Multifunctional drill brushing machine for garment processing

By designing a multi-functional diamond brushing machine, utilizing the synergistic effect of a slider and an inclined plate, combined with a linear motor-driven extrusion roller, the cumbersome diamond recycling problem in existing technologies has been solved. This enables efficient diamond replacement and high-quality adhesive bonding, thereby improving the efficiency and quality of garment processing.

CN223688685UActive Publication Date: 2025-12-19GUANGZHOU DASHANMING MASCH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520140850.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-12-19
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

Existing rhinestone brushing technology for clothing requires manual intervention for rhinestone recycling and finished product sorting, which is cumbersome, time-consuming, and affects production efficiency and product quality.

Method used

A multi-functional brushing drill machine was designed, which includes components such as a frame, stepper motor, cam, sliding assembly, and linear motor. The drill body is pushed in multiple directions through the synergistic action of the slider and the inclined plate. The linear motor drives the extrusion roller to improve the contact efficiency between the drill body and the clothing and the adhesion effect of the adhesive.

Benefits of technology

It simplifies the diamond replacement and collection process, improves diamond brushing efficiency and adhesive adhesion quality, optimizes the overall operation process, and enhances production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223688685U_ABST
    Figure CN223688685U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of garment processing, in particular to a multifunctional drill brushing machine for garment processing. The utility model provides a multifunctional diamond brushing machine for garment processing, which is easy to operate and convenient for diamond replacement operation, and comprises a rack, a stepping motor, a cam, a first sliding component, a second sliding component, a connecting plate, a diamond brushing frame and an inclined plate, and two sets of first sliding assemblies are oppositely arranged on the two sides of the top of the rack, a second sliding assembly is arranged between the two first sliding assemblies in the same set in a sliding mode, a diamond brushing frame is arranged between the two connecting plates, and an inclined plate is arranged at the inner bottom of the diamond brushing frame. Through the synergistic effect of the sliding block I and the sliding block II and the design of the inclined plane, the drill body can make contact with the surface of clothes more rapidly and conveniently, the drill body can be collected and replaced more efficiently, and therefore the whole operation process is simplified.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to clothing processing technical field, specifically, especially, a kind of multifunctional brush drill machine for clothing processing. BACKGROUND

[0002] In contemporary society, with the diversification of aesthetic trends and the rise of individualized expression, the field of fashion design is undergoing a profound transformation. The traditional concept of focusing solely on the practicality and comfort of clothing has been surpassed. Today, clothing is viewed as an artistic form of self-expression, and decorative elements, especially inlaid diamond ornaments, have become the key to showcasing personality and fashion attitude. These dazzling embellishments not only enrich the visual levels of clothing, but also add a unique charm to the wearer. Therefore, how to accurately apply accessory diamonds to clothing while ensuring efficiency has become an important challenge for the clothing manufacturing industry.

[0003] The current clothing brush drill technology, although to some extent, realizes the automatic laying and fixing of diamonds, but still has significant limitations. After completing the initial diamond laying and pattern fixing, traditional brush drill machines require manual intervention for subsequent diamond recovery and finished product arrangement. This process is not only tedious and time-consuming, but also under frequent manual operation, diamond loss and pattern deviation become unavoidable, directly affecting production efficiency and product quality. In addition, this series of inefficient operations seriously slow down the speed of single product from production to delivery, thereby hindering the smooth operation of the entire production line.

[0004] Therefore, in summary, there is an urgent need for a multifunctional brush drill machine for clothing processing that is easy to operate and facilitates diamond replacement operation. INVENTION CONTENTS

[0005] In order to overcome the tediousness of manual intervention for subsequent diamond recovery operation in the above-mentioned prior art, the utility model provides a multifunctional brush drill machine for clothing processing that is easy to operate and facilitates diamond replacement operation.

[0006] A multifunctional brush drill machine for clothing processing, comprising a rack, a stepping motor, a cam, a contact rod, a first sliding assembly, a second sliding assembly, a connecting plate, a brush drill frame, a sleeve, a mold and an inclined plate, the rack is provided with a stepping motor, the output end of the stepping motor passes through the rack, and the output shaft of the stepping motor is connected with a cam, the top of the cam is provided with a contact rod, the top of the rack is provided with two groups of first sliding assemblies on both sides, the same group of two first sliding assemblies is provided with a second sliding assembly between them, the two second sliding assemblies are provided with a connecting plate between them, the two connecting plates are provided with a brush drill frame between them, the bottom of the brush drill frame is provided with a sleeve connected with the contact rod, the inner bottom of the brush drill frame is provided with an inclined plate, and the middle of the inclined plate is provided with a mold.

[0007] Further illustrate, the first sliding assembly includes guide rod I and sliding block I, the top of the frame is provided with a group of guide rod I on both sides, and the sliding block I is slidably arranged on each guide rod I.

