Line drawing and positioning integrated device for clothing decoration splicing process
By designing an integrated line drawing positioning device for clothing decoration joint technology, the problem of inefficiency caused by manual erasing after line drawing in the prior art is solved, automatic line drawing and line rubbing are realized, and clothing production efficiency is improved.
Patent Information
- Application Number
- CN202510297624.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2025-06-13
AI Technical Summary
In the existing clothing decoration seam process, the erasing of the threads mainly relies on manual labor, which leads to time-consuming and labor-intensive and reduces the production efficiency of clothing.
A integrated device for placing and slit slit tracing and placing slit craft is designed, including a workbench, a positioning mechanism and a slit tracing mechanism. The slit mechanism includes a slit assembly and a slit tracing assembly that can be optionally extended. By moving the moving mechanism within the space on the bearing surface, automatic slit and slit tracing are realized.
This reduces the manual participation in line rubbing work, improves line rubbing efficiency, and thus improves clothing production efficiency. Through the integrated positioning, line rubbing and line rubbing functions, the space occupation of the equipment is reduced.
Smart Images

Figure CN120130720A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clothing production, and particularly relates to an integrated device for line tracing and positioning in a clothing decoration sewing process. Background Art
[0002] The clothing decoration sewing process refers to splicing different fabrics or materials together to form a unique decorative effect. This process is widely used in clothing design, which can create rich layering, color contrast, and texture changes. When performing the clothing decoration sewing process, a line tracing device is generally used for line tracing, so as to facilitate the use of thread for decorative sewing.
[0003] The existing line tracing devices for the clothing decoration sewing process mainly perform line tracing, but the line cannot be erased after line tracing. Currently, line tracing and erasing are mainly carried out manually, which is time-consuming and laborious, and reduces the efficiency of clothing production. Summary of the Invention
[0004] In view of this, the present invention provides an integrated device for line tracing and positioning in a clothing decoration sewing process to solve the problem that in the conventional clothing production process, line tracing and erasing are mainly carried out manually, which is time-consuming and laborious, and reduces the efficiency of clothing production.
[0005] The present invention provides an integrated device for line tracing and positioning in a clothing decoration sewing process, including:
[0006] A workbench provided with a bearing surface;
[0007] A positioning mechanism arranged on the workbench for positioning the clothing on the bearing surface;
[0008] A line tracing mechanism arranged on the workbench through a moving mechanism, the moving mechanism being adapted to drive the line tracing mechanism to move within the spatial range on the bearing surface, and the line tracing mechanism including a line tracing component and a line erasing component that can selectively extend towards the bearing surface.
[0009] Optionally, a surrounding plate is arranged on the workbench, the surrounding plate encloses the surface edge of the bearing surface, and the positioning mechanism and the line tracing mechanism are arranged on the surrounding plate.
[0010] Optionally, the positioning mechanism includes:
[0011] An installation frame, with support columns arranged at the four corners of the installation frame, corresponding installation holes are arranged at the top of the surrounding plate, and the support columns are in plug-in fit with the installation holes;
[0012] A sliding frame, including a bearing part and four first sliding rails respectively extending from the bearing part to the four corners of the installation frame, and the four first sliding rails are respectively connected to the installation frame;
[0013] The rotating frame is rotatably arranged on the bearing part and includes second slide rails corresponding to the four first slide rails respectively;
[0014] The first driving member is arranged on the bearing part and is in transmission connection with the rotating frame;
[0015] The positioning assembly includes a sliding column, a sliding block and a pressing rod connected in sequence. The sliding column is slidably matched with the second slide rail, the sliding block is slidably matched with the first slide rail, one end of the pressing rod is connected to the bottom of the sliding block, and the other end extends towards the bearing surface. Four groups of the positioning assemblies are respectively arranged on the corresponding first slide rail and second slide rail;
[0016] The lifting device is arranged on the side wall of the workbench. The output end of the lifting device is connected to the mounting frame and is adapted to drive the mounting frame to move in the height direction to approach or away from the bearing surface.
[0017] Optionally, a pressing plate is arranged at the bottom of the pressing rod, a sleeve is arranged at the bottom of the sliding block, and the pressing rod is movably arranged in the sleeve through an elastic member.
[0018] Optionally, the moving mechanism includes:
[0019] The first moving component is arranged at the bottom of the mounting frame and is adapted to move in the horizontal direction along the first direction;
[0020] The second moving component is arranged on the first moving component and is adapted to move in the horizontal direction along the second direction perpendicular to the first direction. The line tracing mechanism is arranged on the second moving component.
