Design sample clothes inspection device

By designing a sample garment inspection device and adopting a support frame and pressure testing system, the shortcomings of sample garment quality inspection were solved, and the firmness and tear resistance of the stitch joints were effectively evaluated, thus improving the versatility and quality of sample garment inspection.

CN223808277UActive Publication Date: 2026-01-16BEIJING JIN TIAN SHI GARMENT CO LTD
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Patent Information

Application Number
CN202520317742.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-16
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

Existing sample garment inspection equipment cannot effectively detect the quality of sample garments, especially the strength of the stitch joints and tear resistance, which affects production and sales.

Method used

A sample garment inspection device was designed, including a support base, a support frame, a main testing mechanism, an auxiliary testing mechanism, and a pressure testing system. Through the movable structure of the support frame and the pressure testing system, the tear resistance of the sample garment in different parts and the firmness of the stitch connections are measured.

Benefits of technology

This enables comprehensive quality inspection of sample garments, particularly the effective assessment of the strength and tear resistance of the stitch joints, thus improving the versatility and quality of sample garment inspection and ensuring the reliability of subsequent production.

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Abstract

The utility model relates to a designed sample clothes inspection device which comprises a supporting base, a supporting framework installed on the supporting base, a main testing mechanism connected to the upper portion of the supporting framework, auxiliary testing mechanisms connected to the two sides of the upper portion of the main testing mechanism and a pressure testing system. Each of the main test mechanism and the auxiliary test mechanism comprises a fixed part and a movable part which are sleeved on the inner side of the sample clothes and are used for supporting the sample clothes, and the pressure test system is connected between the fixed part and the movable part and is used for measuring the pressure change during relative movement between the fixed part and the movable part. The device provided by the utility model can effectively detect the tear resistance of the fabric surface of the sample clothes and the firmness of the stitch joint, and improves the polyhedral performance and quality of sample clothes detection.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of garment design, in particular to a design sample garment inspection device. BACKGROUND

[0002] After garment design is completed, sample garment production is needed, and the sample garment reflects the shortcomings in the design, and the sample garment production quality directly relates to product production quality, efficiency and cost, therefore, garment design sample garments need to be inspected according to garment quality standards to prevent unqualified products from flowing out, so a garment design sample garment inspection device is needed.

[0003] At present, sample garment inspection devices are mostly used for detecting the appearance of sample garments, but the quality of sample garments, in particular the firmness of the stitch connection and the tear resistance, cannot be effectively detected, and the quality of sample garments cannot be better monitored, affecting subsequent production and sales. CONTENT OF THE INVENTION

[0004] The application aims to provide a design sample garment inspection device which can effectively detect the tear resistance of the physical layer of the sample garment and the firmness of the stitch connection, and improve the multi-faceted nature and quality of sample garment detection.

[0005] The design sample garment inspection device provided by the application adopts the following technical scheme:

[0006] The design sample garment inspection device comprises a support base, a support framework mounted on the support base, a main test mechanism connected to the upper part of the support framework, an auxiliary test mechanism connected to the upper part of the main test mechanism, and a pressure test system, the main test mechanism and the auxiliary test mechanism each comprise a fixed part and a movable part sleeved on the inside of the sample garment for outwardly supporting the sample garment, and the pressure test system is connected between the fixed part and the movable part for measuring the pressure change when the fixed part and the movable part move relative to each other.

[0007] As a preferred technical scheme of the application, the support framework comprises an upright framework fixed vertically on the support base and two side frameworks rotatably connected to the upper ends of the two sides of the upright framework, a fixing structure is arranged at the connection between the side framework and the upright framework, the main test mechanism is connected to the upright framework, and the auxiliary test mechanism is connected to the side framework.

[0008] As a preferred technical scheme of the application, the fixed part of the main test mechanism comprises a connecting frame fixedly connected to the upright framework and a fixed contact plate connected to the connecting frame, and the side of the fixed contact plate away from the connecting frame is provided as an outwardly convex outward supporting arc surface.

[0009] As a preferred technical scheme of the present application, the movable part of the main testing mechanism comprises a telescopic rod fixedly connected to the fixed contact plate for connecting the side of the connecting frame and a movable contact plate connected to the end of the telescopic rod away from the fixed contact plate, and a vertical skeleton is arranged between the movable contact plate and the fixed contact plate, the telescopic rod controls the movable contact plate to move away from or close to the fixed contact plate, and the side of the movable contact plate away from the fixed contact plate is arranged as a convex outer supporting arc surface.

