Three-dimensional printing and embroidering combined process clothing printing and embroidering tool

By setting up rotatable rotary plates and magnetic absorption technology between the three-dimensional printing machine and the embroidery machine, the problem of difficulty in synchronizing the three-dimensional printing and embroidery in the prior art is solved, and the convenience of operation and improvement of work efficiency is achieved.

CN222935666UActive Publication Date: 2025-06-03JINJIANG TIANSHOU GARMENT WEAVING CO LTD
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Patent Information

Application Number
CN202421648934.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-06-03
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

When two different printing effects are needed on the same clothing, it is difficult for the prior art to achieve synchronous progress of three-dimensional printing and embroidery, resulting in a reduced work efficiency.

Method used

A three-dimensional printing and embroidery combination process is designed. By setting a rotatable rotary plate between the three-dimensional printing machine and the embroidery machine, the bearing plate carrying the clothing is aligned with the corresponding processing groove by rotating the rotary plate, and it is pulled into the processing groove through magnetic suction technology for processing.

Benefits of technology

It realizes convenient operation of three-dimensional printing and embroidery, improves work efficiency, and enables the two processing technologies to be completed in sequence.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of three-dimensional printing and embroidering combination tools, in particular to a three-dimensional printing and embroidering combination process garment printing and embroidering tool. According to the technical scheme, the device comprises a three-dimensional printing machine, an embroidery machine and a rotating plate, machining grooves are formed in the sides, close to each other, of the three-dimensional printing machine and the embroidery machine, a supporting table is fixed between the three-dimensional printing machine and the embroidery machine, the rotating plate is rotationally connected to the upper end of the supporting table, the upper end of the rotating plate is aligned to the machining grooves, and mounting grooves are formed in the upper end of the rotating plate at equal intervals; and bearing plates are arranged in the mounting grooves correspondingly, telescopic blocks are slidably connected into the machining grooves, and magnetic attraction assemblies are arranged at the front ends of the telescopic blocks. According to the utility model, the rotatable rotating plate is arranged between the three-dimensional printing machine and the embroidery machine, the bearing plates for bearing clothes are respectively aligned with the corresponding processing grooves through the rotation of the rotating plate, and the bearing plates are pulled into the processing grooves through magnetic attraction for three-dimensional printing and embroidery processing, so that two processing technologies are sequentially completed, and the operation is more convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of three-dimensional printing and embroidery combined tooling, in particular to a three-dimensional printing and embroidery combined process clothing printing and embroidery tooling. Background Technique

[0002] An embroidery machine is a product of modern technological progress, mainly used to replace traditional manual embroidery. The main performance indicators of an embroidery machine include the number of heads, head spacing, number of needles, maximum stroke of the embroidery frame in the X and Y directions, electronic control system, and manufacturer brand, etc. A three-dimensional printing machine usually refers to a device that can achieve three-dimensional printing effects. This machine is different from traditional flat printing and can print three-dimensional patterns, commonly used in clothing, home decorations, etc. Three-dimensional printing technology usually involves special inks and printing processes to achieve the three-dimensional effect of patterns.

[0003] On the same piece of clothing, if two different printing effects need to be presented, the clothing often needs to be placed into the embroidery machine and the three-dimensional printing machine respectively. In this process, not only does the clothing need to be repositioned, but during the transfer process, the positioning may be inconsistent, and the three-dimensional printing and embroidery cannot be synchronized, resulting in a reduction in work efficiency. Content of the Utility Model

[0004] The purpose of the utility model is to provide a three-dimensional printing and embroidery combined process clothing printing and embroidery tooling to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution: It includes a three-dimensional printing machine, an embroidery machine, and a rotating plate. Processing grooves are opened on one side of the three-dimensional printing machine and the embroidery machine close to each other. A support platform is fixed between the three-dimensional printing machine and the embroidery machine. The rotating plate is rotatably connected to the upper end of the support platform. The upper end of the rotating plate is aligned with the processing grooves and is equidistantly provided with installation grooves. Loading plates are arranged in the installation grooves. A telescopic block is slidably connected in the processing grooves. A magnetic attraction component is arranged at the front end of the telescopic block. A magnetic attraction block is fixed on the inner side wall of the installation groove. Magnetic attraction metal plates are fixed at both the front and rear ends of the loading plate.

[0006] Preferably, the magnetic attraction component includes an installation cavity and an electromagnet. The installation cavity is opened at the front end of the telescopic block. The electromagnet is fixed in the installation cavity. The front end of the telescopic block is an arc structure.

