A garment production method and equipment

By using a translucent upper clamp and indicator lights in conjunction with an air suction device and a blower in garment production equipment, the problem of inaccurate positioning of garment units was solved, the sewing quality and efficiency were improved, and the aesthetics and flatness of the finished products were ensured.

CN116676723BActive Publication Date: 2026-03-06FUJIAN SHUNBANG PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-05
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

In the current garment production process, it is difficult for workers to accurately determine the position of garment units on the board, resulting in poor quality of the finished product after sewing.

Method used

The clamp design employs a light-transmitting upper clamp and a light-blocking lower clamp, using indicator lights to project light for positioning assistance. Combined with air suction components and a blower, the position of the garment unit is adjusted to ensure accurate positioning and flatness. An adjustment device is used to precisely adjust garment units of different sizes.

Benefits of technology

It improves the quality and efficiency of sewn products, reduces operational difficulty, ensures accurate positioning and flatness of garment units on the clamps, and reduces wrinkles and positional errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a garment production method and equipment, relating to the technical field of garment production. The garment production equipment includes a pattern-making machine and several indicator lights. The pattern-making machine includes a worktable, a sewing mechanism, a drive mechanism, and a clamp. The clamp includes an upper clamping plate and a lower clamping plate. The upper clamping plate has an installation space, and the lower clamping plate has a clearance space. The upper clamping plate is a light-transmitting plate, and the lower clamping plate is a light-blocking plate. Several indicator lights are distributed on the upper clamping plate along the trajectory of the installation space. When the upper clamping plate is placed above the lower clamping plate, the indicator lights emit light towards the lower clamping plate. This application allows workers to easily determine the position of garment units on the lower clamping plate, thereby facilitating the adjustment of the garment units' position on the lower clamping plate and improving the quality of the finished product obtained after sewing the decorative units onto the garment units.
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Description

Technical Field

[0001] This application relates to the technical field of clothing production, and in particular to a clothing production method and production equipment. Background Technology

[0002] Garment production, or garment processing, is a method of clothing production that primarily utilizes modern machine processing, supplemented by manual labor. Garment production equipment is diverse and has different functions, including pattern-making machines, button-making machines, and high-frequency machines.

[0003] The basic working principle of the pattern making machine is to use the X-axis and Y-axis drive mechanism to drive the clamp holding the garment to be processed to move along a preset route. During the movement of the clamp, the sewing machine head of the sewing mechanism sews the corresponding pattern on the garment to be processed.

[0004] Currently, in the garment production process, pattern sewing machines are usually used to sew garments with patterned shapes (decorative units) onto another garment (garment unit). After the two are sewn together, the pattern of the seam lines matches the pattern of the decorative unit, thereby improving the aesthetics of the finished product.

[0005] Existing clamps typically include an upper clamp and a lower clamp. The upper clamp has an installation space adapted to the pattern shape of the decorative unit, while the lower clamp has a clearance space to allow the sewing mechanism to work. After the worker places the garment unit on the lower clamp, ensuring the area to be sewn on the garment unit is above the clearance space, the upper clamp is then placed on top of the lower clamp to clamp and position the garment unit. Next, the decorative unit is placed in the installation space, and the pattern sewing machine can be started to begin the sewing process.

[0006] However, to ensure high quality in the finished product, the stitching position of the decorative unit on the garment unit is usually critical. After placing the garment unit on the lower clamping plate, it's difficult to determine its accuracy. Even after the upper clamping plate secures the garment unit and its position is adjusted based on the shape of the installation space, significant positional errors can still occur, affecting the quality of the finished product. Summary of the Invention

[0007] This application provides a garment production method and equipment, which can facilitate workers in determining the position of garment units on the lower plate, thereby making it easier for workers to adjust the position of garment units on the lower plate and improving the quality of the finished product obtained after the decorative units are sewn onto the garment units.

[0008] On the one hand, this application provides a method for producing clothing, which adopts the following technical solution:

[0009] A garment production method utilizes garment production equipment, which includes a pattern-making machine and several indicator lights. The pattern-making machine includes a worktable, a sewing mechanism, a drive mechanism, and a clamp. The sewing mechanism is fixedly mounted on the worktable, and the drive mechanism drives the clamp to move horizontally on the worktable. The clamp includes an upper clamping plate and a lower clamping plate. The upper clamping plate has an installation space, and the lower clamping plate has a clearance space, the size of which is equal to the installation space. The upper clamping plate is a light-transmitting plate, and the lower clamping plate is a light-blocking plate. Several indicator lights are disposed on the upper clamping plate and distributed around the installation space along a trajectory. When the upper clamping plate is placed above the lower clamping plate, the indicator lights emit light towards the lower clamping plate.

[0010] The specific steps are as follows:

[0011] Using the clearance space as a reference, place the garment unit on the clamp;

[0012] The garment unit is fixed in position on the clamp;

[0013] Based on the position of the light emitted by the several indicator lights illuminating the garment unit, it is determined whether the position of the garment unit is accurate.

[0014] Using the light projected onto the garment unit by the several indicator lights as a reference, adjust the position of the garment unit until the position of the garment unit is accurate;

[0015] Start the pattern machine.

[0016] By adopting the above technical solution, after the staff places the garment unit on the lower clamping plate and clamps and positions it with the upper clamping plate, they can more accurately determine whether the garment unit is in the correct position on the lower clamping plate based on the position of the light emitted by several indicator lights on the garment unit. This makes it easier for the staff to adjust the position of the garment unit later, reduces the operational difficulty in adjusting the position of the garment unit, and improves the quality of the finished product obtained after the decorative unit is sewn onto the garment unit, making the finished product more beautiful.

[0017] On the other hand, this application also provides a garment production device, which adopts the following technical solution:

[0018] A garment production device is used in the above-mentioned garment production method. The clamp further includes a connecting seat, the lower clamping plate is fixedly connected to the connecting seat, and the upper clamping plate is rotatably connected to the connecting seat. When the upper clamping plate rotates to abut against the lower clamping plate, the installation space and the clearance space are connected and aligned.

[0019] By adopting the above technical solution, the staff can control the upper clamping plate to rotate relative to the connecting seat, thereby controlling the upper clamping plate to be placed above the lower clamping plate to clamp and position the garment unit or to remove it from above the lower clamping plate. When the upper clamping plate rotates to clamp and position the garment unit on the lower clamping plate, the upper clamping plate and the lower clamping plate can automatically align, thereby reducing the difficulty of clamping and positioning the garment unit on the fixture and improving the efficiency of the staff's pre-sewing preparation work.

