Fiber material stretching device

By designing a fiber material stretching device including a device bracket, a stretch detector and a fiber fixture, the problem that existing devices cannot perform segmented tensile detection is solved, and high-precision detection of fiber material is achieved.

CN223021742UActive Publication Date: 2025-06-24PUNING SHENGTENG WEAVING CO LTD
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Patent Information

Application Number
CN202421261608.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-04
Publication Date
2025-06-24
Estimated Expiration
2034-06-04

AI Technical Summary

Technical Problem

The existing fiber material strength testing device can only perform a single tensile test on the fiber material, and cannot perform a segmented tensile test, resulting in low testing accuracy and the inability to obtain accurate detection data of the fiber material.

Method used

A fiber material stretching device is designed, including a device bracket, a tension detector and a fiber clamp, which is fixed with the fiber clamp, so that the fiber filament is located in the hollow cavity, and the fiber filament is used to perform segmented tensile detection on the positioning plate by using a lifting rod and a tension driver, and detection data is obtained through a tension sensor and a tension detector.

Benefits of technology

The segmented detection of fiber materials is realized, which improves the accuracy of the detection device for fiber material testing data, and solves the problem of low testing accuracy of existing devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a fiber material stretching device, which belongs to the technical field of cellosilk detection, and comprises an equipment support, a stretching detector and a fiber clamp, the upper surface of the equipment support is provided with a slideway, the middle part of the slideway is provided with a segmentation box, the segmentation box is internally provided with a hollow cavity, the upper part of the hollow cavity is provided with a positioning plate, and the middle parts of the front and back surfaces of the segmentation box are provided with threading ports in a penetrating manner; a lifting notch is formed in the middle of the equipment support and penetrates through the top of the equipment support to be communicated with the hollow cavity, a pressing plate is arranged in the lifting notch and corresponds to the positioning plate, a lifting driver is arranged below the pressing plate, sliding blocks are arranged on the two sides of the middle of the sliding way, a stretching detector is arranged in front of the sliding blocks, and the front face of the stretching detector is connected with a fiber clamp. A stretching driver is arranged behind the sliding block and can be fixed to the fiber clamp through fibers, then the fibers are located in the hollow cavity, the pressing plate moves upwards to press the fibers into the positioning plate, the electric stretching rod drives the sliding block to move, and the linkage plate drives the stretching detector to move to check stress of the stretching detector.
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Description

Technical Field

[0001] The utility model relates to the technical field of fiber filament detection, and particularly relates to a fiber material stretching device. Background Art

[0002] Fiber materials are structured materials formed by fibrous substances through textile processing techniques, and are usually also called textile materials. The application history of fiber materials is quite long. Although there is no clear record of when this material came into being, in ancient human trade, fiber materials have always occupied an important position, fully demonstrating the importance of fiber materials to human development.

[0003] At present, when the strength test device for fiber materials conducts tests on fiber materials, it is necessary to test the stretching effect of the fiber materials to ensure that the fiber materials can be used normally in the follow-up. The existing strength test devices for fiber materials can only perform single stretching detection on fiber materials and cannot perform segmented stretching tests on fiber materials. As a result, the test accuracy of the device for fiber materials is relatively low, and more accurate detection data of the fiber materials cannot be obtained. To solve the above problems, a fiber material stretching device is proposed to solve the above problems. Content of the Utility Model

[0004] In view of this, the utility model provides a fiber material stretching device. The fiber filament can be fixed with a fiber fixture in the utility model, and then the fiber filament is located in the hollow cavity. The pressing plate moves upward to press the fiber filament onto the positioning plate, and the electric stretching rod drives the slider to move, so that the linkage plate drives the stretching detector to move to check its force.

[0005] To solve the above technical problems, the utility model provides a fiber material stretching device, which includes an equipment support, a stretching detector, and a fiber fixture. A slideway is arranged on the upper surface of the equipment support. A segmented box is arranged in the middle of the slideway. A hollow cavity is arranged in the segmented box. A positioning plate is arranged above the hollow cavity. Thread passing openings are arranged through the middle parts of the front and back surfaces of the segmented box. A lifting slot opening is arranged in the middle of the equipment support. The lifting slot opening penetrates through the top of the equipment support and communicates with the hollow cavity. A pressing plate is arranged in the lifting slot opening. The pressing plate corresponds to the positioning plate. A lifting driver is arranged below the pressing plate. Sliders are arranged on both sides in the middle of the slideway. A stretching detector is arranged in front of the slider. The front surface of the stretching detector is connected to the fiber fixture. A stretching driver is arranged behind the slider.