[0008] Further illustrate, the second sliding assembly includes guide rod II and sliding block II, the guide rod II is arranged between the two sliding blocks I of the same group, and the sliding block II is slidably arranged on the guide rod II and connected with the connecting plate on the same side.

[0009] Further illustrate, the sliding block I is in left-right sliding state, and the sliding block II is in front-rear sliding state.

[0010] Further illustrate, further include the protective baffle, and the top of the frame is provided with a circle of protective baffle.

[0011] Further illustrate, further include linear motor and extrusion roller, the linear motor is installed on the inclined plate, the moving part of the linear motor is connected with the extrusion roller, and the bottom end surface of the extrusion roller is attached to the surface of the mold.

[0012] The beneficial effects of the present application are as follows: 1, the sliding block I and the sliding block II are cooperated, the brush drill frame is pushed and moved in multiple directions, the inclined surface is designed, the contact between the drill body and the clothes surface is more rapid and convenient, the brush drill efficiency is improved, and the overall operation process is simplified;

[0013] 2, the linear motor drives the extrusion roller to move in a straight line, the close contact between the colloid and the clothes is effectively promoted, the colloid is fully covered and firmly adhered to the clothes surface through repeated extrusion action, the convenience of the sticking operation and the quality of the colloid adhesion are greatly improved, and the overall working efficiency is optimized. DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic view of the present application.

[0015] Figure 2 It is a three-dimensional structure schematic view of the guide rod I and the guide rod II of the present application.

[0016] Figure 3 It is a three-dimensional structure schematic view of the sliding block I and the sliding block II of the present application.

[0017] Figure 4 It is a three-dimensional structure schematic view of the inclined plate and the linear motor of the present application.

[0018] Figure 5This is a three-dimensional structural diagram of the contact rod and ferrule components of this utility model.

[0019] The markings in the attached diagram are: 1. Frame, 2. Stepper motor, 3. Cam, 4. Contact rod, 5. Guide rod I, 51. Slider I, 6. Guide rod II, 61. Slider II, 7. Connecting plate, 8. Brush drill frame, 81. Sleeve, 9. Mold, 10. Inclined plate, 11. Protective baffle, 12. Linear motor, 13. Extrusion roller. Detailed Implementation

[0020] The present invention will now be described in detail with reference to the accompanying drawings.

[0021] Example: A multi-functional rhinestone brushing machine for garment processing, such as Figures 1-5 As shown, the device includes a frame 1, a stepper motor 2, a cam 3, a contact rod 4, a first sliding assembly, a second sliding assembly, a connecting plate 7, a brush drill frame 8, a ferrule 81, a mold 9, and an inclined plate 10. The frame 1 serves as the basic framework of the entire device, bearing and integrating all components, ensuring the overall stability and structural integrity of the device. The stepper motor 2 is installed inside the frame 1, with its output end passing through the top of the frame 1. A cam 3 is connected to the output shaft of the stepper motor 2, and a contact rod 4 is located on the top of the cam 3. Two sets of first sliding assemblies are arranged opposite each other on the left and right sides of the top of the frame 1. A second sliding assembly is slidably arranged between the two first sliding assemblies in the same set. The first sliding assemblies provide support for the lateral movement of the second sliding assembly. The support has two sliding connecting plates 7, and a brushing frame 8 is set between the two connecting plates 7. It can be used to support and position the mold 9 and the drill body during the brushing operation. The bottom of the brushing frame 8 is provided with a sleeve 81 that engages with the contact rod 4. The engagement of the two ensures that the brushing frame 8 can obtain a stable pushing force during operation. Through the cam 3, precise power transmission and position control are achieved. The inner bottom of the brushing frame 8 is provided with an inclined plate 10. The inclined plate 10 helps the drill body move and collect smoothly, and simplifies the replacement and cleaning process of the drill body. The mold 9 is placed in the middle of the inclined plate 10. The mold 9 is used to position and fix the drill body or decoration to be processed, ensuring its precise position during the glue application and bonding process.

[0022] like Figure 2 and Figure 3 As shown, the first sliding component includes guide rods I5 and sliders I51. A set of guide rods I5 are horizontally arranged on the top left and right sides of the frame 1, and sliders I51 are slidably arranged on the four guide rods I5, which can provide a matching motion trajectory for the left and right movement of the brush drill frame 8.

[0023] like Figure 2 and Figure 3As shown, the second sliding assembly includes a guide rod II 6 and a sliding block II 61, and a guide rod II 6 is arranged between the two sliding blocks I 51 of the same group, and the sliding block II 61 is arranged on the guide rod II 6 in a sliding manner, and the sliding block II 61 is connected with the connecting plate 7 on the same side, and the sliding block I 51 is in a left-right sliding state, and the sliding block II 61 is in a front-rear sliding state, thereby cooperating to realize multidirectional pushing of the brush drilling frame 8.

