A stereoscopic support device for costume design
Patent Information
- Application Number
- CN202610886076.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-18
- Publication Date
- 2026-08-28
AI Technical Summary
[0005]本发明的目的在于提供一种服装设计用立体支撑装置,以解决在观看过程中,人员需要多方位的移动,才能够看到服装的全面图像,一旦服装数量过多,观看过程较为不便,也影响到人员的体验感的技术问题
[0019] (1) In this invention, the device integrates mechanical transmission, circular shooting and reciprocating lifting adjustment into one unit. The drive motor drives the active wheel, reciprocating screw, gear ring and conveyor belt synchronously, which can drive the camera to make circular shooting along the circular step opening. At the same time, it is combined with vertical reciprocating lifting motion, which can collect the overall three-dimensional outline, pattern folds and detailed structure images of the clothing in all directions and without dead angles. This solves the problems of single shooting angle, incomplete imaging and poor three-dimensional reproduction of traditional clothing design.
Smart Images

Figure CN122642645A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of clothing support devices, specifically relating to a three-dimensional support device for clothing design. Background Technology
[0002] Fashion design is an interdisciplinary field that takes the art of clothing design as its core and integrates materials science, engineering technology, aesthetics and market demand. It belongs to the fields of engineering or art. Its teaching system covers core courses such as fashion illustration techniques, draping, and clothing CAD, and emphasizes the practical combination of design creativity and craftsmanship.
[0003] Three-dimensional garment support uses built-in structures, supportive materials, and mechanical segmentation to allow garments to maintain a three-dimensional silhouette, crisp lines, and curved surfaces even when removed from the body, preventing them from collapsing, clinging, or deforming. It is the core technology of structural garment design.
[0004] After the garments are made, they are usually supported in three dimensions using mannequins or hangers to allow people to view them. However, during the viewing process, people need to move around in multiple directions to see a full image of the garment. If there are too many garments, the viewing process becomes inconvenient and affects the user experience, reducing the practicality of the device. In addition, for garments of different sizes, the support frame is a fixed structure and its size remains unchanged, so people need to change it frequently. Moreover, the garments are often in a static state, which is not conducive to a comprehensive observation of the garment design, further reducing the user experience. Summary of the Invention
[0005] The purpose of this invention is to provide a three-dimensional support device for clothing design, in order to solve the technical problem that during the viewing process, people need to move in multiple directions to see a full image of the clothing. When there are too many garments, the viewing process becomes inconvenient and affects the user's experience.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A three-dimensional support device for clothing design, comprising:
[0008] The shooting control mechanism includes a drive motor placed on the top of the frame. The bottom of the output shaft of the drive motor extends sequentially to the drive wheel, the movable shaft and the first reciprocating screw. A first rotating tooth is fixedly connected to the movable shaft. A second rotating tooth is rotatably connected to a first ring through the outer wall of the first rotating tooth. Both sides of the outer wall of the first ring are fixedly connected to the frame by U-shaped rods.
[0009] Both sides of the bottom end of the second rotating tooth are connected to a first telescopic rod via a first bending rod. A roller is installed on the movable end of the first telescopic rod, and a camera adapted to it is installed at the bottom of the movable end of the first telescopic rod. The outer wall of the first ring is connected to the second ring via a second telescopic rod, and an annular stepped opening connected to the roller is opened on the edge of the side wall of the second ring.
[0010] Furthermore, the second ring is positioned directly below the first ring and the two are kept parallel. The outer wall of the first ring has an inwardly recessed annular groove that connects to the second rotating tooth. The first reciprocating screw is screw-driven with a first slider. One end of the first slider is slidably connected to a limiting groove in the height direction of the frame, and the other end is fitted with a second ring via a second bending rod.
[0011] Furthermore, the connection between the first reciprocating screw and the movable shaft, as well as the connection between the movable shaft and the drive wheel, are all fixedly installed by the first coupling. The outer wall of the roller is rolledly connected to the annular stepped opening, and the bottom of the first reciprocating screw is rotatably supported on the rolling groove inside the frame. The bottom of the frame is integrally formed with a panel.