[0020] Optionally, it also includes a positioning device, which includes a plurality of suction components disposed on the connecting seat; the interior of the lower clamping plate is also provided with a plurality of first air holes, one end of the first air hole communicating with the suction component, and the other end of the first air hole passing through the end face of the top of the lower clamping plate and communicating with the top of the lower clamping plate.

[0021] It also includes a control device, and several of the suction components are signal-connected to the control device.

[0022] By adopting the above technical solution, after the garment unit is placed on the lower clamping plate, the control device can control several suction components to work and apply suction to the garment unit through several first air holes, so that the garment unit is tightly attached to the lower clamping plate. This improves the positional stability of the garment unit after it is placed on the lower clamping plate, thereby reducing the probability of the garment unit's position on the lower clamping plate changing during the rotation of the upper clamping plate, the movement of the clamping fixture by the drive mechanism, and the operation of the sewing mechanism. This ensures the quality of the final sewn product and further reduces the operating difficulty of the garment production equipment.

[0023] Optionally, it also includes a first adjustment device, which includes a plurality of blowers mounted on the connecting seat; the top of the lower clamping plate is also provided with an upward-facing storage slot, which communicates with the clearance space and the size of the storage slot is larger than the size of the clearance space; the end of the first air hole away from the suction member communicates with the storage slot, and the interior of the lower clamping plate is also provided with a plurality of second air holes, one end of which communicates with the blower and the other end of which penetrates the groove wall around the storage slot and communicates with the storage slot; all of the blowers are signal connected to the control device.

[0024] By adopting the above technical solution, when the size of the garment unit is small (less than or equal to the cross-sectional size of the storage slot), after the garment unit is placed in the storage slot, the positioning device can fix the position of the garment unit in the storage slot. Before the positioning device is activated, controlling several blowers to draw air can apply suction to the garment unit through several second air holes, making the garment unit flat and reducing the probability of wrinkles on the garment unit, thereby reducing the probability of the finished product quality being reduced due to wrinkles. In addition, when the position of the garment unit in the storage slot is inaccurate, the worker does not need to remove the upper clamp from above the lower clamp. The control device can control several blowers to draw air and adjust the intensity of the drawing and blowing, so that the garment unit can be moved horizontally in the storage slot and can also rotate about the vertical axis. This makes the process of adjusting small garment units more convenient and more accurate, reduces the time wasted in adjusting the position of the garment unit, and thus improves the efficiency of adjusting the garment unit.

[0025] Optionally, the cross-section of the storage slot is circular, and the axis of the storage slot is centered relative to the clearance space; the positions of a plurality of second air holes penetrating the storage slot are distributed in a circular array on the slot wall around the storage slot.

[0026] By adopting the above technical solution, when several blowers draw in or blow air through several second air holes to apply suction or blowing force to the garment unit, the direction distribution of the suction or blowing force on the garment unit can be made more uniform. This improves the precision of the process of adjusting the position of the garment unit in the storage slot by the first adjustment device, thereby improving the adjustment efficiency and effect of the first adjustment device on the garment unit.

[0027] Optionally, it also includes two second adjustment devices, which are respectively located on both sides of the lower clamping plate; the second adjustment device includes a movable seat and a winding member, the movable seat is movably connected to the connecting seat, the winding member is connected to the movable seat and the winding member can rotate, the direction of movement of the movable seat and the axis of rotation of the winding member are both horizontal, and the direction of movement of the movable seat intersects the axis of rotation of the winding member.

[0028] By adopting the above technical solution, when the size of the garment unit is large (larger than the cross-sectional size of the lower clamping plate), after the garment unit is clamped and positioned on the fixture, both ends of the garment unit will be exposed and located on both sides of the fixture. After the two ends of the garment unit are respectively wound around the two winding parts, controlling the two winding parts to rotate in opposite directions can apply opposite forces to the two ends of the garment unit, so that the garment unit is stretched and tightened, thereby further reducing the probability of completing the sewing process when the garment unit has wrinkles, and thus further improving the quality of the finished product after the decorative unit is sewn onto the garment unit. Furthermore, after the two winding parts stretch and tighten the garment unit, controlling the two winding parts to rotate in the same direction can drive the garment unit to move along a straight line. Controlling the movable seat to move relative to the connecting seat can drive the garment unit to move along another straight line. Through the above two methods, the position of the garment unit on the lower clamping plate can be adjusted, that is, the position of the decorative unit sewn onto the garment unit can be adjusted, thus making the process of adjusting larger garment units more convenient and precise, reducing the time wasted in the process of adjusting the position of the garment unit, and thus improving the efficiency of adjusting the garment unit.

[0029] Optionally, the second adjustment device further includes a first driving member and a second driving member. The first driving member is disposed on the connecting seat and drives the movable seat to move. The second driving member is located on one side of the second driving member and drives the second driving member to rotate. Both the first driving member and the second driving member are signal connected to the control device.

[0030] By adopting the above technical solution, the staff can control the first driving component to drive the movable seat to move relative to the connecting seat through the control device, and can also control the second driving component to drive the winding component to rotate through the control device. This can further simplify the operation of adjusting the position of larger garment units and further improve the accuracy of adjusting the position of larger garment units.

[0031] Optionally, the second adjustment device further includes a rotating seat and a third driving member. The rotating seat is rotatably connected to the movable seat, and the winding member is rotatably connected to the rotating seat. The rotation axis of the rotating seat is vertical. The third driving member is disposed on the movable seat and drives the rotating seat to rotate. The third driving member is signal-connected to the control device.

[0032] By adopting the above technical solution, when the two winding components stretch and tighten the garment unit, the operator can control the two third driving components through the control device to drive the two rotating seats to rotate synchronously and in the same direction relative to the connecting seat. This causes the position of the stretched and tightened garment unit relative to the lower clamping plate to rotate, thereby making the second adjustment device more versatile in adjusting the position of larger garment units, meeting more position adjustment needs, and making the process of adjusting the position of larger garment units through the second adjustment device more convenient and faster.

[0033] Optionally, the second adjustment device further includes a limiting component, which includes a limiting member and a fourth driving member; the limiting member is movably connected to the rotating seat and is located below the winding member; the fourth driving member is connected to the rotating seat and drives the limiting member to move.

[0034] The limiting component also includes a sensor disposed on the rotating base. The sensor is signal-connected to both the second driving component and the fourth driving component. The sensor detects whether the garment unit is located between the winding component and the limiting component. When the sensor is not triggered, the second driving component drives the winding component to rotate, causing the garment unit to partially move between the winding component and the limiting component. When the sensor is triggered, the fourth driving component drives the limiting component to move towards the winding component.

