Full-automatic fabric fuzzing and pilling instrument

By designing a fully automatic fabric wool pill, including mobile device components and collection components, the problems of low efficiency and wool residue in traditional fabric wool pills are solved, and the effect of efficient detection and cleaning of wool pills is achieved.

CN223037571UActive Publication Date: 2025-06-27CHUANGBIAO (BEIJING) TESTING TECH SERVICE CO LTD
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Patent Information

Application Number
CN202422176424.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-06-27
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

Traditional fabric wool pills can only be installed with one piece of fabric when used, resulting in low overall use efficiency and messy hair residues at the upper end, which may cause damage to the internal device.

Method used

A fully automatic fabric wool pill is designed, including a mobile device assembly and a collection assembly. The mobile device assembly can simultaneously install and detect multiple pieces of fabrics by placing and using the components, and improve the angle adjustment and friction detection efficiency of the fabrics through rotating structures and connecting rods. The collection assembly cleans and collects the hairs on the upper end of the device through the spray tube and the collection tank to prevent the hairs from entering the interior of the device.

Benefits of technology

It improves the efficiency of fabric wool pills, can handle multiple pieces of fabric at the same time, and effectively prevents crumb residue and damage inside the device, improving the safety of the instrument and the life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of textile fuzzing and pilling detection, and discloses a full-automatic fabric fuzzing and pilling instrument. The full-automatic fabric fuzzing and pilling instrument comprises a moving device assembly, the upper end of the moving device assembly is connected and provided with a placing and using assembly, the upper end of the placing and using assembly is provided with a structural frame, the upper end of the structural frame is provided with a rotating structure, and the upper end of the rotating structure is provided with a connecting rod; connecting grooves are formed in the two sides of the connecting rod, rotating blocks are installed in the connecting grooves, adjusting rods are installed at the lower ends of the rotating blocks, first placing rings are installed at the lower ends of the adjusting rods, a collecting assembly is installed at the outer end of the moving device assembly, and a storage block is installed at the upper end of the collecting assembly. The upper end of the storage block is provided with a connecting block, and the problem that when a traditional fabric fuzzing and pilling instrument is used, only one piece of cloth can be installed at the upper end of the traditional fabric fuzzing and pilling instrument, and consequently the overall use efficiency of the subsequent fabric fuzzing and pilling instrument is low is effectively solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of textile pilling detection, in particular to a full-automatic fabric pilling tester. Background Technique

[0002] A fabric pilling tester is mainly an instrument used to test the pilling and fuzzing performance of textiles. The existing fabric pilling testers are mainly circular trajectory pilling testers. When in use, the fabric is installed on the fabric pilling tester for experimental detection. When the traditional fabric pilling tester is in use, only one piece of fabric can be installed individually at the upper end, resulting in a relatively low overall use efficiency of the subsequent fabric pilling tester.

[0003] There is a Chinese utility model patent with the reference publication number: CN209148514U. It discloses a fabric pilling tester, which includes a box body. A turntable is arranged at the upper end of the workbench. A tray is connected to the upper end of the turntable. A pilling grinding disc and a fuzzing grinding disc are arranged on the upper end of the tray in sequence from left to right. Motors are arranged at the lower ends of the pilling grinding disc and the fuzzing grinding disc respectively. An interface is arranged at the outer end of the dust suction groove. The interface is connected to a vacuum cleaner arranged at the right end of the tray through a dust suction hose. A column is arranged at the right end of the vacuum cleaner. A cross arm is connected to the column through a pin shaft. A weight is arranged at the upper part of the left end of the cross arm. The lower end of the weight is connected to a specimen chuck through a pressure rod passing through the cross arm. Shock-absorbing seats are arranged at the lower end of the box body. The beneficial effects of the utility model are: small vibration, accurate detection results, long service life of the brush bundle, and clean and hygienic surface of the instrument.

