Tension elasticity detection device convenient for fixing textile fabric
The distance between the clamping plates is adjusted by a lead screw and an electric telescopic rod. Combined with a stepper motor and a hydraulic system, the pressure block can move in all directions, which solves the problems of compatibility and detection accuracy of existing devices and enables convenient fixing and multi-point detection.
Patent Information
- Application Number
- CN202422638786.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-10-30
AI Technical Summary
Existing tension elasticity testing devices are difficult to adjust the fixing structure according to the size of textile fabrics, resulting in poor fixing convenience and adaptability. Furthermore, the testing can only be performed on one part of the fabric, leading to low testing accuracy.
The distance between the clamping plates is adjusted using a lead screw and electric telescopic rod structure to accommodate different fabric sizes, and the pressure block can be moved in all directions through a stepper motor and hydraulic system to perform multiple tests.
It improves the ease of fixing textile fabrics and the adaptability of the device, while also improving the accuracy of testing through comprehensive detection.
Smart Images

Figure CN223581554U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to textile fabric tension elasticity detection technical field, concretely is a kind of tension elasticity detection device of textile fabric convenient to fix. BACKGROUND
[0002] Textile fabric is the material for making clothes, after the existing textile fabric is produced, in order to detect the quality of fabric, need to carry out multiple detection to fabric, and the tension elasticity detection of fabric is very important, needs to use tension elasticity detection device to detect.
[0003] One kind of China patent with application publication number CN 112414844 A discloses a fabric elasticity detection device for textile production, comprising a fixed base, a clamping plate, a gear plate, a clamping rod and a scale, the fixed base is welded with a fixed plate, and the fixed plate is connected with a support rod, the connecting rod is connected with a limiting frame, and the limiting frame is installed with a first threaded rod, the bottom end of the first threaded rod is connected with a connecting plate, and the bottom end of the connecting plate is connected with a limiting plate, the limiting frame is provided with a limiting slot, and the limiting slot is connected with a limiting plate, and the bottom end of the limiting plate is connected with a clamping plate. The fabric elasticity detection device for textile production is provided with clamping plate, by rotating first threaded rod, connecting plate can be driven to move downward in the limiting slot of limiting frame, at this time, limiting plate can drive the clamping plate on both sides to move to the middle at the same time, can conveniently and quickly clamp and fix the work of fabric, increase the use stability of device.
[0004] The existing tension elasticity detection device is not convenient to adjust the fixing structure according to the size of textile fabric during detecting textile fabric, it is difficult to adapt to textile fabric of different fabric size, so as to cause poor convenience of fixing textile fabric, affect the adaptability of device, therefore, aiming at the above problems, a tension elasticity detection device for fixing textile fabric is proposed. UTILITY MODEL CONTENTS
[0005] In order to make up for the deficiency of prior art, solve the problems existing in prior art, the utility model provides a tension elasticity detection device for fixing textile fabric.
[0006] The utility model discloses a kind of tension elastic detection devices of fixed textile fabric with convenience, including foot stool, base is installed on the foot stool, control panel is installed on the base, mobile slot is opened on the base, first screw rod is rotatably installed on the mobile slot inner wall, the screw thread direction on the first screw rod is symmetrical opposite, knob is installed at one end of the first screw rod, two groups of moving blocks are symmetrically assembled in the mobile slot, moving plate is installed on the moving block, fixed plate is installed on the moving plate, first clamping plate is installed on the fixed plate, two groups of electric telescopic rods are symmetrically installed on the moving plate, push rod is installed on the electric telescopic rod, the push rod is fixedly installed with second clamping plate and penetrates first clamping plate, first texture is provided on the first clamping plate, second texture is provided on the second clamping plate, by first screw rod rotation, first screw rod drives two groups of moving blocks on it synchronous relative movement, two groups of moving blocks drive two groups of moving plate synchronous relative movement, two groups of moving plate drive two groups of first clamping plate and second clamping plate synchronous relative movement, this structure is convenient for adjusting the structure of fixed textile fabric according to the size of textile fabric, is conducive to the convenience of fixed textile fabric, is conducive to improving the adaptability of device.
