A fabric development sampling device

CN224758110UActive Publication Date: 2026-09-15SHANGHAI JUANRAN CLOTHING CO LTD
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Patent Information

Application Number
CN202521937368.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-09
Publication Date
2026-09-15
Estimated Expiration
2035-09-09

AI Technical Summary

Technical Problem

[0003]现有的面料研发取样装置在使用时,如CN202121449598.4一种面料研发取样装置,属于切割取样工具技术领域,包括安装底座,所述安装底座的上壁面固定安装有取样设备,所述安装底座的后壁面上固定安装有两个固定块,两个所述固定块中活动安装有传送辊,所述安装底座的两侧壁面上均固定安装有旋转装置,所述安装底座的上壁面开设有安装槽,所述安装槽的内部设置有转辊,所述安装底座的上壁面固定安装有两个相互远离的紧压装置;然而上述技术中,取样设备主要是接触性的硬性取样,其构造较为固定,对于取样的位置不便于自如的调节,而且在拿取过程中危险性较高,因此,本实用新型提出一种面料研发取样装置以解决现有技术中存在的问题

Benefits of technology

本实用新型主要是利用横梁上的机械臂基座、动力机械臂的铰链传动运行后使得套装基座和激光切割刀对于定位绷直的面料进行适应性拿取,切割后的布料会下落到吊杆下方的取样台上,拿取的过程中其具有很强的安全性。

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Abstract

The utility model provides a kind of fabric research and development sampling device, it is related to fabric research and development technical field, including positioning sampling component and cutting mechanism, the upper portion of both ends of positioning sampling component is provided with the in-out material component of bolt assembly, the outside below of positioning sampling component is provided with the cutting mechanism of bolt assembly, the cutting mechanism includes bolt side frame, crossbeam, mechanical arm base, power mechanical arm, suit base and laser cutting knife, the outside below of positioning sampling component is bolted in bolt side frame, the upper portion of the outer end of bolt side frame is provided with crossbeam, and the inner top side of crossbeam is provided with mechanical arm base;The utility model mainly is the hinge transmission operation of power mechanical arm after using the mechanical arm base on crossbeam, so that suit base and laser cutting knife are adaptively taken to the fabric of positioning straightening, cut cloth will fall on the sampling table below suspender, it has very strong security in the process of taking.
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Description

Technical Field

[0001] This utility model relates to the field of fabric research and development technology, and in particular to a fabric research and development sampling device. Background Technology

[0002] Technological development in the apparel fabric industry is mainly reflected in two aspects: material development and production process. Among them, the development of new raw materials is an important direction for technological innovation in apparel fabrics. The emergence of functional fibers, green fibers and other practical fibers has made the technological content of fabrics higher and higher, and made them more environmentally friendly, safe, healthy and comfortable.

[0003] Existing fabric research and development sampling devices, such as CN202121449598.4, which belongs to the field of cutting and sampling tool technology, include a mounting base. A sampling device is fixedly mounted on the upper wall of the mounting base. Two fixing blocks are fixedly mounted on the rear wall of the mounting base, and a conveying roller is movably mounted within the two fixing blocks. Rotating devices are fixedly mounted on both side walls of the mounting base. A mounting groove is formed on the upper wall of the mounting base, and a rotating roller is disposed inside the mounting groove. Two mutually spaced clamping devices are fixedly mounted on the upper wall of the mounting base. However, in the above-mentioned technologies, the sampling device mainly involves contact-based, rigid sampling. Its structure is relatively fixed, making it difficult to freely adjust the sampling position, and the handling process is highly dangerous. Therefore, this utility model proposes a fabric research and development sampling device to solve the problems existing in the prior art. Utility Model Content

[0004] To address the aforementioned issues, this utility model proposes a fabric research and development sampling device. This device primarily utilizes the mechanical arm base on the crossbeam and the hinge transmission of the powered mechanical arm to enable the kit base and laser cutting blade to adaptively pick up the positioned and stretched fabric. The cut fabric then falls onto the sampling platform below the hanging rod, ensuring high safety during the retrieval process.

