An electric embroidery shoe upper weaving device

CN118727259BActive Publication Date: 2026-08-14SINCETECH FUJIAN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-30
Publication Date
2026-08-14

AI Technical Summary

Benefits of technology

[0015]本申请将珠边机编织头应用至绣花机的机身上,并设置调节框架组件,优化结构之间的配合关系,同时增强整体编织设备的加工生产效率。通过本编织设备将线绳编织的鞋面,无论在鞋面正面、背面看线绳间隔处没有细连线或点状连接,通过编织设备高效编织鞋面,编织效果好。

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Abstract

This application relates to the field of textile technology, and in particular to an electroembroidery shoe upper weaving device. It includes a bead edge weaving head, an adjusting frame assembly, and a weaving assembly body. The bead edge weaving head adjusts its weaving position via the adjusting frame assembly. The adjusting frame assembly includes a mounting frame, a first adjusting component, and a second adjusting component. The first adjusting component is mounted on the mounting frame, the second adjusting component is mounted on the first adjusting component, and the bead edge weaving head is mounted on the second adjusting component. Several bead edge weaving heads and adjusting frame assemblies are arranged on the weaving assembly body. This application applies the bead edge weaving head to the body of an embroidery machine and incorporates adjusting frame assemblies, optimizing the interrelationships between structures and enhancing the overall processing efficiency of the weaving equipment. Shoe uppers woven using this weaving equipment exhibit no fine connecting lines or dotted connections at the intervals of the threads, regardless of whether viewed from the front or back of the shoe upper. The weaving equipment achieves efficient shoe upper weaving with excellent results.
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Description

Technical Field

[0001] This application relates to the field of textile technology, and in particular to an electro-embroidered shoe upper weaving device. Background Technology

[0002] The types of raw materials that can be used with braiding machines include: nylon multifilament (yarn), polypropylene filament (yarn), polypropylene, polyester, nylon, PP, low elasticity, high elasticity, cotton yarn, pearl yarn, leather, and blends.

[0003] The high-speed roving knitting machine features a complete N-color automatic switching device, and a computer-controlled motor drives the automatic switching between various yarn feeders, making multi-color pattern knitting simple and easy. Its high-performance knitting action easily completes high-quality pattern knitting that can only be achieved on large computerized knitting machines, representing the miniaturization of high-end computerized knitting.

[0004] When existing weaving equipment is used to weave shoe uppers, the yarn is often interspersed on the front of the fabric, with sections of yarn appearing as gaps and then sections of yarn again. The gaps on the front of the fabric are often visible on the back, with fine connecting lines or dots at the gaps between the yarn sections. Based on this, this application proposes an electro-embroidery shoe upper weaving device. Summary of the Invention

[0005] Other features and advantages of this application will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the application. The objectives and other advantages of this application may be realized and obtained by means of the structures particularly pointed out in the description and other accompanying drawings.

[0006] The purpose of this application is to overcome the above-mentioned shortcomings and provide an electric embroidery shoe upper weaving device.

[0007] To achieve the above objectives, the technical solution of this application is: an electro-embroidered shoe upper weaving device, including a bead edge weaving head, an adjusting frame assembly, and a weaving assembly body. The bead edge weaving head adjusts the weaving position through the adjusting frame assembly. The adjusting frame assembly includes a mounting frame, a first adjusting component, and a second adjusting component. The first adjusting component is mounted on the mounting frame, the second adjusting component is mounted on the first adjusting component, and the bead edge weaving head is mounted on the second adjusting component. A plurality of bead edge weaving heads and adjusting frame assemblies are arranged on the weaving assembly body.

[0008] In some embodiments, the adjustment frame assembly further includes a third adjustment assembly, which includes a cylinder and a rod, with the rod nested on the cylinder and connected to the side of the mounting bracket.

[0009] In some embodiments, the first adjustment assembly includes a first motor, a first synchronous pulley, a second synchronous pulley, a pulley frame, a first belt, and a synchronizing element. The first synchronous pulley is mounted on the first motor, and the first synchronous pulley is connected to the second synchronous pulley via the first belt. The second synchronous pulley is rotatably mounted on the pulley frame, and a synchronizing element is locked onto the first belt. The synchronizing element is locked onto the second adjustment assembly.