[0012] Furthermore, the panel is arranged in a ring shape, and the camera is used to transmit the image signal of the clothing on the panel to the processor. The processor is used to receive the image signal and output the control signal, and the processor is electrically connected to the video terminal to control the video terminal to display the clothing image.
[0013] Furthermore, it also includes a support adjustment mechanism, which includes a driven wheel that rotates on the frame. The driven wheel and the driving wheel are connected by a conveyor belt. The bottom of the driven wheel is connected to a rotating shaft by a second reciprocating screw. The connection between the second reciprocating screw and the rotating shaft is fixedly connected by a second coupling, and a turntable is fixedly installed at the bottom of the rotating shaft.
[0014] Furthermore, the protrusion at the bottom of the turntable and the annularly distributed second slider are connected by a first swing rod. The second slider is slidably connected to the strip groove on the fixed plate. A fixing ring is installed on the outer edge of the fixed plate, and one end of the fixing ring is fixedly connected to the side wall of the first ring by a third bending rod.
[0015] Furthermore, the two ends of the first swing rod are rotatably connected to the protrusion and the second slider, respectively. The bottom of the second slider is connected to the first support frame in a detachable manner. The first support frame is L-shaped, and the outer walls of the first support frame together form a support area that connects to the neckline of the garment.
[0016] Furthermore, the second reciprocating screw has a third slider that is screwed on it. The third slider and the moving plates at both ends are connected by a second swing rod. The moving plates are slidably connected in a groove in the fixed block. The bottom of the moving plates passes through the groove and extends to the second support frame. The extended end on the outer wall of the second support frame is provided with an arc-shaped surface that is connected to the support of the garment sleeve.
[0017] Furthermore, the two ends of the second swing rod are rotatably connected to the third slider and the moving plate, respectively. One end of the fixed block is installed on the side wall of the first ring by plugging and fixing, and the fixed block is symmetrically arranged with respect to the vertical central axis of the second reciprocating screw.
[0018] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0019] (1) In this invention, the device integrates mechanical transmission, circular shooting and reciprocating lifting adjustment into one unit. The drive motor drives the active wheel, reciprocating screw, gear ring and conveyor belt synchronously, which can drive the camera to make circular shooting along the circular step opening. At the same time, it is combined with vertical reciprocating lifting motion, which can collect the overall three-dimensional outline, pattern folds and detailed structure images of the clothing in all directions and without dead angles. This solves the problems of single shooting angle, incomplete imaging and poor three-dimensional reproduction of traditional clothing design.
[0020] (2) In this invention, the device is equipped with a support adjustment mechanism that can be used in conjunction with the shooting control mechanism. By using the linkage structure of turntable, swing rod and slider, the spacing and opening range of multiple sets of first support frame and second support frame can be adjusted synchronously. It can not only adaptively support the neckline of different sizes of clothing, but also fit and support the sleeve through the arc face. When the sleeve is supported and unfolded at different positions, it is beneficial for people to observe the dynamic design of clothing. It can quickly adapt to the three-dimensional opening and shaping of clothing of different styles and patterns, simulate the three-dimensional state of human body wearing, and has strong support adjustability and wide applicability.
[0021] (3) In this invention, the camera is installed through the first telescopic rod and is connected to the annular stepped opening on the second ring by the roller. During the movement, it can obtain better guidance and support, reduce the shaking of the shooting component, and improve the stability of the camera operation. This helps to ensure the clarity and continuity of the captured image. The drive motor drives the relevant mechanism through the active wheel, the driven wheel and the conveyor belt, so that the shooting control mechanism and the support adjustment mechanism have good coordination. This helps to realize the unified control of the clothing support state adjustment and the shooting action, reduce the workload of frequent manual adjustment, and improve the automation level of the device.
