and the support frame 4 together constitute a guide system for the movement of the support plate 2, ensuring the stability and accuracy of the support plate 2 during movement.

[0032] The sliding block 9 is slidably connected to the top of the fixed plate 5 and is connected to the bottom of the support plate 2. The sliding block 9 is a direct driving component for the movement of the support plate 2, and through sliding along the fixed plate 5, it realizes the rapid and convenient movement of the support plate 2 and the mold material on it.

[0033] The elastic return structure is provided on one side of the sliding block 9, which utilizes the energy storage characteristics of the elastic element to automatically bring the support plate 2 back to the original position after it is pulled. This design simplifies the return operation, improves the mold changing efficiency, and ensures the accuracy and stability of the support plate 2 return.

[0034] The positioning structure is used to stably fix the support plate 2 after it moves to the predetermined position. It may include a magnet block, a magnet piece or other mechanical locking mechanisms, which can realize the temporary positioning of the support plate 2 through simple operation, ensuring the stability and safety during mold changing.

[0035] The support plate 2 is provided at the bottom of the upper sleeve machine 3, and the bottom of the support plate 2 is provided with a support frame 4 connected to the top of the processing table 1. The top of the support frame 4 is connected to a fixed plate 5, and the top of the fixed plate 5 is slidably connected to a sliding block 9. The top of the sliding block 9 is connected to the bottom of the support plate 2, and one side is provided with an elastic return structure and a positioning structure.

[0036] One side of the sliding block 9 is provided with a handle 6, which is inclined and connected to the bottom of the support plate 2. Specifically, through the setting of the handle 6, the operator can more easily and conveniently pull the support plate 2 to move. The inclined design of the handle 6 not only conforms to the principle of ergonomics, but also enables the operator to hold and exert force more comfortably. In addition, through the connection with the bottom of the support plate 2, the controllability of the support plate 2 during movement is enhanced. The effect of improving the convenience and comfort of mold changing operation is achieved.

[0037] Example two

[0038] Please refer to Figure 1As shown in Fig. 5, the sleeve machine facilitating quick mold changing of the embodiment has a sliding groove 8 opened at the top of the fixed plate 5, a sliding block 9 slidingly arranged inside the sliding groove 8, a positioning screw 10 arranged at one side of the bottom of the fixed plate 5 and penetrating through the fixed plate 5, and a screw hole 7 opened at one side of the bottom of the supporting plate 2 and matched with the positioning screw 10. Specifically, the operator can easily pull the supporting plate 2 along the track of the sliding groove 8 from one side of the fixed plate 5 to the other side through the cooperation of the sliding groove 8 and the sliding block 9. This working procedure not only makes the movement of the supporting plate 2 more stable and smooth, but also ensures the accuracy of the supporting plate 2 during the movement through the guiding effect of the sliding groove 8. The convenience and precision of the mold changing operation are improved. Through the cooperation of the positioning screw 10 and the screw hole 7, the operator can tightly match the positioning screw 10 with the screw hole 7 by screwing the positioning screw 10 after the supporting plate 2 moves to the processing position, so as to stably fix the supporting plate 2. This working procedure effectively prevents the supporting plate 2 from shaking or deviating during the sleeve processing, so as to achieve the effect of the stability of the supporting plate position during the processing.

[0039] Embodiment three

[0040] Please refer to Figure 1 As shown in Fig. 5, the sleeve machine facilitating quick mold changing of the embodiment has a sliding groove 8 opened at the top of the fixed plate 5, a sliding block 9 slidingly arranged inside the sliding groove 8, a positioning screw 10 arranged at one side of the bottom of the fixed plate 5 and penetrating through the fixed plate 5, and a screw hole 7 opened at one side of the bottom of the supporting plate 2 and matched with the positioning screw 10. Specifically, the operator can easily pull the supporting plate 2 along the track of the sliding groove 8 from one side of the fixed plate 5 to the other side through the cooperation of the sliding groove 8 and the sliding block 9. This working procedure not only makes the movement of the supporting plate 2 more stable and smooth, but also ensures the accuracy of the supporting plate 2 during the movement through the guiding effect of the sliding groove 8. The convenience and precision of the mold changing operation are improved. Through the cooperation of the positioning screw 10 and the screw hole 7, the operator can tightly match the positioning screw 10 with the screw hole 7 by screwing the positioning screw 10 after the supporting plate 2 moves to the processing position, so as to stably fix the supporting plate 2. This working procedure effectively prevents the supporting plate 2 from shaking or deviating during the sleeve processing, so as to achieve the effect of the stability of the supporting plate position during the processing.

[0041] The elastic member is a return spring 13, one end of which is elastically connected with the side wall of the sliding block 9, and the other end of which is elastically connected with the inner wall of the sliding groove 8. Specifically, the temporary positioning of the supporting plate 2 is realized through the cooperation of the magnet block 11 and the magnet piece 14 after the supporting plate 2 moves to the predetermined position. This working procedure not only makes the positioning operation of the supporting plate 2 more simple and fast, but also enhances the stability of the supporting plate 2 during the mold changing through the magnetic attraction force, so as to achieve the effects of simplifying the positioning operation of the supporting plate and improving the positioning stability.