[0035] By adopting the above technical solution, after the larger garment unit is clamped and positioned on the fixture, both ends of the garment unit will be located on both sides of the fixture and in contact with the two winding parts respectively. At this time, the sensor is not triggered by the garment unit, and the second driving component will be controlled to drive the winding part to rotate. The rotation of the winding part will drive the garment unit to move towards the sensor and eventually pass through the space between the winding part and the limiting component. After the sensor is triggered by the garment unit, the fourth driving component will be controlled to drive the limiting component to move and press the garment unit against the surface of the winding part. This allows the rotation of the winding part to apply force to the garment unit, which facilitates the subsequent rotation of the two winding parts to stretch and tighten the garment unit. This makes the preparation process before adjusting the position of the garment unit through the second adjustment device simpler and more convenient, and improves the efficiency of determining the position of the garment unit on the lower clamp.

[0036] Optionally, the direction of the light emitted by the indicator light is tilted, and when the upper clamping plate abuts against the lower clamping plate, the light emitted by the indicator light is tilted towards the direction of the clearance space.

[0037] By adopting the above technical solution, when the garment unit is clamped and positioned on the fixture, the staff uses the light emitted by several indicator lights as a reference to judge whether the position of the garment unit on the lower clamping plate is accurate. The distance between the indicator lights and the installation space provides sufficient observation space for the staff to observe through the upper clamping plate, which facilitates the staff's observation and improves the accuracy of the staff's judgment after observation, while reducing the probability of the indicator lights obstructing the observation line of sight.

[0038] In summary, this application includes at least one of the following beneficial effects:

[0039] 1. When the garment unit is clamped and positioned on the fixture to initially determine its position, the staff can use the position of the light emitted by several indicator lights on the garment unit as a reference to judge whether the position of the garment unit on the lower clamp is accurate. The judgment made by the staff in this way has a high degree of accuracy, which makes it convenient for the staff to make correct position adjustments to the garment unit in the future, thereby ensuring the quality of the final sewn product.

[0040] 2. The garment unit can be placed on the lower plate in a stretched and taut state, and the impact of external factors such as the movement of the upper plate relative to the lower plate and the operation of the sewing mechanism on the garment unit can be reduced, thereby reducing the probability of wrinkles in the garment unit and further ensuring the quality of the final sewn product.

[0041] 3. When the staff adjusts the position of the garment unit on the lower clamping plate, there is no need to control the movement of the upper clamping plate. They can directly use the position of the light emitted by several indicator lights on the garment unit as a reference and adjust the position of the garment unit on the lower clamping plate accurately through the adjustment device.

[0042] 4. It can adjust the position of clothing units, both small and large, on the lower clamp plate using the first and second adjustment devices respectively. It is easy to operate, effective, and efficient, which can greatly shorten the time required to adjust the position of clothing units and improve the precision and accuracy of the adjustment. Attached Figure Description

[0043] Figure 1 This is a structural schematic diagram of a garment production equipment in its working state according to Embodiment 1 of this application;

[0044] Figure 2 yes Figure 1 A cross-sectional view of the middle clamp along the AA direction;

[0045] Figure 3 yes Figure 1 A cross-sectional view of the middle clamp along the BB direction;

[0046] Figure 4This is a schematic diagram of the structure of a garment production equipment in a ready state according to Embodiment 1 of this application;

[0047] Figure 5 This is a schematic diagram of the structure of a garment production equipment in its working state according to Embodiment 2 of this application;

[0048] Figure 6 yes Figure 5 A cross-sectional view of the central clamp along the CC direction;

[0049] Figure 7 yes Figure 6 Enlarged view at point D;

[0050] Figure 8 yes Figure 7 A schematic diagram of the clothing unit before the sensor is triggered.

[0051] Explanation of reference numerals in the attached drawings: 1. Garment unit; 2. Decoration unit; 3. Pattern making machine; 31. Workbench; 32. Sewing mechanism; 33. Drive mechanism; 34. Fixture; 341. Connecting seat; 3411. Platform; 342. Upper clamping plate; 3421. Installation space; 343. Lower clamping plate; 3431. Clearance space; 3432. First air vent; 3433. Second air vent; 3434. Storage slot; 4. Indicator light; 5. Positioning device 51. Suction component; 52. Suction pipe; 6. First adjustment device; 61. Blower; 62. Air duct; 7. Second adjustment device; 71. Movable seat; 72. Rotating seat; 73. Winding component; 74. First driving component; 75. Second driving component; 76. Third driving component; 77. Limiting component; 771. Fourth driving component; 772. Limiting component; 773. Sensing component; 8. Control device; 81. Display screen; 82. Control button. Detailed Implementation

[0052] The following is in conjunction with the appendix Figure 1-8 This application will be described in further detail.

[0053] Example 1:

[0054] Reference Figure 1 and Figure 2This application discloses a garment production device for sewing decorative unit 2 and a smaller garment unit 1 according to a predetermined pattern (the size of the garment unit 1 is not smaller than the size of the decorative unit 2). The device includes a pattern sewing machine 3, several indicator lights 4, a positioning device 5, a first adjustment device 6, and a control device 8. The pattern sewing machine 3 is used to sew the decorative unit 2 and the garment unit 1 according to a specific pattern; the several indicator lights 4 are used to provide a reference to assist the worker in determining the placement position of the garment unit 1 on the pattern sewing machine 3; the positioning device 5 is used to fix the position of the garment unit 1 during the sewing process on the pattern sewing machine 3; the first adjustment device 6 is used to assist the worker in adjusting the position of the garment unit 1 on the pattern sewing machine 3; and the control device 8 is used for the worker to control the pattern sewing machine 3, the indicator lights 4, the positioning device 5, and the first adjustment device 6.

[0055] Reference Figure 1 The pattern sewing machine 3 includes a worktable 31, a sewing mechanism 32, a drive mechanism 33, and a clamp 34. The worktable 31 is table-shaped and has an overall rectangular structure, with a smooth horizontal surface at the top. The sewing mechanism 32 is fixedly installed on the top of the worktable 31, with the sewing head located above the worktable 31. The sewing head moves up and down to sew the garment left and right. The drive mechanism 33 is also installed on the top of the worktable 31 and is located on the side of the sewing mechanism 32 near one of the length sides of the worktable 31. It is used to drive the clamp 34 to move along the X and Y axes on the top surface of the worktable 31. The clamp 34 is used to fix the garment unit 1 and decorative unit 2 to be sewn in a fixed position, so that the decorative unit 2 is stacked on top of the garment unit 1 and overlaps with the position to be sewn on the garment unit 1. After the pattern sewing machine 3 is started, while the sewing mechanism 32 performs the sewing operation, the drive mechanism 33 drives the clamp 34 to move along a predetermined pattern trajectory. This ensures that while the sewing mechanism 32 is sewing the decorative unit 2 and the garment unit 1, the stitch line trajectory on the finished product is also the same pattern, resulting in a beautiful sewn product. Since the pattern sewing machine 3 is common prior art in this field, and the worktable 31, sewing mechanism 32, and drive mechanism 33 in this embodiment are no different from the prior art, the structure and working principle of the above three are not described in detail here, and only a brief representation is given in the accompanying drawings.