[0021] Optionally, the first moving component includes a moving beam, a first guide rail and a second driving member. The two first guide rails are arranged in parallel on the mounting frame and extend along the first direction. The two ends of the moving beam slide on the two first guide rails respectively, and the second driving member is adapted to drive the moving beam to move;
[0022] The second moving component includes a moving seat, a second guide rail and a third driving member. The second guide rail is arranged at the bottom of the moving beam and extends along the second direction. The moving seat is slidably arranged on the second guide rail, and the third driving member is adapted to drive the moving seat to move. The line tracing mechanism is arranged on the moving seat.
[0023] Optionally, the line tracing mechanism includes:
[0024] The mounting shell is arranged on the second moving component, and two through grooves are arranged at intervals inside the mounting shell. The through grooves face the bearing surface;
[0025] The first sliding rod and the second sliding rod are respectively slidably arranged in the two through grooves. Tooth surfaces are respectively arranged on the opposite surfaces of the two sliding rods. A tracing pen is arranged at the bottom of the first sliding rod, and a wire eraser head is arranged at the bottom of the second sliding rod.
[0026] The fourth driving member is arranged on the mounting shell, and the output end of the driving member of the fourth driving member extends into the mounting shell.
[0027] The direction-changing gear is coaxially connected to the output end of the driving member of the fourth driving member and is in meshing cooperation with the tooth surfaces of the first sliding rod and the second sliding rod.
[0028] Optionally, the second sliding rod has a cavity inside. A fixed cylinder is connected to the bottom of the cavity. The wire eraser head is slidably connected to the fixed cylinder through a liquid outlet pipe. A return spring is sleeved on the liquid outlet pipe. One end of the return spring is fixedly connected to the outer wall of the liquid outlet pipe near the wire eraser head, and the other end abuts against the inner wall of the fixed cylinder. A limiting liquid inlet plate is arranged at one end of the liquid outlet pipe close to the inside of the second sliding rod. The side wall of the limiting liquid inlet plate is in sealing cooperation with the opening where the fixed cylinder communicates with the inner cavity of the second sliding rod. A plurality of liquid inlet holes communicating with the liquid outlet pipe are arranged on the side wall of the limiting liquid inlet plate.
[0029] Optionally, a liquid injection pipe is arranged at the top of the cavity of the second sliding rod, and an air vent valve is arranged at the top of the liquid injection pipe.
[0030] Optionally, limiting grooves are arranged on the inner walls of the two through grooves. The limiting grooves are in the same extending direction as the through grooves. The first sliding rod and the second sliding rod are respectively provided with limiting convex ribs cooperating with the limiting grooves.
[0031] Beneficial effects:
[0032] The clothing decoration seam tracing and positioning integrated device provided by the present invention includes: a workbench, a positioning mechanism, and a tracing mechanism.
[0033] The workbench is provided with a bearing surface. The positioning mechanism is arranged on the workbench and is used for positioning the clothing on the bearing surface. The tracing mechanism is arranged on the workbench through a moving mechanism. The moving mechanism is adapted to drive the tracing mechanism to move within the spatial range on the bearing surface. The tracing mechanism includes a tracing component and a wire erasing component that can selectively extend towards the bearing surface.
[0034] During use, the positioning mechanism can position the garment fabric on the bearing surface. When line tracing is required, the line tracing component extends towards the bearing surface, and the moving mechanism can drive the line tracing structure to move within the spatial range on the bearing surface, thereby performing line tracing work. When line erasing is required, the line erasing component extends towards the bearing surface, thereby performing line erasing work. With such a setting, the manual participation in the line erasing work is reduced, and the line erasing efficiency can be improved, thereby improving the garment production efficiency. In addition, the integrated device for line tracing and positioning in the garment decoration and seam joining process of the present invention integrates positioning function, line tracing function and line erasing function, making the structure compact and reducing the space occupancy rate. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0036] Figure 1 FIG. is a schematic structural diagram of the integrated device for line tracing and positioning in the garment decoration and seam joining process according to an embodiment of the present invention;
[0037] Figure 2 FIG. is a schematic structural diagram of the positioning mechanism according to an embodiment of the present invention;
[0038] Figure 3 FIG. is a schematic structural diagram of the positioning component according to an embodiment of the present invention;
[0039] Figure 4 FIG. is a schematic structural diagram of the moving mechanism according to an embodiment of the present invention;
[0040] Figure 5 FIG. is a schematic structural diagram of the second moving component according to an embodiment of the present invention;
[0041] Figure 6 FIG. is a schematic structural diagram of the line tracing mechanism according to an embodiment of the present invention;
[0042] Figure 7 FIG. is a schematic internal structural diagram of the line tracing mechanism according to an embodiment of the present invention;
[0043] Figure 8 FIG. is a schematic cross-sectional structural diagram of the second sliding rod according to an embodiment of the present invention.