[0007] Preferably, a first sliding groove is formed in the base, a first stepper motor is mounted on the sidewall of the base through a machine base, a second screw rod is mounted on the output shaft of the first stepper motor, the second screw rod is rotatably installed on the inner wall of the first sliding groove, a first sliding block is assembled in the first sliding groove, a support rod is mounted on the first sliding block, a guide plate is mounted on the support rod, a second sliding groove is formed in the guide plate, a second stepper motor is mounted on the sidewall of the guide plate through a machine base, the second stepper motor and the first stepper motor are connected to the control panel through an internal circuit, a third screw rod is mounted on the output shaft of the second stepper motor, the third screw rod is rotatably installed on the inner wall of the second sliding groove, a second sliding block is assembled in the second sliding groove, a mounting bracket is mounted on the bottom side of the second sliding block, a hydraulic cylinder is mounted on the mounting bracket, a hydraulic rod is mounted on the hydraulic cylinder, a force gauge is mounted on the hydraulic rod, a pressing block is mounted on the bottom side of the force gauge. After the textile fabric is fixed, the pressing block applies pressure to the textile fabric, the force gauge converts the pressure signal into an electrical signal and sends it to the control panel, the control panel receives the electrical signal and displays the pressure value on the display screen. Then, the control system in the control panel controls the operation of the first stepper motor and the second stepper motor, which realizes the omnidirectional horizontal movement of the pressing block on the textile fabric and the inspection of multiple places of the textile fabric, avoiding the tension elastic detection of only one place of the fabric, and improving the accuracy of detection.
[0008] The utility model has the advantages that:
[0009] 1. The utility model discloses a first screw rod rotates, and the first screw rod drives two groups of moving blocks on it to move synchronously, and the two groups of moving blocks drive two groups of moving plates to move synchronously, and the two groups of moving plates drive two groups of first clamping plates and second clamping plates to move synchronously, which is convenient for adjusting the structure of fixed textile fabric according to the size of the textile fabric, and is beneficial to improve the convenience of fixed textile fabric and the adaptability of the device.
[0010] 2. The utility model discloses a textile fabric is fixed after, and the pressure is applied to the textile fabric through the pressing block, and the force meter converts the pressure signal into electric signal and sends to the control panel, and the control panel receives the electric signal and shows the pressure value through the display screen, and then the control system in the control panel controls the first step motor and the second step motor operation, that is, realizes the all -round horizontal movement of the pressing block on the textile fabric, realizes the textile fabric multiple place and is checked, avoids only the place of the fabric and is carried out tension elasticity detection, and is beneficial to improve the accuracy of detection. ACCURACY
[0011] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, the following will be briefly introduced to the drawing needed to be used in the embodiment or prior art description, obviously, the drawing in the following description only some embodiments of the utility model, for ordinary skilled person in the art, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.
[0012] Figure 1 It is the first perspective three-dimensional structure schematic view of angle;
[0013] Figure 2 It is the three-dimensional structure schematic view of base;
[0014] Figure 3 It is the three-dimensional structure schematic view of clamping plate;
[0015] Figure 4 It is the three-dimensional structure schematic view of first sliding groove;
[0016] Figure 5 It is the three-dimensional structure schematic view of guide plate.