[0010] As a preferred technical scheme of the present application, the pressure testing system comprises a pressurizing plate connected to the movable contact plate, a pressure sensor connected to the vertical skeleton, and a pressurizing spring arranged between the pressurizing plate and the pressure sensor, the pressurizing plate extends into the space between the fixed contact plate and the vertical skeleton, and the extension direction of the pressurizing spring is the same as the extension direction of the telescopic rod.

[0011] As a preferred technical scheme of the present application, the pressure testing system further comprises a controller installed on the supporting base and a display screen electrically connected to the controller, and the pressure sensor is arranged in plurality and electrically connected to the controller.

[0012] As a preferred technical scheme of the present application, the fixing structure comprises horizontal beams fixedly arranged at the two sides of the upper end of the vertical skeleton, a positioning disc connected to the extending end of the horizontal beam, and a positioning pin connected to the positioning disc, the vertical skeleton is connected to the positioning disc through a rotating shaft, the positioning disc is provided with a circle of pin holes around the rotating shaft of the vertical skeleton, the vertical skeleton is provided with positioning holes coinciding with the pin holes, and the positioning pin is arranged in the pin holes and the positioning holes.

[0013] In summary, the present application has at least one of the following beneficial technical effects:

[0014] 1. When the device detects the quality of a sample garment, the sample garment is put on the device, the garment is put on the main testing mechanism, the sleeves are put on the auxiliary testing mechanism, the telescopic rod is extended, the fixed contact plate and the movable contact plate gradually stretch the sample garment, the pressure plate gradually applies pressure to the pressure sensor through the pressure spring in the process of continuous pressure application, the pressure data is transmitted to the controller by the pressure sensor, and the pressure resistance and tear resistance of the sample garment can be obtained.

[0015] 2. The supporting skeleton can move, when the vertical skeleton is turned to the lower side of the waterline, the performance of the upper garment can be detected, when the vertical skeleton is turned to the upper side, the performance of the lower garment can be detected, one object has two uses, and the application range is wide.

[0016] 3. The fixing structure between the vertical skeleton and the vertical skeleton adopts a pin structure, which can be adjusted to multiple fixed states, so that the position state between the vertical skeleton and the vertical skeleton is stable and reliable. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is the overall structure schematic diagram of the device of the embodiment of the present application;

[0018] Figure 2 is the structure top view of the main testing mechanism in the embodiment of the present application;

[0019] Figure 3 is the structure schematic diagram of another state of the device of the embodiment of the present application;

[0020] In the figure, 1 is a support base; 2 is a support framework; 21 is a vertical framework; 22 is a side framework; 23 is a crossbeam; 24 is a positioning disc; 25 is a positioning pin; 26 is a pin hole; 3 is a main testing mechanism; 31 is a connecting frame; 32 is a fixed contact plate; 33 is an outer supporting camber; 34 is an extension rod; 35 is a movable contact plate; 4 is an auxiliary testing mechanism; 5 is a pressure testing system; 51 is a pressurizing plate; 52 is a pressure sensor; 53 is a pressurizing spring; 54 is a controller; 55 is a display screen. DETAILED DESCRIPTION

[0021] The following will be further explained in detail in combination with the accompanying drawings. Figures 1-3 The present application will be further explained in detail.

[0022] Embodiment: The embodiment proposes a design sample clothing inspection device, referring to the accompanying drawings. Figures 1-2 The device comprises a support base 1, a support framework 2, a main testing mechanism 3, an auxiliary testing mechanism 4 and a pressure testing system 5. The support framework 2 is installed on the support base 1. The main testing mechanism 3 and the auxiliary testing mechanism 4 are installed on the support framework 2. The main testing mechanism 3 is used for measuring the tear resistance of the torso part of a top or the waist part of a bottom. The auxiliary testing mechanism 4 is used for measuring the tear resistance of the sleeve part of a top or the leg part of a bottom. The pressure testing system 5 is connected between the main testing mechanism 3 and the auxiliary testing mechanism 4, used for sensing the pressure change of the main testing mechanism 3 and the auxiliary testing mechanism 4, and collecting pressure data.

[0023] The support base 1 is set as a rectangular structure, used for being placed on a working plane, keeping the stability of the whole device.