[0044] Description of the reference numerals:
[0045] 1. Workbench; 11. Bearing surface; 12. Enclosing board; 2. Positioning mechanism; 201. Mounting frame; 202. Support column; 203. Sliding frame; 2031. Bearing part; 2032. First slide rail; 204. Slide block; 205. Sleeve; 206. Elastic member; 207. Limit block; 208. Pressure rod; 209. Pressure plate; 210. Slide post; 211. Mounting bracket; 2111. Mounting column; 2112. Motor mounting base; 212. First driving member; 213. Rotating frame; 2131. Rotating sleeve; 2132. Second slide rail; 3. Moving mechanism; 301. First guide rail; 302. First toothed plate; 303. Sliding frame; 304. Moving beam; 305. Three-way commutator; 306. Second driving member; 307. Vertical rotator; 308. First gear; 309. Second guide rail; 310. Second toothed plate; 311. Moving seat; 312. Rotating shaft; 313. Third driving member; 314. Second gear; 4. Line tracing mechanism; 401. Mounting shell; 4011. Through slot; 4021. First slide bar; 4022. Second slide bar; 4031. Limit slot; 4032. Limit convex rib; 404. Direction-changing gear; 405. Line tracing pen; 406. Fixed cylinder; 407. Liquid outlet pipe; 408. Return spring; 409. Limit liquid inlet plate; 410. Liquid inlet hole; 411. Wiping wire head; 412. Liquid injection pipe; 413. Fourth driving member; 5. Hydraulic cylinder. Detailed implementation manners
[0046] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0047] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, this embodiment provides a line tracing and positioning integrated device for clothing decoration sewing seams, including: a workbench 1, a positioning mechanism 2, and a line tracing mechanism 4.
[0048] The workbench 1 is provided with a bearing surface 11, and the shape of the bearing surface 11 can be rectangular.
[0049] The positioning mechanism 2 is arranged on the workbench 1 and is used to position the clothing on the bearing surface 11.
[0050] The line tracing mechanism 4 is arranged on the workbench 1 through the moving mechanism 3. The moving mechanism 3 is adapted to drive the line tracing mechanism 4 to move within the space range on the bearing surface 11. The line tracing mechanism 4 includes a line tracing component and a line erasing component that can selectively extend towards the bearing surface 11. Specifically, when tracing or erasing lines, the space above the bearing surface 11 is the moving space of the line tracing mechanism 4. The moving mechanism 3 is adapted to drive the line tracing mechanism 4 to move within this moving space range. The line tracing component and the line erasing component can selectively extend towards the bearing surface 11 until they contact the garment fabric, thereby completing the line tracing or line erasing work.
[0051] During use, the positioning mechanism 2 can position the garment fabric on the bearing surface 11. When line tracing is required, the line tracing component extends towards the bearing surface 11, and the moving mechanism 3 can drive the line tracing structure to move within the space range on the bearing surface 11, thereby performing the line tracing work. When line erasing is required, the line erasing component extends towards the bearing surface 11, thereby performing the line erasing work. With such a setting, the manual participation in the line erasing work is reduced, and the line erasing efficiency can be improved, thereby improving the garment production efficiency. In addition, the line tracing and positioning integrated device for the garment decoration and sewing process of the present invention integrates positioning function, line tracing function and line erasing function, making the structure compact and reducing the space occupancy rate.