[0006] A stretching fixator for connecting the slider to the electric stretching rod is arranged behind the slider, and an electric stretching rod for driving the slider to move is arranged at the rear end of the stretching fixator.

[0007] A stretching connector for connecting the electric stretching rod to the stretching driver is provided through the side wall of the slideway at the rear end of the electric stretching rod. The rear end of the stretching connector is connected to the stretching driver. A fixing bracket for connecting the stretching driver to the slideway is provided behind the stretching driver, and the fixing bracket is fixed to the slideway.

[0008] A linkage plate for connecting the stretching detector to the slider is provided behind the stretching detector, and the rear surface of the linkage plate is fixed to the front surface of the slider.

[0009] A lifting fixator for connecting the pressing plate to the lifting rod is provided on the lower surface of the pressing plate. A lifting rod for driving the pressing plate to lift is provided at the lower end of the lifting fixator. A lifting connector for connecting the lifting rod to the lifting driver is provided at the lower end of the lifting rod. The lower end of the lifting connector is connected to the lifting driver, and the lower surface of the lifting driver is fixed to the bottom of the equipment bracket.

[0010] A connecting plate for connecting the segmenting box to the tensile force detector is provided on the upper surface of the segmenting box. A tensile force detector for detecting the tensile force of the fiber filament between the pressing plate and the positioning plate is provided on the upper surface of the connecting plate. A display for displaying the detected value is provided at one end of the tensile force detector.

[0011] A fixing plate for fixing the connecting block is provided between the segmenting box and the slider. Both ends of the fixing plate are fixed to the upper surface of the slideway. Positioning blocks for connecting the segmenting box to the slideway are provided on both sides of the segmenting box, and the positioning blocks are fixed to the upper surface of the slideway.

[0012] A connecting block for connecting the fixing plate to the fiber fixture is provided on the lower surface of the fixing plate. The lower surface of the connecting block is fixed to the fiber fixture. Tensile force sensors for detecting the data of the fiber filament after stretching are provided on both sides of the fiber fixture.

[0013] In summary, compared with the prior art, the present application includes at least one of the following beneficial technical effects:

[0014] 1. First, fix the fiber filament to the fiber fixture on one side, then pass the fiber filament into the segmenting box through the wire threading opening, and then fix it to the fiber fixture at the other end through the wire threading opening, so that the fiber filament is located in the hollow cavity. Start the lifting rod to move the pressing plate upward to press the fiber filament in the hollow cavity onto the positioning plate. Then start the stretching driver to drive the slider to move by the electric stretching rod, and then drive the stretching detector to move by the linkage plate. Then, the tensile force sensor and the stretching detector are used to check the force, so as to realize the segmented detection of the fiber material and improve the accuracy of the test data of the fiber material by the detection device.

[0015] 2. A connecting block for connecting the fixing plate to the fiber fixture is provided on the lower surface of the fixing plate. The lower surface of the connecting block is fixed to the fiber fixture. Tensile force sensors for detecting the data of the fiber filament after stretching are provided on both sides of the fiber fixture, so that the fiber fixture can work stably during use.

[0016] 3. The fiber filaments are located inside the segmented box through the hollow cavity, and the fiber filaments are clamped and fixed by the cooperation of the pressing plate and the positioning plate to segment the fiber filaments. Description of the Drawings

[0017] Figure 1 It is a schematic diagram of the main structure of a fiber material stretching device of the present utility model;

[0018] Figure 2 It is a schematic diagram of the partial structure A of the present utility model;

[0019] Figure 3 It is a side view cross-sectional view of the present utility model;

[0020] Figure 4 It is a front view cross-sectional view of the present utility model.

[0021] Description of the reference numerals: 100, equipment bracket; 101, stretching detector; 102, fiber clamp; 103, slideway; 104, slider; 200, segmented box; 201, hollow cavity; 202, positioning plate; 203, threading port; 204, connecting plate; 205, tensile force detector; 206, display; 300, lifting notch; 301, pressing plate; 302, lifting driver; 303, lifting fixator; 304, lifting rod; 305, lifting connector; 400, stretching driver; 401, stretching fixator; 402, stretching connector; 403, electric stretching rod; 404, fixed bracket; 405, linkage plate; 406, fixing plate; 407, positioning block; 408, connecting block; 409, tensile force sensor. Detailed Embodiment

[0022] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the following will combine the accompanying drawings of the embodiments of the present utility model Figures 1-4 to clearly and completely describe the technical solutions of the embodiments of the present utility model. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all of the embodiments. Based on the described embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art belong to the scope protected by the present utility model.