[0017] In the figure: 1, the foot stand; 2, base; 3, control panel; 4, moving groove; 5, first screw rod; 6, knob; 7, moving block; 8, moving plate; 9, fixed plate; 10, first clamp plate; 11, electric telescopic rod; 12, push rod; 13, second clamp plate; 14, first thread; 15, second thread; 16, first sliding groove; 17, first stepper motor; 18, second screw rod; 19, first sliding block; 20, support rod; 21, guide plate; 22, second sliding groove; 23, second stepper motor; 24, third screw rod; 25, second sliding block; 26, mounting frame; 27, hydraulic cylinder; 28, hydraulic rod; 29, force gauge; 30, pressing block. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0019] Please refer to Figures 1-3 As shown in the figure, a kind of tension elastic detection device convenient to fixed textile fabric, including foot stand 1, foot stand 1 is equipped with base 2, base 2 is equipped with control panel 3, base 2 is equipped with moving groove 4, first screw rod 5 is rotatably installed on the inner wall of moving groove 4, the thread direction on first screw rod 5 is symmetrical and opposite, knob 6 is installed at one end of first screw rod 5, two groups of moving blocks 7 are symmetrically assembled in moving groove 4, moving plate 8 is installed on moving block 7, fixed plate 9 is installed on moving plate 8, first clamp plate 10 is installed on fixed plate 9, two groups of electric telescopic rods 11 are symmetrically installed on moving plate 8, push rod 12 is installed on electric telescopic rod 11, push rod 12 penetrates first clamp plate 10 and is fixedly installed with second clamp plate 13, first clamp plate 10 is provided with first thread 14, second clamp plate 13 is provided with second thread 15;When working, the existing tension elastic detection device is inconvenient to adjust fixing structure according to the size of textile fabric during detecting textile fabric, it is difficult to adapt to different fabric size textile fabric, leading to poor convenience of fixed textile fabric, affecting the adaptability of device, by rotating knob 6, first screw rod 5 is driven to rotate, two groups of moving blocks 7 on first screw rod 5 are synchronously relatively moved, two groups of moving plates 8 are synchronously relatively moved by two groups of moving blocks 7, two groups of first clamp plates 10 and second clamp plates 13 are synchronously relatively moved by two groups of moving plates 8, the distance between two groups of first clamp plates 10 and second clamp plates 13 is adjusted, the distance between two groups of clamps is quickly adjusted according to the length of textile fabric, so that the device can adapt to different two groups of textile fabric;
[0020] After the adjustment is completed, one end of the textile fabric is placed between a set of first clamping plates 10 and second clamping plates 13, and the second clamping plates 13 are vertically moved downward by the operation of the electric telescopic rod 11, so that the second clamping plates 13 and the first clamping plates 10 cooperate to clamp and fix one end of the textile fabric, and then the other end of the textile fabric is placed between another set of first clamping plates 10 and second clamping plates 13, and the second clamping plates 13 and the first clamping plates 10 cooperate to clamp and fix the other end of the textile fabric, realizing the clamping and fixing of the textile fabric. This structure is convenient for adjusting the structure for fixing the textile fabric according to the size of the textile fabric, so that the device can adapt to textile fabrics of different sizes, which is beneficial to improve the convenience of fixing the textile fabric and improve the adaptability of the device.
[0021] Please refer to Figures 4-5As shown, the base 2 is provided with a first sliding slot 16, a first stepping motor 17 is mounted on the side wall of the base 2 through a machine seat, a second lead screw 18 is mounted on the output shaft of the first stepping motor 17, the second lead screw 18 is rotatably mounted on the inner wall of the first sliding slot 16, a first sliding block 19 is assembled in the first sliding slot 16, a supporting rod 20 is mounted on the first sliding block 19, a guide plate 21 is mounted on the supporting rod 20, a second sliding slot 22 is formed in the guide plate 21, a second stepping motor 23 is mounted on the side wall of the guide plate 21 through a machine seat, the second stepping motor 23 and the first stepping motor 17 are connected with the control panel 3 through an internal circuit, a third lead screw 24 is mounted on the output shaft of the second stepping motor 23, the third lead screw 24 is rotatably mounted on the inner wall of the second sliding slot 22, a second sliding block 25 is assembled in the second sliding slot 22, a mounting bracket 26 is mounted on the bottom side of the second sliding block 25, a hydraulic cylinder 27 is mounted on the mounting bracket 26, a hydraulic rod 28 is mounted on the hydraulic cylinder 27, a force gauge 29 is mounted