[0004] Based on the retrieval of the above patent and the combination with the equipment in the existing technology, it is found that when the fabric pilling tester is in use, the fabric is installed on the fabric pilling tester for experimental detection. When the traditional fabric pilling tester is in use, only one piece of fabric can be installed individually at the upper end, resulting in a relatively low overall use efficiency of the subsequent fabric pilling tester. When the fabric pilling tester is in use, lint will remain at the upper end, resulting in mess at the upper end of the subsequent fabric pilling tester. Moreover, the subsequent lint falls into the device interior, causing damage to the device interior. The existence of these problems affects the use of the device. Content of the Utility Model

[0005] (I) Technical Problems to be Solved

[0006] Aiming at the deficiencies of the existing technology, the utility model provides a full-automatic fabric pilling tester, which can effectively prevent the problem that only one piece of fabric can be installed individually at the upper end when the traditional fabric pilling tester is in use, resulting in a relatively low overall use efficiency of the subsequent fabric pilling tester.

[0007] Technical Solution

[0008] To achieve the above object, the present utility model provides the following technical solution: a fully automatic fabric pilling tester, including a moving device assembly, an upper end of the moving device assembly is connected and installed with a placing and using assembly for facilitating the placing and friction detection of multiple pieces of fabric, and an outer end of the moving device assembly is connected and installed with a collecting assembly for facilitating the collection of lint generated after friction at the upper end of the device and preventing subsequent lint from entering the interior of the device.

[0009] An upper end of the placing and using assembly is installed with a structural frame, and an upper end of the structural frame is installed with a rotating structure. An upper end of the rotating structure is installed with a connecting rod, and both sides of the connecting rod are installed with connecting grooves. Inside the connecting grooves are installed rotating blocks, and a lower end of the rotating blocks is installed with adjusting rods. A lower end of the adjusting rods is installed with a first placing ring, and the first placing ring is used in combination with a second placing ring to install the fabric to be detected on the placing rings.

[0010] An upper end of the collecting assembly is installed with a storage block, an upper end of the storage block is installed with a connecting block, and an upper end of the connecting block is connected with a spraying pipe. A lower end of the storage block is installed with a collecting groove, and the collecting groove is installed at an outer end of the device box and fixed to the outer end of the device box through a fixing plate to facilitate subsequent collection of lint.

[0011] As a preferred technical solution of the present utility model, an upper end of the moving device assembly is installed with a device box, and both sides of an upper end of the device box are installed with fixing plates. An upper end of the device box is installed with a first moving groove, and a second moving groove is installed inside the first moving groove. Inside the device box is installed a left-right moving structure, and an inside of the left-right moving structure is installed with a front-back moving structure. An upper end of the second moving groove is installed with a following plate, and the following plate is installed at upper ends of the left-right moving structure and the front-back moving structure to prevent subsequent lint from falling into the interior of the device through the following plate.

[0012] As a preferred technical solution of the present utility model, a lower end of the placing and using assembly is installed with a raising plate, a left side of the first placing ring is installed with a second placing ring, and a lower end of the second placing ring is installed with a pilling plate. The raising plate and the pilling plate are used in combination to friction the fabric to detect whether the fabric is wear-resistant and rub-resistant.

[0013] As a preferred technical solution of the present utility model, an upper end of the collecting assembly is installed with a conveying pipe, and the conveying pipe connects and installs the upper structures.

[0014] As a preferred technical solution of the present utility model, the placing and using assembly is installed above the device box in the moving device assembly, and the collecting assembly is installed at an outer end of the device box in the moving device assembly.

[0015] As a preferred technical solution of the present utility model, the first moving groove is a horizontal structure, the second moving groove is a vertical structure, the left - right moving structure is inserted and connected inside the first moving groove, and the front - back moving structure is inserted and connected inside the second moving groove.

[0016] As a preferred technical solution of the present utility model, the structure frame is inserted and connected to the second moving groove and connected in the front - back moving structure. A rotating rod is installed at the connection between the connection groove and the rotating block. The upper end of the first placing ring is a rotary disassembly structure. The first placing ring has the same structure as the second placing ring. The fuzzing plate and the pilling plate are installed at the upper end of the left - right moving structure.