[0010] In some embodiments, the second adjustment assembly includes a second motor, a drive wheel, a driven wheel, a lead screw, a threaded seat, a support frame, a displacement frame, and a guide rail seat. The guide rail seat is mounted on the top of the mounting frame, the displacement frame is slidably mounted on the guide rail seat, the second motor is locked to the side of the displacement frame, a drive wheel is mounted on the second motor, the driven wheel is rotatably mounted on the displacement frame, the drive wheel is connected to the driven wheel via a belt, the driven wheel is nested at the end of the lead screw, the lead screw is threadedly connected to the threaded seat, a support frame is locked to the threaded seat, and a bead edge weaving head is locked to the support frame.

[0011] In some embodiments, the bead edge knitting head includes a needle bar mechanism, a lower thread feeding mechanism, a thread tensioning mechanism, a lower thread take-up hook, a thread stabilizing mechanism, a feeding mechanism, and a lower thread hooking reel mechanism. The needle bar mechanism includes a needle sealing mechanism and an upper thread hooking mechanism. The lower thread feeding mechanism includes a lower thread feeding finger and a lower thread feeding hook. The thread tensioning mechanism includes a thread clamp and a thread tensioning hook.

[0012] In some embodiments, the knitting assembly includes a mechanical system, a transmission system, and an electrical control system. The electrical control system is electrically connected to the adjustment frame assembly, and the mechanical system and transmission system work together with the bead edge knitting head to knit the embroidered shoe upper.

[0013] In some embodiments, the mechanical system includes a frame component, a housing component, a fabric embroidery mechanism, a thread take-up mechanism, a color changing mechanism, an embroidery frame component, and a manual switch box.

[0014] By adopting the above technical solution, the beneficial effects of this application are:

[0015] This application applies the beaded edge weaving head to the body of an embroidery machine and sets up an adjusting frame assembly to optimize the fit between structures, while enhancing the overall processing and production efficiency of the weaving equipment. Shoe uppers woven with this equipment have no fine connecting lines or dotted connections at the intervals of the threads, whether viewed from the front or back. The weaving equipment efficiently weaves shoe uppers, resulting in excellent weaving effects.

[0016] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and are not intended to limit this disclosure.

[0017] Undoubtedly, such and other objectives of this application will become more apparent after the following detailed description of the preferred embodiments, which are illustrated in various accompanying drawings and figures.

[0018] To make the above and other objects, features and advantages of this application more apparent and understandable, one or more preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description

[0019] The accompanying drawings are provided to further understand this application and form part of the specification. They are used in conjunction with the embodiments of this application to explain this application and do not constitute a limitation thereof.

[0020] In the accompanying drawings, the same parts use the same reference numerals, and the drawings are schematic and not necessarily drawn to actual scale.

[0021] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only one or more embodiments of this application. For those skilled in the art, other drawings can be obtained based on such drawings without creative effort.

[0022] Figure 1 This is a schematic diagram of the structure of an electro-embroidered shoe upper weaving device according to some embodiments of this application;

[0023] Figure 2 This is a three-dimensional structural diagram of an electro-embroidery shoe upper weaving device according to some embodiments of this application;

[0024] Figure 3 This is a schematic diagram of the structure of the first adjustment component in an electro-embroidered shoe upper weaving device according to some embodiments of this application;

[0025] Figure 4 This is a schematic diagram of the structure of the second adjustment component in an electro-embroidered shoe upper weaving device according to some embodiments of this application.

[0026] Explanation of key figure labels:

[0027] 1. Bead edge knitting head; 3. Knitting assembly body; 4. Adjustment frame assembly;

[0028] 41. Mounting bracket; 42. First adjustment assembly; 43. Second adjustment assembly;

[0029] 421. First motor; 422. First synchronous pulley; 423. Second synchronous pulley; 424. Pulley frame; 425. First belt; 426. Synchronizing component;

[0030] 431. Second motor; 432. Drive wheel; 433. Driven wheel; 434. Lead screw; 435. Threaded seat; 436. Support frame; 437. Displacement frame; 438. Guide rail seat. Implementation

[0031] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with specific embodiments. It should be understood that the specific embodiments described herein are merely illustrative of this application and are not intended to limit the scope of this application.

