Proofing equipment for garment processing

By combining the suction mechanism, the moving mechanism, and the adjusting components, the problem of paper pattern curling is solved, ensuring sampling accuracy and environmental cleanliness, and achieving accurate size and high-quality sampling of garment samples.

CN121647433APending Publication Date: 2026-03-13JINING POLYTECHNIC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-22
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

In existing garment sampling equipment, the edges of paper patterns are prone to curling up during sampling, resulting in distorted outlines and affecting the accuracy of the actual size of the garment sample.

Method used

The material is evenly attracted and fixed by a suction mechanism and a moving mechanism, and the flatness of the material is ensured by adjusting the deflection of the components and rollers; a contact component is set to absorb ink and dust impurities dripping from the inkjet head to keep the working environment clean.

Benefits of technology

It effectively prevents raw materials from warping and curling during the prototyping process, ensuring prototyping accuracy, providing a stable and clean working environment, and avoiding dimensional deviations.

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Abstract

The invention discloses proofing equipment for garment processing, and relates to the technical field of garment processing. Comprising a workbench; the bottom frame is mounted at the bottom of the workbench; the control box is installed at the bottom of the workbench, and the control box is connected with the bottom frame; the mounting plate is mounted on the upper surface of the workbench; the suction mechanism is arranged below the workbench, the suction mechanism comprises a sliding plate and a communicating assembly, and the sliding plate is used for driving the communicating assembly to move in the vertical direction; the sample making equipment comprises a mounting plate, a moving mechanism, the moving mechanism is arranged above the mounting plate, the moving mechanism comprises a first sliding block, an adjusting assembly and a contact assembly are arranged outside the first sliding block, and the first sliding block is used for driving the adjusting assembly and the contact assembly to move in the horizontal direction. And by arranging the suction mechanism and the moving mechanism, the purpose of improving the use efficiency of the equipment is achieved.
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Description

Technical Field

[0001] This invention relates to the field of garment processing technology, specifically to a pattern-making device for garment processing. Background Technology

[0002] Garment sampling is the process of creating a pattern from a garment design drawing; it is also called garment pattern making. In the garment sales market, as people consider not only the aesthetics of clothing but also its comfort and functionality, sampling is becoming increasingly important in garment design.

[0003] Patent CN220423212U discloses a pattern-making device for garment processing. This device fixes the pattern paper onto a platform, preventing movement during the pattern-making process. The even distribution of force through branch pipes ensures uniform stress on the pattern paper, resulting in stable fixation. Valves control the suction position on the platform, preventing suction from occurring on areas without pattern paper, which could affect the suction strength. However, when fixing the pattern paper by suction, the edges are prone to curling during pattern-making. This can distort the scanned outline, causing discrepancies between the patterned garment sample and the actual dimensions. Summary of the Invention

[0004] To overcome the problem that the edges of paper patterns tend to curl up during pattern making when the paper pattern is fixed by adsorption, which may cause distortion of the scanned outline and result in deviation between the patterned garment sample and the actual size, this invention provides a pattern making device for garment processing, including a worktable.

[0005] A base frame, which is mounted on the bottom of the workbench;

[0006] A control box is installed at the bottom of the workbench and is connected to the base frame;

[0007] Mounting plate, which is mounted on the upper surface of the workbench;

[0008] A suction mechanism is provided below the worktable. The suction mechanism includes a sliding plate and a connecting component. The sliding plate is used to drive the connecting component to move in the vertical direction.

[0009] A moving mechanism is disposed above the mounting plate. The moving mechanism includes a first slider, and an adjustment component and a contact component are disposed on the outside of the first slider. The first slider is used to drive the adjustment component and the contact component to move in the horizontal direction.

[0010] Preferably, the suction mechanism further includes:

[0011] The base box is installed on the outside of the base frame, and a fan is installed inside the base box;

[0012] Telescopic pipe, which is installed on the top of the base box;

[0013] A lifting box is installed on top of a telescopic pipe and connected to a sliding plate. A connecting component is located on top of the lifting box.