[0056] Back Figure 1 and Figure 2The fixture 34 includes a connecting seat 341, an upper clamping plate 342, and a lower clamping plate 343. Preferably, the connecting seat 341 is a cuboid structure, and the upper clamping plate 342 and the lower clamping plate 343 are both rectangular plate structures. The length direction of the connecting seat 341 is parallel to the length direction of the worktable 31, and the bottom end face of the connecting seat 341 is in contact with the top end face of the worktable 31. The connecting seat 341 is located on the side of the drive mechanism 33 away from the sewing mechanism 32, and the connecting seat 341 is fixedly connected to the drive mechanism 33. That is, the drive mechanism 33 drives the fixture 34 to move as a whole by driving the connecting seat 341 to move.

[0057] The lower clamping plate 343 is located horizontally on the side of the connecting seat 341 away from the drive mechanism 33, and one long side of the lower clamping plate 343 is fixedly connected to the bottom of the connecting seat 341; a clearance space 3431 is provided on the lower clamping plate 343 to make way for the sewing work of the sewing mechanism 32, and preferably the shape of the cross-section of the clearance space 3431 is similar to the shape of the predetermined pattern.

[0058] Reference Figure 2 and Figure 3 The upper clamping plate 342 has the same cross-sectional dimensions as the lower clamping plate 343. One long side of the upper clamping plate 342 is rotatably connected to the top of the connecting seat 341, and the rotation axis of the upper clamping plate 342 is parallel to the length direction of the connecting seat 341. An installation space 3421 for placing the decorative unit 2 is provided on the upper clamping plate 342. Preferably, the shape of the decorative unit 2 is similar to the shape of the predetermined pattern, and the size of the decorative unit 2 is the same as the cross-sectional dimensions of the clearance space 3431, that is, the shape of the cross-section of the installation space 3421 is also similar to the shape of the predetermined pattern.

[0059] Reference Figure 1 and Figure 4 The upper clamping plate 342 is restricted in its rotation relative to the connecting seat 341. When the upper clamping plate 342 rotates to its limit position away from the lower clamping plate 343, the upper clamping plate 342 is in a vertical state, that is, the plane of the upper clamping plate 342 is perpendicular to the plane of the lower clamping plate 343. When the driving mechanism 33 drives the connecting seat 341 to move to its limit position away from the sewing mechanism 32, the clamp 34 is in the position where the garment unit 1 and the decoration unit 2 are placed. The upper clamping plate 342 can rotate to a vertical state only when the positional relationship of the clamp 34 relative to the worktable 31 is as described above. When the upper clamping plate 342 rotates to its limit position towards the lower clamping plate 343, the bottom end face of the upper clamping plate 342 and the top end face of the lower clamping plate 343 are in contact and abut against each other. At this time, the upper clamping plate 342 and the lower clamping plate 343 are aligned in the vertical direction, and the installation space 3421 and the clearance space 3431 are also aligned in the vertical direction.

[0060] Back Figure 1 and Figure 2The upper clamping plate 342 is a transparent light-transmitting plate, and the lower clamping plate 343 is a dark light-blocking plate. Several indicator lights 4 are fixedly installed on the side of the upper clamping plate 342 facing away from the lower clamping plate 343. These indicator lights 4 are distributed around the mounting space 3421 on the end face of the upper clamping plate 342, and the trajectory formed by connecting the positions of the indicator lights 4 is similar to the shape of the mounting space 3421. When activated, the indicator lights 4 emit light towards the side of the light-transmitting plate facing away from themselves, and the light can pass through the upper clamping plate 342. When the upper clamping plate 342 and the lower clamping plate 343 are in contact, several indicator lights 4 can project several light spots onto the top end face of the lower clamping plate 343. When the garment unit 1 is clamped and positioned between the upper clamping plate 342 and the lower clamping plate 343, several indicator lights 4 will project several light spots onto the garment unit 1. At this time, the area enclosed by several light spots is the position where the decorative unit 2 will be sewn onto the garment unit 1. The staff can use several light spots as a reference to judge whether the position of the garment unit 1 on the lower clamping plate 343 is accurate and how to adjust the position of the garment unit 1.

[0061] Furthermore, several indicator lights 4 capable of projecting light spots can be replaced with several indicator lights 4 capable of projecting strip light spots, thereby making the area formed by the projection of several indicator lights 4 on the clothing unit 1 more obvious and easier for staff to observe and judge.

[0062] Furthermore, the preferred mounting position of the indicator light 4 on the upper clamping plate 342 is a certain distance from the mounting space 3421, and the direction of the light emitted by the indicator light 4 is inclined relative to the plane of the upper clamping plate 342. When the garment unit 1 is clamped and positioned between the upper clamping plate 342 and the lower clamping plate 343, the end of the light emitted by the indicator light 4 near the clearance space 3431 is inclined downwards, and the light emitted by several indicator lights 4 converges in a vertically downward direction. At this time, several indicator lights 4 can still project light spots onto the garment unit 1 and form an area that matches the decorative unit 2. At the same time, the part of several indicator lights 4 on the upper clamping plate 342 between the mounting space 3421 will provide sufficient observation space for the staff, making it convenient for the staff to observe the projection of several indicator lights 4 onto the decorative unit 2 through the upper clamping plate 342.

[0063] Reference Figure 2The positioning device 5 includes several suction components 51 and several suction pipes 52, with each suction pipe 52 corresponding to one of the suction components 51. The lower clamping plate 343 has several first air holes 3432 inside, the number of which is equal to the number of suction pipes 52. The suction components 51 are fixedly installed on the connecting seat 341, and the suction pipes 52 are fixedly installed inside the connecting seat 341. One end of each first air hole 3432 extends vertically through the top end face of the lower clamping plate 343 to form an opening, and the other end of each first air hole 3432 extends through the lower clamping plate 343 near the connecting seat 341. One end of each suction pipe 52 is fixedly connected to the lower clamping plate 343 and communicates with the end of each first air hole 3432 near the connecting seat 341, while the other end of each suction pipe 52 is connected to the suction component 51. Preferably, the suction component 51 is an air extractor. After the suction component 51 is activated, it can drive the gas above the lower clamping plate 343 into the first air hole 3432. When the garment unit 1 is placed on the lower clamping plate 343, the simultaneous activation of several suction components 51 can apply suction to the garment unit 1, causing the garment unit 1 to adhere to the top end face of the lower clamping plate 343 and maintain its fixed position. Since the air extractor is a common existing technology, the suction component 51 will not be described in detail here, and it is only briefly shown in the attached drawings.