[0023] As Figures 1-4As shown in the figure: This embodiment provides a fiber material stretching device, including a device support 100, a stretching detector 101, and a fiber clamp 102. A slideway 103 for the movement of a slider 104 is provided on the upper surface of the device support 100. In the middle of the slideway 103, there is a segmentation box 200 for segmentally detecting fiber filaments. Inside the segmentation box 200, there is a hollow cavity 201 for the fiber filaments to pass through. Above the hollow cavity 201, there is a positioning plate 202 for pressing the fiber filaments. In the middle of the front and back sides of the segmentation box 200, there are threading ports 203 for the fiber filaments to enter and exit the segmentation box 200. In the middle of the device support 100, there is a lifting slot 300 for the movement of a pressing plate 301. The lifting slot 300 penetrates through the top of the device support 100 and communicates with the hollow cavity 201. Inside the lifting slot 300, there is a pressing plate 301 for pressing the fiber filaments onto the lower surface of the positioning plate 202. The pressing plate 301 corresponds to the positioning plate 202. Below the pressing plate 301, there is a lifting driver 302 for driving a lifting rod 304. On both sides of the middle of the slideway 103, there are sliders 104 for connecting an electric stretching rod 403 to a linkage plate 405. In front of the slider 104, there is a stretching detector 101 for detecting the tensile force of the fiber filaments. The front of the stretching detector 101 is mechanically connected to the fiber clamp 102. Behind the slider 104, there is a stretching driver 400 for driving the electric stretching rod 403.

[0024] When in use, first fix the fiber filament to the fiber clamp 102 on one side, then pass the fiber filament into the segmentation box 200 through the threading port 203, and then fix it to the fiber clamp 102 at the other end through the threading port 203, so that the fiber filament is located inside the hollow cavity 201. Start the lifting rod 304 to move the pressing plate 301 upward to press the fiber filament in the hollow cavity 201 onto the positioning plate 202. Then start the stretching driver 400 to drive the electric stretching rod 403 to drive the slider 104 to move, so that the linkage plate 405 drives the stretching detector 101 to move, and then the tensile force sensor 409 and the stretching detector 101 are used to check the force it receives.

[0025] This embodiment provides a fiber material stretching device,

[0026] Such as Figure 1 、 2, as shown in FIGS. 4: Behind the slider 104, there is a stretching fixture 401 for connecting the slider 104 to the electric stretching rod 403. The slider 104 and the stretching fixture 401 are fixed by bolt connection. At the rear end of the stretching fixture 401, there is an electric stretching rod 403 for driving the slider 104 to move. The stretching fixture 401 and the electric stretching rod 403 are mechanically connected. At the rear end of the electric stretching rod 403, it penetrates the side wall of the slideway 103 and there is a stretching connector 402 for connecting the electric stretching rod 403 to the stretching driver 400. The stretching connector 402 and the electric stretching rod 403 are mechanically and hermetically connected. The rear end of the stretching connector 402 is electrically connected to the stretching driver 400. Behind the stretching driver 400, there is a fixed bracket 404 for connecting the stretching driver 400 to the slideway 103. The fixed bracket 404 and the stretching driver 400 are fixed by bolt connection. The fixed bracket 404 and the slideway 103 are welded and fixed. Behind the stretching detector 101, there is a linkage plate 405 for connecting the stretching detector 101 to the slider 104. The linkage plate 405 and the stretching detector 101 are fixed by bolt connection. The rear surface of the linkage plate 405 and the front surface of the slider 104 are fixed by bolt connection.

[0027] As Figure 1 , 3 , 4: On the lower surface of the pressing plate 301, there is a lifting fixture 303 for connecting the pressing plate 301 to the lifting rod 304. The pressing plate 301 and the lifting fixture 303 are fixed by bolt connection. At the lower end of the lifting fixture 303, there is a lifting rod 304 for driving the pressing plate 301 to lift. The lifting fixture 303 and the lifting rod 304 are mechanically connected. At the lower end of the lifting rod 304, there is a lifting connector 305 for connecting the lifting rod 304 to the lifting driver 302. The lifting connector 305 and the lifting rod 304 are mechanically and hermetically connected. The lower end of the lifting connector 305 is electrically connected to the lifting driver 302. The lower surface of the lifting driver 302 is fixed to the bottom of the equipment bracket 100 by bolt connection.

[0028] As Figure 1 , 4 shown: On the upper surface of the sectional box 200, there is a connecting plate 204 for connecting the sectional box 200 to the tensile force detector 205. The sectional box 200 and the connecting plate 204 are fixed by bolt connection. On the upper surface of the connecting plate 204, there is a tensile force detector 205 for detecting the sectional tensile force of the fiber filaments between the pressing plate 301 and the positioning plate 202. The tensile force detector 205 and the connecting plate 204 are fixed by bolt connection. One end of the tensile force detector 205 is provided with a display 206 for displaying the detected value. The display 206 is electrically connected to the tensile force detector 205. The tensile force detector 205 can also be deleted to reduce production costs. The display 206 is fixed to the connecting plate 204. The display 206 is electrically connected to the stretching detector 101.