[0024] As shown in Figure 1 It also includes a protective baffle 11, and the top of the rack 1 is provided with a ring of protective baffles 11, which surrounds the top of the rack 1, can provide safety protection for the internal parts, prevent accidental injury during operation, and block dust and foreign matter from entering the working area, keep the equipment clean and efficient operation.

[0025] As shown in Figure 4 It also includes a linear motor 12 and an extrusion roller 13, and the inclined plate 10 is provided with a linear motor 12, and the moving part of the linear motor 12 is connected with an extrusion roller 13, and the bottom end face of the extrusion roller 13 is attached to the surface of the mold 9, which can extrude the clothes and the glue on the mold 9, so as to achieve covering and sticking.

[0026] When the device needs to be used, first ensure that the rack 1 is placed on a stable ground, that is, the whole device is in a stationary state, then the clothes that need to be brushed are laid on the mold 9, and the drill body that needs to be used is placed in the brush drilling frame 8, then the worker brushes the glue on the clothes body, covers the glue on the clothes, starts the linear motor 12, drives the extrusion roller 13 to move linearly left and right through the linear motor 12, and then extrudes the clothes and the glue, so that the clothes can be fully covered with the corresponding glue, then the stepping motor 2 can be started, the stepping motor 2 drives the cam 3 to rotate, and then the contact rod 4 pushes the sleeve 81 and the brush drilling frame 8 to move with the rotation of the cam 3, when the cam 3 rotates clockwise by 90 degrees, the sliding block I 51 will be pushed to slide left on the guide rod I 5, and then the brush drilling frame 8 will be pushed left, and the drill body in the brush drilling frame 8 will be pushed left to sweep across the clothes, and when the cam 3 rotates by another 90 degrees, the sliding block II 61 will slide backward on the guide rod II 6, and then the brush drilling frame 8 and the drill body in it will operate synchronously, and so on, the drill body is repeatedly pushed and contacted with the clothes, that is, with the glue to complete the brush drilling, after the brush drilling is completed, the drill body will be gathered at one angle of the brush drilling frame 8 due to the arrangement of the inclined plate 10, which makes the replacement and collection of the drill body more convenient, and makes the brush drilling operation of the worker when processing clothes more simple and convenient, so as to improve the work efficiency.

[0027] It should be understood that the foregoing description is only for the purpose of illustration. It is not intended to limit the present application. Those skilled in the art will appreciate that variations in the present application will occur to them without departing from the scope of the claims herein.

Claims

1. A multi-functional rhinestone brushing machine for garment processing, characterized in that: The utility model provides a brush drill frame, including organic frame (1), stepping motor (2), cam (3), contact rod (4), first sliding assembly, second sliding assembly, connecting plate (7), brush drill frame (8), sleeve (81), mould (9) and inclined plate (10), the frame (1) inside installation has stepping motor (2), the output of stepping motor (2) passes through the frame (1), and the output shaft of stepping motor (2) is connected with cam (3), the top of cam (3) is provided with contact rod (4), the top both sides of frame (1) are provided with two groups of first sliding assembly oppositely, and the first sliding assembly of same group is provided with a second sliding assembly between slidingly, two second sliding assemblies are all provided with connecting plate (7) slidingly, and one brush drill frame (8) is arranged between two connecting plates (7), the bottom of brush drill frame (8) is provided with the sleeve (81) of the clamping of contact rod (4), and the inner bottom of brush drill frame (8) is provided with inclined plate (10), and the middle part of inclined plate (10) is placed with mould (9).

2. The multi-functional brushing machine for garment processing according to claim 1, characterized in that: The first sliding assembly includes a guide rod I (5) and a sliding block I (51), and the top of the frame (1) is provided with a group of guide rods I (5) on both sides, and the sliding block I (51) is slidably arranged on each guide rod I (5).

3. The multi-functional brush driller for garment processing according to claim 2, characterized in that: The second sliding assembly includes a guide rod II (6) and a sliding block II (61), and the guide rod II (6) is arranged between the two sliding blocks I (51) of the same group, and the sliding block II (61) is slidably arranged on the guide rod II (6), and the sliding block II (61) is connected with the connecting plate (7) on the same side.

4. The multi-functional brushing machine for garment processing according to claim 3, characterized in that: The sliding block I (51) is in left-right sliding state, and the sliding block II (61) is in front-back sliding state.

5. The multi-functional brushing machine for garment processing according to claim 4, characterized in that: The utility model also includes a protective baffle (11), and the top of the frame (1) is surrounded by a ring of protective baffles (11).

6. The multi-functional brushing machine for garment processing according to claim 5, characterized in that: The utility model also includes a linear motor (12) and an extrusion roller (13), and the linear motor (12) is installed on the inclined plate (10), the moving part of the linear motor (12) is connected with the extrusion roller (13), and the bottom end surface of the extrusion roller (13) is attached to the surface of the mould (9).