[0032] Furthermore, it should be understood in the description of this application that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0033] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral unit; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. However, specifying a direct connection indicates that the two entities connected are not linked by a transitional structure, but are connected as a whole only through a connecting structure. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.

[0034] In this application, unless otherwise expressly specified and limited, the "above" or "below" of the second feature can mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. In the description of this specification, references to terms such as "an embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described can be combined in any suitable manner in one or more embodiments or examples.

[0035] Reference Figures 1-4 , Figure 1 This is a schematic diagram of the structure of an electro-embroidered shoe upper weaving device according to some embodiments of this application; Figure 2 This is a three-dimensional structural diagram of an electro-embroidery shoe upper weaving device according to some embodiments of this application; Figure 3This is a schematic diagram of the structure of the first adjustment component in an electro-embroidered shoe upper weaving device according to some embodiments of this application; Figure 4 This is a schematic diagram of the structure of the second adjustment component in an electro-embroidered shoe upper weaving device according to some embodiments of this application.

[0036] According to some embodiments of this application, this application provides an electro-embroidered shoe upper knitting device, including a beaded edge knitting head 1, an adjusting frame assembly 4, and a knitting assembly body 3. The beaded edge knitting head 1 adjusts its knitting position through the adjusting frame assembly 4. The adjusting frame assembly 4 includes a mounting frame 41, a first adjusting component 42, and a second adjusting component 43. The first adjusting component 42 is mounted on the mounting frame 41, the second adjusting component 43 is mounted on the first adjusting component 42, and the beaded edge knitting head 1 is mounted on the second adjusting component 43. A plurality of beaded edge knitting heads 1 and adjusting frame assemblies 4 are arranged on the knitting assembly body 3. This application installs a plurality of adjusting frame assemblies 4 on the body of the embroidery machine. The electrical control system of the embroidery machine controls the motors on the adjusting frame assemblies 4 to start and stop, thereby changing the knitting position of the beaded edge knitting heads 1 on the adjusting frame assemblies 4. The beaded edge machine's weaving head 1 is woven onto the shoe upper. The stitches of the cord closely resemble hand sewing. The cord is characterized by being divided into sections A, B, C, D, E, and F, with each section having the same length. Section A is woven onto the front of the shoe upper, section B onto the back, section C onto the front, and so on. No fine connecting lines or dotted lines appear when viewed from any side of the shoe upper. Weaving equipment is typically used for mass production of sewn fabrics, adding various patterns, designs, and text. Shoe uppers, however, involve a relatively small area of ​​fabric. Weaving equipment can be categorized by structure and principle as automatic or semi-automatic. An automatic embroidery machine is a machine that automatically completes the embroidery of various patterns, designs, text, lines, and graphics using mechanical or electric drive. Existing embroidery machines with weaving head structures often produce connecting lines when sewing shoe upper fabrics. While the existing beaded edge machine's weaving head structure can solve this problem, its structure does not allow for precise control of the beaded edge machine's weaving head 1. Based on this, we propose adjusting frame component 4 to optimize the cooperation between the two and enhance the overall processing and production efficiency of the weaving equipment.

[0037] According to some embodiments of this application, optionally, the adjusting frame assembly 4 further includes a third adjusting assembly. The third adjusting assembly includes a cylinder and a rod, with the rod nested on the cylinder and connected to the side of the mounting bracket 41. In this application, the third adjusting assembly is a structure for adjusting the height of the mounting bracket 41. That is, the cylinder in the third adjusting assembly pushes out the rod, changing the relative position of the mounting bracket 41, thereby changing the height of the bead edge knitting head 1 mounted on the second adjusting assembly 43 on the adjusting frame assembly 4.