[0014] Preferably, the suction mechanism further includes:

[0015] The first channel is located inside the workbench and extends through the interior of the workbench. Multiple first channels are provided and evenly distributed.

[0016] The first slide groove is formed on the side of the control box, and the slide plate is slidably connected to the inside of the first slide groove;

[0017] The second slide is located on the side of the control box, and multiple second slides are provided.

[0018] Preferably, the connectivity component includes:

[0019] A first pipe is installed on the top of the lifting box, and a brush strip is installed on the outside of the first pipe;

[0020] The second pipe is installed inside the first pipe, and multiple second pipes and multiple first pipes are provided and evenly distributed.

[0021] Preferably, the moving mechanism further includes:

[0022] The second channel is located inside the mounting plate, and multiple second channels are provided and evenly distributed.

[0023] The third slide groove is formed on the side of the mounting plate. There are two third slide grooves, which are symmetrically arranged. The first slider is slidably connected inside the third slide groove.

[0024] Through holes are provided on the upper surface of the mounting plate, and multiple through holes are provided and evenly distributed.

[0025] Preferably, the moving mechanism further includes:

[0026] A first push rod is mounted on top of a first slider;

[0027] A first connecting plate is mounted on top of a first push rod and is connected to an adjustment assembly.

[0028] Preferably, the adjustment component includes:

[0029] A top plate, which is connected to a first connecting plate, and two top plates are provided and arranged symmetrically;

[0030] An electric motor, which is mounted on the top of the top plate;

[0031] A center box, which is mounted on the outside of the top plate, is connected to a contact assembly.

[0032] Preferably, the adjustment component further includes:

[0033] The second push rod is connected to the output end of the motor;

[0034] The second connecting plate is installed at the bottom of the second push rod;

[0035] The third push rod is mounted on the outside of the second connecting plate;

[0036] A roller shaft, which is connected to a third push rod.

[0037] Preferably, the contact assembly includes:

[0038] The fourth slide groove is formed inside the central box;

[0039] The second slider is slidably connected inside the fourth groove, and a fourth push rod is installed on the outside of the second slider, with the fixed end of the fourth push rod installed inside the fourth groove.

[0040] A connector, which is mounted on the outside of the second slider;

[0041] A horizontal plate is installed at the bottom of the connector, and a pad is installed at the top of the horizontal plate.

[0042] This invention provides a pattern-making device for garment processing. It has the following beneficial effects:

[0043] 1. This garment processing sampling equipment uses a suction mechanism and a moving mechanism to suction and fix the raw material and flatten its edges. Existing equipment, when fixing paper patterns by suction or adhesion, is prone to edge curling during sampling, which can distort the scanned outline and cause deviations between the sampled garment and the actual size. Therefore, the suction and moving mechanisms are implemented. By evenly distributing multiple first channels and positioning the exhaust points evenly at the bottom of the mounting plate, the raw material is evenly suctioned and fixed, preventing instability caused by uneven suction. Simultaneously, an adjustment component is used, with four adjustable rollers on top of the raw material. Motor-controlled roller deflection ensures the rollers contact the raw material and move away from the mounting plate, enhancing the flattening of the material and preventing edge curling during inkjet printing, thus solving the aforementioned problems.

[0044] 2. This garment processing sampling equipment, by setting up a suction mechanism and a connecting component, controls the height of the first and second pipes, thereby controlling the entry and exit of the first pipe into the first channel. With the cooperation of a fan and a moving mechanism, the raw material is drawn in, causing it to be suctioned and fixed onto the mounting plate. By evenly setting multiple first channels, the suction positions are evenly distributed at the bottom of the mounting plate, thus ensuring uniform suction and fixation of the raw material, avoiding unstable fixation due to uneven suction.

