Multi-parameter detection device for clothing materials
By designing limit, transmission and detection mechanisms, combined with magnetic parts and multi-dimensional driving, the efficient, flexible and precise detection of the multi-parameter detection device of clothing materials is achieved, the problem of a single detection function is solved, and the detection efficiency and adaptability of the device are improved.
Patent Information
- Application Number
- CN202510447085.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2025-07-11
AI Technical Summary
Existing clothing material detection devices usually only have a single detection function and cannot meet the multi-parameter detection requirements.
A multi-parameter detection device for clothing materials is designed, including a limiting mechanism, a transmission mechanism and a detection mechanism. It uses magnetic parts and block structure to achieve rapid assembly and stable connection, and combines multi-dimensional driving parts to achieve accurate displacement and light adjustment, which supports the rapid replacement of multiple detection modules.
It realizes efficient, flexible and accurate multi-parameter detection, improves detection efficiency, versatility and adaptability of the device, and enhances the stability and operating accuracy of the structure.
Smart Images

Figure CN120294308A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fabric detection, and particularly discloses a multi-parameter detection device for clothing materials. Background Art
[0002] Clothing materials refer to various raw materials used for producing clothing. Among them, fabric is the most important clothing material, including various fabrics such as chemical fiber carpets, non-woven wall coverings, linen, nylon, colored adhesive tapes, flannel, etc. After the fabric is produced, various performance tests are usually required, such as tensile resistance test, friction resistance test, etc. The existing detection devices for clothing materials usually only have a single detection function. Therefore, a multi-parameter detection device for clothing materials is needed. Summary of the Invention
[0003] In order to overcome the disadvantages and deficiencies existing in the prior art, the purpose of the present invention is to provide a multi-parameter detection device for clothing materials.
[0004] To achieve the above purpose, a multi-parameter detection device for clothing materials of the present invention includes a machine body. A limiting mechanism, a transmission mechanism, and a detection mechanism for limiting external materials are arranged on the machine body. The transmission mechanism is used to displace the detection mechanism relative to the limiting mechanism. The transmission mechanism includes a first frame body movably arranged relative to the machine body and a first driving member for driving the first frame body to approach or move away from the limiting mechanism. The detection mechanism is arranged on the first frame body. A first mounting member is arranged on the first frame body. The detection mechanism includes a second mounting member and a detection module arranged on the second mounting member. The detection module is detachably mounted on the first mounting member via the second mounting member, and the detection module is used to detect external materials.
[0005] Preferably, a first magnetic member is arranged on the first mounting member. The free end of the first magnetic member is recessed in the first mounting member. A second magnetic member for cooperating with the first magnetic member is arranged on the second mounting member. The free end of the second magnetic member protrudes from the end face of the second mounting member. The poles of the ends of the first magnetic member and the second magnetic member that are close to each other are opposite. The design that the free end of the first magnetic member is recessed in the first mounting member, the free end of the second magnetic member protrudes from the end face of the second mounting member, and the poles of the two magnetic members that are close to each other are opposite has the functions of automatic alignment and stable connection, achieving the effects of simplifying the assembly process and improving the connection stability. When the first mounting member and the second mounting member approach each other, due to the magnetic attraction, they are automatically aligned without precise alignment, greatly improving the assembly efficiency. At the same time, the opposite pole setting makes them tightly adsorb once they come into contact, enhancing the connection stability and ensuring the reliability of the structure.
[0006] Preferably, a clamping block is rotatably arranged on the second installation part. The clamping block is L-shaped. A first groove for accommodating the free end of the clamping block is formed on the first installation part. An elastic member is arranged on the clamping block. The clamping block is connected to the second installation part via the elastic member. The L-shaped clamping block rotatably arranged on the second installation part, in cooperation with the first groove formed on the first installation part, and the design that the clamping block is connected to the second installation part via the elastic member, has the functions of convenient locking and enhanced structural stability, achieving the effects of simplifying the installation steps and improving the overall structural safety. When the first installation part and the second installation part are preliminarily connected by the magnetic member, the L-shaped clamping block can automatically or manually rotate into the first groove under the action of the elastic member to achieve further locking. This process does not require additional tools and is easy to operate. At the same time, the locking effect of the clamping block enhances the connection strength between the two installation parts, effectively preventing accidental separation caused by external forces and improving the stability and safety of the overall structure.
