A garment processing equipment and its fabric clamping device
By introducing a combination of positioning components, clamping components, and connecting components into garment processing equipment, the problem of unstable positioning of soft fabrics during processing is solved, achieving automated clamping and efficient processing with strong adaptability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- BULLMER ELECTROMECHANICAL TECH
- Filing Date
- 2022-09-02
- Publication Date
- 2026-05-26
AI Technical Summary
In the traditional garment processing industry, the positioning and fixing of soft fabrics are difficult to stabilize, leading to changes in processing positions, reliance on manual operation, high labor intensity and low efficiency.
The system employs a combination of positioning and clamping components, and automatically clamps the fabric via a connecting component. It includes positioning, clamping, and connecting components, and utilizes floating elastic elements and a pressure detection system to ensure stable clamping. Combined with a distance adjustment component, it can adapt to different fabric sizes.
It achieves automated positioning and clamping of fabrics, reduces manual intervention, improves processing efficiency and automation, and is highly adaptable to fabrics of different thicknesses and sizes.
Smart Images

Figure CN117678826B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of garment processing technology, and in particular to a garment processing equipment and its fabric clamping device. Background Technology
[0002] The traditional garment manufacturing industry is a typical labor-intensive industry. Rising labor and raw material costs necessitate intelligent transformation of the garment manufacturing sector to effectively control processing costs. However, intelligent transformation in the garment manufacturing industry faces multiple challenges. One particularly prominent issue is that the fabrics being processed are relatively soft, and their shape and condition are easily affected by external environmental factors, leading to changes in processing position and making them difficult to fix in place.
[0003] To address this issue, existing garment processing production lines mostly rely on manual labor for fixing and transferring fabrics, which is labor-intensive and has relatively low processing efficiency. Summary of the Invention
[0004] In view of this, the purpose of the present invention is to provide a garment processing equipment and its fabric clamping device, wherein the positioning component first positions the laid fabric, and the clamping component is then connected to the positioning component through the connecting component to clamp the fabric. This reduces the need for manual intervention and increases processing efficiency.
[0005] The fabric clamping device of the garment processing equipment provided by the present invention includes at least two sets of positioning and pressing mechanisms for pressing and fixing the fabric. Each set of positioning and pressing mechanisms includes a positioning component, a pressing component opposite to the positioning component, and a connecting component disposed between the positioning component and the pressing component. When the clamping plate of the positioning component flips and clamps the laid fabric, the pressing component connects to the positioning component through the connecting component and cooperates with the positioning component to clamp the fabric.
[0006] Preferably, the clamping assembly includes:
[0007] Fixed pressure plate;
[0008] Guide pins fixed to the fixed pressure plate;
[0009] A floating pressure plate that can be slidably fitted onto a guide pin;
[0010] A floating elastic element that is fitted onto a guide pin and elastically abuts against the fixed pressure plate and the floating pressure plate.
[0011] Preferably, the clamping assembly further includes:
[0012] A clamping drive component that is fixedly connected to a fixed pressure plate;
[0013] Pressure testing components used to detect the pressure of floating pressure plates;
[0014] The controller, which is connected to the clamping drive and the pressure detection component respectively, controls the clamping drive to maintain the current extension length based on the signal fed back by the pressure detection component when the pressure detection component detects that the pressure of the floating pressure plate has reached the preset pressure.
[0015] Preferably, the positioning component includes a support plate, and the clamping plate is hinged to the support plate via a rotating shaft.
[0016] Preferably, the support plate is fixed with a scratch-resistant moving block.
[0017] Preferably, the connection component includes:
[0018] A fixing block that is fixed to the positioning component and has fixing holes;
[0019] The movable block that is opposite to the fixed block;
[0020] A connecting drive cylinder fixed to the clamping assembly and connected to the movable block;
[0021] When the clamping component and the positioning component clamp the fabric, the connecting rod of the driving cylinder drives the movable block to insert into the fixing hole, and the fixing block and the movable block are fixedly connected.
[0022] Preferably, it further includes a support frame fixed at the center of the annular structure formed by each group of positioning and pressing mechanisms, and each group of positioning and pressing mechanisms further includes a distance adjusting component fixed at the support frame and connected to the pressing component for adjusting the distance between the pressing component and the center of the annular structure.