[0042] Specifically, the positioning structure comprises a magnet block 11 fixedly connected to the end of the guide rod 12 away from the positioning screw 10, and a magnet piece 14 connected to one side of the sliding block 9. Specifically, the magnet piece 14 is arranged in cooperation with the guide rod 12 and the two reset springs 13. When the support plate 2 is pulled, the reset springs 13 are compressed and accumulate elastic potential energy. When the mold changing is completed and the positioning is released, the elastic potential energy of the reset springs 13 is released, and the support plate 2 is automatically brought back to the original position through the conduction of the guide rod 12. This working process not only simplifies the return operation of the support plate 2, but also ensures the accuracy and stability of the return of the support plate 2 through the elastic action of the reset springs 13. The effect of realizing automatic return of the support plate and improving the return accuracy is achieved.

[0043] The present scheme has the following working process:

[0044] In the sleeve machine facilitating rapid mold changing, various components work cooperatively to realize efficient and stable mold material replacement. The specific working process is as follows:

[0045] When mold material replacement is needed, the operator first holds the handle 6, which is obliquely arranged and connected to the bottom of the support plate 2, to easily pull the support plate 2 in an ergonomic manner. By applying force through the handle 6, the support plate 2 is smoothly pulled from one side of the fixed plate 5 to the other side along the sliding groove 8 formed on the top of the fixed plate 5 through the sliding action of the sliding block 9. In this process, the reset springs 13 in the elastic return structure are gradually compressed and accumulate elastic potential energy. At the same time, the movement of the support plate 2 also changes the relative position between the support plate 2 and the sleeve machine 3, providing a spacious operating space for mold material replacement.

[0046] When the support plate 2 moves to the predetermined position, the magnet block 11 in the positioning structure and the magnet piece 14 connected to one side of the sliding block 9 are attracted to each other and tightly fit, realizing temporary positioning of the support plate 2. This design not only simplifies the positioning operation, but also enhances the stability of the support plate 2 during mold changing through the attraction of the magnet, ensuring the smooth operation of the mold changing.

[0047] In the spacious operating space, the operator can easily remove the old mold material and install the new mold material. After the mold changing is completed, the operator only needs to release the support plate 2 and push the support plate 2 to release the positioning action between the magnet block 11 and the magnet piece 14. At this time, the reset springs 13 in the elastic return structure begin to release the elastic potential energy accumulated earlier, and the support plate 2 is automatically brought back to the original position through the conduction of the guide rod 12. One end of the guide rod 12 is connected to the inner wall of the sliding groove 8 through the sliding sleeve penetrating the sliding block 9, ensuring the accuracy and stability of the return of the support plate 2.

[0048] Meanwhile, after the supporting plate 2 moves to the processing position, the operator can rotate and tighten the positioning screw 10 to make it tightly cooperate with the screw hole 7 arranged on the bottom of the supporting plate 2, so that the stable fixing of the supporting plate 2 during the processing of the upper sleeve is realized. This design effectively prevents the supporting plate 2 from shaking or deviating during the processing of the upper sleeve, and ensures the processing quality and efficiency.

[0049] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection required by the present application is defined by the appended claims and their equivalents.

Claims

1. A sleeve attaching machine facilitating quick die change, characterized in that, Including: Processing platform (1), support plate (2) and upper sleeve machine (3); The support plate (2) is arranged at the bottom of the upper sleeve machine (3), the bottom of the support plate (2) is provided with a support frame (4) connected with the top of the processing platform (1), the top of the support frame (4) is connected with a fixed plate (5), the top of the fixed plate (5) is connected with a sliding block (9), the top of the sliding block (9) is connected with the bottom of the support plate (2), and one side is provided with elastic return structure and positioning structure.

2. The sleeve attaching machine of claim 1, wherein The top of the fixed plate (5) is provided with a sliding groove (8), the sliding block (9) is slidably arranged in the sliding groove (8), and the bottom of the fixed plate (5) is provided with a positioning screw (10) penetrating through the fixed plate (5) on one side, and the bottom of the support plate (2) is provided with a screw hole (7) matched with the positioning screw (10) on one side.

3. The set-in sleeve machine of claim 2, wherein The elastic return structure comprises a guide rod (12) and two elastic members, one end of the guide rod (12) is connected with the inner wall of the sliding groove (8) through the sliding sleeve penetrating the sliding block (9), the two elastic members are symmetrically arranged on the two sides of the guide rod (12), one end of the elastic member is connected with the side wall of the sliding block (9), and the other end is connected with the inner wall of the sliding groove (8).

4. The set-in sleeve machine of claim 3, wherein The positioning structure comprises a magnet block (11), the magnet block (11) is fixedly connected to the end of the guide rod (12) away from the positioning screw (10), and one side of the sliding block (9) is connected with a magnet piece (14).

5. The set-in sleeve machine of claim 3, wherein The elastic member is a return spring (13), one end of the return spring (13) is elastically connected with the side wall of the sliding block (9), and the other end is elastically connected with the inner wall of the sliding groove (8).

6. The set-in sleeve machine of claim 1, wherein One side of the sliding block (9) is provided with a handle (6), the handle (6) is inclinedly arranged, and one end is connected with the bottom of the support plate (2).