[0038] According to some embodiments of this application, optionally, the first adjusting component 42 includes a first motor 421, a first synchronous pulley 422, a second synchronous pulley 423, a wheel frame 424, a first belt 425, and a synchronizing element 426. The first synchronous pulley 422 is mounted on the first motor 421. The first synchronous pulley 422 is connected to the second synchronous pulley 423 through the first belt 425. The second synchronous pulley 423 is rotatably mounted on the wheel frame 424. The synchronizing element 426 is locked onto the first belt 425 and locked onto the second adjusting component 43.

[0039] According to some embodiments of this application, optionally, the second adjustment component 43 includes a second motor 431, a drive wheel 432, a driven wheel 433, a lead screw 434, a threaded seat 435, a support frame 436, a displacement frame 437, and a guide rail seat 438. The guide rail seat 438 is mounted on the top of the mounting frame 41, and the displacement frame 437 is slidably mounted on the guide rail seat 438. The second motor 431 is locked to the side of the displacement frame 437. The drive wheel 432 is mounted on the second motor 431, and the driven wheel 433 is rotatably mounted on the displacement frame 437. The drive wheel 432 is connected to the driven wheel 433 via a belt. The driven wheel 433 is nested at the end of the lead screw 434. The lead screw 434 is threadedly connected to the threaded seat 435. The support frame 436 is locked to the threaded seat 435, and the bead edge braiding head 1 is locked to the support frame 436. In this application, the first adjustment component 42 is an adjustment component mounted on the mounting frame 41. A displacement frame 437 and a guide rail seat 438 are mounted on the top of the mounting frame 41. The guide rail seat 438 typically consists of four parts: a guide rail, fasteners, a base, and a base, which slides in conjunction with the displacement frame 437. The second adjustment component 43 is adjusted through the cooperation of the displacement frame 437 and the guide rail seat 438. The weight of the second adjustment component 43 and the bead edge knitting head 1 mounted on it acts on the mounting frame 41, and is supported by the stable structure formed by the mounting frame 41.

[0040] According to some embodiments of this application, optionally, the bead edge knitting head 1 includes a needle bar mechanism, a lower thread feeding mechanism, a thread tensioning mechanism, a lower thread take-up hook, a thread stabilizing mechanism, a feeding mechanism, and a lower thread hooking reel mechanism. The needle bar mechanism includes a needle sealing mechanism and an upper thread hooking mechanism. The lower thread feeding mechanism includes a lower thread feeding finger and a lower thread feeding hook. The thread tensioning mechanism includes a thread clamp and a thread tensioning hook.

[0041] According to some embodiments of this application, optionally, the knitting assembly body 3 includes a mechanical system, a transmission system, and an electrical control system. The electrical control system is electrically connected to the adjusting frame assembly 4, and the mechanical system and the transmission system cooperate with the bead edge knitting head 1 to knit the embroidered shoe upper.

[0042] According to some embodiments of this application, optionally, the mechanical system includes a frame component, a housing component, a fabric embroidery mechanism, a thread take-up mechanism, a color changing mechanism, an embroidery frame component, and a manual switch box. Example

[0043] This embodiment provides an electro-embroidered shoe upper weaving device, including a bead edge weaving head 1, an adjusting frame assembly 4, and a weaving combination machine body 3. The bead edge weaving head 1 adjusts the weaving position through the adjusting frame assembly 4. The adjusting frame assembly 4 includes a mounting frame 41, a first adjusting component 42, and a second adjusting component 43. The first adjusting component 42 is mounted on the mounting frame 41, the second adjusting component 43 is mounted on the first adjusting component 42, and the bead edge weaving head 1 is mounted on the second adjusting component 43. A plurality of bead edge weaving heads 1 and adjusting frame assemblies 4 are arranged on the weaving combination machine body 3.

[0044] The first adjustment assembly 42 includes a first motor 421, a first synchronous pulley 422, a second synchronous pulley 423, a wheel frame 424, a first belt 425, and a synchronizing element 426. The first synchronous pulley 422 is mounted on the first motor 421. The first synchronous pulley 422 is connected to the second synchronous pulley 423 through the first belt 425. The second synchronous pulley 423 is rotatably mounted on the wheel frame 424. The synchronizing element 426 is locked onto the first belt 425 and is locked onto the second adjustment assembly 43.