[0017] As a preferred technical solution of the present utility model, the collection groove is installed at the upper end of the fixed plate, and the collection groove is a detachable structure. The spraying pipe is an inclined structure.

[0018] Compared with the prior art, the present utility model provides a fully automatic fabric fuzzing and pilling instrument with the following beneficial effects:

[0019] 1. Through the setting of the placing and using assembly in the present utility model, a structure frame is installed in the placing and using assembly. The structure frame is installed at the upper end of the front - back moving structure. The front - back moving structure drives the structure frame to move. A rotating structure is installed at the upper end of the structure frame. The first placing ring and the second placing ring at the upper end are rotated in position through the rotating structure. The upper end of the rotating structure is connected with a connecting rod. Connecting grooves are installed on both sides of the connecting rod. The rotating blocks inside are connected and used through the connecting grooves. An adjusting rod is installed at the lower end of the rotating block. The adjusting rod connects the first placing ring and the second placing ring. Two pieces of fabric are placed through the two placing rings. This structure changes the original single structure, improves the overall fabric detection efficiency, and effectively prevents the traditional fabric fuzzing and pilling instrument from only being able to install a single piece of fabric at the upper end during use, resulting in a low overall use efficiency of the subsequent fabric fuzzing and pilling instrument.

[0020] 2. Through the setting of the collection assembly in the present utility model, a conveying pipe is installed in the collection assembly. The conveying pipe is connected to an air pump for use, facilitating the conveying of gas. The conveying pipe is connected to a storage block. The gas is stored through the storage block. A spraying pipe is installed at the upper end. The gas is sprayed through the spraying pipe for use. A collection groove is installed at the lower end. The collection groove is installed at the outer end of the device box. The blown - off lint is collected through the collection groove. This structure is used in combination with the following plate. The following plate shields the upper end of the moving groove to prevent subsequent lint from entering the device, effectively preventing lint from remaining at the upper end when the fabric fuzzing and pilling instrument is in use, resulting in messiness at the upper end of the subsequent fabric fuzzing and pilling instrument, and preventing subsequent lint from falling into the device and causing damage to the inside of the device. Description of the Drawings

[0021] Figure 1 Schematic diagram of the overall structure of the present utility model;

[0022] Figure 2 Schematic diagram of the structure moving device assembly of the present utility model;

[0023] Figure 3 Schematic diagram of the placing and using assembly of the present utility model;

[0024] Figure 4 Schematic diagram of the structure collection assembly of the present utility model.

[0025] Wherein: 1. Structure moving device assembly; 101. Device box; 102. Fixed plate; 103. First moving groove; 104. Second moving groove; 105. Left - right moving structure; 106. Front - back moving structure; 107. Follow - up plate; 2. Placing and using assembly; 201. Structure frame; 202. Rotating structure; 203. Connecting rod; 204. Connecting groove; 205. Rotating block; 206. Adjusting rod; 207. First placing ring; 208. Fuzzing plate; 209. Second placing ring; 210. Pilling plate; 3. Collection assembly; 301. Delivery pipe; 302. Storage block; 303. Connecting block; 304. Spraying pipe; 305. Collection tank. Specific implementation mode