[0007] Preferably, a driving groove is opened at the bottom of the processing groove. A driving block is slidably connected in the driving groove. The driving block is fixed to the bottom of the telescopic block. A threaded rod is rotatably connected in the driving groove. The threaded rod passes through the driving block and is threadedly connected to the driving block.

[0008] Preferably, servo motors are fixed on the outer sides of both the three-dimensional printing machine and the embroidery machine, and the output ends of the servo motors are fixed on the corresponding threaded rods.

[0009] Preferably, positioning holes are formed on the outer side of the rotating plate and between adjacent installation grooves, a cylinder is fixed on the support table at a position corresponding to the positioning holes, and the output end of the cylinder is inserted into one of the positioning holes.

[0010] Preferably, a stepping motor for driving the rotating plate to rotate is installed in the support table, and a controller is fixed on the surface of the support table.

[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows: A rotatable rotating plate is arranged between the three-dimensional printing machine and the embroidery machine. By using the rotation of the rotating plate, the carrier plates carrying the garments are aligned with the corresponding processing grooves respectively, and are pulled into the processing grooves by magnetic attraction for three-dimensional printing and embroidery processing, and the two processing techniques are completed in sequence, making the operation more convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 is a schematic top cross-sectional structure view of the clothing printing and embroidery tooling for the three-dimensional printing and embroidery combined process of the present utility model;

[0013] Figure 2 is a schematic external structure view of the rotating plate of the clothing printing and embroidery tooling for the three-dimensional printing and embroidery combined process of the present utility model;

[0014] Figure 3 is a schematic assembled structure view of the telescopic block of the clothing printing and embroidery tooling for the three-dimensional printing and embroidery combined process of the present utility model;

[0015] Figure 4 is the clothing printing and embroidery tooling for the three-dimensional printing and embroidery combined process of the present utility model Figure 1 The enlarged structure view at A in.

[0016] In the figure: 1. Three-dimensional printing machine; 2. Embroidery machine; 3. Processing groove; 4. Support table; 5. Rotating plate; 51. Installation groove; 52. Magnetic attraction block; 53. Positioning hole; 6. Carrier plate; 7. Telescopic block; 71. Installation cavity; 72. Electromagnet; 8. Driving groove; 81. Threaded rod; 82. Driving block; 83. Servo motor; 9. Cylinder. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0018] Please refer to Figures 1-4 Figures 1-4 , the present utility model provides a technical solution: including a three-dimensional printing machine 1, an embroidery machine 2 and a rotating plate 5. Processing grooves 3 are provided on one side of the three-dimensional printing machine 1 and the embroidery machine 2 close to each other. A support platform 4 is fixed between the three-dimensional printing machine 1 and the embroidery machine 2. The rotating plate 5 is rotatably connected to the upper end of the support platform 4. The upper end of the rotating plate 5 is aligned with the processing groove 3 and is equidistantly provided with installation grooves 51. A bearing plate 6 is arranged in each installation groove 51. A telescopic block 7 is slidably connected in the processing groove 3. A magnetic attraction assembly is arranged at the front end of the telescopic block 7. A magnetic attraction block 52 is fixed on the inner side wall of the installation groove 51. Magnetic attraction metal plates are fixed at both the front and rear ends of the bearing plate 6. A stepping motor for driving the rotation of the rotating plate 5 is installed in the support platform 4, and a controller is fixed on the surface of the support platform 4. Positioning holes 53 are provided between adjacent installation grooves 51 on the outside of the rotating plate 5. A cylinder 9 is fixed on the support platform 4 at a position corresponding to the positioning holes 53. The output end of the cylinder 9 is inserted into one of the positioning holes 53.

[0019] A driving groove 8 is provided at the bottom of the processing groove 3. A driving block 82 is slidably connected in the driving groove 8. The driving block 82 is fixed to the bottom of the telescopic block 7. A threaded rod 81 is rotatably connected in the driving groove 8. The threaded rod 81 passes through the driving block 82 and is threadedly connected to the driving block 82. Servo motors 83 are fixed on the outside of both the three-dimensional printing machine 1 and the embroidery machine 2, and the output ends of the servo motors 83 are fixed to the corresponding threaded rods 81. The magnetic attraction assembly includes an installation cavity 71 and an electromagnet 72. The installation cavity 71 is opened at the front end of the telescopic block 7. The electromagnet 72 is fixed in the installation cavity 71. The front end of the telescopic block 7 is of an arc structure.