[0023] Preferably, the distance adjustment component includes:
[0024] Drive motor;
[0025] A drive gear fixed to the output shaft of a drive motor;
[0026] A transmission rack with one end meshing with a drive gear and the other end fixedly connected to the mounting plate of the clamping assembly;
[0027] The transmission rack passes through the bearing housing of the support frame, and a linear bearing is provided between the transmission rack and the bearing housing.
[0028] Preferably, the distance adjustment assembly further includes a sliding seat with one end fixed to the mounting plate and the other end slidably passing through the support frame, a guide slide rod parallel to the transmission rack, and a linear bearing between the guide slide rod and the sliding seat.
[0029] The garment processing equipment provided by the present invention includes a moving device and a fabric clamping device as described in any of the above claims, wherein the moving device is fixedly connected to the fabric clamping device.
[0030] Compared to the prior art, the fabric clamping device for garment processing equipment provided by the present invention includes at least two sets of positioning and pressing mechanisms. Each set of positioning and pressing mechanisms includes a positioning component, a pressing component, and a connecting component. The positioning component and the pressing component are connected through the connecting component. The positioning component includes a clamping plate that is flipped up and down.
[0031] During processing, the clamping plate is first flipped to clamp the laid fabric. In this way, each set of positioning and pressing mechanisms positions and clamps the fabric. The pressing component of each set of positioning and pressing mechanisms moves towards the corresponding positioning component until the opposing pressing component and positioning component abut against each other. At the same time, the connecting component is activated, and the pressing component and positioning component are connected together through the connecting component. In this way, the pressing component and positioning component can cooperate to clamp the fabric. In this way, each set of positioning and pressing mechanisms can clamp and fix the soft fabric, providing conditions for the transfer of the fabric. This replaces the existing manual clamping, with a high degree of automation, low labor intensity, and high processing efficiency.
[0032] The garment processing equipment provided by the present invention includes the above-mentioned fabric clamping device and has the same beneficial effects. Attached Figure Description
[0033] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.
[0034] Figure 1 This is a structural diagram of a fabric clamping device for a garment processing equipment provided in a specific embodiment of the present invention;
[0035] Figure 2 for Figure 1 Exploded view;
[0036] Figure 3 for Figure 1 Assembly diagram of the intermediate clamping assembly, connecting assembly, and distance adjustment assembly;
[0037] Figure 4 for Figure 1 Connection status diagram when the connecting component connects to the clamping component and the positioning component;
[0038] Figure 5 This is a diagram showing the state of the fabric clamping device of the garment processing equipment provided in a specific embodiment of the present invention when clamping the fabric.
[0039] The attached figures are labeled as follows:
[0040] Positioning and clamping mechanism 1, support frame 2, protective cover 3, fabric 4, and platform 5;
[0041] Positioning component 11, clamping component 12, connecting component 13, and distance adjustment component 14;
[0042] Clamping plate 111, support plate 112, support block 113 and anti-scratch moving block 114;
[0043] Fixed pressure plate 121, guide slide pin 122, floating pressure plate 123, floating elastic element 124, mounting plate 125 and clamping drive element 126;
[0044] Fixed block 131, movable block 132 and connecting drive cylinder 133;
[0045] Connecting rod 1321;
[0046] Drive motor 141, drive gear 142, transmission rack 143 and guide slide rod 144;
[0047] Bearing housing 21, sliding seat 22 and flange 23. Detailed Implementation
[0048] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0049] To enable those skilled in the art to better understand the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0050] Please refer to Figures 1 to 5 , Figure 1 This is a structural diagram of a fabric clamping device for a garment processing equipment provided in a specific embodiment of the present invention; Figure 2 for Figure 1 Exploded view; Figure 3 for Figure 1 Assembly diagram of the intermediate clamping assembly, connecting assembly, and distance adjustment assembly; Figure 4 for Figure 1 Connection status diagram when the connecting component connects to the clamping component and the positioning component; Figure 5 This is a diagram showing the state of the fabric clamping device of the garment processing equipment provided in a specific embodiment of the present invention when clamping the fabric.
[0051] This invention discloses a fabric clamping device for garment processing equipment. The positioning component 11 first positions the laid fabric 4, and the pressing component 12 is then connected to the positioning component 11 through the connecting component 13 to clamp the fabric 4. This method has low manual intervention and high processing efficiency.