[0045] 3. This garment processing sampling equipment has an adjustment component with four adjustable rollers on the top of the raw material. The rollers are controlled by a motor to deflect, contact the raw material, and move away from the mounting plate, thereby enhancing the flattening of the raw material and preventing edge curling when the raw material is inkjet printed.

[0046] 4. This garment processing sampling equipment, by setting up contact components, controls the position of the horizontal plate and the pad before installing the raw materials. The pad absorbs the ink dripping from the inkjet head, and the horizontal plate adheres to most of the dust and impurities at the bottom of the roller, so that the subsequent inkjet sampling work can be carried out in a cleaner working environment. Attached Figure Description

[0047] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0048] Figure 2 This is a schematic diagram of the bottom structure of the present invention;

[0049] Figure 3 This is a schematic diagram of the suction mechanism of the present invention;

[0050] Figure 4 For the present invention Figure 3Schematic diagram of the structure at point A;

[0051] Figure 5 This is a schematic diagram of the connected component structure of the present invention;

[0052] Figure 6 This is a schematic diagram of the moving mechanism structure of the present invention;

[0053] Figure 7 This is a schematic diagram of the top structure of the moving mechanism of the present invention;

[0054] Figure 8 This is a schematic diagram of the adjustment component structure of the present invention;

[0055] Figure 9 For the present invention Figure 8 Schematic diagram of the structure at point B;

[0056] Figure 10 For the present invention Figure 8 A schematic diagram of the structure at point C.

[0057] In the diagram: 1. Workbench; 2. Base frame; 3. Suction mechanism; 301. Base box; 302. Telescopic pipe; 303. Lifting box; 304. Connecting component; 3041. First pipe; 3042. Second pipe; 305. First channel; 306. First slide rail; 307. Second slide rail; 308. Slide plate; 4. Mounting plate; 5. Moving mechanism; 501. Second channel; 502. Third slide rail; 503. First slider; 504. First push rod; 5 5. First connecting plate; 506. Adjusting component; 5061. Center box; 5062. Top plate; 5063. Motor; 5064. Second push rod; 5065. Second connecting plate; 5066. Third push rod; 5067. Roller shaft; 507. Through hole; 508. Contact component; 5081. Fourth slide groove; 5082. Second slider; 5083. Connector; 5084. Horizontal plate; 5085. Pad plate; 5086. Fourth push rod; 6. Control box. Detailed Implementation

[0058] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.

[0059] like Figures 1-10 As shown, the present invention provides a technical solution including a workbench 1;

[0060] Base frame 2 is installed at the bottom of workbench 1;

[0061] Control box 6 is installed at the bottom of workbench 1 and is connected to base frame 2;

[0062] Mounting plate 4 is mounted on the upper surface of the workbench 1;

[0063] The suction mechanism 3 is located below the worktable 1. The suction mechanism 3 includes a slide plate 308 and a connecting component 304. The slide plate 308 is equipped with a power system and is used to drive the connecting component 304 to move in the vertical direction.

[0064] The moving mechanism 5 is disposed above the mounting plate 4. The moving mechanism 5 includes a first slider 503. The first slider 503 has a power system inside and an adjustment component 506 and a contact component 508 outside. The first slider 503 is used to drive the adjustment component 506 and the contact component 508 to move in the horizontal direction.

[0065] Before using the equipment, adjust the suction mechanism 3 and the moving mechanism 5, manually place the raw material on the mounting plate 4, then adjust the suction mechanism 3 to suction and fix the raw material, adjust the moving mechanism 5 to start inkjet processing, and after the work is finished, adjust the moving mechanism 5 and the suction mechanism 3 to manually remove the raw material.

[0066] The suction mechanism 3 also includes:

[0067] The base box 301 is installed on the outside of the base frame 2, and a fan is installed inside the base box 301;

[0068] Telescopic pipe 302 is installed on top of base box 301;

[0069] The lifting box 303 is installed on the top of the telescopic pipe 302. The lifting box 303 is connected to the slide plate 308. The connecting component 304 is set on the top of the lifting box 303.