[0005] To achieve the purpose of this utility model, the utility model is implemented through the following technical solution: a fabric research and development sampling device, including a positioning sampling component and a cutting mechanism, wherein bolt-assembled feeding and discharging components are provided above both ends of the positioning sampling component, and a bolt-assembled cutting mechanism is provided on the lower outer side of the positioning sampling component; The cutting mechanism includes a bolt side frame, a crossbeam, a robotic arm base, a powered robotic arm, a mounting base, and a laser cutting blade. The bolt side frame is bolted to the lower outer side of the positioning and sampling assembly. A crossbeam is provided above the outer end of the bolt side frame, and a robotic arm base is provided on the inner top side of the crossbeam. A powered robotic arm is provided at the output end of the robotic arm base, and a mounting base is provided at one end of the powered robotic arm. A laser cutting blade is provided on the inner side of the mounting base.

[0006] In a preferred embodiment of this utility model, the robotic arm base and the powered robotic arm are symmetrically distributed about the central axis of the kit base.

[0007] In a preferred embodiment of the present invention, the positioning and sampling component includes a base plate, a table frame, a slotted platform, a hanging rod, and a sampling table. The table frame is arranged above the four sides of the base plate, and the slotted platform is arranged at the top of the table frame. The hanging rod is arranged below the middle of the slotted platform, and the sampling table is arranged below the hanging rod.

[0008] In a preferred embodiment of the present invention, the positioning and sampling component further includes a side sleeve block, a pneumatic telescopic rod, and a pressure bar. The outer side of the slotted platform is provided with a side sleeve block, and the inner side of the side sleeve block is provided with a pneumatic telescopic rod that is sleeved and installed. The output end of the pneumatic telescopic rod is provided with a pressure bar.

[0009] In a preferred embodiment of this utility model, the feeding and discharging component includes a first bolt plate, a discharge cylinder, a first clamping cylinder, a mounting rod assembly, and a second bolt plate. A first bolt plate connected by bolts is provided above one end of the slotted platform. A discharge cylinder connected to the output end of the first clamping cylinder is provided on the inner side of the first bolt plate, and a mounting rod assembly is provided at the output end of the discharge cylinder. A second bolt plate connected by bolts is provided above the other end of the slotted platform.

[0010] In a preferred embodiment of the present invention, the feeding and discharging component further includes a pair of clamping rods, a receiving cylinder, a second clamping cylinder, and a receiving motor. The pair of clamping rods is provided on the inner side of the outer end of the second bolt plate, and the receiving cylinder is provided on the inner side of the middle part of the second bolt plate. The receiving cylinder is provided with a second clamping cylinder at one end and a receiving motor at the other end.

[0011] The beneficial effects of this utility model are as follows: This invention mainly utilizes the mechanical arm base on the crossbeam and the hinge transmission of the powered mechanical arm to enable the kit base and laser cutting blade to adaptively pick up the positioned and stretched fabric. The cut fabric will fall onto the sampling platform below the hanging rod, and the process of picking up the fabric is very safe. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a bottom-view three-dimensional structural diagram of the present invention; Figure 3 This is a three-dimensional structural diagram of the positioning and sampling component of this utility model; Figure 4 This is a three-dimensional structural diagram of the feeding and discharging components of this utility model; Figure 5 This is a three-dimensional structural diagram of the cutting mechanism of this utility model.

[0013] The components include: 1. Positioning and sampling assembly; 101. Base plate; 102. Table frame; 103. Slotted table plate; 104. Hanging rod; 105. Sampling table; 106. Side sleeve block; 107. Pneumatic telescopic rod; 108. Pressure bar; 2. Feeding and discharging components; 201. First bolt plate; 202. Discharge cylinder; 203. First clamping cylinder; 204. Mounting rod assembly; 205. Second bolt plate; 206. Clamping rod assembly; 207. Receiving cylinder; 208. Second clamping cylinder; 209. Receiving motor; 3. Cutting mechanism; 301. Bolt side frame; 302. Crossbeam; 303. Robotic arm base; 304. Powered robotic arm; 305. Set base; 306. Laser cutting blade. Detailed Implementation

[0014] To enhance understanding of this utility model, the following detailed description will be provided in conjunction with embodiments. These embodiments are for illustrative purposes only and do not constitute a limitation on the scope of protection of this utility model.