[0007] Preferably, the transmission mechanism includes a first rail arranged on the machine body. The first frame is slidably arranged on the first rail. A first driving member is arranged on the machine body to drive the first frame to approach or move away from the limiting mechanism. By arranging the first rail on the machine body, enabling the first frame to be slidably arranged thereon, and configuring the first driving member on the machine body to drive the first frame to approach or move away from the limiting mechanism, it has the functions of precise control and efficient transmission, achieving the effects of automatic adjustment and enhanced equipment flexibility. This allows the first frame to move stably and precisely along the first rail. Through the drive of the first driving member, the relative position between the first frame and the limiting mechanism can be conveniently adjusted without manual operation, improving work efficiency.
[0008] Preferably, a second frame is slidably arranged on the first frame. The first installation part is arranged on the first frame via the second frame. A second driving member for driving the second frame to reciprocate is also arranged on the first frame. The reciprocating movement direction of the second driving member driving the second frame intersects with the reciprocating movement direction of the first driving member driving the first frame. It has the functions of multi-dimensional adjustment and increased operation flexibility, achieving the effects of precise control of complex movements in space and enhancing the functional diversity of the equipment. This technical means enables the first installation part (arranged via the second frame) to not only move in one direction under the action of the first driving member but also move in another intersecting direction under the drive of the second driving member, thus achieving flexible positioning in a two-dimensional space. This multi-dimensional movement ability greatly expands the operation range of the equipment, enabling it to adapt to more diverse application scenarios.
[0009] Preferably, a first plate body is provided on the second frame body, and a third driving member is provided on the first plate body. The third driving member is used to move the first mounting member closer to or away from the limiting mechanism. The first mounting member is slidably arranged on the first plate body, which has the dual functions of enhancing the operation accuracy and improving the flexibility, achieving the effect of three-dimensional precise control of the position of the first mounting member and enhancing the ability of the device to adapt to complex environments. It not only allows the first mounting member to move in a two-dimensional plane under the action of the first driving member and the second driving member, but also makes precise displacement adjustment in the third dimension through the third driving member. This flexible operation in the three-dimensional space greatly improves the operation accuracy of the device, enabling the first mounting member to be accurately positioned at the required position.
[0010] Preferably, the reciprocating movement direction of the third driving member driving the first mounting member intersects with the reciprocating movement direction of the first driving member driving the first frame body, and the reciprocating movement direction of the third driving member driving the first mounting member intersects with the reciprocating movement direction of the second driving member driving the second frame body, which has the function of achieving full-range flexible adjustment in three-dimensional space, realizing the precise control of the position of the first mounting member and enhancing the effect of the device's adaptability to complex detection requirements. It ensures that the first mounting member can move independently and precisely in three mutually intersecting directions, thus achieving full-range positioning in three-dimensional space, greatly improving the operation accuracy and adaptability of the device, and being able to meet complex and changeable detection requirements.
[0011] Preferably, the second frame body is in a C shape, and the two free ends of the second frame body are provided with the same first plate body and the first mounting member slidably arranged on the first plate body, which has the dual functions of enhancing the structural stability and improving the space utilization rate, realizing the effect of more flexible and stable control of the position of the first mounting member and optimizing the overall layout of the device. It enables the second frame body to form a stable support structure, providing a stable installation foundation for the first plate body and the first mounting member, enhancing the stability and reliability of the device during operation. At the same time, the design of the C-shaped structure also makes clever use of the space, enabling the two first mounting members to operate at relatively independent positions without interference, improving the space utilization rate.