[0024] The support frame 2 comprises a vertical frame 21 and side frames 22, the vertical frame 21 is vertically fixed on the support base 1, the side frames 22 are provided with two, and are rotationally connected on both sides of the upper end of the vertical frame 21, and the connection part of the side frame 22 and the vertical frame 21 is provided with a fixing structure for fixing the relative position of the two. In the embodiment, the vertical frame 21 is provided as a vertical square rod, the side frame 22 is also provided as a square rod, two outwardly extending cross beams 23 are oppositely arranged on the upper end of the vertical frame 21, the two cross beams 23 are coaxially arranged, the extending end of the cross beam 23 is fixedly connected with a circular positioning disc 24, the center of the positioning disc 24 is provided with a shaft hole, a circle of eight pin holes 26 is arranged around the shaft hole of the positioning disc 24, a positioning pin 25 is arranged in the pin hole 26, the side frame 22 is connected in the shaft hole on the positioning disc 24 through a rotating shaft, the side frame 22 is provided with a positioning hole which can coincide with the pin hole 26, and the positioning pin 25 passes through the pin hole 26 and the positioning hole in sequence to fix the relative position of the side frame 22 and the positioning disc 24, in the embodiment, the side frame 22 can be fixed at positions of 90°, 180° and 225°, and the side frame 22 is in the state of being rotated to 225°. Figure 2

[0025] The main test mechanism 3 is installed on the upper part of the vertical frame 21, and the auxiliary test mechanism 4 is installed on the side frame 22. In the embodiment, the main test mechanism 3 and the auxiliary test mechanism 4 are the same in structure, and the difference lies in the size, the main test mechanism 3 and the auxiliary test mechanism 4 all comprise a fixed part and a movable part which are sleeved in the sample clothes and are used for outwardly supporting the sample clothes.

[0026] The fixed part of the main test mechanism 3 comprises a connecting frame 31 and a fixed contact plate 32, and the movable part comprises a telescopic rod 34 and a movable contact plate 35. The connecting frame 31 is provided as two horizontally arranged horizontal rods, one end of the connecting frame 31 is fixed on one side of the vertical frame 21, and the other end of the connecting frame 31 is fixed on the fixed contact plate 32, the cross section of the fixed contact plate 32 is semilunar, the side surface connected with the connecting frame 31 is provided as a plane, and the side surface away from the connecting frame 31 is provided as an outwardly convex outward supporting arc surface 33, the axis of the outward supporting arc surface 33 is parallel to the vertical frame 21, and the fixed contact plate 32 contacts and supports the torso part of the upper garment or the waist part of the lower garment by means of the outward supporting arc surface 33.

[0027] The movable contact plate 35 is the same in structure and is horizontally arranged opposite to each other, the outward supporting arc surface 33 of the movable contact plate 35 faces outward, and the telescopic rod 34 is provided with two in parallel, and is perpendicular to the vertical frame 21 and located on both sides of the vertical frame 21, in the embodiment, the telescopic rod 34 adopts a pneumatic cylinder, and the telescopic rod 34 is controlled to stretch out by means of a pneumatic machine, the fixed end of the telescopic rod 34 is fixed on the plane of the fixed contact plate 32 connected with the connecting frame 31, and the piston end of the telescopic rod 34 is fixedly connected with the plane of the movable contact plate 35. By controlling the telescopic rod 34 to stretch out, the movable contact plate 35 is away from the fixed contact plate 32, and the sample clothes are gradually supported and tightened. ​

[0028] The pressure testing system 5 is connected between the fixed part and the movable part, and is used for measuring the pressure change when the relative movement between the fixed part and the movable part. The pressure testing system 5 comprises a pressing plate 51, a pressure sensor 52, a pressing spring 53, a controller 54 and a display screen 55; the pressing plate 51 is in a U shape, one side plate is fixed on the movable contact plate 35, and the other side plate passes through the vertical skeleton 21 to the position between the vertical skeleton 21 and the fixed contact plate 32; the pressure sensor 52 is connected to the side of the vertical skeleton 21 facing the fixed contact plate 32; the pressing spring 53 is connected between the side plate of the pressing plate 51 between the vertical skeleton 21 and the fixed contact plate 32 and the pressure sensor 52, and the extension direction of the pressing spring 53 is the same as the extension direction of the extension rod 34. The controller 54 and the display screen 55 are arranged in an integrated structure, and are installed on the support base 1; the display screen 55 is electrically connected with the controller 54; and the pressure sensor 52 is provided with multiple and is also electrically connected with the controller 54.