[0022] (4) In this invention, the device adopts an integrated frame structure with ring, bending rod and telescopic rod for limiting and guiding. The transmission is smooth and the support and positioning are reliable. With the camera, processor and video terminal electronic control linkage, it can transmit and display the three-dimensional image of the garment in real time, which makes it easy for designers to intuitively observe the garment's silhouette, line proportion and structural defects. It greatly improves the efficiency and accuracy of garment design, pattern modification and three-dimensional sample evaluation. It has a high degree of automation and is easy to operate. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the structure of a three-dimensional support device for clothing design according to the present invention. Figure 1 ;
[0025] Figure 2 This is a schematic diagram of the structure of a three-dimensional support device for clothing design according to the present invention. Figure 2 ;
[0026] Figure 3 This is a left view of a three-dimensional support device for clothing design according to the present invention;
[0027] Figure 4 This is the present invention. Figure 2 Enlarged view of point A;
[0028] Figure 5 This is a schematic diagram of the structure of the second ring of the present invention;
[0029] Figure 6 This is a schematic diagram of the interior of the first ring of the present invention;
[0030] Figure 7 This is the present invention. Figure 6 Enlarged view of point B;
[0031] Figure 8 This is the present invention. Figure 6 Enlarged view of point C.
[0032] Reference numerals: 1. Shooting control mechanism; 2. Drive motor; 3. Drive wheel; 4. Movable shaft; 5. First reciprocating screw; 6. First rotating gear; 7. First ring; 8. Second rotating gear; 9. U-shaped rod; 10. First bending rod; 11. First telescopic rod; 12. Roller; 13. Camera; 14. Second telescopic rod; 15. Second ring; 16. Annular stepped opening; 17. Annular groove; 18. First slider; 19. Second bending rod; 20. Rolling groove; 21. 21. Panel; 22. Video terminal; 23. Support adjustment mechanism; 24. Driven wheel; 25. Conveyor belt; 26. Second reciprocating screw; 27. Rotating shaft; 28. Turntable; 29. Second slider; 30. First swing rod; 31. Fixed plate; 32. Strip groove; 33. Fixed ring; 34. Third bending rod; 35. First support frame; 36. Third slider; 37. Moving plate; 38. Second swing rod; 39. Fixed block; 40. Second support frame; 41. Arc surface. Detailed Implementation
[0033] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0034] Reference manual attached Figure 1 -Appendix Figure 8 As shown, this invention discloses a three-dimensional support device for clothing design. Its core structure includes a shooting control mechanism 1 and a support adjustment mechanism 23, which are integrated and assembled on the same frame. They can work together to complete the three-dimensional stretching and shaping of clothing and the acquisition of images from all angles. This provides integrated auxiliary support for clothing design, pattern optimization and effect evaluation, and solves the technical problems of poor support adaptability, limited shooting angle and inability to perform synchronous linkage operations of existing devices.
[0035] The core function of the shooting control mechanism 1 is to achieve all-round, blind-spot-free acquisition of three-dimensional images of clothing. Its main components include a drive motor 2, a drive wheel 3, a movable shaft 4, a first reciprocating lead screw 5, a first rotating gear 6, a first circular ring 7, a second rotating gear 8, a U-shaped rod 9, a first bending rod 10, a first telescopic rod 11, a roller 12, a camera 13, a second telescopic rod 14, and a second circular ring 15. The assembly relationship and transmission logic of each component are as follows:
[0036] The drive motor 2 is bolted to the preset mounting base on the top of the frame. Its output shaft extends vertically downward and is coaxially fixedly connected to the drive wheel 3, the movable shaft 4, and the first reciprocating screw 5 through the first coupling in sequence. This ensures that after the drive motor 2 is started, the drive wheel 3, the movable shaft 4, and the first reciprocating screw 5 can rotate synchronously, ensuring the coaxiality and stability of the transmission process and avoiding problems such as transmission offset and jamming.