[0064] Reference Figure 2 and Figure 4 Furthermore, preferably, a plurality of first air holes 3432 are formed by openings through the top end face of the lower clamping plate 343 and are distributed evenly around the clearance space 3431 on the top end face of the lower clamping plate 343, so that the clothing unit 1 placed on the lower clamping plate 343 can be evenly subjected to the suction force of a plurality of suction components 51.

[0065] In this embodiment, the size of the clothing unit 1 is preferably smaller than the cross-sectional size of the lower clamping plate 343, that is, the clothing unit 1 can be completely placed on the lower clamping plate 343.

[0066] Reference Figure 4 Furthermore, preferably, the top of the lower clamping plate 343 is provided with a storage slot 3434 for placing the clothing unit 1. The storage slot 3434 is located above the clearance space 3431. The cross-section of the storage slot 3434 is smaller than the cross-sectional dimension of the lower clamping plate 343, and the cross-sectional dimension of the storage slot 3434 is not smaller than the cross-sectional dimension of the clothing unit 1. The storage slot 3434 forms an opening on the top end face of the lower clamping plate 343, and the vertical dimension of the storage slot 3434 is not less than the thickness of the clothing unit 1. After the clothing unit 1 is placed in the storage slot 3434, the upper clamping plate 342 can rotate to fit against the lower clamping plate 343. The ends of the plurality of first air holes 3432 away from the air suction pipe 52 all penetrate the bottom wall of the storage slot 3434 and communicate with the storage slot 3434.

[0067] Reference Figure 1 and Figure 3 Both ends of the connecting seat 341 extend outward in a direction perpendicular to its own length, with platforms 3411 located on both sides of the lower clamping plate 343 along its length. The first adjusting device 6 includes several blowers 61 and several air ducts 62, with each blower 61 corresponding to one air duct 62. The blowers 61 are fixedly installed on the two platforms 3411, and the air ducts 62 are fixedly installed inside the two platforms 3411. The number of blowers 61 and air ducts 62 installed on the two platforms 3411 is equal. The lower clamping plate 343 also has several second air holes 3433 inside, the number of which is the same as the number of air ducts. One end of the second air hole 3433 penetrates the wall of the storage slot 3434, and the other end of the second air hole 3433 penetrates the end of the lower clamping plate 343 near the corresponding platform 3411; one end of the air duct 62 is fixedly connected to the lower clamping plate 343 and communicates with the end of the second air hole 3433 away from the storage slot 3434; the other end of the air duct 62 is fixedly connected to and communicates with the corresponding blower 61.

[0068] The blower 61 has the functions of suction and blowing. Therefore, after the blower 61 is started, it can drive the gas in the storage slot 3434 into the second air hole 3433 or drive the gas through the second air hole 3433 into the storage slot 3434. When the blower 61 is in the suction function, it can drive the clothing unit 1 located in the storage slot 3434 to move towards the corresponding second air hole 3433. When the blower 61 is in the blowing function, it can drive the clothing unit 1 located in the storage slot 3434 to move away from the corresponding second air hole 3433.

[0069] When several blowers 61 simultaneously perform the suction function, the garment unit 1 can be stretched and tightened in the storage slot 3434 by suction forces from all directions, which facilitates subsequent sewing operations; when several blowers 61 perform the suction or blowing function respectively, the garment unit 1 can move freely in the storage slot 3434 in the horizontal direction, thereby enabling the second adjustment device 7 to adjust the position of the garment unit 1 on the lower clamping plate 343.

[0070] Furthermore, the suction and blowing intensity of the blower 61 are both adjustable, making the process of the second adjustment device 7 adjusting the position of the garment unit 1 more precise.

[0071] Back Figure 4Furthermore, the cross-section of the preferred storage slot 3434 is circular, with its axis coinciding with the center line of the clearance space 3431. A plurality of second air holes 3433, penetrating the walls of the storage slot 3434, form openings distributed in a circular array along the axis of the storage slot 3434. This ensures that the suction or blowing force generated by the blowers 61 acts more evenly on the clothing unit 1 located in the storage slot 3434, further improving the precision of the second adjustment device 7 in adjusting the position of the clothing unit 1.

[0072] Back Figure 1 The control device 8 is fixedly installed on the edge of the top of the workbench 31, and includes a display screen 81 and multiple control buttons 82. The control device 8 is connected to the sewing mechanism 32, the drive mechanism 33, several indicator lights 4, several suction components 51, and several blowers 61. The display screen 81 is used to display relevant parameters of the sewing mechanism 32, the drive mechanism 33, the indicator lights 4, the suction components 51, and the blowers 61. The control buttons 82 are used to control the opening and closing of the sewing mechanism 32, the drive mechanism 33, the indicator lights 4, the suction components 51, and the blowers 61.

[0073] Furthermore, staff can individually control any suction component 51 and any blower 61 via the control device 8, controlling their opening and closing and operating intensity. By controlling one or more suction components 51 to operate and simultaneously controlling one or more blowers 61 to blow or suck air, the garment unit 1 can rotate within the storage slot 3434 around the position where it is most strongly subjected to the suction force of the suction component 51, thereby meeting the garment unit 1's need for more positional adjustments within the storage slot 3434.

[0074] The implementation principle of a garment production equipment according to an embodiment of this application is as follows:

[0075] Using the clearance space 3431 as a reference, after placing the smaller garment unit 1 in the storage slot 3434, the control device 8 controls several suction components 51 to work, so that the position of the garment unit 1 in the storage slot 3434 is fixed; then the upper clamp 342 is rotated to fit against the lower clamp 343, and then several indicator lights 4 are activated. Using the light spots projected on the garment unit 1 by the several indicator lights 4 as a reference, it is determined whether the position of the garment unit 1 in the storage slot 3434 is accurate.

[0076] If accurate, the decorative unit 2 is placed into the installation space 3421, and then the pattern machine 3 is started. While the drive mechanism 33 moves the clamp 34, the sewing mechanism 32 sews the decorative unit 2 and the garment unit 1 together according to the predetermined pattern.

[0077] If the position is not accurate, the control device 8 controls several suction components 51 and several blowers 61 according to the observation results, so that the garment unit 1 moves and rotates in the storage slot 3434 until the position is accurate. Then, the control device 8 controls several suction components 51 to fix the position of the garment unit 1 in the storage slot 3434 after the position is adjusted. Finally, the pattern machine 3 is started.