[0029] As shown Figure 1 , 2 , as shown in FIG. 4: A fixing plate 406 for fixedly connecting the connecting block 408 is provided between the segmented box 200 and the slider 104. Both ends of the fixing plate 406 are fixedly connected to the upper surface of the slideway 103 by bolts. Positioning blocks 407 for connecting the segmented box 200 and the slideway 103 are provided on both sides of the segmented box 200. The segmented box 200 and the positioning blocks 407 are fixedly connected by bolts. The positioning blocks 407 and the upper surface of the slideway 103 are fixedly connected by bolts. A connecting block 408 for connecting the fixing plate 406 and the fiber fixture 102 is provided on the lower surface of the fixing plate 406. The fixing plate 406 and the fixing plate 406 are fixedly connected by bolts. The lower surface of the connecting block 408 and the fiber fixture 102 are fixedly connected by bolts. Tensile force sensors 409 for detecting data after the fiber wire is stretched are provided on both sides of the fiber fixture 102. The tensile force sensors 409 and the fiber fixture 102 are fixedly connected by bolts.

[0030] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "installation", "connection", and "connection" 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, and it can be the communication inside two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0031] The above is the preferred embodiment of the present invention. It should be pointed out that for those of ordinary skill in the art, without departing from the principle described in the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. A fiber material stretching device, characterized in that: The invention comprises an equipment support (100), a stretching detector (101) and a fiber clamp (102); a slideway (103) is provided on the upper surface of the equipment support (100); a segment box (200) is provided in the middle of the slideway (103); a hollow cavity (201) is provided in the segment box (200); a positioning plate (202) is provided above the hollow cavity (201); a threading opening (203) is provided in the middle of the front and rear surfaces of the segment box (200); a lifting slot (300) is provided in the middle of the equipment support (100); the lifting slot (300) passes through the equipment support The top of the frame (100) is connected to the hollow cavity (201), a pressing plate (301) is provided in the lifting slot (300), the pressing plate (301) corresponds to the positioning plate (202), a lifting driver (302) is provided below the pressing plate (301), sliders (104) are provided on both sides of the middle of the slideway (103), the stretching detector (101) is provided in front of the slider (104), the front of the stretching detector (101) is connected to the fiber clamp (102), and a stretching driver (400) is provided behind the slider (104).

2. A fiber material stretching device according to claim 1, characterized in that: A stretching fixture (401) is provided behind the sliding block (104), and an electric stretching rod (403) is provided at the rear end of the stretching fixture (401).

3. A fiber material stretching device according to claim 2, characterized in that: A stretching connector (402) is provided at the rear end of the electric stretching rod (403) and passes through the side wall of the slideway (103); a rear end of the stretching connector (402) is connected to the stretching driver (400); a fixing bracket (404) is provided behind the stretching driver (400); and the fixing bracket (404) is fixed to the slideway (103).

4. A fiber material stretching device as claimed in claim 3, characterized in that: A linkage plate (405) is provided at the rear of the stretching detector (101), and the rear of the linkage plate (405) is fixed to the front of the slider (104).

5. A fiber material stretching device as claimed in claim 4, characterized in that: The lower surface of the pressing plate (301) is provided with a lifting fixture (303), the lower end of the lifting fixture (303) is provided with a lifting rod (304), the lower end of the lifting rod (304) is provided with a lifting connector (305), the lower end of the lifting connector (305) is connected to the lifting driver (302), and the lower surface of the lifting driver (302) is fixed to the bottom of the equipment bracket (100).

6. A fiber material stretching device according to claim 5, characterized in that: A connecting plate (204) is provided on the upper surface of the segment box (200), a tension detector (205) is provided on the upper surface of the connecting plate (204), and a display (206) is provided at one end of the tension detector (205).

7. A fiber material stretching device according to claim 6, characterized in that: A fixing plate (406) is provided between the segment box (200) and the slider (104), and both ends of the fixing plate (406) are fixed to the upper surface of the slideway (103). Positioning blocks (407) are provided on both sides of the segment box (200), and the positioning blocks (407) are fixed to the upper surface of the slideway (103).

8. A fiber material stretching device according to claim 7, characterized in that: A connecting block (408) is provided on the lower surface of the fixing plate (406), and the lower surface of the connecting block (408) is fixed to the fiber clamp (102). Tension sensors (409) are provided on both sides of the fiber clamp (102).