[0070] The first channel 305 is opened inside the workbench 1 and runs through the interior of the workbench 1. Multiple first channels 305 are opened and evenly distributed.

[0071] The first slide groove 306 is formed on the side of the control box 6, and the slide plate 308 is slidably connected to the inside of the first slide groove 306.

[0072] The second slide 307 is located on the side of the control box 6, and multiple second slides 307 are provided.

[0073] Before using the equipment, the slide plate 308 is in the first horizontal slide groove 306. As the user places the raw materials on the mounting plate 4 and activates the power system in the slide plate 308, the slide plate 308 moves upward from the first slide groove 306 and enters the second slide groove 307 in the center position. At this time, the slide plate 308 drives the lifting box 303 to move upward, the telescopic pipe 302 is stretched, and the connecting component 304 moves upward along with it.

[0074] Connectivity component 304 includes:

[0075] The first pipe 3041 is installed on the top of the lifting box 303, and a brush strip is installed on the outside of the first pipe 3041.

[0076] The second pipe 3042 is installed inside the first pipe 3041. Multiple second pipes 3042 and multiple first pipes 3041 are provided and evenly distributed.

[0077] When the slide plate 308 is in the middle position in the second slide groove 307, the second pipe 3042 enters the first channel 305, and the first pipe 3041 is at the opening of the first channel 305. The fan is turned on to the exhaust mode, and the fan starts to exhaust the first channel 305 and the moving mechanism 5 through the second pipe 3042 and the first pipe 3041, so that the raw material is sucked onto the mounting plate 4.

[0078] When the slide plate 308 is at its highest position in the second slide groove 307, both the second pipe 3042 and the first pipe 3041 are in the first channel 305. At this time, the brush strip outside the first pipe 3041 contacts the inner wall of the first channel 305, sealing the bottom of the first channel 305 and reducing dust and impurities entering the first channel 305 when the equipment is not in use.

[0079] By setting up the suction mechanism 3 and the connecting component 304, the height of the first pipe 3041 and the second pipe 3042 is controlled, thereby controlling the entry and exit of the first pipe 3041 into the first channel 305. With the cooperation of the fan and the moving mechanism 5, the raw material is drawn in, causing it to be suctioned and fixed onto the mounting plate 4. By evenly setting multiple first channels 305, the suction position is evenly set at the bottom of the mounting plate 4, thereby evenly suctioning and fixing the raw material, avoiding unstable fixing of the raw material due to uneven suction position.

[0080] The mobile mechanism 5 also includes:

[0081] The second channel 501 is located inside the mounting plate 4. Multiple second channels 501 are provided and are evenly distributed.

[0082] The third slide groove 502 is opened on the side of the mounting plate 4. There are two third slide grooves 502, which are symmetrically arranged. The first slider 503 is slidably connected inside the third slide groove 502.

[0083] Through holes 507 are provided on the upper surface of the mounting plate 4. Multiple through holes 507 are provided and evenly distributed. By providing through holes 507, the direct contact area between the second channel 501 and the raw material is reduced, and the raw material is prevented from being sucked into the second channel 501.

[0084] The first push rod 504 is mounted on top of the first slider 503;

[0085] The first connecting plate 505 is installed on the top of the first push rod 504 and is connected to the adjusting assembly 506.

[0086] As the user places the raw material on the mounting plate 4, the fan draws air through the first pipe 3041 and the second pipe 3042 to the first channel 305, the second pipe 3042 and the through hole 507, so that the raw material is attracted and fixed on the mounting plate 4.