[0012] Preferably, a light supplement mechanism is further provided on the body. The light supplement mechanism includes a third frame body provided on the body. A fourth driving member is provided at one end of the third frame body away from the limiting mechanism. A light emitter is detachably and slidably provided on the third frame body. The fourth driving member is used to drive the light emitter to approach or move away from the limiting mechanism. The technical means of using the fourth driving member to drive the light emitter to approach or move away from the limiting mechanism has the effect of flexibly adjusting the light intensity and direction, achieving the effects of optimizing the illumination effect of the detection field of view and improving the detection accuracy. It allows the light emitter to move vertically along the third frame body under the drive of the fourth driving member, so that the position and angle of the light can be precisely adjusted to meet the requirements of different detection tasks for lighting conditions. At the same time, the detachable design of the light emitter enables the user to replace light sources of different types or powers according to actual needs, further enhancing the flexibility of light adjustment.
[0013] Preferably, a first housing is further provided on the body. The first housing is used to protect each mechanism on the body, which can provide effective physical protection, reduce the risk of mechanism damage caused by accidental collision or impact, and ensure the overall performance and service life of the body. Therefore, the protective function of the first housing not only improves the reliability and durability of the body, but also indirectly maintains the normal operation of the equipment and the user experience.
[0014] The beneficial effects of the present invention: The limiting mechanism provided on the body stably limits the external materials. At the same time, the first frame body and the first driving member in the transmission mechanism are used to achieve the precise displacement of the detection mechanism relative to the limiting mechanism, and its function is to ensure that the detection module can accurately reach the position to be detected; and the detection module in the detection mechanism is detachably installed on the first installation member through the second installation member, which is convenient for quickly replacing or upgrading the detection module according to the detection requirements, thereby realizing the flexible detection of various clothing material parameters by the detection device, not only improving the detection efficiency, but also enhancing the versatility and adaptability of the device. Description of the Drawings
[0015] Figure 1 It is a schematic structural diagram of the main body of the present invention;
[0016] Figure 2 It is a schematic structural diagram of the transmission mechanism of the present invention;
[0017] Figure 3 It is a schematic structural diagram of the second frame body of the present invention;
[0018] Figure 4 It is a schematic plan view of the installation member of the present invention;
[0019] Figure 5 It is a schematic structural diagram of the limiting mechanism of the present invention;
[0020] Figure 6Schematic diagram of stretching the fabric by the limit mechanism and detection mechanism of the present invention.
[0021] Reference numerals include:
[0022] 1. Body; 2. Limit mechanism; 3. Transmission mechanism; 4. Supplementary lighting mechanism; 5. Detection mechanism; 11. First housing; 21. Second plate body; 22. Third plate body; 23. First drive assembly; 24. Slide bar; 25. Locking member; 26. Carrying platform; 27. Protruding portion; 31. First frame; 32. First drive member; 33. Second drive member; 34. First rail body; 35. Slide block; 36. Second frame; 37. First plate body; 38. Third drive member; 39. First mounting member; 310. First magnetic member; 311. First groove body; 41. Third frame; 42. Fourth drive member; 43. Light emitter; 51. Second mounting member; 52. Second magnetic member; 53. Block; 54. Elastic member. Detailed implementation manners
[0023] For the convenience of understanding by those skilled in the art, the present invention will be further described below in conjunction with embodiments and the accompanying drawings. The content mentioned in the implementation manners does not limit the present invention.
[0024] Please refer to Figures 1 to 6 As shown, a multi-parameter detection device for clothing materials of the present invention includes a body 1. A limit mechanism 2, a transmission mechanism 3, and a detection mechanism 5 for limiting external materials are provided on the body 1. The transmission mechanism 3 is used to displace the detection mechanism 5 relative to the limit mechanism 2. The transmission mechanism 3 includes a first frame 31 movably arranged relative to the body 1 and a first drive member 32 for driving the first frame 31 to approach or move away from the limit mechanism 2. The detection mechanism 5 is arranged on the first frame 31.