[0052] As Figure 1 shown, in this embodiment, a surrounding plate 12 is arranged on the workbench 1. The surrounding plate 12 encloses the surface edge of the bearing surface 11. The workbench 1 further includes a bottom support plate. The surrounding plate 12 and the bottom support plate can be an integral structure. The bearing surface 11 is a plate-like structure fixed between the surrounding plate 12 and the bottom support plate. One side of the surrounding plate 12 is an opening. The garment fabric can be put into or taken out from the bearing surface 11 through the opening. The positioning mechanism 2 and the line tracing mechanism 4 are arranged on the surrounding plate 12. The surrounding plate 12 has a certain height dimension. Then there is also a moving height distance between the positioning mechanism 2 and the line tracing mechanism 4 and the bearing surface 11, thereby forming a moving space for the line tracing mechanism 4 between the positioning mechanism 2 and the bearing surface 11.
[0053] As Figure 1 and Figure 2 shown, in this embodiment, the positioning mechanism 2 includes: a mounting frame 201, a sliding frame 203, a rotating frame 213, a first driving member 212, a positioning component and a lifting device.
[0054] The mounting frame 201 can be a rectangular frame composed of two cross beams and two longitudinal beams. Support columns 202 are provided at the four corners of the mounting frame 201. The support columns 202 are perpendicular to the surface of the mounting frame and extend towards the closer side of the enclosing plate 12. Mounting holes are correspondingly provided at the top of the enclosing plate 12. The support columns 202 are inserted and matched with the mounting holes, and the support columns 202 can slide within the mounting holes, thereby playing a role in limiting the lifting movement of the mounting frame 201, preventing it from moving in the horizontal direction, and at the same time improving the stability of the lifting movement of the mounting frame 201.
[0055] The sliding frame 203 includes a bearing part 2031 and four first slide rails 2032 respectively extending from the bearing part 2031 towards the four corners of the mounting frame 201. The four first slide rails 2032 are respectively connected to the mounting frame 201. The bearing part 2031 can be a cross beam, and the two ends of the cross beam are respectively connected between the opposite side edges of the mounting frame 201. The middle part of the bearing part 2031 is configured as a frustum shape. One end of the four first slide rails 2032 is connected to the arc edge of the frustum side wall, and the other end is connected to the four corners of the mounting frame 201. The shapes and sizes of the four first slide rails 2032 are exactly the same. The extension lines of one end of the four first slide rails 2032 intersect at the center of the mounting frame 201. A chute is provided on the first slide rail 3021 in the same direction as its extension direction.
[0056] The rotating frame 213 is rotatably arranged on the bearing part 2031 and includes second slide rails 2132 corresponding to the four first slide rails 2032 respectively. Specifically, the rotating frame 213 further includes a rotating sleeve 2131. The center of the rotating sleeve 2131 and the center of the upper circular surface of the frustum are located on the same straight line. The layout of the four second slide rails 2132 and the four first slide rails 3021 is the same. The difference is that one end of the four second slide rails 2132 away from the rotating sleeve 2131 is a free end, and the four second slide rails 2132 are also provided with chutes in the same direction as their respective extension directions.
[0057] The first driving member 212 is disposed on the bearing portion 2031 and is in driving connection with the rotating frame 213. Specifically, an installation frame 211 is provided on the outer wall of the workbench 1. The installation frame 211 includes an installation column 2111 and a motor mounting seat 2112. The two installation columns are respectively disposed on the opposite outer walls of the workbench 1, and the two installation columns extend to the top center of the workbench 1. The motor mounting seat is connected to the two mounting seats. The first driving member 212 is mounted on the motor mounting seat. The first driving member 212 is a bidirectional driving motor. The output end of the first driving member 212 is in driving connection with the rotating sleeve 2131 of the rotating frame 213. For example, a gear is coaxially provided at the output end of the first driving member 212, and a toothed ring is fixedly provided on the inner wall of the rotating sleeve 2131. The gear is in meshing cooperation with the toothed ring, so that the first driving member 212 can drive the rotating sleeve 2131 to rotate, and further drive a plurality of second sliding rails 2132 to rotate synchronously. The plurality of second sliding rails 2132 can move relative to the first sliding rail 2032 in the clockwise direction, or the plurality of second sliding rails 2132 can move relative to the first sliding rail 2032 in the counterclockwise direction.