[0026] The following further describes the implementation mode of the present utility model in detail with reference to the drawings and embodiments. The following embodiments are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0027] In the description of the present utility model, unless otherwise stated, "a plurality of" means two or more; the orientation or positional relationships indicated by terms such as "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present utility model. In addition, terms such as "first", "second", "third", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0028] In the description of the present utility model, it should be noted that, unless otherwise clearly specified and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0029] Please refer to Figure 1 - Figure 4 In this embodiment, a fully automatic fabric pilling tester includes: a moving device assembly 1. An upper end of the moving device assembly 1 is connected and installed with a placing and using assembly 2. An upper end of the placing and using assembly 2 is installed with a structural frame 201. An upper end of the structural frame 201 is installed with a rotating structure 202. An upper end of the rotating structure 202 is installed with a connecting rod 203. Both sides of the connecting rod 203 are installed with connecting grooves 204. An inside of the connecting groove 204 is installed with a rotating block 205. A lower end of the rotating block 205 is installed with an adjusting rod 206. A lower end of the adjusting rod 206 is installed with a first placing ring 207. An outer end of the moving device assembly 1 is installed with a collecting assembly 3. An upper end of the collecting assembly 3 is installed with a storage block 302. An upper end of the storage block 302 is installed with a connecting block 303. An upper end of the connecting block 303 is connected with a spraying pipe 304. A lower end of the storage block 302 is installed with a collecting groove 305. The placing and using assembly 2 is installed above a device box 101 in the moving device assembly 1. The collecting assembly 3 is installed at an outer end of the device box 101 in the moving device assembly 1.

[0030] With the above structure, the moving device assembly 1 facilitates the installation and connection of the upper structures, and drives the upper structures to move through the left - right moving structure 105 and the front - back moving structure 106 inside, facilitating the subsequent friction detection of the fabric. The placing and using assembly 2 facilitates the placing and friction detection of multiple pieces of fabric, and drives the upper structures to rotate through the rotating structure 202 at the upper end, drives the first placing ring 207 and the second placing ring 209 at the upper end to rotate, and adjusts the angle of the upper fabric for friction. The collecting assembly 3 facilitates the collection of the lint generated after friction at the upper end of the device, preventing the subsequent lint from entering the device interior.

[0031] Please refer to Figure 1 - Figure 4 An upper end of the moving device assembly 1 is installed with a device box 101. Both sides of an upper end of the device box 101 are installed with fixing plates 102. An upper end of the device box 101 is installed with a first moving groove 103. An inner side of the first moving groove 103 is installed with a second moving groove 104. An inside of the device box 101 is installed with a left - right moving structure 105. An inner side of the left - right moving structure 105 is installed with a front - back moving structure 106. An upper end of the second moving groove 104 is installed with a follower plate 107. The first moving groove 103 is a horizontal structure. The second moving groove 104 is a vertical structure. The left - right moving structure 105 is inserted and connected inside the first moving groove 103. The front - back moving structure 106 is inserted and connected inside the second moving groove 104.

[0032] Through the above structure: By installing the device box 101, the upper structure is installed and connected, and it is convenient to subsequently install and connect the motor control device. The fixing plates 102 are installed on both sides of the device box 101. The collecting component 3 is connected and installed through the fixing plates 102. The first moving groove 103 and the second moving groove 104 are used in combination, and the first moving groove 103 and the second moving groove 104 are installed at the upper end of the device box 101. The left-right moving structure 105 and the front-back moving structure 106 are installed and connected through the first moving groove 103 and the second moving groove 104. The left-right moving structure 105 and the front-back moving structure 106 are used in combination. The raising plate 208 and the structure frame 201 at the upper end are connected and driven to move through the left-right moving structure 105 and the front-back moving structure 106, which is convenient for subsequently detecting the friction of the fabric on the upper end of the placing ring. The following plate 107 is installed at the upper ends of the left-right moving structure 105 and the front-back moving structure 106, and the following plate 107 is used to prevent subsequent lint from falling into the device interior.

[0033] Please refer to Figure 1 - Figure 4 , a raising plate 208 is installed at the lower end of the placing and using component 2. A second placing ring 209 is installed on the left side of the first placing ring 207, and a pilling plate 210 is installed at the lower end of the second placing ring 209. The structure frame 201 is inserted and connected to the second moving groove 104 and connected in the front-back moving structure 106. A rotating rod is installed at the connection between the connection groove 204 and the rotating block 205. The upper end of the first placing ring 207 is a rotating and detachable structure. The first placing ring 207 and the second placing ring 209 have the same structure. The raising plate 208 and the pilling plate 210 are installed at the upper end of the left-right moving structure 105.