[0025] A first mounting member 39 is provided on the first frame 31. The detection mechanism 5 includes a second mounting member 51 and a detection module arranged on the second mounting member 51. The detection module is detachably mounted on the first mounting member 39 via the second mounting member 51, and the detection module is used to detect external materials.
[0026] Specifically, the detection module includes a fixture, a bracket for carrying the fixture, and a second drive assembly for driving the taking and placing of the fixture. A third drive assembly for rotating the fixture is also provided on the bracket.
[0027] Specifically, the detection module can cooperate with the limit mechanism 2 to test the stretching performance of external fabrics, and the detection module can also be equipped with friction members to test the wear resistance of external fabrics.
[0028] Specifically, the limiting mechanism 2 provided on the body 1 stably limits the external materials, and at the same time, the first frame body 31 and the first driving member 32 in the transmission mechanism 3 are used to achieve the precise displacement of the detection mechanism 5 relative to the limiting mechanism 2, the function of which is to ensure that the detection module can accurately reach the position to be detected; and the detection module in the detection mechanism 5 is detachably installed on the first installation member 39 through the second installation member 51, which is convenient for quickly replacing or upgrading the detection module according to the detection requirements, thereby realizing the flexible detection of various clothing material parameters by the detection device, not only improving the detection efficiency, but also enhancing the versatility and adaptability of the device.
[0029] Specifically, a central control mechanism and an operation screen for facilitating the user to operate each mechanism are also provided on the body 1. The central control mechanism and the operation screen are well-known technologies in the respective fields and will not be elaborated here.
[0030] Specifically, the limiting mechanism 2 includes a mounting seat provided on the body 1 and a second plate body 21 to be mounted on the mounting seat. A bearing table 26 is provided on the second plate body 21, and a locking member 25 is rotatably provided on the bearing table 26. There are a plurality of locking members 25, and the plurality of locking members 25 are arranged in an array around the bearing table 26.
[0031] Specifically, in other implementations, the second plate body 21 can be directly mounted on the body 1.
[0032] Specifically, a first driving assembly 23 is also provided on the body 1, and the first driving assembly 23 is used to drive the locking member 25 to fixedly limit the external materials.
[0033] Specifically, a sliding rod 24 is slidably provided on the second plate body 21. The top end of the sliding rod 24 is rotatably provided with the end of the locking member 25, and the middle part of the locking member 25 is rotatably provided with the bearing table 26. A third plate body 22 is fixedly provided at one end of the sliding rod 24 away from the locking member 25. The first driving assembly 23 is used to drive the sliding rod 24 to move up and down through the third plate body 22 so as to drive the locking member 25 to rotate to fixedly lock the external materials.
[0034] Specifically, the locking member 25 is arranged in an S shape.
[0035] Specifically, a protruding portion 27 is provided at one end of the locking member 25 away from the sliding rod 24. The protruding portion 27 is used to increase the contact area between the locking member 25 and the external materials or provide additional locking force. When the locking member 25 rotates to the locking position, the protruding portion 27 can more closely fit or clamp the materials to prevent them from moving or falling off.
[0036] Specifically, in other embodiments, a conical protrusion is provided on the protruding portion 27.
[0037] Specifically, in other embodiments, a receiving groove for cooperating with the protruding portion 27 is provided on the bearing table 26.
[0038] Specifically, in this embodiment, there are a total of three locking members 25, and the locking members 25 are used to limit the external fabric partially or completely.
[0039] Specifically, a first magnetic member 310 is provided on the first mounting member 39. The free end of the first magnetic member 310 is recessed in the first mounting member 39. A second magnetic member 52 is provided on the second mounting member 51 for cooperating with the first magnetic member 310. The free end of the second magnetic member 52 protrudes from the end face of the second mounting member 51. The poles of the ends of the first magnetic member 310 and the second magnetic member 52 that are close to each other are opposite. The design that the free end of the first magnetic member 310 is recessed in the first mounting member 39 while the free end of the second magnetic member 52 protrudes from the end face of the second mounting member 51 and the poles of the two magnetic members that are close to each other are opposite has the functions of automatic alignment and stable connection, achieving the effects of simplifying the assembly process and improving the connection stability. When the first mounting member 39 and the second mounting member 51 are close to each other, they are automatically aligned due to the magnetic attraction without precise alignment, greatly improving the assembly efficiency. At the same time, the opposite pole setting enables them to be tightly adsorbed once they come into contact, enhancing the connection stability and ensuring the reliability of the structure.