[0045] The second adjustment assembly 43 includes a second motor 431, a drive wheel 432, a driven wheel 433, a lead screw 434, a threaded seat 435, a support frame 436, a displacement frame 437, and a guide rail seat 438. The guide rail seat 438 is mounted on the top of the mounting frame 41. The displacement frame 437 is slidably mounted on the guide rail seat 438. The second motor 431 is locked to the side of the displacement frame 437. The drive wheel 432 is mounted on the second motor 431. The driven wheel 433 is rotatably mounted on the displacement frame 437. The drive wheel 432 is connected to the driven wheel 433 via a belt. The driven wheel 433 is nested at the end of the lead screw 434. The lead screw 434 is threadedly connected to the threaded seat 435. The support frame 436 is locked to the threaded seat 435. The bead edge weaving head 1 is locked to the support frame 436. Example

[0046] This embodiment provides an electro-embroidered shoe upper weaving device, including a bead edge weaving head 1, an adjusting frame assembly 4, and a weaving combination machine body 3. The bead edge weaving head 1 adjusts the weaving position through the adjusting frame assembly 4. The adjusting frame assembly 4 includes a mounting frame 41, a first adjusting component 42, and a second adjusting component 43. The first adjusting component 42 is mounted on the mounting frame 41, the second adjusting component 43 is mounted on the first adjusting component 42, and the bead edge weaving head 1 is mounted on the second adjusting component 43. A plurality of bead edge weaving heads 1 and adjusting frame assemblies 4 are arranged on the weaving combination machine body 3.

[0047] The adjustment frame assembly 4 also includes a third adjustment assembly, which includes a cylinder and a rod. The rod is nested on the cylinder and connected to the side of the mounting bracket 41.

[0048] The first adjustment assembly 42 includes a first motor 421, a first synchronous pulley 422, a second synchronous pulley 423, a wheel frame 424, a first belt 425, and a synchronizing element 426. The first synchronous pulley 422 is mounted on the first motor 421. The first synchronous pulley 422 is connected to the second synchronous pulley 423 through the first belt 425. The second synchronous pulley 423 is rotatably mounted on the wheel frame 424. The synchronizing element 426 is locked onto the first belt 425 and is locked onto the second adjustment assembly 43.

[0049] The second adjustment assembly 43 includes a second motor 431, a drive wheel 432, a driven wheel 433, a lead screw 434, a threaded seat 435, a support frame 436, a displacement frame 437, and a guide rail seat 438. The guide rail seat 438 is mounted on the top of the mounting frame 41. The displacement frame 437 is slidably mounted on the guide rail seat 438. The second motor 431 is locked to the side of the displacement frame 437. The drive wheel 432 is mounted on the second motor 431. The driven wheel 433 is rotatably mounted on the displacement frame 437. The drive wheel 432 is connected to the driven wheel 433 via a belt. The driven wheel 433 is nested at the end of the lead screw 434. The lead screw 434 is threadedly connected to the threaded seat 435. The support frame 436 is locked to the threaded seat 435. The bead edge weaving head 1 is locked to the support frame 436.

[0050] The difference between Example 2 and Example 1 is that the adjustment frame assembly 4 also includes a third adjustment assembly, which enables the height adjustment of the mounting frame 41 and the bead edge knitting head 1 structure on the mounting frame 41.

[0051] The embroidery shoe upper weaving equipment of this application is characterized by applying the weaving head of a bead edge machine to the body of an embroidery machine. Existing embroidery machines are mostly multi-head embroidery weaving devices with high processing efficiency. Therefore, this application combines the two, integrating several bead edge machine weaving heads with the embroidery machine body, ensuring production efficiency. The fabric is woven using the bead edge machine weaving heads, resulting in woven threads free of fine threads. Simultaneously, an adjusting frame assembly 4 is introduced to enhance the weaving flexibility of the bead edge machine weaving head 1, further improving the weaving effect and production efficiency.

