A split folding type mannequin for garment design is provided, which is convenient for packing and transportation

By designing a split-type lifting pole device, a hinged folding combination fence, and a split-type support chassis, the problem of high transportation costs caused by the large packaging volume of human models was solved. Modular disassembly and reduction of packaging volume were achieved, reducing transportation and usage costs and enhancing market competitiveness.

CN117582098BActive Publication Date: 2025-11-04袁著勇
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Patent Information

Application Number
CN202311568036.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-22
Publication Date
2025-11-04
Estimated Expiration
2043-11-22

AI Technical Summary

Technical Problem

The current packaging of mannequins for clothing design is bulky, resulting in high transportation costs, and the overall structure cannot be effectively disassembled, affecting market competitiveness.

Method used

The existing lifting chassis system, fixed fence-type iron frame, and cast iron four-legged wheeled chassis are replaced by a split-type lifting pole device, hinged folding combination fence, and split support chassis, so as to achieve modular disassembly and reduce packaging volume.

Benefits of technology

This effectively reduces the packaging volume of the mannequin, lowers transportation and usage costs, and increases user interest and market competitiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a split and folded human body model for garment design, which is convenient for packaging and transportation. The split and folded lifting rod device, the hinge folded combined fence and the split support base effectively replace the lifting base system, the fixed fence type iron frame and the cast iron four-wheel base used in the existing human body model. The integrated lifting base system is improved into a split type. When being packaged, the split and folded lifting rod device can be split into multiple components, so that the length of the split and folded lifting rod device is reduced. The hinge folded vertical rod of the hinge folded combined fence can be folded, so that the volume can be reduced as much as possible when being packaged. The split and folded lifting rod device is connected with the intermediate connecting piece. The split design of the intermediate connecting piece and the support foot frame realizes the reduction of the horizontal area of the original base. When being packaged, the split support base is split into multiple small components, so that the packaging length and the packaging volume are reduced as a whole, the packaging and transportation are facilitated, and the packaging and transportation cost is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of mannequins for fashion design, and in particular to a structure-splitting and folding mannequin for fashion design which can reduce the packaging volume under the condition that the overall size of the mannequin is unchanged, so as to facilitate packaging and transportation. BACKGROUND

[0002] No matter whether it is a mannequin for fashion design on sale in the international market or a mannequin for fashion design on sale in the domestic market, the volume thereof is very large, and the overall structure thereof is basically designed in one piece, and the overall structure cannot be split or can only be split in large pieces, so that the packaging volume of the mannequin is too large after being packaged during the selling process, and the mannequin is very bulky and difficult to transport. Especially when the mannequin is sold internationally, the logistics cost, packaging cost and storage cost are very large, which directly causes the competitiveness of domestic factories to decline.

[0003] The mannequin product generally has a half body or a whole body, and the size of the mannequin product is very large at present. The half-body mannequin does not have a leg, but has a fixed-rail type iron frame (the cross-sectional shape of the iron frame is similar to a waist-shaped hole) with a height of about 37 cm, a straight rod type foot pedal lifting rod and a chassis. The fixed-rail type iron frame, the lifting rod and the chassis are designed in one piece, and the chassis adopts a cast iron four-legged wheel chassis. The whole-body mannequin is composed of an upper body and a lower body, and the packaging volume is larger and the transportation cost is higher.

[0004] The current transportation mode of the production enterprises of the mannequin product at home and abroad mainly adopts a split packaging mode, that is, the mannequin product and the lifting chassis system thereon are split and then packaged and transported separately, which causes the market price of the mannequin product to be high and reduces the interest of users in using the mannequin product. Therefore, it is urgent to propose a new technical solution to solve the problems in the prior art. SUMMARY

[0005] The present application provides a split and folding mannequin for fashion design which is convenient for packaging and transportation, so as to solve the problem that the packaging volume of the mannequin is large in the prior art, resulting in high packaging and transportation costs.

[0006] In order to achieve the above-mentioned purpose, the present application provides the following technical solution:

[0007] The present application provides a split and folding mannequin for fashion design which is convenient for packaging and transportation, comprising a split lifting rod device, the split lifting rod device comprising an outer tube assembly and an inner tube assembly arranged in the outer tube assembly, the outer tube assembly comprising at least two outer tube segments which are detachably connected, a bolt fixing pad for installing a neck tube being arranged at the end of the outer tube segment located at one end of the outer tube assembly, a fixing sleeve being arranged on the outer tube segment located at the other end of the outer tube assembly, a screw hole being formed in the fixing sleeve, and a through hole corresponding to the screw hole being formed in the outer tube segment;

[0008] The inner tube assembly comprises at least two detachably connected inner tube segments, a top rod assembly is arranged in the inner tube assembly, a first guide gasket is arranged at one end of the inner tube assembly, the first guide gasket is close to the neck pipe, a third guide gasket is arranged at the other end of the inner tube assembly, a threaded connecting sleeve is arranged at the connecting position of the two adjacent inner tube segments, the threaded connecting sleeve is arranged inside the inner tube segment and a spring is arranged on the threaded connecting sleeve; the inner tube segment close to the neck pipe comprises two spliced sub-segments, the spliced position of the two spliced sub-segments is a slope-shaped interface; the top rod assembly comprises a first top rod and a second top rod, one end of the first top rod is connected with the first guide gasket, the other end of the first top rod penetrates through the threaded connecting sleeve and extends into the spring, the spring abuts against the second guide gasket, the second guide gasket is connected with one end of the second top rod, the other end of the second top rod penetrates through the third guide gasket and extends out of the inner tube assembly and is connected with a foot pedal assembly.