[0015] according to Figure 1-5 As shown, this embodiment proposes a fabric research and development sampling device, including a positioning sampling component 1 and a cutting mechanism 3. The upper ends of the positioning sampling component 1 are provided with bolt-assembled feeding and discharging components 2, and the lower outer side of the positioning sampling component 1 is provided with a bolt-assembled cutting mechanism 3. The cutting mechanism 3 includes a bolt side frame 301, a crossbeam 302, a robotic arm base 303, a powered robotic arm 304, a mounting base 305, and a laser cutting blade 306. The bolt side frame 301 is bolted to the lower outer side of the positioning and sampling assembly 1. A crossbeam 302 is provided above the outer end of the bolt side frame 301, and a robotic arm base 303 is provided on the inner top side of the crossbeam 302. A powered robotic arm 304 is provided at the output end of the robotic arm base 303, and a mounting base 305 is provided at one end of the powered robotic arm 304. A laser cutting blade 306 is provided on the inner side of the mounting base 305.

[0016] The robotic arm base 303 and the powered robotic arm 304 are symmetrically distributed around the central axis of the suit base 305.

[0017] In this embodiment, the robotic arm base 303 on the crossbeam 302 can be used to drive the power robotic arm 304 to perform hinge transmission, so that the kit base 305 and the laser cutting blade 306 cooperate to cut the part of the fabric that needs to be sampled.

[0018] The positioning and sampling assembly 1 includes a base plate 101, a table frame 102, a slotted table plate 103, a hanging rod 104, and a sampling table 105. The table frame 102 is arranged above the four sides of the base plate 101, and the slotted table plate 103 is arranged at the top of the table frame 102. The hanging rod 104 is arranged below the middle of the slotted table plate 103, and the sampling table 105 is arranged below the hanging rod 104.

[0019] In this embodiment, after the base 305 and the laser cutting blade 306 cut the fabric into shape, the sample falls through the slotted part of the slotted platform 103 to the sampling platform 105 below the hanging rod 104 for retrieval.

[0020] The positioning and sampling assembly 1 also includes a side sleeve block 106, a pneumatic telescopic rod 107, and a pressure rod 108. The side sleeve block 106 is provided on the outer side of the slotted platform 103, and the pneumatic telescopic rod 107 is provided on the inner side of the side sleeve block 106. The pressure rod 108 is provided at the output end of the pneumatic telescopic rod 107.

[0021] In this embodiment, when sampling is required, the pneumatic telescopic rod 107 on the side sleeve block 106 outputs power to run, causing the pressure bar 108 to press and position the fabric.

[0022] The feeding and discharging component 2 includes a first bolt plate 201, a discharge cylinder 202, a first clamping cylinder 203, a mounting rod assembly 204, and a second bolt plate 205. The first bolt plate 201, which is bolted, is provided above one end of the slotted platform 103. The discharge cylinder 202, which is connected to the output end of the first clamping cylinder 203, is provided on the inner side of the first bolt plate 201. The output end of the discharge cylinder 202 is provided with a mounting rod assembly 204. The second bolt plate 205, which is bolted, is provided above the other end of the slotted platform 103.

[0023] In this embodiment, when in use, the first clamping cylinder 203 outputs power to run, causing the discharge cylinder 202 to be installed on the inner side of the first bolt plate 201. When the discharge cylinder 202 discharges material, it outputs the material to the mounting rod assembly 204 for output operation, and the material is input to the bottom of the pressure bar 108 for output on the slotted table 103.

[0024] The feeding and discharging component 2 also includes a clamping bar assembly 206, a receiving cylinder 207, a second clamping cylinder 208, and a receiving motor 209. The clamping bar assembly 206 is provided on the inner side of the outer end of the second bolt plate 205, and the receiving cylinder 207 is provided on the inner side of the middle part of the second bolt plate 205. The second clamping cylinder 208 is provided at one end of the receiving cylinder 207, and the receiving motor 209 is provided at the other end of the receiving cylinder 207.

[0025] In this embodiment, after the output operation of the slotted plate 103, the material is fed through the clamping rod group 206 on the second bolt plate 205 and fed into the take-up cylinder 207. After the output operation of the take-up motor 209, the material is wound up.