[0087] Adjustment component 506 includes:

[0088] Top plate 5062, top plate 5062 is connected to the first connecting plate 505, and there are two top plates 5062, which are arranged symmetrically;

[0089] Motor 5063 is mounted on top of top plate 5062;

[0090] The center box 5061 is installed on the outside of the top plate 5062. The center box 5061 is connected to the contact assembly 508. The bottom of the center box 5061 is equipped with an ink cartridge, and the ink cartridge contains a power system.

[0091] The second push rod 5064 is connected to the output end of the motor 5063;

[0092] The second connecting plate 5065 is installed at the bottom of the second push rod 5064;

[0093] The third push rod 5066 is installed on the outside of the second connecting plate 5065;

[0094] Roller 5067 is connected to the third push rod 5066.

[0095] Before using the equipment, turn on the first push rod 504. The first push rod 504 drives the first connecting plate 505, the adjusting component 506 and the contact component 508 to move upward. According to the size of the raw material, adjust the initial stroke of the third push rod 5066, and then adjust the position of the roller 5067.

[0096] As the raw material is attracted and fixed on the mounting plate 4, the first push rod 504 is adjusted to the initial state. The first push rod 504 drives the first connecting plate 505, the top plate 5062, the second push rod 5064, the second connecting plate 5065, the third push rod 5066, and the roller 5067 to move downward. The second push rod 5064 is activated, and the second push rod 5064 drives the second connecting plate 5065, the third push rod 5066, and the roller 5067 to move downward until the roller 5067 contacts the raw material.

[0097] As the inkjet printing process proceeds, motor 5063 is turned on. Motor 5063 controls the second push rod 5064, the second connecting plate 5065, the third push rod 5066, and the roller 5067 to deflect. The roller 5067 moves away from the mounting plate 4, thereby strengthening the leveling of the raw material and preventing the raw material from curling during inkjet printing.

[0098] By setting the adjustment component 506, four adjustable rollers 5067 are set on the top of the raw material, and the motor 5063 controls the deflection of the rollers 5067. The rollers 5067 contact the raw material and move away from the mounting plate 4, thereby strengthening the leveling of the raw material and preventing the raw material from curling when ink is sprayed.

[0099] Contact component 508 includes:

[0100] The fourth slide 5081 is located inside the central box 5061;

[0101] The second slider 5082 is slidably connected inside the fourth slide groove 5081. The fourth push rod 5086 is installed on the outside of the second slider 5082, and the fixed end of the fourth push rod 5086 is installed inside the fourth slide groove 5081.

[0102] The connector 5083 is installed on the outside of the second slider 5082. The connector 5083 consists of an adjustable rod in the horizontal direction and a telescopic rod in the vertical direction.

[0103] A horizontal plate 5084 is installed at the bottom of the connector 5083. A pad 5085 is installed on the top of the horizontal plate 5084. The pad 5085 is made of sponge material, and the upper surface of the horizontal plate 5084 is made of adhesive material.

[0104] Before installing the raw materials, adjust the stroke of the fourth push rod 5086. The fourth push rod 5086 drives the second slider 5082 to move, and the second slider 5082 drives the connector 5083 and the horizontal plate 5084 to move until the pad 5085 is below the inkjet head, reducing ink dripping from the inkjet head during installation.

[0105] The third push rod 5066 is activated, which drives the roller 5067 to move onto the horizontal plate 5084. The roller 5067 contacts the horizontal plate 5084, which is made of an adhesive material, promoting the adhesion of impurities at the bottom of the roller 5067 onto the horizontal plate 5084.

[0106] By setting the contact component 508, the positions of the horizontal plate 5084 and the pad 5085 are controlled before the raw material is installed. The pad 5085 absorbs the ink dripping from the inkjet head, and the horizontal plate 5084 adheres to most of the dust and impurities at the bottom of the roller 5067, so that the subsequent inkjet proofing work can be carried out in a cleaner working environment.