[0040] Specifically, a magnetic isolation layer is provided on the outer surface of the magnetic member, and the magnetic isolation layer is used to reduce the magnetic field interference on the surface of the magnetic member that is not used for magnetic adsorption.
[0041] Specifically, a latch 53 is rotatably provided on the second mounting member 51. The latch 53 is in an L shape. A first groove 311 for accommodating the free end of the latch 53 is formed on the first mounting member 39. An elastic member 54 is provided on the latch 53, and the latch 53 is connected to the second mounting member 51 via the elastic member. The rotatably provided L-shaped latch 53 on the second mounting member 51, in cooperation with the first groove 311 formed on the first mounting member 39 and the design that the latch 53 is connected to the second mounting member 51 via the elastic member 54, has the functions of convenient locking and enhanced structural stability, achieving the effects of simplifying the installation steps and improving the overall structural safety. When the first mounting member 39 and the second mounting member 51 are initially connected by the magnetic members, the L-shaped latch 53 can automatically or manually rotate into the first groove 311 under the action of the elastic member 54 to achieve further locking. This process does not require additional tools and is easy to operate. At the same time, the locking function of the latch 53 enhances the connection strength between the two mounting members, effectively preventing accidental separation caused by external forces and improving the stability and safety of the overall structure.
[0042] Specifically, the transmission mechanism 3 includes a first rail body 34 provided on the machine body 1. The first frame body 31 is slidably provided on the first rail body 34. A first driving member 32 is provided on the machine body 1 to drive the first frame body 31 to approach or move away from the limiting mechanism 2. By providing the first rail body 34 on the machine body 1, the first frame body 31 is slidably provided thereon, and the first driving member 32 is configured on the machine body 1 to drive the first frame body 31 to approach or move away from the limiting mechanism 2. This design has the functions of precise control and efficient transmission, achieving the effects of automatic adjustment and enhanced equipment flexibility, enabling the first frame body 31 to move stably and precisely along the first rail body 34. Through the drive of the first driving member 32, the relative position between the first frame body 31 and the limiting mechanism 2 can be conveniently adjusted without manual operation, improving work efficiency.
[0043] Specifically, a second frame body 36 is slidably provided on the first frame body 31. A first mounting member 39 is provided on the first frame body 31 via the second frame body 36. A second driving member 33 for driving the second frame body 36 to reciprocate is also provided on the first frame body 31. The reciprocating movement direction of the second driving member 33 driving the second frame body 36 intersects with the reciprocating movement direction of the first driving member 32 driving the first frame body 31. This has the functions of multi-dimensional adjustment and increased operation flexibility, achieving the effects of precise control of complex movements in space and enhancing the functional diversity of the equipment. This technical means enables the first mounting member 39 (provided via the second frame body 36) to not only move in one direction under the action of the first driving member 32, but also move in another intersecting direction under the drive of the second driving member 33, thus realizing flexible positioning in a two-dimensional space. This multi-dimensional movement ability greatly expands the operation range of the equipment, enabling it to adapt to more diverse application scenarios.
[0044] Specifically, a first plate body 37 is provided on the second frame body 36. A third driving member 38 is provided on the first plate body 37 to move the first mounting member 39 closer to or away from the limiting mechanism 2. The first mounting member 39 is slidably provided on the first plate body 37, having the dual functions of enhancing operation precision and improving flexibility, achieving the effects of three-dimensional precise control of the position of the first mounting member 39 and enhancing the ability of the equipment to adapt to complex environments. It not only allows the first mounting member 39 to move in a two-dimensional plane under the action of the first driving member 32 and the second driving member 33, but also makes precise displacement adjustment in the third dimension (i.e., the direction perpendicular to the second frame body 36) through the third driving member 38. This flexible operation in a three-dimensional space greatly improves the operation precision of the equipment, enabling the first mounting member 39 to be accurately positioned at the required position.