[0058] The positioning assembly includes a sliding column 210, a sliding block 204, and a pressing rod 208 that are connected in sequence. The sliding column 210 is slidably engaged with the second sliding rail 2132. The sliding column 210 includes a first cylindrical section and a second cylindrical section. The diameter of the first cylindrical section is greater than the diameter of the second cylindrical section. One end of the second cylindrical section is connected to the first cylindrical section, and the other end is connected to the sliding block 204. The second cylindrical section is slidably engaged with the chute of the second sliding rail 2132. The diameter of the first cylindrical section is greater than the distance between the chutes of the second sliding rail 2132, so as to limit the second cylindrical section on the second sliding rail 2132 to maintain a stable sliding engagement relationship. The sliding block 204 is slidably engaged with the first sliding rail 2032. The opposite two side walls of the sliding block 204 are respectively provided with the same grooves. The opposite two inner walls of the chute of the first sliding rail 2032 are respectively embedded into the corresponding grooves and slidably engaged, so that the sliding block 204 can slide along the extending direction of the first sliding rail 2032. One end of the pressing rod 208 is connected to the bottom of the sliding block, and the other end extends toward the bearing surface 11. Four groups of positioning assemblies are respectively disposed on the corresponding first sliding rail 2032 and second sliding rail 2132.
[0059] For example, before the positioning work starts, multiple positioning components can be located at positions on their respective corresponding second slide rails 2132 close to the rotating sleeve 2131. There is a certain angle between the extending directions of the multiple second slide rails 2132 and their respective corresponding first slide rails 2032. When the positioning work starts, the multiple second slide rails 2132 rotate clockwise or counterclockwise with the rotating sleeve 2131 as the rotation center. The multiple second slide rails 2132 will exert a thrust on the second cylindrical section of the sliding column 210. Under the action of the thrust, the sliding column 210 has a tendency to move away from the rotating sleeve 2131. At the same time, under the guiding cooperation of the slider 204 and the first slide rail 2032, the positioning component as a whole will move along the extending direction of the first slide rail 2032 towards the corner of the mounting frame 201, so as to gradually flatten and position the garment fabric through the pressing rod 208.
[0060] The lifting device is arranged on the side wall of the workbench 1. The output end of the lifting device is connected to the mounting frame 201 and is adapted to drive the mounting frame 201 to move in the height direction to be close to or away from the bearing surface 11. The lifting device is a hydraulic cylinder 5. There is a mounting table on the side wall of the workbench 1, and a connecting table is arranged at the corresponding position on the side wall of the mounting frame 201. Two hydraulic cylinders 5 are respectively arranged on the opposite sides of the workbench 1, and the two hydraulic cylinders 5 work synchronously to drive the mounting frame 201 to move up and down in the height direction.
[0061] During use, the lifting device drives the mounting frame 201 to rise a certain distance in the height direction. The staff can place the garment fabric on the bearing surface 111. Then the lifting device drives the mounting frame 201 to descend in the height direction until the bottom of the pressing rod 208 of the positioning component contacts the garment fabric. Then the first driving member 212 is started. The first driving member 212 drives the rotating frame 213 to rotate, and the second slide rail 2132 exerts a thrust on the sliding column 210, so that the sliding column 210 moves along the first slide rail 2032 towards the four corners of the mounting frame 201, thereby realizing the flattening and positioning of the garment fabric. It should be noted that after the garment fabric is flattened, the lifting device can further drive the mounting frame 201 to descend so that the pressing rod 208 presses the garment fabric tightly to prevent the garment fabric from moving during subsequent line tracing or wiping.
[0062] Such as Figure 3As shown, in this embodiment, a pressing plate 209 is provided at the bottom of the pressing rod 208. The pressing plate 209 is configured to have a certain arc at both ends, and the extending direction of the pressing plate 209 is the same as the extending direction of the first slide rail 2032, so as to facilitate the sliding of the pressing rod 208. A sleeve 205 is provided at the bottom of the slider 204. The pressing rod 208 is movably arranged in the sleeve 205 through an elastic member 206. The elastic member 206 can be a spring, so as to prevent the pressing rod 208 from applying excessive pressure to the clothing fabric and causing damage. Inner convex ribs can be provided on the inner wall of the open end of the sleeve 205, and a limiting block 207 can be provided at one end of the pressing rod 208 extending into the sleeve 205. The diameter of the limiting block 207 is larger than the diameter of the pressing rod 208, so as to prevent the pressing rod 208 from falling off from the sleeve 205.
[0063] As Figure 2 , Figure 4 and Figure 5 shown, in this embodiment, the moving mechanism 3 includes:
[0064] The first moving component is arranged at the bottom of the mounting frame 201 and is adapted to move in the horizontal direction along a first direction. The second moving component is arranged on the first moving component and is adapted to move in the horizontal direction along a second direction perpendicular to the first direction. The line tracing mechanism 4 is arranged on the second moving component. The cooperation of the first moving component and the second moving component enables the line tracing mechanism 4 to perform line tracing or line erasing alignment in the horizontal direction.