on the hydraulic rod 28, and a pressing block 30 is mounted on the bottom side of the force gauge 29; during work, the existing tension elastic detection device can generally only detect the tension of one place of the fabric during the detection of the textile fabric, and the single value makes the measurement error of the textile fabric elasticity value larger, which leads to poor detection accuracy; after the textile fabric is fixed, the control panel 3 controls the operation of the hydraulic cylinder 27, the hydraulic rod 28 drives the force gauge 29 to move vertically downward, the force gauge 29 drives the pressing block 30 to move vertically downward, the pressing block 30 applies pressure to the textile fabric, the force gauge 29 converts the pressure signal into an electric signal and sends it to the control panel 3, the control panel 3 receives the electric signal and displays the pressure value on the display screen, and the model of the force gauge 29 is HZC-H1; then the control system in the control panel 3 controls the operation of the first stepping motor 17 and the second stepping motor 23, wherein the first stepping motor 17 operates, drives the second lead screw 18 to rotate, drives the first sliding block 19 on the second lead screw 18 to move horizontally left and right, drives the supporting rod 20 to move horizontally left and right, drives the guide plate 21 to move horizontally left and right, and drives the pressing block 30 on the guide plate 21 to move horizontally left and right; the second stepping motor 23 operates, drives the third lead screw 24 to rotate, drives the second sliding block 25 on the third lead screw 24 to move horizontally forward and backward, drives the mounting bracket 26 to move horizontally forward and backward, drives the hydraulic cylinder 27 to move horizontally forward and backward, drives the hydraulic rod 28 to move horizontally forward and backward, drives the force gauge 29 to move horizontally forward and backward, and drives the pressing block 30 to move horizontally forward and backward, that is, the pressing block 30 moves horizontally and comprehensively on the textile fabric, the textile fabric is checked at multiple places, and only one place of the fabric can be tensioned and detected, which is helpful to improve the detection accuracy.
[0022] The working principle is that the existing tension elastic detection device is inconvenient to adjust the fixing structure according to the size of the textile fabric during the detection process of the textile fabric, and it is difficult to adapt to textile fabrics of different fabric sizes, resulting in poor convenience of fixing the textile fabric and affecting the adaptability of the device. By rotating the knob 6, the first lead screw 5 is driven to rotate, and the two groups of moving blocks 7 on the first lead screw 5 are synchronously relatively moved, and the two groups of moving plates 8 are synchronously relatively moved, and the two groups of first clamping plates 10 and second clamping plates 13 are synchronously relatively moved, realizing the adjustment of the distance between the two groups of first clamping plates 10 and second clamping plates 13. According to the length of the textile fabric, the distance between the two clamps is quickly adjusted, so that the device can adapt to different two groups of textile fabrics. After the adjustment is completed, one end of the textile fabric is placed between the first clamping plate 10 and the second clamping plate 13, and the electric telescopic rod 11 is operated, the push rod 12 drives the second clamping plate 13 to move vertically downward, so that the second clamping plate 13 and the first clamping plate 10 cooperate to clamp and fix one end of the textile fabric. Then the other end of the textile fabric is placed between the other first clamping plate 10 and the second clamping plate 13, and the second clamping plate 13 and the first clamping plate 10 cooperate to clamp and fix the other end of the textile fabric, realizing the clamping and fixing of the textile fabric. This structure is convenient for adjusting the structure of fixing the textile fabric according to the size of the textile fabric, so that the device can adapt to textile fabrics of different fabric sizes, which is helpful to improve the convenience of fixing the textile fabric and improve the adaptability of the device. During the detection process of the existing tension elastic detection device, only one place of the fabric can be detected, and the single value makes the measurement error of the textile fabric elasticity value larger, resulting in poor detection accuracy. After the textile fabric is fixed, the hydraulic cylinder 27 is operated by controlling the control panel 3, the hydraulic rod 28 drives the force gauge 29 to move vertically downward, the force gauge 29 drives the pressure block 30 to move vertically downward, the pressure block 30 applies pressure to the textile fabric, the force gauge 29 converts the pressure signal into an