[0078] Example 2:

[0079] Reference Figure 1 and Figure 5 The difference between this embodiment and embodiment 1 is that this embodiment is used to sew the decorative unit 2 and the larger clothing unit 1 according to a predetermined pattern (the size of the clothing unit 1 is larger than the size of the lower clamping plate 343). In addition, the lower clamping plate 343 in this embodiment is missing the storage slot 3434 compared with the lower clamping plate 343 in embodiment 1, and the first adjustment device 6 in embodiment 1 is replaced by two second adjustment devices 7.

[0080] Reference Figure 5 and Figure 6 Two second adjustment devices 7 are respectively installed on two platforms 3411. The adjustment device includes a movable seat 71, a rotating seat 72, and a winding component 73. The movable seat 71 is installed above the platform 3411 and is slidably connected to the platform 3411, and the sliding direction of the movable seat 71 is parallel to the length direction of the platform 3411; the rotating seat 72 is installed above the movable seat 71 and is rotatably connected to the movable seat 71, and the rotation axis of the rotating seat 72 is vertical; the winding component 73 is installed above the rotating seat 72 and is rotatably connected to the rotating seat 72, and the rotation axis of the winding component 73 is perpendicular to the rotation axis of the rotating seat 72.

[0081] Reference Figure 5 and Figure 7 Preferably, both the movable seat 71 and the rotating seat 72 are rectangular parallelepiped structures, and the winding member 73 is a cylindrical structure. The sliding direction of the movable seat 71 is parallel to its own length direction, and the rotation axis of the winding member 73 coincides with its own axis and is parallel to the length direction of the rotating seat 72.

[0082] The second adjustment device 7 further includes a first driving member 74, a second driving member 75, and a third driving member 76. The first driving member 74 is fixedly installed on the platform 3411 and located on the side of the movable seat 71 along its own length direction close to the connecting seat 341. Preferably, the first driving member 74 is a cylinder, and the end of the piston rod of the first driving member 74 is fixedly connected to the movable seat 71. The first driving member 74 drives the movable seat 71 to slide. The second driving member 75 is fixedly installed inside the movable seat 71. Preferably, the second driving member 75 is a servo motor. The output end of the second driving member 75 is fixedly connected to the rotating seat 72. The second driving member 75 drives the rotating seat 72 to rotate relative to the movable seat 71. The third driving member 76 is fixedly installed on the rotating seat 72 and located on one side of the winding member 73 along its own axis direction. Preferably, the third driving member 76 is also a servo motor. The output end of the third driving member 76 is fixedly connected to the winding member 73. The third driving member 76 drives the winding member 73 to rotate relative to the movable seat 71.

[0083] Furthermore, it is preferable that the second driving member 75 has limitations during the rotation of the rotating seat 72 relative to the movable seat 71. Taking the initial state where the length direction of the rotating seat 72 is parallel to the length direction of the platform 3411, it is preferable that when the second driving member 75 drives the rotating seat 72 to rotate relative to the movable seat 71 in different directions to the limit position, the angle between the length direction of the rotating seat 72 and the length direction of the platform 3411 is 5°.

[0084] The control device 8 is signal-connected to two first drive units 74, two second drive units 75 and two third drive units 76. The display screen 81 is used to display the relevant parameters of the first drive units 74, second drive units 75 and third drive units 76. Several control buttons 82 are used to control the opening and closing of the first drive units 74, second drive units 75 and third drive units 76 and the output amount.

[0085] After the garment unit 1 is clamped and positioned on the clamp 34, both ends of the garment unit 1 near the two platforms 3411 will be exposed on both sides of the lower clamping plate 343. The two ends of the garment unit 1 near the two platforms 3411 are respectively wound around the corresponding winding member 73. Then, when several suction members 51 are activated to fix the relative position of the garment unit 1 on the lower clamping plate 343, the two third driving members 76 are controlled to drive the two winding members 73 to rotate synchronously in opposite directions. The rotation of the two winding members 73 respectively applies a force to the two ends of the garment unit 1 in the direction away from each other, thereby stretching and tightening the garment unit 1. Then, the two third driving members 76 are controlled to drive the two winding members 73 to rotate synchronously in the same direction, so that the garment unit 1 can be displaced relative to the lower clamping plate 343 in a direction that is horizontal and perpendicular to the rotation axis of the winding member 73. By controlling the two first driving members 74 to drive the two movable seats 71 to slide synchronously in the same direction, the clothing unit 1 can be displaced relative to the lower clamping plate 343 in a direction parallel to the sliding direction of the movable seat 71. In other words, the position of the clothing unit 1 relative to the lower clamping plate 343 can be freely adjusted in the horizontal direction by the second adjustment device 7.

[0086] Meanwhile, staff can also control the two second drive components 75 through the control device 8 to drive the two rotating seats 72 to rotate synchronously in the same direction and within the same angle range relative to the corresponding movable seats 71, so that the garment unit 1 rotates in the horizontal plane relative to the lower clamping plate 343, thereby meeting more position adjustment needs.

[0087] Furthermore, since the end of the garment unit 1 is wrapped around the corresponding winding member 73, in addition to the rotation of the winding member 73 relative to the rotating seat 72, the rotation of the rotating seat 72 relative to the movable seat 71 will also exert a force on the garment unit 1. Moreover, after the garment unit 1 is wrapped around the winding member 73, the force exerted on the garment unit 1 by the rotation of the winding member 73 is also relatively large. Therefore, during the process of adjusting the position of the garment unit 1 relative to the second adjustment device 7 while the end of the garment unit 1 is wrapped around the corresponding winding member 73, the garment unit 1 is easily damaged due to the large force it is subjected to.

[0088] Reference Figure 7 and Figure 8To this end, the second adjustment device 7 further includes a limiting component 77 for keeping the end of the garment unit 1 in contact with the peripheral side of the winding member 73. The limiting component 77 includes a fourth driving member 771, a limiting member 772, and a sensing member 773. The limiting member 772 is located below the corresponding winding member 73, and is slidably connected to the rotating seat 72, with the sliding direction of the limiting member 772 being vertical. The fourth driving member 771 is fixedly installed inside the rotating seat 72 and located below the limiting member 772. Preferably, the fourth driving member 771 is a cylinder, and the end of the piston rod of the fourth driving member 771 is fixedly connected to the limiting member 772. The fourth driving member 771 drives the limiting member 772 to slide. The sensing member 773 is fixedly installed on the rotating seat 72 and is used to sense the space below the winding member 73 to sense whether the end of the garment unit 1 has entered the space.