[0065] As Figure 2 , Figure 4 and Figure 5As shown, in this embodiment, the first moving component includes a moving beam 304, a first guide rail 301, and a second driving member 306. The two first guide rails 301 are arranged in parallel on the mounting frame 201 and extend along the first direction. The first guide rail 301 provides a movement track. The tops of the two first guide rails 301 are respectively fixedly connected to the bottom sides of both sides of the mounting frame 201. The two ends of the moving beam 304 slide on the two first guide rails 301 respectively. The second driving member 306 is adapted to drive the moving beam 304 to move. A three-way commutator 305 is fixedly connected to the middle of the moving beam 304. A second driving member 306 is fixedly connected to the side of the three-way commutator 305 away from the moving beam 304. The output end of the second driving member 306 is fixedly connected to the input end of the three-way commutator 305. Rotating shafts 312 are fixedly connected to both output ends of the three-way commutator 305. The rotating shafts 312 can transmit rotational force. Vertical rotators 307 are fixedly connected to both sides of the moving beam 304. The ends of the rotating shafts 312 away from the three-way commutator 305 are fixedly connected to the input ends of the vertical rotators 307. The output ends of the vertical rotators 307 are fixedly connected to first gears 308. The vertical rotators 307 can change the direction of the rotational force. The first gears 308 are in meshing connection with first toothed plates 302. The second driving member 306 is a bidirectional driving motor. The three-way commutator 305 can convert the drive of the second driving member 306 into the rotation of the rotating shafts 312, so as to cooperate with the vertical rotators 307, the first gears 308, and the first toothed plates 302 to drive the moving beam 304 to move.
[0066] The second moving component includes a moving base 311, a second guide rail 309, and a third driving member 313. The second guide rail 309 is arranged at the bottom of the moving beam 304 and extends along the second direction. The moving base 311 is slidably arranged on the second guide rail 309. The third driving member 313 is adapted to drive the moving base 311 to move. The line tracing mechanism 4 is arranged on the moving base 311. A second guide rail 309 is fixedly connected to the bottom of the moving beam 304. The second guide rail 309 provides an installation position and a sliding track. A second toothed plate 310 is fixedly connected to the bottom of the moving beam 304. A moving base 311 is slidably connected between the outsides of the two second guide rails 309. A third driving member 313 is fixedly connected to the bottom of the moving base 311. A second gear 314 is fixedly connected to the top of the third driving member 313. The second gear 314 is meshed with the second toothed plate 310. When tracing a line, the hydraulic cylinder 5 is started. The output end of the hydraulic cylinder 5 retracts to drive the first guide rail 301, the first toothed plate 302, the sliding frame 303, the moving beam 304, and the moving base 311 to move downward. When the bottom of the line tracing mechanism 4 touches the fabric, the second driving member 306 is started so as to be able to drive the rotating shaft 312 to rotate. The rotation of the rotating shaft 312 drives the first gear 308 to rotate through the vertical rotator 307, so as to be able to drive the sliding frame 303 and the moving beam 304 to move along the first guide rail 301 in cooperation with the first toothed plate 302. The third driving member 313 is started. The output end of the third driving member 313 drives the second gear 314 to rotate. The cooperation between the second gear 314 and the second toothed plate 310 can drive the moving base 311 to move along the second guide rail 309, so as to be able to drive the line tracing mechanism 4 to move longitudinally and horizontally, and then be able to realize line tracing on the garment fabric.
[0067] As Figure 6 , Figure 7 and Figure 8 shown, in this embodiment, the line tracing mechanism 4 includes: an installation shell 401 is arranged on the second moving component, and two through slots 4011 are arranged at intervals inside. The through slots 4011 face the bearing surface 11. A first sliding rod 4021 and a second sliding rod 4022 are respectively slidably arranged in the two through slots 4011. Tooth surfaces are respectively arranged on the opposite surfaces of the two sliding rods. A line tracing pen 405 is arranged at the bottom of the first sliding rod 4021. A thread erasing head 411 is arranged at the bottom of the second sliding rod 4022. A fourth driving member 413 is arranged on the installation shell 401. The output end of the fourth driving member 413 extends into the installation shell 401. A reversing gear 404 is coaxially connected to the output end of the fourth driving member 413 and is meshed with the tooth surfaces of the first sliding rod 4021 and the second sliding rod 4022. The fourth driving member 413 is a bidirectional driving motor, so as to drive the reversing gear 404 to rotate forward or backward to selectively extend the line tracing pen 405 or the thread erasing head 411.