[0037] A first rotating tooth 6 is fixedly mounted on the movable shaft 4. The first rotating tooth 6 is located directly above the first ring 7 and meshes with a second rotating tooth 8 mounted on the first ring 7. The first ring 7 is fixedly connected to the frame by U-shaped rods 9 arranged symmetrically on both sides, achieving stable positioning. The outer wall of the first ring 7 is recessed inward to form an annular groove 17. The second rotating tooth 8 is rotatably mounted in the annular groove 17. The annular groove 17 provides radial limiting and circumferential guidance for the second rotating tooth 8, ensuring that the second rotating tooth 8 can rotate smoothly along the circumference of the first ring 7, effectively preventing it from deviating or jamming during movement.
[0038] The bottom ends of the second rotating tooth 8 are symmetrically fixed with L-shaped first bending rods 10. The free ends of the first bending rods 10 are fixedly installed with first telescopic rods 11. The movable end of the first telescopic rod 11 faces the lower second ring 15, and its end is rolled with a roller 12. The bottom of the first telescopic rod 11 is fixedly installed with a camera 13 by screws for collecting three-dimensional image signals of the clothing. The second ring 15 is suspended below the first ring 7 by multiple sets of evenly distributed second telescopic rods 14. The second ring 15 is parallel to the first ring 7, and the side wall edge of the second ring 15 has an annular stepped opening 16 adapted to the roller 12. The roller 12 rolls and fits in the annular stepped opening 16, providing further guidance and limitation for the circular movement of the camera 13, ensuring that the movement of the camera 13 is smooth and the collected image is clear and without shaking.
[0039] A first slider 18 is threaded onto the first reciprocating screw 5. One side of the first slider 18 slides in conjunction with a pre-set vertical guide structure on the frame to restrict the first slider 18 from rotating synchronously with the first reciprocating screw 5, ensuring that the first slider 18 can only perform vertical reciprocating motion along the axis of the first reciprocating screw 5. The other side of the first slider 18 is fixedly connected to the second ring 15 via a second bending rod 19. When the first reciprocating screw 5 rotates, it drives the first slider 18 to perform reciprocating lifting and lowering motion vertically, which in turn drives the second ring 15 to move synchronously up and down as a whole via the second bending rod 19. Ultimately, this enables the camera 13 to simultaneously achieve a composite motion trajectory of circular circumferential movement and vertical reciprocating lifting and lowering, realizing all-round, blind-spot-free image acquisition of the clothing.
[0040] The bottom of the first reciprocating screw 5 is mounted within a pre-set rolling groove 20 in the frame. The rolling groove 20 provides bottom support for the first reciprocating screw 5, further enhancing the stability of its rotation. An annular panel 21 is integrally formed at the bottom of the frame. This panel 21 is used to support the garment to be supported and photographed. The image signal of the garment's shape captured by the camera 13 is transmitted via wires to the processor built into the device. After noise reduction and stitching processing, the image signal is displayed in real-time through an electronically connected video terminal 22. This allows designers to intuitively observe the garment's three-dimensional silhouette, pattern details, and potential structural flaws, providing precise information for garment design and pattern modification.
[0041] The support and adjustment mechanism 23 is used to achieve three-dimensional expansion and self-adaptive shaping of clothing, and can flexibly adapt to the neckline and sleeve support needs of different sizes and styles of clothing. Its main components include driven wheel 24, conveyor belt 25, second reciprocating screw 26, rotating shaft 27, turntable 28, second slider 29, first swing rod 30, fixed plate 31, strip groove 32, fixed ring 33, third bending rod 34, first support frame 35, third slider 36, moving plate 37, second swing rod 38, fixed block 39, second support frame 40 and arc surface 41. The assembly and adjustment logic of each component is as follows:
[0042] Driven wheel 24 is rotatably mounted on the frame via bearings and is on the same horizontal plane as driving wheel 3. Driving wheel 3 and driven wheel 24 are connected by conveyor belt 25, thereby enabling the linkage operation of shooting control mechanism 1 and support adjustment mechanism 23, ensuring that the two mechanisms work synchronously and cooperate in a coordinated manner. The lower end of driven wheel 24 is coaxially fixedly connected to second reciprocating screw 26 and rotating shaft 27 via second coupling. Turntable 28 is coaxially fixedly installed at the bottom of rotating shaft 27. When driven wheel 24 rotates under the drive of driving wheel 3, it can synchronously drive second reciprocating screw 26, rotating shaft 27 and turntable 28 to rotate together, ensuring the stability and synchronicity of linkage transmission.