[0026] The working principle of this fabric research and development sampling device is as follows: During use, the first clamping cylinder 203 outputs power to drive the discharge cylinder 202, which is installed on the inner side of the first bolt plate 201. When the discharge cylinder 202 discharges material, it outputs it to the mounting rod assembly 204 for output operation, causing the material to be input below the pressure bar 108 and output onto the slotted platform 103. After output operation through the slotted platform 103, the material is input between the clamping rod assembly 206 on the second bolt plate 205 and then into the take-up cylinder 207. After output operation by the take-up motor 209, the material is wound up. When further processing is required... During sampling, the pneumatic telescopic rod 107 on the side sleeve block 106 outputs power to press and position the fabric with the pressure bar 108. The robotic arm base 303 on the crossbeam 302 outputs power to drive the power robotic arm 304 to perform hinge transmission, so that the kit base 305 and the laser cutting blade 306 work together to cut the part of the fabric that needs to be sampled. After the kit base 305 and the laser cutting blade 306 have cut the fabric, the sample falls through the slotted part of the slotted platform 103 onto the sampling platform 105 below the hanging rod 104 for retrieval.

[0027] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A fabric research and development sampling device, comprising a positioning sampling component (1) and a cutting mechanism (3), characterized in that: The positioning sampling component (1) is provided with bolt-assembled feeding and discharging components (2) at both ends above, and a bolt-assembled cutting mechanism (3) is provided on the lower outer side of the positioning sampling component (1). The cutting mechanism (3) includes a bolt side frame (301), a crossbeam (302), a robotic arm base (303), a powered robotic arm (304), a kit base (305), and a laser cutting blade (306). The bolt side frame (301) is bolted to the lower outer side of the positioning and sampling assembly (1). A crossbeam (302) is provided above the outer end of the bolt side frame (301), and a robotic arm base (303) is provided on the inner top side of the crossbeam (302). A powered robotic arm (304) is provided at the output end of the robotic arm base (303), and a kit base (305) is provided at one end of the powered robotic arm (304). A laser cutting blade (306) is provided on the inner side of the kit base (305).

2. The fabric research and development sampling device according to claim 1, characterized in that: The robotic arm base (303) and the powered robotic arm (304) are symmetrically distributed about the central axis of the suit base (305).

3. The fabric research and development sampling device according to claim 1, characterized in that: The positioning and sampling component (1) includes a base plate (101), a table frame (102), a slotted table plate (103), a hanging rod (104), and a sampling table (105). The table frame (102) is arranged above the four sides of the base plate (101), and the slotted table plate (103) is arranged at the top of the table frame (102). The hanging rod (104) is arranged below the middle of the slotted table plate (103), and the sampling table (105) is arranged below the hanging rod (104).

4. The fabric research and development sampling device according to claim 3, characterized in that: The positioning and sampling component (1) also includes a side sleeve block (106), a pneumatic telescopic rod (107) and a pressure rod (108). The outer side of the slotted platform (103) is provided with a side sleeve block (106), and the inner side of the side sleeve block (106) is provided with a pneumatic telescopic rod (107) that is sleeved and installed. The output end of the pneumatic telescopic rod (107) is provided with a pressure rod (108).

5. The fabric research and development sampling device according to claim 3, characterized in that: The feeding and discharging component (2) includes a first bolt plate (201), a discharge cylinder (202), a first clamping cylinder (203), a mounting rod assembly (204), and a second bolt plate (205). A first bolt plate (201) is bolted to one end of the slotted platform (103). A discharge cylinder (202) connected to the output end of the first clamping cylinder (203) is provided on the inner side of the first bolt plate (201). A mounting rod assembly (204) is provided at the output end of the discharge cylinder (202). A second bolt plate (205) is bolted to the other end of the slotted platform (103).

6. The fabric research and development sampling device according to claim 5, characterized in that: The feeding and discharging component (2) also includes a pair of clamping rods (206), a receiving cylinder (207), a second clamping cylinder (208), and a receiving motor (209). The pair of clamping rods (206) is provided on the inner side of the outer end of the second bolt plate (205), and the receiving cylinder (207) is provided on the inner side of the middle part of the second bolt plate (205). The second clamping cylinder (208) is provided at one end of the receiving cylinder (207), and the receiving motor (209) is provided at the other end of the receiving cylinder (207).

Citation Information

Patent Citations

  • Sampling device for fabric research and development

    CN215811694U