[0068] As shown in Figure 6 , Figure 7 and Figure 8 In this embodiment, as shown, the second sliding rod 4022 has a cavity inside. A fixing cylinder 406 is connected to the bottom of the cavity. The cleaning wire head 411 is slidably connected to the fixing cylinder 406 through a liquid outlet pipe 407. A return spring 408 is sleeved on the liquid outlet pipe 407. One end of the return spring 408 is fixedly connected to the outer wall of the liquid outlet pipe 407 near the cleaning wire head 411, and the other end abuts against the inner wall of the fixing cylinder 406. A limiting liquid inlet plate 409 is arranged at one end of the liquid outlet pipe 407 close to the inside of the second sliding rod 4022. The side wall of the limiting liquid inlet plate is in sealing cooperation with the opening where the fixing cylinder 406 communicates with the inner cavity of the second sliding rod 4022. A plurality of liquid inlet holes 410 communicating with the liquid outlet pipe 407 are formed in the side wall of the limiting liquid inlet plate. The cavity can accommodate cleaning liquid.
[0069] As shown in Figure 8 In this embodiment, as shown, a liquid injection pipe 412 is arranged at the top of the cavity of the second sliding rod 4022. A ventilation valve is arranged at the top of the liquid injection pipe 412. The ventilation valve can make the air pressure in the cavity the same as the external atmospheric pressure, which is convenient for the cleaning liquid to flow out from the liquid injection pipe 412 under the action of its own weight after the limiting liquid inlet plate 409 extends into the cavity.
[0070] As shown in Figure 7 In this embodiment, as shown, limiting grooves 4031 are arranged on the inner walls of the two through grooves 4011. The limiting grooves 4031 are in the same extending direction as the through grooves 4011. The first sliding rod 4021 and the second sliding rod 4022 are respectively provided with limiting ridges 4032 that cooperate with the limiting grooves 4031. Thus, the first sliding rod 4021 is prevented from rotating.
[0071] Although the embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.
Claims
1. A device for positioning and tracing lines in a garment decoration seam process, characterized in that: include: A workbench (1) is provided with a bearing surface (11); A positioning mechanism (2), arranged on the workbench (1), and used for positioning the garment on the bearing surface (11); A line drawing mechanism (4) is arranged on the workbench (1) via a moving mechanism (3), wherein the moving mechanism (3) is suitable for driving the line drawing mechanism (4) to move within a spatial range on the bearing surface (11), and the line drawing mechanism (4) comprises a line drawing component and a line erasing component which can be selectively extended toward the bearing surface (11).
2. The integrated device for tracing and positioning the seam craft of clothing decoration according to claim 1, characterized in that: The workbench (1) is provided with a panel (12), the panel (12) enclosing the surface edge of the bearing surface (11), and the positioning mechanism (2) and the line drawing mechanism (4) are arranged on the panel (12).
3. The integrated device for tracing and positioning the seam craft of clothing decoration according to claim 2, characterized in that: The positioning mechanism (2) comprises: An installation frame (201), wherein four corners of the installation frame (201) are each provided with a support column (202), and a mounting hole is correspondingly provided at the top of the enclosure (12), and the support column (202) is plugged into and matched with the mounting hole; The sliding frame (203) comprises a bearing portion (2031) and four first sliding rails (2032) extending from the bearing portion (2031) to four corners of the installation frame (201), respectively, and the four first sliding rails (2032) are respectively connected to the installation frame (201); A rotating frame (213) rotatably disposed on the bearing portion (2031), comprising second slide rails (2132) respectively corresponding to the four first slide rails (2032); A first driving member (212) is disposed on the bearing portion (2031) and is drivingly connected to the rotating frame (213); A positioning assembly, comprising a slide post (210), a slider (204) and a pressure rod (208) connected in sequence, wherein the slide post (210) is slidably matched with the second slide rail (2132), the slider (204) is slidably matched with the first slide rail (2032), one end of the pressure rod (208) is connected to the bottom of the slider (204), and the other end extends in the direction of the bearing surface (11), and four groups of the positioning assemblies are respectively arranged on the corresponding first slide rail (2032) and second slide rail (2132); A lifting device is arranged on a side wall of the workbench (1); an output end of the lifting device is connected to the installation frame (201) and is suitable for driving the installation frame (201) to move in a height direction to be close to or away from the bearing surface (11).