[0034] Through the above structure: By installing the structure frame 201, the upper structure is driven to be supported, and the structure frame 201 is installed in the front-back moving structure 106. The structure frame 201 is driven to move back and forth through the front-back moving structure 106. The rotating structure 202 is installed at the upper end of the structure frame 201. The upper structure is driven to rotate through the rotating structure 202, which is convenient for subsequently changing the position of the fabric for different detections. The connecting rod 203 is installed at the upper end of the rotating structure 202. The connecting rod 203 and the connection groove 204 are used in combination. The rotating block 205 is connected and used through the connection groove 204. The rotating block 205 is connected inside the connection groove 204 through the rotating rod, which is convenient for subsequently driving the lower structure to rotate. The adjusting rod 206 drives the lower placing ring to be connected. The position height of the placing ring is adjusted through the adjusting rod 206. The first placing ring 207 and the second placing ring 209 are used in combination. The placing ring installs the fabric to be detected. The raising plate 208 and the pilling plate 210 are used in combination. The fabric is rubbed by the raising plate 208 and the pilling plate 210 to detect whether the fabric is wear-resistant and scratch-resistant.

[0035] Please refer to Figure 1 - Figure 4 , at the upper end of the collection component 3, a delivery pipe 301 is installed. The collection tank 305 is installed at the upper end of the fixing plate 102, and the collection tank 305 is a detachable structure, and the spraying pipe 304 is an inclined structure.

[0036] With the above structure: By installing the delivery pipe 301, the upper structure is installed and connected, and the delivery pipe 301 is connected to an air pump. The air pump is used to deliver gas. The storage block 302 is connected to the delivery pipe 301, and the gas in the storage block 302 is continuously stored through the delivery pipe 301 for subsequent continuous use. The connection block 303 is installed at the upper end of the storage block 302, and the upper spraying pipe 304 is combined through the connection block 303 for use, facilitating the spraying of gas through the spraying pipe 304 to blow off the lint at the upper end of the device box 101. The collection tank 305 is installed at the outer end of the device box 101 and fixed to the outer end of the device box 101 through the fixing plate 102, facilitating the subsequent collection of lint.

[0037] In use, first, install the circular fabric on the upper end of the placement ring. Remove the rotating cover at the upper end of the placement ring, place the fabric on the upper ends of the first placement ring 207 and the second placement ring 209, and fix the rotating cover to the upper end of the placement ring. After the fabric is fixed, rotate the placement ring. The upper end of the first placement ring 207 is connected to the adjusting rod 206, and a rotating block 205 is installed at the upper end of the adjusting rod 206. Fix the lower structure to the connection slot 204 in the connecting rod 203 through the rotating block 205 and fix it through the rotating rod. Move the first placement ring 207, and rotate it through the upper rotating block 205 and the connection slot 204. Rotate the angle of the first placement ring 207 to the upper end of the raising plate 208, and move the second placement ring 209 at the other end to the upper end of the pilling plate 210. Start the device and adjust relevant data through the terminal. The lower ends of the raising plate 208 and the pilling plate 210 are equipped with a left-right moving structure 105. Fix the raising plate 208 and the pilling plate 210 through the first moving groove 103. The first placement ring 207 and the second placement ring 209 are connected through the structure frame 201. The lower end of the structure frame 201 is equipped with a front-back moving structure 106. Fix the structure frame 201 through the second moving groove 104. When the terminal is started, start the left-right moving structure 105 and the front-back moving structure 106, move the raising plate 208, the pilling plate 210 and the structure frame 201 at the upper end, and perform friction detection on the fabric at the upper end of the placement ring. After detection, rotate the first placement ring 207 and the second placement ring 209 through the rotating structure 202, continue detection after rotation. After detection, there will be a certain amount of lint on the upper end of the device box 101. Install a collection groove 305 on the upper end of the device box 101, and install fixing plates 102 on both sides of the device box 101. Place the collection groove 305 through the fixing plates 102. Connect the delivery pipe 301 to the air pump, and continue to deliver gas through the air pump. The delivery pipe 301 is connected to the storage block 302, and a connection block 303 is installed at the upper end of the storage block 302. Deliver the gas to the ejection pipe 304 through the connection block 303. The gas is ejected through the ejection pipe 304 to clean the lint on the upper end of the device box 101. The lint is blown off by the gas and falls into the collection groove 305.