[0020] Working principle: First, connect the entire device to an external power supply, and then fix the clothing to be processed on the bearing plate 6. By the rotation of the stepping motor in the support platform 4, the rotating plate 5 can be driven to rotate. When it rotates to align with the processing groove 3 of the three-dimensional printing machine 1 or the embroidery machine 2, the telescopic block 7 can be used to telescopically adsorb and pull the bearing plate 6 to make it enter the processing groove 3 of the three-dimensional printing machine 1 or the embroidery machine 2 for corresponding processing. After a complete rotation, three-dimensional printing processing and embroidery processing can be realized. The operation is simpler and more convenient, improving work efficiency. During the whole process, when the rotating plate 5 rotates to a specified position, the output end of the cylinder 9 can be extended to insert it into the positioning hole 53 to ensure the stability of the rotating plate 5. Secondly, for the telescopic movement of the telescopic block 7, the output end of the servo motor 83 can be used to drive the threaded rod 81 to rotate, so that the driving block 82 slides in the driving groove 8, and finally drives the telescopic block 7 to slide. When the telescopic block 7 pulls out the bearing plate 6, the electromagnet 72 is energized to adsorb and fix the end of the bearing plate 6, and then it is pulled out of the installation groove 51 to enter the processing groove 3. On the contrary, after the bearing plate 6 is pushed into the installation groove 51, the electromagnet 72 is powered off, and the magnetic attraction block 52 can be used to adsorb the end of the bearing plate 6 to fix it in the installation groove 51.

[0021] It should be noted that in this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.

[0022] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A three-dimensional printing and embroidery combined process clothing printing and embroidery tool, comprising a three-dimensional printing machine (1), an embroidery machine (2) and a rotating plate (5), characterized in that: A processing groove (3) is provided on the side where the three-dimensional printing machine (1) and the embroidery machine (2) are close to each other. A support platform (4) is fixed between the three-dimensional printing machine (1) and the embroidery machine (2). The rotating plate (5) is rotatably connected to the upper end of the support platform (4). The upper end of the rotating plate (5) is aligned with the processing groove (3) and is provided with mounting grooves (51) at equal intervals. A bearing plate (6) is provided in each mounting groove (51). A telescopic block (7) is slidably connected in the processing groove (3). A magnetic attraction component is provided at the front end of the telescopic block (7). A magnetic attraction block (52) is fixed to the inner side wall of the mounting groove (51). Magnetic attraction metal plates are fixed at both the front and rear ends of the bearing plate (6).

2. The three-dimensional printing and embroidery combined craft clothing printing and embroidery tooling according to claim 1, characterized in that: The magnetic attraction component comprises a mounting cavity (71) and an electromagnet (72); the mounting cavity (71) is opened at the front end of the telescopic block (7); the electromagnet (72) is fixed in the mounting cavity (71); and the front end of the telescopic block (7) is an arc structure.

3. The three-dimensional printing and embroidery combined craft clothing printing and embroidery tooling according to claim 1, characterized in that: A driving groove (8) is provided at the bottom of the processing groove (3), a driving block (82) is slidably connected in the driving groove (8), the driving block (82) is fixed to the bottom of the telescopic block (7), a threaded rod (81) is rotatably connected in the driving groove (8), and the threaded rod (81) passes through the driving block (82) and is threadedly connected to the driving block (82).

4. The three-dimensional printing and embroidery combined craft clothing printing and embroidery tooling according to claim 3, characterized in that: A servo motor (83) is fixed on the outside of the three-dimensional printing machine (1) and the embroidery machine (2), and the output end of the servo motor (83) is fixed on the corresponding threaded rod (81).

5. The three-dimensional printing and embroidery combined craft clothing printing and embroidery tooling according to claim 1, characterized in that: Positioning holes (53) are provided on the outside of the rotating plate (5) and between adjacent mounting grooves (51); a cylinder (9) is fixed on the support platform (4) at a position corresponding to the positioning holes (53); and an output end of the cylinder (9) is plugged into one of the positioning holes (53).

6. The three-dimensional printing and embroidery combined craft clothing printing and embroidery tooling according to claim 1, characterized in that: A stepping motor for driving the rotating plate (5) to rotate is installed inside the support platform (4), and a controller is fixed on the surface of the support platform (4).