[0045] Specifically, a slider 35 is provided on the second frame body 36. The second frame body 36 is slidably provided on the first frame body 31 via the slider 35.
[0046] Specifically, the reciprocating movement direction of the first mounting member 39 driven by the third driving member 38 intersects with the reciprocating movement direction of the first frame body 31 driven by the first driving member 32, and the reciprocating movement direction of the first mounting member 39 driven by the third driving member 38 intersects with the reciprocating movement direction of the second frame body 36 driven by the second driving member 33, which has the function of realizing flexible adjustment in all directions within a three-dimensional space, achieving precise control of the position of the first mounting member 39 and enhancing the effect of the equipment to adapt to complex detection requirements, ensuring that the first mounting member 39 can move independently and precisely in three mutually intersecting directions, thereby realizing all-round positioning within a three-dimensional space, greatly improving the operation accuracy and adaptability of the equipment, and being able to meet complex and changeable detection requirements.
[0047] Specifically, the second frame body 36 is in a C shape, and the two free ends of the second frame body 36 are provided with the same first plate body 37 and the first mounting member 39 slidably arranged on the first plate body 37, which has the dual functions of enhancing the structural stability and improving the space utilization rate, achieving the effect of more flexible and stable control of the position of the first mounting member 39 and optimizing the overall layout of the equipment, enabling the second frame body 36 to form a stable support structure, providing a stable installation foundation for the first plate body 37 and the first mounting member 39, enhancing the stability and reliability of the equipment during operation, and at the same time, the design of the C-shaped structure also makes clever use of space, enabling the two first mounting members 39 to operate at relatively independent positions without interference, improving the space utilization rate.
[0048] Specifically, a laser rangefinder is further provided on the first mounting member 39.
[0049] Specifically, a supplementary lighting mechanism 4 is further provided on the machine body 1. The supplementary lighting mechanism 4 includes a third frame body 41 arranged on the machine body 1. In this embodiment, the third frame body 41 is at least two rod bodies arranged on the machine body 1 and a support plate arranged at the free ends of the rod bodies. A fourth driving member 42 is arranged at one end of the third frame body 41 away from the limiting mechanism 2. A light emitter 43 is detachably slidably arranged on the third frame body 41. The fourth driving member 42 is used to drive the light emitter 43 to approach or move away from the limiting mechanism 2. The technical means of using the fourth driving member 42 to drive the light emitter 43 to approach or move away from the limiting mechanism 2 has the function of flexibly adjusting the illumination intensity and direction, achieving the effect of optimizing the illumination effect of the detection field of view and improving the detection accuracy. It allows the light emitter 43 to move vertically along the third frame body 41 under the drive of the fourth driving member 42, so as to accurately adjust the position and angle of the illumination to meet the requirements of different detection tasks for illumination conditions. At the same time, the detachable design of the light emitter 43 enables the user to replace different types or powers of light sources according to actual needs, further enhancing the flexibility of illumination adjustment.
[0050] Specifically, the light emitter 43 is vertically / horizontally disposed on the third frame 41. The light emitter 43 is an incandescent lamp or an ultraviolet irradiation lamp, and an external line sensor detection mechanism can be correspondingly disposed on the body 1.
[0051] Specifically, a first housing 11 is further disposed on the body 1, and the first housing 11 is used to protect each mechanism on the body 1.
[0052] The above content is only a preferred embodiment of the present invention. For those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manners and application scopes. The content of this specification should not be construed as a limitation to the present invention.