[0052] It should be understood that the embodiments disclosed in this application are not limited to the specific processing steps or materials disclosed herein, but should be extended to equivalent substitutions of such features as understood by those skilled in the art. It should also be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.

[0053] The term "embodiment" as used in this specification refers to a specific feature or characteristic described in connection with an embodiment that is included in at least one embodiment of this application. Therefore, phrases or "embodiments" appearing in various places throughout the specification do not necessarily refer to the same embodiment.

[0054] Furthermore, the described features or characteristics can be incorporated into one or more embodiments in any other suitable manner. In the above description, specific details, such as thickness, quantity, etc., are provided to provide a comprehensive understanding of embodiments of the invention. However, those skilled in the art will understand that the invention can be implemented without the aforementioned specific details or may be implemented using other methods, components, materials, etc.

Claims

1. An electro-embroidered shoe upper weaving device, characterized in that, include Bead edge knitting head; the bead edge knitting head includes a needle bar mechanism, a lower thread feeding mechanism, a thread tensioning mechanism, a lower thread take-up hook, a thread stabilizing mechanism, a feeding mechanism, and a lower thread hooking reel mechanism. The needle bar mechanism includes a sealing needle mechanism and an upper thread hooking mechanism. The lower thread feeding mechanism includes a lower thread feeding finger and a lower thread feeding hook. The thread tensioning mechanism includes a thread clamp and a thread tensioning hook. Adjustable frame assembly, the bead edge knitting head adjusts the knitting position via the adjustable frame assembly, the adjustable frame assembly The component includes a mounting frame, a first adjustment component, and a second adjustment component. The first adjustment component is mounted on the mounting frame, the second adjustment component is mounted on the first adjustment component, and a bead edge knitting head is mounted on the second adjustment component. The knitting assembly body is provided with several bead edge knitting heads and an adjustment frame assembly; The shoe upper, woven with the yarn using the aforementioned weaving equipment, has no fine connecting lines or dotted connections between the yarns, whether viewed from the front or back of the shoe upper.

2. The electro-embroidered shoe upper weaving equipment according to claim 1, characterized in that, The adjustment frame assembly also includes a third adjustment assembly, which includes a cylinder and a rod, with the rod nested on the cylinder and connected to the side of the mounting bracket.

3. The electro-embroidered shoe upper weaving equipment according to claim 1 or 2, characterized in that, The first adjustment assembly includes a first motor, a first synchronous pulley, a second synchronous pulley, a pulley frame, a first belt, and a synchronizing element. The first synchronous pulley is mounted on the first motor. The first synchronous pulley is connected to the second synchronous pulley via the first belt. The second synchronous pulley is rotatably mounted on the pulley frame. A synchronizing element is locked onto the first belt. The synchronizing element is locked onto the second adjustment assembly.

4. The electro-embroidered shoe upper weaving equipment according to claim 3, characterized in that, The second adjustment assembly includes a second motor, a drive wheel, a driven wheel, a lead screw, a threaded seat, a support frame, a displacement frame, and a guide rail seat. The guide rail seat is mounted on the top of the mounting frame, and the displacement frame is slidably mounted on the guide rail seat. The second motor is locked to the side end of the displacement frame, and a drive wheel is mounted on the second motor. The driven wheel is rotatably mounted on the displacement frame, and the drive wheel is connected to the driven wheel via a belt. The driven wheel is nested at the end of the lead screw, and the lead screw is threadedly connected to the threaded seat. A support frame is locked to the threaded seat, and a bead edge weaving head is locked to the support frame.

5. The electro-embroidered shoe upper weaving equipment according to claim 1, characterized in that, The woven assembly body includes a mechanical system, a transmission system, and an electrical control system. The electrical control system is electrically connected to the adjustment frame assembly. The mechanical system and the transmission system work together with the bead edge weaving machine head to weave the embroidered shoe upper.

6. The electro-embroidered shoe upper weaving equipment according to claim 5, characterized in that, The mechanical system includes a frame component, a housing component, a fabric embroidery mechanism, a thread take-up mechanism, a color changing mechanism, an embroidery frame component, and a manual switch box.

Citation Information

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