[0009] Further in the above technical solution, the two adjacent outer tube segments are threadedly connected or correspondingly inserted.

[0010] Further, a screw is fitted and arranged in the threaded hole of the fixing sleeve, and the screw abuts against the outer wall of the inner tube segment.

[0011] Further, the slope of the slope-shaped interface of the two spliced sub-segments is 30°.

[0012] Further, the connecting ends of the two adjacent inner tube segments are respectively provided with internal threads, the threaded connecting sleeve is provided with external threads matched with the internal threads, and the two inner tube segments are detachably connected through the threaded connecting sleeve.

[0013] Further, one end of the second top rod extending out of the inner tube assembly is connected with a base, a rotating shaft for mounting the foot pedal assembly is arranged on the base, one end of the foot pedal assembly is connected with the second top rod, and a anti-disengagement gasket is arranged at the connecting position.

[0014] When the foot pedal assembly is in an initial state, the two spliced sub-segments abut against each other and slide in a staggered manner along the slope-shaped interface, so that the center axes of the two spliced sub-segments are staggered, the outer walls of the two spliced sub-segments abut against the inner wall of the outer tube assembly, and the inner tube assembly and the outer tube assembly are locked; when the foot pedal assembly is stepped on, the spring lifts the first top rod, so that the two spliced sub-segments are separated, the center axes of the two spliced sub-segments are coincided, the outer tube assembly and the inner tube assembly are unlocked, and the outer tube assembly can be driven to move up and down along the inner tube assembly; when the foot pedal assembly is released, the inner tube assembly and the outer tube assembly are locked, and the lifting adjustment is completed.

[0015] The outer tube assembly is provided with a neck fixing disc at one end of the bolt fixing washer, the neck fixing disc is connected with the model outer shell body, the model outer shell body is covered outside the split type lifting rod device, the center of the neck fixing disc forms an installation hole allowing the neck pipe to pass through, the outer wall of the neck pipe forms an external thread, the external thread is adaptively connected with a top screw, the top screw is used to connect and fix the outer tube assembly with the model outer shell body, when the outer tube assembly is adjusted and lifted, the model outer shell body is lifted with the outer tube assembly.

[0016] Further, the top screw includes a spherical connecting part arranged at the bottom and a conical connecting part arranged at the top end of the spherical connecting part, the top end of the conical connecting part forms a hemispherical shape, the spherical connecting part and the conical connecting part form a gourd-shaped structure, and the outer wall of the conical connecting part is uniformly provided with protrusions; the spherical connecting part and the conical connecting part form internal threads.

[0017] Further, it also includes a hinge folding type combined fence, which includes a plurality of ring-shaped rings and a plurality of hinge folding type vertical rods.

[0018] Further, the ring-shaped rings are horizontally arranged, and a plurality of ring-shaped rings are arranged in an upper and lower interval.

[0019] Further, the hinge folding type vertical rod is vertically arranged or vertically inclined, and a plurality of hooks for installing the ring-shaped rings are arranged at intervals on the hinge folding type vertical rod, and the number of hooks on one hinge folding type vertical rod is the same as the number of ring-shaped rings.

[0020] Further, the hinge folding type vertical rod is composed of a plurality of short columns hingedly connected to each other, the lengths of the plurality of short columns are the same or different, a mounting and fixing part for connecting with the model is formed on the short column at the top end of the hinge folding type vertical rod, and a hook for installing the ring-shaped ring is formed on the short column at the tail end of the hinge folding type vertical rod.

[0021] Further, the mounting and fixing part includes a fixing seat connected to the end of the short column, the fixing seat is provided with a threaded connection hole, and the fixing seat is fastened and connected with the model by a fastening screw.

[0022] Further, any two adjacent short columns are hingedly connected, one end of one short column forms a hinge joint, the other end of the other short column forms a hinge seat adaptively connected with the hinge joint, a mounting groove for mounting the hinge joint is formed on the hinge seat, and a mounting hole for mounting a rotating shaft is formed on the groove wall of the mounting groove; a hole for allowing the rotating shaft to pass through is formed on the hinge joint, and when the hinge joint is mounted in the mounting groove, the hole on the hinge joint and the mounting hole on the mounting groove are correspondingly communicated to form a channel for mounting the rotating shaft.