[0052] The aforementioned fabric clamping device includes at least two sets of positioning and pressing mechanisms 1, which press and fix the fabric 4 at different positions, so that the fabric 4 is laid out in an ideal shape, providing conditions for the fabric clamping device to move the laid fabric 4, which is conducive to improving the degree of automation.
[0053] In this specific embodiment, preferably, there are two sets of positioning and pressing mechanisms 1 distributed linearly, namely a first positioning and pressing mechanism and a second positioning and pressing mechanism. The two sets of positioning and pressing mechanisms 1 clamp the two ends of the fabric 4 respectively, so that the fabric 4 is fully laid out, which facilitates subsequent operations such as sewing, buttonhole making, and button attaching on the fabric 4. Of course, there can also be three or more sets of positioning and pressing mechanisms 1. All positioning and pressing mechanisms 1 can be distributed in a ring shape to facilitate the full laying out of the irregular fabric 4 and to ensure that the fabric 4 is evenly stressed. The specific number of positioning and pressing mechanisms 1 can be adaptively adjusted according to the outline shape of the fabric 4, and is not specifically limited here.
[0054] Each positioning and pressing mechanism 1 includes a positioning component 11, a pressing component 12, and a connecting component 13. The positioning component 11 can be placed arbitrarily on the platform 5 for initial positioning of the fabric 4. The positioning component 11 includes a flip-mounted clamping plate 111, which clamps the fabric 4 when it is laid on the platform 5. The pressing component 12 is located directly above the positioning component 11, ensuring that the pressing component 12 of each positioning and pressing mechanism 1 is aligned with the positioning component 11. The connecting component 13 is located between the positioning component 11 and the pressing component 12, enabling the positioning component 11 and the pressing component 12 to clamp the fabric 4, and also allowing the positioning component 11 to move synchronously with the pressing component 12.
[0055] During processing, the clamping plate 111 is first flipped to clamp the laid fabric 4. In this way, each set of positioning and pressing mechanisms 1 initially positions and clamps the fabric 4. The pressing component 12 of each set of positioning and pressing mechanisms 1 moves towards the corresponding positioning component 11 until the opposing pressing component 12 and positioning component 11 abut against each other. At the same time, the connecting component 13 is activated, and the pressing component 12 and positioning component 11 are connected together through the connecting component 13. In this way, the pressing component 12 and positioning component 11 can cooperate to clamp the fabric 4. Thus, each set of positioning and pressing mechanisms 1 can clamp and fix the soft fabric 4, providing conditions for the transfer of the fabric 4. This replaces the existing manual clamping, has a high degree of automation, low labor intensity, and high processing efficiency.
[0056] The pressing assembly 12 includes a fixed pressure plate 121, a guide pin 122, a floating pressure plate 123, and a floating elastic element 124. The tail of the guide pin 122 is fixed to the fixed pressure plate 121. The floating pressure plate 123 is slidably sleeved on the guide pin 122. The floating pressure plate 123 has a through-hole, and a stop ring is provided inside the opening of the hole. The stop plate at the head of the guide pin 122 and the stop ring abut against each other along the axial direction of the guide pin 122, preventing the floating pressure plate 123 from disengaging from the guide pin 122. The floating elastic element 124 is sleeved on the guide pin 122 and elastically abuts against the fixed pressure plate 121 and the floating pressure plate 123, causing the floating pressure plate 123 to float and press the fabric 4. The distance between the floating pressure plate 123 and the fixed pressure plate 121 can be adjusted according to the thickness of the fabric 4, which can stably press the fabric 4 of different thicknesses and has good adaptability. The length and shape of the floating pressure plate 123 of each positioning and pressing mechanism 1 can be adjusted according to the fabric 4, and no specific limitation is made here.
[0057] The clamping assembly 12 also includes a mounting plate 125 and a clamping drive 126. The clamping drive 126 is fixed to the bottom of the mounting plate 125 and is fixedly connected to the fixed pressure plate 121, used to drive the clamping assembly 12 to move closer to or away from the positioning assembly 11. The clamping drive 126 is preferably a clamping drive cylinder, but it can also be a linear motor. A clamping drive 126 is fixed at each end of the mounting plate 125.