[0038] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A fully automatic fabric pilling tester, characterized in that: include: A mobile device assembly (1), wherein the upper end of the mobile device assembly (1) is connected to and installed with a placement and use assembly (2), the upper end of the placement and use assembly (2) is installed with a structural frame (201), and the upper end of the structural frame (201) is installed with a rotating structure (202), the upper end of the rotating structure (202) is installed with a connecting rod (203), and both sides of the connecting rod (203) are installed with connecting grooves (204), and a rotating block (205) is installed inside the connecting groove (204), and the rotating block An adjusting rod (206) is installed at the lower end of the adjusting rod (206), a first placing ring (207) is installed at the lower end of the adjusting rod (206), a collecting assembly (3) is installed at the outer end of the moving device assembly (1), a storage block (302) is installed at the upper end of the collecting assembly (3), a connecting block (303) is installed at the upper end of the storage block (302), and a spray pipe (304) is connected to the upper end of the connecting block (303), and a collecting tank (305) is installed at the lower end of the storage block (302).

2. The fully automatic fabric pilling tester according to claim 1, characterized in that: The upper end of the mobile device assembly (1) is installed with a device box (101), and fixed plates (102) are installed on both sides of the upper end of the device box (101); the upper end of the device box (101) is installed with a first moving groove (103), and the inner side of the first moving groove (103) is installed with a second moving groove (104); the inside of the device box (101) is installed with a left-right moving structure (105), and the inner side of the left-right moving structure (105) is installed with a front-back moving structure (106); and the upper end of the second moving groove (104) is installed with a follower plate (107).

3. The fully automatic fabric pilling tester according to claim 1, characterized in that: A raising plate (208) is installed at the lower end of the placement and use component (2), a second placement ring (209) is installed on the left side of the first placement ring (207), and a pilling plate (210) is installed at the lower end of the second placement ring (209).

4. The fully automatic fabric pilling tester according to claim 1, characterized in that: A delivery pipe (301) is installed at the upper end of the collection assembly (3).

5. The fully automatic fabric pilling tester according to claim 1, characterized in that: The placement and use component (2) is installed above the device box (101) in the mobile device component (1), and the collection component (3) is installed at the outer end of the device box (101) in the mobile device component (1).

6. The fully automatic fabric pilling tester according to claim 2, characterized in that: The first movable groove (103) is a horizontal structure, the second movable groove (104) is a vertical structure, the left-right movable structure (105) is inserted and connected inside the first movable groove (103), and the front-back movable structure (106) is inserted and connected inside the second movable groove (104).

7. The fully automatic fabric pilling tester according to claim 3, characterized in that: The structural frame (201) is inserted into and connected to the second movable groove (104) and is connected to the front-rear movable structure (106). A rotating rod is installed at the connection between the connecting groove (204) and the rotating block (205). The upper end of the first placement ring (207) is a rotating disassembly structure. The first placement ring (207) has the same structure as the second placement ring (209). The raising plate (208) and the pilling plate (210) are installed at the upper end of the left-right movable structure (105).

8. The fully automatic fabric pilling tester according to claim 4, characterized in that: The collecting trough (305) is installed at the upper end of the fixing plate (102), and the collecting trough (305) is a detachable structure, and the ejection pipe (304) is an inclined structure.

Citation Information

Patent Citations

  • Fabric fuzzing and pilling instrument

    CN209148514U