4. The integrated device for tracing and positioning the seam decoration of clothing according to claim 3, characterized in that: A pressure plate (209) is provided at the bottom of the pressure rod (208), a sleeve (205) is provided at the bottom of the sliding block (204), and the pressure rod (208) is movably arranged in the sleeve (205) via an elastic member (206).
5. The integrated device for tracing and positioning the seam of clothing decoration according to claim 3, characterized in that: The moving mechanism (3) comprises: A first moving component, arranged at the bottom of the installation frame (201), suitable for moving in a first direction in a horizontal direction; The second moving component is arranged on the first moving component and is suitable for moving in a horizontal direction along a second direction perpendicular to the first direction. The line drawing mechanism (4) is arranged on the second moving component.
6. The integrated device for tracing and positioning the seam of clothing decoration according to claim 5, characterized in that: The first moving assembly comprises a moving beam (304), a first guide rail (301) and a second driving member (306); the two first guide rails (301) are arranged in parallel on the installation frame (201) and extend along a first direction; the two ends of the moving beam (304) slide on the two first guide rails (301) respectively; and the second driving member (306) is suitable for driving the moving beam (304) to move; The second moving assembly comprises a moving seat (311), a second guide rail (309) and a third driving member (313); the second guide rail (309) is arranged at the bottom of the moving beam (304) and extends along the second direction; the moving seat (311) is slidably arranged on the second guide rail (309); the third driving member (313) is suitable for driving the moving seat (311) to move; and the line drawing mechanism (4) is arranged on the moving seat (311).
7. The integrated device for tracing and positioning the seam of clothing decoration according to claim 5, characterized in that: The line drawing mechanism (4) comprises: A mounting shell (401), arranged on the second moving assembly, having two through slots (4011) arranged therein at intervals, the through slots (4011) facing the bearing surface (11); The first slide bar (4021) and the second slide bar (4022) are respectively slidably arranged in the two through grooves (4011), and the opposing surfaces of the two slide bars are respectively provided with toothed surfaces, a line drawing pen (405) is arranged at the bottom of the first slide bar (4021), and a line erasing head (411) is arranged at the bottom of the second slide bar (4022); A fourth driving member (413) is arranged on the mounting shell (401), and an output end of the fourth driving member (413) extends into the mounting shell (401); The direction-changing gear (404) is coaxially connected to the output end of the fourth driving member (413) and meshes with the tooth surface of the first sliding rod (4021) and the tooth surface of the second sliding rod (4022).
8. The integrated device for tracing and positioning the seam of decorative clothing according to claim 7, characterized in that: The second slide bar (4022) has a cavity inside, and a fixed cylinder (406) is connected to the bottom of the cavity. The thread wiping head (411) is slidably connected to the fixed cylinder (406) through a liquid outlet pipe (407). A reset spring (408) is sleeved on the liquid outlet pipe (407). One end of the reset spring (408) is fixedly connected to the outer wall of the liquid outlet pipe (407) close to the thread wiping head (411), and the other end abuts against the inner wall of the fixed cylinder (406). A limited liquid inlet plate (409) is provided at one end of the liquid outlet pipe (407) close to the inside of the second slide bar (4022). The side wall of the limited liquid inlet plate (409) is sealed with an opening connecting the fixed cylinder (406) and the inner cavity of the second slide bar (4022). The side wall of the limited liquid inlet plate (409) is provided with a plurality of liquid inlet holes (410) connected to the liquid outlet pipe (407).
9. The integrated device for tracing and positioning the seam of decorative clothing according to claim 7, characterized in that: A liquid injection tube (412) is provided at the top of the cavity of the second sliding rod (4022), and a ventilation valve is provided at the top of the liquid injection tube (412).
10. The integrated device for tracing and positioning the seam of clothing decoration according to claim 7, characterized in that: The inner walls of the two through grooves (4011) are provided with limiting grooves (4031), and the limiting grooves (4031) extend in the same direction as the through grooves (4011). The first sliding rod (4021) and the second sliding rod (4022) are respectively provided with limiting ridges (4032) that cooperate with the limiting grooves (4031).