[0058] The clamping assembly 12 also includes a controller and a pressure detection element for detecting the pressure of the floating pressure plate 123. Specifically, the pressure detection element can be a pressure sensor. The controller is connected to both the clamping drive 126 and the pressure detection element. When the pressure detection element detects that the pressure of the floating pressure plate 123 has reached a preset pressure, the controller controls the clamping drive 126 to maintain its current extension length based on the signal fed back from the pressure detection element, automatically adjusting the moving distance of the clamping assembly 12 to prevent the clamping force between the clamping assembly 12 and the positioning assembly 11 from damaging the fabric 4 due to excessive extension of the clamping drive 126. The preset pressure mentioned in this text refers to the optimal clamping force between the clamping assembly 12 and the positioning assembly 11, which ensures that the fabric 4 is clamped while preventing damage.
[0059] A guide column and a guide groove are provided between the clamping drive component 126 and the fixed pressure plate 121 to guide the fixed pressure plate 121 to move linearly and reduce the risk of left and right swaying when the fixed pressure plate 121 moves. Specifically, the fixed pressure plate 121 is fixedly provided with two guide columns, and the cylinder of the clamping drive cylinder is provided with two guide grooves.
[0060] The positioning component 11 includes a support plate 112, and a clamping plate 111 is hinged to one side of the support plate 112 via a rotating shaft, allowing the clamping plate 111 to rotate relative to the support plate 112. Alternatively, the clamping plate 111 can be directly hinged to one side of the support plate 112 via a hinge, and the fabric 4 can be positioned by the weight of the clamping plate 111 pressing it down.
[0061] Each set of positioning and pressing mechanisms 1 has a basically the same structure, except that the support plate 112 of the positioning component 11, in this specific embodiment, the main body of one of the support plates 112 has a convex shape, and two rear pressure plates are integrally arranged in parallel at the rear end of the convex shape. The other support plate 112 is a rectangular plate. Each set of positioning and pressing mechanisms 1 can be adaptively adjusted according to the contour of the fabric 4, and no specific limitation is made here.
[0062] A scratch-resistant moving block 114 is fixedly provided on one side of the support plate 112, functioning similarly to a roller, to support the fabric clamping device on the platform 5. The scratch-resistant moving block 114 is made of polymer material, possessing good self-lubricating and wear-resistant properties, preventing scratches on the fabric 4 and making the entire device move more smoothly. In this specific embodiment, support blocks 113 are fixedly provided on both opposite sides of the two support plates 112, and a scratch-resistant moving block 114 is fixedly provided at the bottom of each support block 113.
[0063] The connecting assembly 13 includes a fixed block 131, a movable block 132, and a connecting drive cylinder 133. The fixed block 131 is fixed to the positioning assembly 11, specifically to one side of the support plate 112. The fixed block 131 has a through fixing hole, preferably a tapered hole, but it can also be a cylindrical hole. The movable block 132 is vertically opposite to the fixed block 131. The connecting drive cylinder 133 is fixed to the clamping assembly 12 and connected to the movable block 132. The cylinder barrel of the connecting drive cylinder 133 is specifically fixed to the bottom of the mounting plate 125, and its piston rod is fixedly connected to the movable block 132. A cooperating guide column and guide groove can also be provided between the connecting drive cylinder 133 and the movable block 132. The specific arrangement can be referenced in the clamping drive component 126 and the fixed pressure plate 121, and will not be detailed here.
[0064] When the clamping assembly 12 and the positioning assembly 11 clamp the fabric 4, the piston rod of the connecting drive cylinder 133 extends simultaneously. The connecting drive cylinder 133 drives the connecting rod 1321 of the movable block 132 to insert into the fixing hole. The connecting rod 1321 and the fixing hole are fixed together by an interference fit, thereby fixing the fixing block 131 and the movable block 132. In addition, the radial thrust generated by the connecting rod 1321 during the movement of the fabric clamping device can prevent the radial thrust from affecting the floating pressure plate 123 of the clamping assembly 12, ensuring the clamping stability of the fabric 4.