[0107] Working principle: Before installing the raw materials, adjust the stroke of the fourth push rod 5086. The fourth push rod 5086 drives the second slider 5082 to move. The second slider 5082 drives the connecting piece 5083 and the horizontal plate 5084 to move until the pad 5085 is below the inkjet head, reducing ink dripping from the inkjet head during installation.

[0108] The third push rod 5066 is activated, which drives the roller 5067 to move onto the horizontal plate 5084. The roller 5067 contacts the horizontal plate 5084, which is made of an adhesive material, promoting the adhesion of impurities at the bottom of the roller 5067 onto the horizontal plate 5084.

[0109] Before using the equipment, adjust the suction mechanism 3 and the moving mechanism 5, manually place the raw material on the mounting plate 4, and then adjust the suction mechanism 3 to suction and fix the raw material.

[0110] Before using the equipment, the slide plate 308 is in the first horizontal slide groove 306. As the user places the raw materials on the mounting plate 4 and activates the power system in the slide plate 308, the slide plate 308 moves upward from the first slide groove 306 and enters the second slide groove 307 in the center position. At this time, the slide plate 308 drives the lifting box 303 to move upward, the telescopic pipe 302 is stretched, and the connecting component 304 moves upward along with it.

[0111] When the slide plate 308 is in the middle position in the second slide groove 307, the second pipe 3042 enters the first channel 305, and the first pipe 3041 is at the opening of the first channel 305. The fan is turned on to the exhaust mode, and the fan starts to exhaust the first channel 305 and the moving mechanism 5 through the second pipe 3042 and the first pipe 3041, so that the raw material is sucked onto the mounting plate 4.

[0112] As the user places the raw material on the mounting plate 4, the fan draws air through the first pipe 3041 and the second pipe 3042 to the first channel 305, the second pipe 3042 and the through hole 507, so that the raw material is attracted and fixed on the mounting plate 4.

[0113] Adjust the moving mechanism 5 to start inkjet processing. Before using the equipment, turn on the first push rod 504. The first push rod 504 drives the first connecting plate 505, the adjusting component 506 and the contact component 508 to move upward. According to the size of the raw material, adjust the initial stroke of the third push rod 5066, and then adjust the position of the roller 5067.

[0114] As the raw material is attracted and fixed on the mounting plate 4, the first push rod 504 is adjusted to the initial state. The first push rod 504 drives the first connecting plate 505, the top plate 5062, the second push rod 5064, the second connecting plate 5065, the third push rod 5066, and the roller 5067 to move downward. The second push rod 5064 is activated, and the second push rod 5064 drives the second connecting plate 5065, the third push rod 5066, and the roller 5067 to move downward until the roller 5067 contacts the raw material.

[0115] As the inkjet printing process proceeds, motor 5063 is turned on. Motor 5063 controls the second push rod 5064, the second connecting plate 5065, the third push rod 5066, and the roller 5067 to deflect. The roller 5067 moves away from the mounting plate 4, thereby strengthening the leveling of the raw material and preventing the raw material from curling during inkjet printing.

[0116] After the work is completed, adjust the moving mechanism 5 and the suction mechanism 3, turn off the fan, wait for the surface of the raw material to dry, and then manually disassemble the raw material.

[0117] When the slide plate 308 is at its highest position in the second slide groove 307, both the second pipe 3042 and the first pipe 3041 are in the first channel 305. At this time, the brush strip outside the first pipe 3041 contacts the inner wall of the first channel 305, sealing the bottom of the first channel 305 and reducing dust and impurities entering the first channel 305 when the equipment is not in use.

[0118] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.