[0029] When the anti-tearing performance test of the sample clothes is performed, the extension rod 34 pushes the movable contact plate 35 outward to stretch the sample clothes, the pressing plate 51 starts to press the pressing spring 53, the pressing spring 53 transmits the pressure to the pressure sensor 52, the pressure sensor 52 transmits the data signal to the controller 54, the controller 54 processes the data signal and stores the pressure data, and the test data can be conveniently viewed through the display screen 55.

[0030] Reference Figure 3 At this time, the side skeleton 22 is rotated to 90°, and the pants can be put on the main test mechanism 3 and the auxiliary test mechanism 4 in the direction from top to bottom with the waist downward for testing.

[0031] The embodiments of the specific embodiment are the preferred embodiments of the present application, and are not limited to the protection scope of the present application, wherein the same parts are indicated by the same reference numerals. Therefore, any equivalent changes made according to the structure, shape and principle of the present application should be covered in the protection scope of the present application.

Claims

1. A design sample inspection apparatus characterized by comprising: The utility model relates to a pressure test system, including support base (1), install on support base (1) on support framework (2), connect in upper portion of support framework (2) main test mechanism (3), connect in upper portion both sides of main test mechanism (3) subsidiary test mechanism (4) and pressure test system (5), and main test mechanism (3) and subsidiary test mechanism (4) all include the fixed part and movable part for the fixed part and movable part of the outer support of suit inside, pressure test system (5) is connected between fixed part and movable part for measuring the pressure change when the relative movement between fixed part and movable part.

2. A design pattern checking device according to claim 1, wherein The support framework (2) includes vertical skeleton (21) vertically fixed on the support base (1) and two side skeletons (22) rotatably connected to the upper ends of the vertical skeletons (21), the side skeletons (22) are provided with fixing structures at the connection positions with the vertical skeletons (21), the main test mechanism (3) is connected to the vertical skeletons (21), and the subsidiary test mechanism (4) is connected to the side skeletons (22).

3. A design pattern checking device according to claim 2, wherein The fixed part of the main test mechanism (3) includes a connecting frame (31) fixedly connected to the vertical skeletons (21) and a fixed contact plate (32) connected to the connecting frame (31), and the side of the fixed contact plate (32) away from the connecting frame (31) is provided with an outward convex outer supporting arc surface (33).

4. A design pattern checking device according to claim 3, wherein The movable part of the main test mechanism (3) includes an extension rod (34) fixedly connected to the side of the fixed contact plate (32) for connecting the connecting frame (31) and a movable contact plate (35) connected to the end of the extension rod (34) away from the fixed contact plate (32), the vertical skeletons (21) are arranged between the movable contact plate (35) and the fixed contact plate (32), the extension rod (34) is used for controlling the movable contact plate (35) to move away from or close to the fixed contact plate (32), and the side of the movable contact plate (35) away from the main fixed contact plate (32) is provided with an outward convex outer supporting arc surface (33).

5. A design pattern checking device according to claim 4, wherein The pressure test system (5) includes a pressurizing plate (51) connected to the movable contact plate (35), a pressure sensor (52) connected to the vertical skeletons (21), and a pressurizing spring (53) arranged between the pressurizing plate (51) and the pressure sensor (52), the pressurizing plate (51) extends into the fixed contact plate (32) and the vertical skeletons (21), and the extension direction of the pressurizing spring (53) is the same as the extension direction of the extension rod (34).

6. A design pattern checking device according to claim 5, wherein The pressure test system (5) further includes a controller (54) mounted on the support base (1) and a display screen (55) electrically connected to the controller (54), and the pressure sensor (52) is provided with a plurality of pressure sensors and is electrically connected to the controller (54).

7. A design pattern checking device according to claim 2, wherein The fixing structure comprises a cross beam (23) fixedly arranged on both sides of the upper end of the vertical framework (21), a positioning disc (24) connected to the extending end of the cross beam (23), and a positioning pin (25) connected to the positioning disc (24), the side framework (22) is connected to the positioning disc (24) through a rotating shaft, the positioning disc (24) is provided with a circle of pin holes (26) around the rotating shaft of the side framework (22), the side framework (22) is provided with a positioning hole which can coincide with the pin hole (26), and the positioning pin (25) is arranged in the pin hole (26) and the positioning hole.