[0089] The fourth driving member 771 has limitations in the process of driving the limiting member 772 to slide. When the fourth driving member 771 drives the limiting member 772 to slide away from the winding member 73 to the limit position, the distance between the limiting member 772 and the winding member 73 is the largest and much greater than the thickness of the garment unit 1. When the fourth driving member 771 drives the limiting member 772 to slide closer to the winding member 73 to the limit position, the distance between the limiting member 772 and the winding member 73 is the smallest and not greater than the thickness of the garment unit 1.

[0090] The sensor 773 is located below the winding member 73, and during the sliding of the limiting member 772 by the fourth driving member 771, the sensor 773 remains between the winding member 73 and the limiting member 772. Preferably, the sensor 773 is an infrared sensor. When the end of the garment unit 1 passes through the space between the winding member 73 and the limiting member 772 from the side of the winding member 73 near the lower clamping plate 343, the sensor 773 will be triggered. Otherwise, the sensor 773 is in an untriggered state. Since infrared sensors are common existing technology, they will not be described in detail here.

[0091] Furthermore, preferably, the minimum distance between the lowest point of the bottom of the winding member 73 and the top end face of the lower clamping plate 343 is not greater than the thickness of the garment unit 1.

[0092] The sensor 773 is simultaneously connected to the corresponding third drive 76 and fourth drive 771. When the second control device 8 is activated and the sensor 773 is in an untriggered state, the limiter 772 remains in the lowest limit position. The sensor 773 will control the third drive 76 to drive the winding member 73 to rotate. At this time, the part of the garment unit 1 that is exposed and close to the winding member 73 contacts the circumferential side of the winding member 73. The rotation of the winding member 73 will drive the part of the garment unit 1 that is exposed and close to the winding member 73 to move, and finally the end of the garment unit 1 that is close to the winding member 73 passes through the space between the winding member 73 and the limiter 772.

[0093] When the end of garment unit 1 passes through the space between the winding member 73 and the limiting member 772, triggering the sensor 773, the sensor 773 outputs a signal to control the third drive member 76 to stop. Simultaneously, it controls the fourth drive member 771 to drive the limiting member 772 upwards to its limit position and hold it there, so that the garment unit 1, located between the winding member 73 and the limiting member 772, is pressed against the peripheral side of the winding member 73. Afterwards, when the worker needs to stretch or adjust the position of the garment unit 1, they only need to control the third drive member 76 via the control device 8 to rotate the winding member 73. The rotation of the winding member 73 will move the end of the garment unit 1.

[0094] The implementation principle of a garment production equipment according to an embodiment of this application is as follows:

[0095] Using the clearance space 3431 as a reference, after placing the larger garment unit 1 in the storage slot 3434, the control device 8 controls several suction components 51 to work, so that the position of the garment unit 1 on the lower clamping plate 343 is fixed; then the upper clamping plate 342 is rotated to clamp and position the garment unit 1 on the lower clamping plate 343; then several indicator lights 4 are activated, and the light spots projected by the several indicator lights 4 on the garment unit 1 are used as a reference to determine whether the position of the garment unit 1 in the storage slot 3434 is accurate.

[0096] If accurate, the decorative unit 2 is placed into the installation space 3421, and then the pattern machine 3 is started. While the drive mechanism 33 moves the clamp 34, the sewing mechanism 32 sews the decorative unit 2 and the garment unit 1 together according to the predetermined pattern.

[0097] If the position is inaccurate, the control device 8 controls the two first drive members 74, the two second drive members 75 and the two third drive members 76 to move and rotate the garment unit 1 relative to the lower clamping plate 343 until the position is accurate. Then, the suction members 51 are controlled to work to fix the position of the garment unit 1 on the lower clamping plate 343 after the position adjustment. Finally, the pattern machine 3 is started.

[0098] This application also discloses a garment production method, based on the aforementioned garment production equipment, with the following specific steps:

[0099] S1. Using the clearance space 3431 as a reference, place the clothing unit 1 on the clamp 34;

[0100] For the smaller garment unit 1: Control the upper clamping plate 342 to rotate to a vertical position, and use the clearance space 3431 on the lower clamping plate 343 as a reference to place the garment unit 1 in the storage slot 3434;

[0101] For the larger garment unit 1: control the upper clamping plate 342 to rotate to a vertical position, and with the clearance space 3431 on the lower clamping plate 343 as a reference, place the garment unit 1 on the lower clamping plate 343, and make the two ends of the garment unit 1 contact the peripheral side surfaces of the two winding parts 73 respectively.

[0102] S2. Fix the garment unit 1 in position on the clamp 34;

[0103] For the smaller garment unit 1: control the upper clamping plate 342 to rotate until it fits against the lower clamping plate 343, and then control the positioning device 5 to start through the control device 8. Several suction components 51 operate and fix the garment unit 1 in the storage slot 3434 through suction.

[0104] For a larger garment unit 1: control the upper clamping plate 342 to rotate and clamp the garment unit 1 between the upper clamping plate 342 and the lower clamping plate 343. Then, control the positioning device 5 to start through the control device 8. Several suction components 51 operate and fix the garment unit 1 on the lower clamping plate 343 through suction.

[0105] S3. Determine whether the position of the clothing unit 1 is accurate based on the position of the light emitted by the several indicator lights 4 onto the clothing unit 1.

[0106] The control device 8 controls the activation of several indicator lights 4, and compares the area enclosed by the light projected by the several indicator lights 4 onto the garment unit 1 with the area on the garment unit 1 to be sewn with the decorative unit 2 to determine whether the placement of the garment unit 1 is accurate.

[0107] S4. Using the light projected onto the clothing unit 1 by several indicator lights 4 as a reference, adjust the position of the clothing unit 1 until the position of the clothing unit 1 is accurate.

[0108] For the smaller garment unit 1: taking the area enclosed by the light projected onto the garment unit 1 by several indicator lights 4 as a reference, the positioning device 5 and the first adjustment device 6 are controlled by the control device 8 to move and rotate the garment unit 1 in the storage slot 3434 until the area on the garment unit 1 to be sewn with the decorative unit 2 matches the area enclosed by the light projected onto the garment unit 1 by several indicator lights 4. Then the positioning device 5 is controlled to fix the garment unit 1 in the storage slot 3434.

[0109] For a larger garment unit 1: taking the area enclosed by the light projected onto the garment unit 1 by several indicator lights 4 as a reference, the limiting component 77 makes the ends of the garment unit 1 pass under the corresponding winding component 73 respectively, and after the ends of the garment unit 1 come into contact with and press against the peripheral side of the winding component 73, the positioning device 5 and the second adjustment device 7 are controlled by the control device 8 to make the garment unit 1 move and rotate relative to the lower clamping plate 343 until the area on the garment unit 1 to be sewn with the decorative unit 2 matches the area enclosed by the light projected onto the garment unit 1 by several indicator lights 4. Then the positioning device 5 is controlled to fix the garment unit 1 in position on the lower clamping plate 343.