Claims

1. A pattern-making device for garment processing, comprising a workbench (1), characterized in that: A base frame (2) is installed at the bottom of the workbench (1); Control box (6), the control box (6) is installed at the bottom of the workbench (1), and the control box (6) is connected to the base frame (2); Mounting plate (4), which is mounted on the upper surface of the workbench (1); A suction mechanism (3) is provided below the workbench (1). The suction mechanism (3) includes a slide plate (308) and a connecting component (304). The slide plate (308) is used to drive the connecting component (304) to move in the vertical direction. The moving mechanism (5) is disposed above the mounting plate (4). The moving mechanism (5) includes a first slider (503). An adjustment component (506) and a contact component (508) are disposed on the outside of the first slider (503). The first slider (503) is used to drive the adjustment component (506) and the contact component (508) to move in the horizontal direction.

2. The garment processing sampling equipment according to claim 1, characterized in that: The suction mechanism (3) further includes: The base box (301) is installed on the outside of the base frame (2), and a fan is installed inside the base box (301); Telescopic pipe (302), said telescopic pipe (302) is installed on top of the base box (301); A lifting box (303) is installed on top of a telescopic pipe (302), the lifting box (303) is connected to a sliding plate (308), and a connecting component (304) is disposed on top of the lifting box (303).

3. The garment processing sampling equipment according to claim 2, characterized in that: The suction mechanism (3) further includes: The first channel (305) is located inside the workbench (1) and extends through the interior of the workbench (1). Multiple first channels (305) are provided and are evenly distributed. The first slide groove (306) is formed on the side of the control box (6), and the slide plate (308) is slidably connected to the inside of the first slide groove (306); The second slide (307) is located on the side of the control box (6), and multiple slides (307) are provided.

4. The garment processing sampling equipment according to claim 2, characterized in that: The connectivity component (304) includes: The first pipe (3041) is installed on the top of the lifting box (303), and a brush strip is installed on the outside of the first pipe (3041); The second pipe (3042) is installed inside the first pipe (3041). Multiple second pipes (3042) and multiple first pipes (3041) are provided and are evenly distributed.

5. The garment processing sampling equipment according to claim 1, characterized in that: The moving mechanism (5) also includes: The second channel (501) is opened inside the mounting plate (4), and multiple second channels (501) are opened and evenly arranged; The third slide groove (502) is opened on the side of the mounting plate (4). There are two third slide grooves (502) and they are symmetrically arranged. The first slider (503) is slidably connected inside the third slide groove (502). Through holes (507) are formed on the upper surface of the mounting plate (4). Multiple through holes (507) are formed and evenly distributed.

6. The garment processing sampling equipment according to claim 5, characterized in that: The moving mechanism (5) also includes: The first push rod (504) is mounted on top of the first slider (503); The first connecting plate (505) is mounted on the top of the first push rod (504) and is connected to the adjusting assembly (506).

7. The garment processing sampling equipment according to claim 6, characterized in that: The adjustment component (506) includes: Top plate (5062), the top plate (5062) is connected to the first connecting plate (505), and there are two top plates (5062) arranged symmetrically; A motor (5063) is mounted on top of a top plate (5062); A center box (5061) is mounted on the outside of the top plate (5062) and is connected to a contact assembly (508).

8. The garment processing sampling equipment according to claim 7, characterized in that: The adjustment component (506) further includes: The second push rod (5064) is connected to the output end of the motor (5063); The second connecting plate (5065) is installed at the bottom of the second push rod (5064); The third push rod (5066) is mounted on the outside of the second connecting plate (5065); Roller (5067) is connected to a third push rod (5066).

9. The garment processing sampling equipment according to claim 7, characterized in that: The contact assembly (508) includes: The fourth slide (5081) is formed inside the central box (5061); The second slider (5082) is slidably connected inside the fourth slide groove (5081). A fourth push rod (5086) is installed on the outside of the second slider (5082). The fixed end of the fourth push rod (5086) is installed inside the fourth slide groove (5081). A connector (5083) is mounted on the outside of the second slider (5082); A horizontal plate (5084) is installed at the bottom of the connector (5083), and a pad (5085) is installed on the top of the horizontal plate (5084).

Citation Information

Patent Citations

  • Proofing equipment for garment processing

    CN220423212U