[0043] The bottom of the turntable 28 has a central protrusion, which is hinged to several second sliders 29 via multiple sets of circumferentially evenly arranged first swing rods 30. The two ends of the first swing rods 30 are rotatably connected to the protrusion of the turntable 28 and the second sliders 29, respectively, forming a crank-slider transmission structure. Multiple strip grooves 32 are evenly formed along the radial direction of the fixed disk 31. The second sliders 29 slide within these strip grooves 32, which provide radial limiting and guiding for the second sliders 29, ensuring that the second sliders 29 can only reciprocate along the radial direction of the fixed disk 31.
[0044] A fixing ring 33 is fitted to the outer limit of the fixing plate 31. The fixing ring 33 is fixedly connected to the side wall of the first ring 7 through the third bending rod 34, thereby achieving overall stable positioning of the fixing plate 31. The bottom of the second slider 29 is connected to an L-shaped first support frame 35 by a detachable connection method using bolts or buckles. Multiple sets of first support frames 35 are arranged circumferentially to form a support area that fits the neckline of the garment, used for three-dimensional support and shaping of the neckline. When the turntable 28 rotates, the first swing rod 30 drives each second slider 29 to slide radially along the strip groove 32, thereby synchronously adjusting the opening range and spacing of multiple sets of first support frames 35. This allows for flexible adaptation to the neckline support needs of different sizes of garments, ensuring a close fit and natural shaping effect.
[0045] A third slider 36 is threaded onto the second reciprocating screw 26. The third slider 36 is hinged to the moving plates 37 on both sides via two sets of symmetrically arranged second swing rods 38. The two ends of the second swing rods 38 are rotatably connected to the third slider 36 and the moving plates 37, respectively. Fixed blocks 39 are symmetrically arranged on the frame. The moving plates 37 are slidably fitted into the transverse grooves of the fixed blocks 39. The fixed blocks 39 are fixed to the side wall of the first ring 7 by plugging in, and are symmetrically arranged about the vertical central axis of the second reciprocating screw 26. The lower end of the moving plate 37 extends downward and is fixedly connected to the second support frame 40. The extended end of the second support frame 40 is formed with an arc-shaped surface 41 that conforms to the contour of the garment sleeve, for providing close-fitting support for the garment sleeve. When the second reciprocating screw 26 rotates, it drives the third slider 36 to move vertically reciprocally along its axis. Then, through the second swing rod 38, it pushes and pulls the moving plates 37 on both sides to slide towards or away from each other, realizing the flexible adjustment of the distance between the two sets of second support frames 40. The arc surface 41 is used to fit and support the sleeves of the garment, simulating the three-dimensional state when the human body is wearing it, ensuring that the overall opening and shaping effect of the garment is natural and fits well.
[0046] Through the combination of mechanisms such as the second reciprocating screw 26, the second slider 29, the first swing rod 30, and the turntable 28, rotational motion can be converted into linear motion or swing motion, achieving precise driving and position control of components such as the first support frame 35, the second support frame 40, and the moving plate 37. Therefore, the device has good controllability and repeatability in garment support and shooting position adjustment. Moreover, the second support frame 40 has a dynamic adjustment effect during the support of garment sleeves, keeping the garment in an unfolded state. Furthermore, the arc-shaped surface 41 on the second support frame 40 reduces frictional damage by increasing the contact area.