Claims
1. A multi-parameter detection device for clothing materials, comprising a body (1), on which a limiting mechanism (2), a transmission mechanism (3) and a detection mechanism (5) for limiting external materials are provided, and the transmission mechanism (3) is used to displace the detection mechanism (5) relative to the limiting mechanism (2); characterized in that: The transmission mechanism (3) includes a first frame body (31) movably arranged relative to the machine body (1) and a first driving member (32) for driving the first frame body (31) to approach or move away from the limiting mechanism (2). The detection mechanism (5) is arranged on the first frame body (31). A first mounting member (39) is arranged on the first frame body (31). The detection mechanism (5) includes a second mounting member (51) and a detection module arranged on the second mounting member (51). The detection module is detachably arranged on the first mounting member (39) via the second mounting member (51), and the detection module is used for detecting external materials.
2. The multi-parameter detection device for clothing materials according to claim 1, wherein: A first magnetic member (310) is arranged on the first mounting member (39). The free end of the first magnetic member (310) is recessed in the first mounting member (39). A second magnetic member (52) for cooperating with the first magnetic member (310) is arranged on the second mounting member (51). The free end of the second magnetic member (52) protrudes from the end face of the second mounting member (51). The poles of the ends of the first magnetic member (310) and the second magnetic member (52) that are close to each other are opposite.
3. The multi-parameter detection device for clothing materials according to claim 1, characterized in that: A clamping block (53) is rotatably arranged on the second mounting member (51). The clamping block (53) is arranged in an L shape. A first groove body (311) for accommodating the free end of the clamping block (53) is formed on the first mounting member (39). An elastic member (54) is arranged on the clamping block (53), and the clamping block (53) is connected to the second mounting member (51) via the elastic member.
4. The multi-parameter detection device for a clothing material according to claim 1, wherein: The transmission mechanism (3) includes a first rail body (34) arranged on the machine body (1). The first frame body (31) is slidably arranged on the first rail body (34). The first driving member (32) is arranged on the machine body (1) for driving the first frame body (31) to approach or move away from the limiting mechanism (2).
5. The multi-parameter detection device for a clothing material according to claim 1, characterized in that: A second frame body (36) is slidably arranged on the first frame body (31). The first mounting member (39) is arranged on the first frame body (31) via the second frame body (36). A second driving member (33) for driving the second frame body (36) to reciprocate is further arranged on the first frame body (31). The reciprocating movement direction of the second driving member (33) driving the second frame body (36) intersects with the reciprocating movement direction of the first driving member (32) driving the first frame body (31).
6. The multi-parameter detection device for a clothing material according to claim 5, characterized in that: A first plate body (37) is arranged on the second frame body (36). A third driving member (38) is arranged on the first plate body (37). The third driving member (38) is used for driving the first mounting member (39) to approach or move away from the limiting mechanism (2). The first mounting member (39) is slidably arranged on the first plate body (37).
7. The multi-parameter detection device for clothing materials according to claim 6, characterized in that: The reciprocating movement direction of the third driving member (38) driving the first mounting member (39) intersects with the reciprocating movement direction of the first driving member (32) driving the first frame body (31). The reciprocating movement direction of the third driving member (38) driving the first mounting member (39) intersects with the reciprocating movement direction of the second driving member (33) driving the second frame body (36).
8. The multi-parameter detection device for a clothing material according to claim 6, characterized in that: The second frame body (36) is in a C shape. The two free ends of the second frame body (36) are provided with the same first plate body (37) and the first mounting member (39) slidably arranged on the first plate body (37).
9. The multi-parameter detection device for a clothing material according to claim 1, characterized in that: A supplementary lighting mechanism (4) is further provided on the machine body (1). The supplementary lighting mechanism (4) includes a third frame body (41) provided on the machine body (1). A fourth driving member (42) is provided at one end of the third frame body (41) away from the limiting mechanism (2). A light emitter (43) is detachably and slidably provided on the third frame body (41). The fourth driving member (42) is used to drive the light emitter (43) to approach or move away from the limiting mechanism (2).
10. The multi-parameter detection device for a clothing material according to claim 1, characterized in that: A first housing (11) is further provided on the machine body (1). The first housing (11) is used to protect each mechanism on the machine body (1).