electric signal and sends it to the control panel 3, the control panel 3 receives the electric signal and displays the pressure value on the display screen. The model of the force gauge 29 is HZC-H1. Then the control system in the control panel 3 controls the first stepper motor 17 and the second stepper motor 23 to operate, wherein the first stepper motor 17 operates, drives the second lead screw 18 to rotate, and the first slider 19 on the second lead screw 18 moves horizontally left and right. The first slider 19 drives the support rod 20 to move horizontally left and right, the support rod 20 drives the guide plate 21 to move horizontally left and right, and the guide plate 21 drives the pressure block 30 on it to move horizontally left and right.The second stepper motor 23 operates, drives the third screw rod 24 to rotate, the third screw rod 24 drives the second sliding block 25 on it to move horizontally forward and backward, the second sliding block 25 drives the mounting frame 26 to move horizontally forward and backward, the mounting frame 26 drives the hydraulic cylinder 27 to move horizontally forward and backward, the hydraulic cylinder 27 drives the hydraulic rod 28 to move horizontally forward and backward, the hydraulic rod 28 drives the dynamometer 29 to move horizontally forward and backward, the dynamometer 29 drives the pressing block 30 to move horizontally forward and backward, that is, the omnibearing horizontal movement of the pressing block 30 on the textile fabric is realized, the textile fabric is checked at multiple places, the tension elasticity detection of the fabric at only one place is avoided, and the detection accuracy is improved.
[0023] The basic principle, main features and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed.
Claims
1. A tensile elastic detection device for facilitating the securing of a textile fabric, characterized by: The utility model provides a kind of foot stool, including foot stool (1), base (2) is installed on the foot stool (1), control panel (3) is installed on the base (2), moving slot (4) is opened in the base (2), first screw rod (5) is rotatably installed on the moving slot (4) inner wall, the screw thread direction on the first screw rod (5) is symmetrical opposite, knob (6) is installed on the first screw rod (5) one end, two groups of moving block (7) are symmetrically assembled in the moving slot (4), moving plate (8) is installed on the moving block (7), fixed plate (9) is installed on the moving plate (8), first clamping plate (10) is installed on the fixed plate (9), two groups of electric telescopic rod (11) are symmetrically installed on the moving plate (8), push rod (12) is installed on the electric telescopic rod (11), push rod (12) penetrates first clamping plate (10) and is fixedly installed second clamping plate (13), first texture (14) is provided on the first clamping plate (10), second texture (15) is provided on the second clamping plate (13).
2. The tensile elastic detection device for fixing the textile fabric easily according to claim 1, characterized in that: First sliding slot (16) is opened in the base (2), first stepper motor (17) is installed on the side wall of base (2) by bed, second screw rod (18) is installed on the output shaft of first stepper motor (17), and the second screw rod (18) is rotatably installed on the inner wall of first sliding slot (16).
3. The tensile elastic detection device for fixing the textile fabric easily according to claim 2, characterized in that: First sliding block (19) is assembled in the first sliding slot (16), and support rod (20) is installed on the first sliding block (19).
4. The tensile elastic detection device for fixing textile fabric conveniently according to claim 3, characterized in that: Guiding plate (21) is installed on the support rod (20), and second sliding slot (22) is opened in the guiding plate (21).
5. The tensile elastic detection device for fixing the textile fabric easily according to claim 4, characterized in that: Second stepper motor (23) is installed on the side wall of guiding plate (21) by bed, the second stepper motor (23) and first stepper motor (17) are connected with control panel (3) by internal circuit, third screw rod (24) is installed on the output shaft of second stepper motor (23), and the third screw rod (24) is rotatably installed on the inner wall of second sliding slot (22).
6. The tensile elastic detection device for fixing textile fabric easily according to claim 4, characterized in that: Second sliding block (25) is assembled in the second sliding slot (22), mounting bracket (26) is installed on the bottom side of second sliding block (25), hydraulic cylinder (27) is installed on the mounting bracket (26), hydraulic rod (28) is installed on the hydraulic cylinder (27), and dynamometer (29) is installed on the hydraulic rod (28), and pressure block (30) is installed on the bottom side of dynamometer (29).
Citation Information
Patent Citations
Fabric elasticity detection device for textile production
CN112414844A