[0047] In actual operation, the overall workflow of this device is completed in conjunction with the structures shown in the attached drawings, as follows: First, the garment to be designed and evaluated is placed flat on the annular panel 21, ensuring that the neckline and sleeves of the garment correspond to the positions of the first support frame 35 and the second support frame 40; then, the drive motor 2 is started, which drives the drive wheel 3, the movable shaft 4, and the first reciprocating screw 5 to rotate synchronously. The drive wheel 3 drives the driven wheel 24 to rotate in linkage through the conveyor belt 25, which in turn drives the second reciprocating screw 26, the rotating shaft 27, and the turntable 28 to rotate synchronously.
[0048] Under the action of the support adjustment mechanism 23, when the turntable 28 rotates, it drives each second slider 29 to slide radially along the strip groove 32 of the fixed plate 31 through the first swing rod 30, adjusting the opening range of multiple sets of first support frames 35, and providing precise three-dimensional support and shaping for the neckline of the garment; at the same time, the second reciprocating screw 26 rotates to drive the third slider 36 to move vertically reciprocally along its axis, and drives the moving plates 37 on both sides to slide in opposite directions or away through the second swing rod 38, adjusting the distance between the two sets of second support frames 40, and using the arc surface 41 of the extended end of the second support frame 40 to fit and support the sleeves of the garment, so that the garment as a whole maintains a natural and three-dimensional open state, simulating the pattern effect when the human body wears it.
[0049] While the garment is being supported and shaped, the shooting control mechanism 1 starts operating simultaneously: the first rotating tooth 6 on the movable shaft 4 engages and drives the second rotating tooth 8 to rotate circumferentially along the annular groove 17 of the first ring 7. The second rotating tooth 8 drives the camera 13 to rotate circumferentially around the second ring 15 through the first bending rod 10 and the first telescopic rod 11. At this time, the roller 12 at the movable end of the first telescopic rod 11 rolls along the annular stepped opening 16 of the second ring 15, effectively ensuring the stability of the circular motion of the camera 13. At the same time, the first reciprocating screw 5 rotates and drives the first slider 18 to reciprocate vertically. Through the second bending rod 19, the second ring 15 and the camera 13 move up and down as a whole, so that the camera 13 can realize a composite acquisition action of circumferential rotation and vertical scanning, and comprehensively acquire three-dimensional images of the garment from all angles.
[0050] The multi-angle stereoscopic image signals of the clothing captured by camera 13 are transmitted to the processor built into the device via wires. After the processor performs noise reduction, splicing, and optimization on the image signals, they are projected onto the screen in real time through the video terminal 22 connected by the electronic control. Designers can intuitively view the three-dimensional silhouette, pattern lines, details and textures of the clothing and potential structural defects through the video terminal 22, and quickly complete the clothing design, pattern adjustment and style evaluation work.
[0051] This device adopts a linkage design between the shooting control mechanism 1 and the support adjustment mechanism 23, integrating adaptive three-dimensional support for clothing and automatic shooting from all angles. Its structure is compact and has good linkage, which can flexibly adapt to the shaping and collection needs of clothing of multiple sizes and styles. It effectively solves the problems of poor support adaptability, limited shooting angle and low work efficiency of existing devices, and significantly improves the work efficiency and accuracy of clothing design and pattern optimization.
[0052] The above are merely preferred embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
[0053] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to specific implementations. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
Claims
1. A three-dimensional support device for clothing design, characterized in that, include: The shooting control mechanism (1) includes a drive motor (2) placed on the top of the frame. The bottom of the output shaft of the drive motor (2) extends sequentially to the drive wheel (3), the movable shaft (4) and the first reciprocating screw (5). A first rotating tooth (6) is fixedly connected to the movable shaft (4). A second rotating tooth (8) is rotatably connected to the outer wall of the first rotating tooth (6) on the first ring (7). Both sides of the outer wall of the first ring (7) are fixedly connected to the frame by U-shaped rods (9). The bottom ends of the second rotating tooth (8) are connected to the first telescopic rod (11) by the first bending rod (10). The movable end of the first telescopic rod (11) is equipped with a roller (12), and the bottom of the movable end of the first telescopic rod (11) is equipped with a camera (13) that is compatible with it. The outer wall of the first ring (7) is connected to the second ring (15) by the second telescopic rod (14), and the side wall edge of the second ring (15) is provided with an annular stepped opening (16) that is connected to the roller (12).