[0110] S5. Start the pattern machine 3.

[0111] After the decorative unit 2 is placed in the installation space 3421, the pattern machine 3 is started by controlling the control device 8. While the drive mechanism 33 moves the clamp 34, the sewing mechanism 32 sews the decorative unit 2 and the garment unit 1 together according to the predetermined pattern.

[0112] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An apparel production apparatus, characterized by, The utility model provides a kind of embroidery machine, including pattern machine (3) and several indicator lights (4), the pattern machine (3) includes workbench (31), sewing mechanism (32), driving mechanism (33) and clamp (34), the sewing mechanism (32) is fixedly arranged on the workbench (31), the driving mechanism (33) drives the clamp (34) on the workbench (31) moves along horizontal direction;The clamp (34) includes upper clamp plate (342) and lower clamp plate (343), the upper clamp plate (342) is opened with installation space (3421), the lower clamp plate (343) is opened with let space (3431), and the size of let space (3431) is equal to installation space (3421);The upper clamp plate (342) is light-transmitting plate, and the lower clamp plate (343) is light-blocking plate;Several indicator lights (4) are arranged on the upper clamp plate (342), and several indicator lights (4) are distributed around installation space (3421) along the track of installation space (3421);When the upper clamp plate (342) is placed on the upper side of the lower clamp plate (343), several indicator lights (4) emit light to the lower clamp plate (343); The clamp (34) further includes connecting seat (341), the lower clamp plate (343) is fixedly connected with the connecting seat (341), and the upper clamp plate (342) is rotatably connected with the connecting seat (341), when the upper clamp plate (342) is rotated to abut against the lower clamp plate (343), the installation space (3421) is communicated with the let space (3431) and is aligned; Further including positioning device (5), the positioning device (5) includes several air suction members (51), and the air suction members (51) are arranged on the connecting seat (341);The inside of the lower clamp plate (343) is further opened with first air hole (3432), one end of the first air hole (3432) is communicated with the air suction member (51), and the other end of the first air hole (3432) is communicated with the upper side of the lower clamp plate (343) through the end face of the top of the lower clamp plate (343); Further including control device (8), and several air suction members (51) are signal connected with the control device (8). Further comprising a first adjusting device (6), the first adjusting device (6) comprises several air blowers (61) arranged on the connecting seat (341); the top of the lower clamping plate (343) is further provided with an open upward storage groove (3434), the storage groove (3434) is communicated with the accommodation space (3431), and the size of the storage groove (3434) is larger than that of the accommodation space (3431); one end of the first air hole (3432) away from the air suction part (51) is communicated with the storage groove (3434), and the inside of the lower clamping plate (343) is further provided with several second air holes (3433), one end of the second air hole (3433) is communicated with the air blower (61), and the other end of the second air hole (3433) penetrates the groove wall of the storage groove (3434) and is communicated with the storage groove (3434); several air blowers (61) are signal connected with the control device (8); The operation steps of the clothing production equipment are as follows: With the accommodation space (3431) as the reference, the clothing unit (1) is placed on the clamp (34); The clothing unit (1) is fixed on the clamp (34); According to the position where the light emitted by the indicator light (4) is irradiated on the clothing unit (1), it is judged whether the position of the clothing unit (1) is accurate; With the light emitted by the indicator light (4) as the reference, the position of the clothing unit (1) is adjusted until the position of the clothing unit (1) is accurate; The pattern machine (3) is started.

2. The garment production apparatus of claim 1, wherein The cross section of the storage groove (3434) is circular, and the axis of the storage groove (3434) is centered relative to the accommodation space (3431); the positions where the second air holes (3433) penetrate the storage groove (3434) are circularly arranged on the groove wall of the storage groove (3434).

3. The garment production apparatus of claim 1, wherein Further comprising two second adjusting devices (7), the two second adjusting devices (7) are respectively located on the two sides of the lower clamping plate (343); the second adjusting device (7) comprises a movable seat (71) and a winding part (73), the movable seat (71) is movably connected with the connecting seat (341), the winding part (73) is connected with the movable seat (71) and can rotate, the movement direction of the movable seat (71) and the rotation axis of the winding part (73) are both horizontal, and the movement direction of the movable seat (71) intersects with the rotation axis of the winding part (73).

4. The garment production apparatus of claim 3, wherein The second adjusting device (7) further comprises a first driving member (74) and a second driving member (75), the first driving member (74) is arranged on the connecting seat (341), and the first driving member (74) drives the movable seat (71) to move; the second driving member (75) is located on one side of the second driving member (75), and the second driving member (75) drives the second driving member (75) to rotate; the first driving member (74) and the second driving member (75) are signal-connected with the control device (8).

5. The garment production apparatus of claim 4, wherein The second adjusting device (7) further comprises a rotating seat (72) and a third driving member (76), the rotating seat (72) is rotationally connected with the movable seat (71), the winding member (73) is rotationally connected with the rotating seat (72), and the rotating shaft of the rotating seat (72) is vertical; the third driving member (76) is arranged on the movable seat (71), and the third driving member (76) drives the rotating seat (72) to rotate; the third driving member (76) is signal-connected with the control device (8).

6. The garment production apparatus of claim 5, wherein The second adjusting device (7) further comprises a limiting assembly (77), the limiting assembly (77) comprises a limiting member (772) and a fourth driving member (771); the limiting member (772) is movably connected with the rotating seat (72), and the limiting member (772) is located below the winding member (73); the fourth driving member (771) is connected with the rotating seat (72), and the fourth driving member (771) drives the limiting member (772) to move; The limiting assembly (77) further comprises a sensing member (773), the sensing member (773) is arranged on the rotating seat (72), and the sensing member (773) is signal-connected with the second driving member (75) and the fourth driving member (771); the sensing member (773) senses whether the clothing unit (1) is located between the winding member (73) and the limiting member (772); when the sensing member (773) is not triggered, the second driving member (75) drives the winding member (73) to rotate, and drives the clothing unit (1) to move partially between the winding member (73) and the limiting member (772); when the sensing member (773) is triggered, the fourth driving member (771) drives the limiting member (772) to move towards the winding member (73).

7. The garment production apparatus of claim 1, wherein The direction in which the indicator light (4) emits light is inclined, and when the upper clamping plate (342) abuts against the lower clamping plate (343), the light emitted by the indicator light (4) is inclined towards the direction close to the accommodation space (3431).

Citation Information

Patent Citations

  • Template sewing machine

    CN211771902U

  • Clothing template machine capable of improving sewing precision

    CN216473831U

  • Pocket sewing device

    CN217809961U