[0065] Considering that all the positioning and pressing mechanisms 1 are arranged in a ring, the ring structure formed by each group of positioning and pressing mechanisms 1 is further included in the fabric clamping device. The support frame 2 is fixed to the center of this ring structure. Correspondingly, each group of positioning and pressing mechanisms 1 also includes a distance adjustment component 14 fixed to the support frame 2. The distance adjustment component 14 is fixedly connected to all the pressing components 12 and is used to adjust the distance between the pressing components 12 and the center of the ring structure. This allows the distance between each group of positioning and pressing mechanisms 1 to be adjusted according to the size of the fabric 4, adapting to clamping fabrics 4 of different sizes, further improving adaptability. In this specific embodiment, the distance between two groups of positioning and pressing mechanisms 1 can be adjusted using the distance adjustment component 14 to adapt to fabrics 4 of different lengths.
[0066] In addition, the position of the positioning and pressing mechanism 1 is adjustable, which can reduce the size of the fabric clamping device when adjusting the sewing position and angle of the fabric 4, thus avoiding collisions and interference with other devices. For example, when sewing the placket of the fabric 4, by shortening the distance between each set of positioning and pressing mechanisms 1 and the support frame 2 to coordinate with the feeding action of the buttonhole machine, the clamped fabric 4 is prevented from shifting due to being pulled by the buttonhole machine during feeding, which has a positive effect on improving sewing quality.
[0067] The distance adjustment assembly 14 includes a drive motor 141, a drive gear 142, and a transmission rack 143. The drive motor 141 is vertically fixed to the support frame 2. The drive gear 142 is fixed to the output shaft of the drive motor 141, and can specifically be a spur gear. One end of the transmission rack 143 meshes with the drive gear 142, and the other end is fixedly connected to the mounting plate 125 of the clamping assembly 12. When the drive motor 141 is started, the drive motor 141 drives the transmission rack 143 to move linearly through the drive gear 142, and the transmission rack 143 drives the positioning and clamping mechanism 1 to move relative to the support frame 2. Of course, the structure of the distance adjustment assembly 14 is not limited to this. For example, a lead screw and nut pair can be used to replace the above-mentioned gear and rack structure, and the purpose of the present invention can still be achieved.
[0068] A bearing seat 21 is fixed at the bottom of the support frame 2. The transmission rack 143 passes through the bearing seat 21. A linear bearing is provided between the transmission rack 143 and the bearing seat 21 to support the linear movement of the transmission rack 143, reduce the wear of the support frame 2 and the transmission rack 143, extend their service life, and reduce noise.
[0069] The distance adjustment assembly 14 also includes a guide slide rod 144. One end of the guide slide rod 144 is fixedly connected to the mounting plate 125, and the other end can slide through the sliding seat 22 provided on the support frame 2. The guide slide rod 144 is parallel to the transmission rack 143 and is used to guide the transmission rack 143 to move linearly relative to the support frame 2. In addition, the guide slide rod 144 and the transmission rack 143 are respectively connected to both ends of the clamping assembly 12. The two together bear the weight of the clamping assembly 12, which can prevent the clamping assembly 12 from tipping over and ensure the stable movement of the clamping assembly 12. A linear bearing is also provided between the guide slide rod 144 and the sliding seat 22. The linear bearing also serves to reduce noise and slow down wear.
[0070] In this specific embodiment, the central axes of the transmission racks 143 connected to each group of positioning and pressing mechanisms 1 are vertically staggered to avoid collision interference. Similarly, the central axes of the guide slides 144 connected to each group of positioning and pressing mechanisms 1 are also vertically staggered; however, the central axes of the transmission racks 143 and guide slides 144 connected to the same group of positioning and pressing mechanisms 1 are coplanar. The aforementioned verticality specifically refers to the direction perpendicular to the fabric.
[0071] The fabric clamping device also includes a protective cover 3 fixed to the bottom of the support frame 2. The protective cover 3 is used to cover the connection between the transmission rack 143 and the support frame 2 and the connection between the guide slide rod 144 and the support frame 2, so as to prevent foreign objects from affecting the smooth sliding of the transmission rack 143 and the guide slide rod 144.