2. The three-dimensional support device for clothing design according to claim 1, characterized in that, The second ring (15) is placed directly below the first ring (7) and the two are parallel to each other. The outer wall of the first ring (7) has an inwardly recessed annular groove (17) that is connected to the second rotating tooth (8). The first reciprocating screw (5) has a first slider (18) that is screwed on it. One end of the first slider (18) is slidably connected to the limiting groove in the height direction of the frame, and the other end is equipped with the second ring (15) through the second bending rod (19).
3. The three-dimensional support device for clothing design according to claim 2, characterized in that, The connection between the first reciprocating screw (5) and the movable shaft (4) and the connection between the movable shaft (4) and the drive wheel (3) are fixedly installed by the first coupling. The outer wall of the roller (12) is rolled on the annular stepped opening (16), and the bottom of the first reciprocating screw (5) is rotatably supported on the rolling groove (20) in the frame. The bottom of the frame is integrally formed with a panel (21).
4. A three-dimensional support device for clothing design according to claim 3, characterized in that, The panel (21) is arranged in a ring shape. The camera (13) is used to transmit the image signal of the clothing on the panel (21) to the processor. The processor is used to receive the image signal and output the control signal. The processor is electrically connected to the video terminal (22) to control the video terminal (22) to display the clothing image.
5. A three-dimensional support device for clothing design according to claim 1, characterized in that, It also includes a support adjustment mechanism (23), which includes a driven wheel (24) that rotates on the frame. The driven wheel (24) and the driving wheel (3) are connected by a conveyor belt (25). The bottom of the driven wheel (24) is connected to a rotating shaft (27) through a second reciprocating screw (26). The connection between the second reciprocating screw (26) and the rotating shaft (27) is fixedly connected by a second coupling. A turntable (28) is fixedly installed at the bottom of the rotating shaft (27).
6. A three-dimensional support device for clothing design according to claim 5, characterized in that, The protrusion at the bottom of the turntable (28) and the second slider (29) distributed in a ring are connected by a first swing rod (30). The second slider (29) is slidably connected to the strip groove (32) on the fixed plate (31). A fixed ring (33) is installed on the outer edge of the fixed plate (31). One end of the fixed ring (33) is fixedly connected to the side wall of the first ring (7) by a third bending rod (34).
7. A three-dimensional support device for clothing design according to claim 6, characterized in that, The first swing rod (30) is rotatably connected to the protrusion and the second slider (29) at both ends. The bottom of the second slider (29) is connected to the first support frame (35) in a detachable manner. The first support frame (35) is L-shaped and the outer walls of the first support frame (35) together form a support area connected to the neckline of the garment.
8. A three-dimensional support device for clothing design according to claim 5, characterized in that, The second reciprocating screw (26) has a third slider (36) that is screwed on. The third slider (36) and the moving plates (37) at both ends are connected by a second swing rod (38). The moving plates (37) are slidably connected in the groove in the fixed block (39). The bottom of the moving plates (37) passes through the groove and extends to the second support frame (40). The extended end on the outer wall of the second support frame (40) is provided with an arc-shaped surface (41) that is connected to the support of the garment sleeve.
9. A three-dimensional support device for clothing design according to claim 8, characterized in that, The two ends of the second swing rod (38) are rotatably connected to the third slider (36) and the moving plate (37) respectively. One end of the fixed block (39) is installed on the side wall of the first ring (7) by plugging and fixing. The fixed block (39) is symmetrically arranged with respect to the vertical central axis of the second reciprocating screw (26).