[0072] The garment processing equipment provided by this invention includes a moving device and the aforementioned fabric clamping device. The moving device is fixedly connected to the fabric 4 clamping device and is used to drive the fabric clamping device to move the clamped fabric 4 along the table 5, which helps to further reduce manual intervention while still improving processing efficiency. Specifically, a flange 23 is fixedly provided at the top center of the support frame 2, and the support device is fixed on the flange 23.
[0073] The above provides a detailed description of the garment processing equipment and fabric clamping device provided by the present invention. Specific examples have been used to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of the present invention. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of the present invention. Therefore, the content of this specification should not be construed as a limitation of the present invention.
Claims
1. A fabric clamping device for garment processing equipment, characterized in that, It includes at least two sets of positioning and pressing mechanisms (1) for pressing and fixing fabric (4). Each set of positioning and pressing mechanisms (1) includes a positioning component (11), a pressing component (12) opposite to the positioning component (11), and a connecting component (13) disposed between the positioning component (11) and the pressing component (12). When the clamping plate (111) of the positioning component (11) flips and clamps the laid fabric (4), the pressing component (12) connects to the positioning component (11) through the connecting component (13) and cooperates with the positioning component (11) to clamp the fabric (4). The clamping assembly (12) includes: Fixed pressure plate (121); Guide pin (122) fixed to the fixed pressure plate (121); A floating pressure plate (123) that can be slidably sleeved on the guide pin (122). A floating elastic element (124) is sleeved on the guide pin (122) and elastically abuts against the fixed pressure plate (121) and the floating pressure plate (123). The clamping assembly (12) further includes: A clamping drive (126) is fixedly connected to the fixed pressure plate (121). Pressure detection element used to detect the pressure of the floating pressure plate (123); The controller, which is connected to the pressing drive (126) and the pressure detection element respectively, controls the pressing drive (126) to maintain the current extension length according to the signal fed back by the pressure detection element when the pressure detection element detects that the pressure of the floating pressure plate (123) reaches the preset pressure.
2. The fabric clamping device of the garment processing equipment according to claim 1, characterized in that, The positioning component (11) includes a support plate (112), and the clamping plate (111) is hinged to the support plate (112) via a rotating shaft.
3. The fabric clamping device of the garment processing equipment according to claim 2, characterized in that, The support plate (112) is fixedly provided with a scratch-resistant moving block (114).
4. The fabric clamping device of the garment processing equipment according to any one of claims 1 to 3, characterized in that, The connection component (13) includes: A fixing block (131) fixed to the positioning component (11) and having a fixing hole; The movable block (132) is opposite to the fixed block (131); A connecting drive cylinder (133) is fixed to the clamping assembly (12) and connected to the movable block (132). When the clamping assembly (12) clamps the fabric (4) in conjunction with the positioning assembly (11), the connecting drive cylinder (133) drives the connecting rod (1321) of the movable block (132) to insert into the fixing hole, and the fixing block (131) is fixedly connected to the movable block (132).
5. The fabric clamping device of the garment processing equipment according to any one of claims 1 to 3, characterized in that, It also includes a support frame (2) fixed at the center of the annular structure formed by each group of positioning and pressing mechanisms (1), and each group of positioning and pressing mechanisms (1) further includes a distance adjustment component (14) fixed at the support frame (2) and connected to the pressing component (12) for adjusting the distance between the pressing component (12) and the center of the annular structure.
6. The fabric clamping device of the garment processing equipment according to claim 5, characterized in that, The distance adjustment component (14) includes: Drive motor (141); Drive gear (142) fixed to the output shaft of the drive motor (141). A transmission rack (143) with one end meshing with the drive gear (142) and the other end fixedly connected to the mounting plate (125) of the clamping assembly (12). The transmission rack (143) passes through the bearing seat (21) provided in the support frame (2), and a linear bearing is provided between the transmission rack (143) and the bearing seat (21).
7. The fabric clamping device of the garment processing equipment according to claim 6, characterized in that, The distance adjustment assembly (14) further includes a sliding seat (22) with one end fixed to the mounting plate (125) and the other end slidably passing through the support frame (2), and a guide slide rod (144) parallel to the transmission rack (143). A linear bearing is provided between the guide slide rod (144) and the sliding seat (22).
8. A garment processing equipment, characterized in that, It includes a moving device and a fabric clamping device according to any one of claims 1 to 7, wherein the moving device is fixedly connected to the fabric (4) clamping device.