[0023] Further, any two adjacent short columns can rotate along the rotating shaft, so that a 90°-180° included angle is formed between the two adjacent short columns.

[0024] Further, when the 90° angle is formed between any two adjacent short columns, the short columns are arranged in a continuous arch shape.

[0025] Further, the split support base includes an intermediate connecting piece connected to the bottom of the split lifting rod device and a plurality of support legs detachably connected to the intermediate connecting piece.

[0026] Further, the intermediate connecting piece includes a center cylinder forming a plug-in installation position of the split lifting rod device, and four connecting supports are uniformly arranged on the outer wall of the center cylinder, and one support leg is installed on each connecting support.

[0027] Further, the end of the connecting support forms an installation clamping groove, which is a groove recessed inward from one side surface of the connecting support, and a first connecting hole penetrating through the connecting support is formed in the groove bottom of the installation clamping groove.

[0028] Further, one end of the support leg forms an installation clamping convex which is adapted to be overlapped with the installation clamping groove, and a second connecting hole corresponding to the first connecting hole is formed in the installation clamping convex, and when the installation clamping groove and the installation clamping convex are adapted to be overlapped, the first connecting hole and the second connecting hole are correspondingly communicated to form an installation channel for installing a fastening screw.

[0029] Further, the other end of the support leg is provided with a supporting leg which is a block structure and has a horizontal bottom surface.

[0030] Compared with the prior art, the present application has at least the following beneficial effects:

[0031] 1. Based on the further analysis and research on the problems of the prior art, it is realized that the structure size of the existing mannequin is large, even if the mannequin product and the lifting base system thereon are split for packaging and transportation, the overall volume is still large, resulting in high packaging and transportation cost. Therefore, the split lifting rod device is provided to replace the lifting base system of the existing mannequin, and the integrated lifting base system is improved into a split type, so that the split lifting rod device can be split into multiple components when packaging, the length of the split lifting rod device is reduced, and then the packaging length and the packaging volume are reduced, which is convenient for packaging and transportation. The packaging length of the existing mannequin after packaging is about 170 cm, while the packaging length of the mannequin provided with the split lifting rod device of the present application after packaging is about 95-105 cm, and the packaging width and height remain unchanged. Therefore, the split and folded mannequin for clothing design provided by the present application greatly reduces the product packaging size, reduces the transportation cost, also reduces the use cost of the product, improves the use interest of the user, and is beneficial to expanding the market share of the product.

[0032] 2、The present application also improves the existing fixed fence type iron frame to a hinged folding type combined fence, which is a detachable folding structure, composed of a plurality of annular rings and a plurality of hinged folding vertical rods, the plurality of hinged folding vertical rods are vertically and spacedly arranged, and a hook for mounting the annular ring is formed thereon, a plurality of annular rings are horizontally and spacedly arranged, the general shape of the hinged folding type combined fence in the present application is basically consistent with the general shape of the existing fixed fence type iron frame, but the hinged folding vertical rods of the hinged folding type combined fence in the present application can be folded, which can reduce the volume as much as possible during packaging, thereby effectively reducing the overall packaging volume and reducing transportation costs.

[0033] 3、The present application also improves the existing cast iron four-wheel chassis to a split support chassis, which includes a middle connecting piece and a plurality of support legs detachably connected to the middle connecting piece, and is connected to the split lifting rod device through the middle connecting piece, and the split design of the middle connecting piece and the support legs realizes the reduction of the horizontal area of the original chassis, and the split support chassis is split into a plurality of small parts during packaging, thereby reducing the overall packaging volume.

[0034] 4、The split folding type mannequin for clothing design provided by the present application uses a split lifting rod device, a hinged folding type combined fence and a split support chassis, successfully replacing the lifting chassis system, the fixed fence type iron frame and the cast iron four-wheel chassis used in the existing mannequin, and the functional modules can be further split during packaging, thereby effectively reducing the packaging volume and transportation costs, and the split design structure in the present application is simple, and the assembly and disassembly are relatively convenient; further, the split design can be assembled and spliced according to the use requirements, the length of each part is freely set as required, in addition, the split design can replace the damaged parts, thereby prolonging the service life of the model and reducing the replacement cost. BRIEF DESCRIPTION OF DRAWINGS

[0035] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creating any creative labor. It should be understood that the specific shape, structure shown in the drawings should not be regarded as a limitation condition for realizing the present application; for example, those skilled in the art can make routine adjustments or further optimization to the increase / decrease / assignment of some units (parts), specific shape, positional relationship, connection mode, size ratio relationship, etc. based on the technical concepts and exemplary drawings disclosed in the present application.

[0036] Figure 1 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0037] Figure 2 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 1 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0038] Figure 3 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 1 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0039] Figure 4 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 3 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0040] Figure 5 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 1 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0041] Figure 6 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 5 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0042] Figure 7 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 1 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0043] Figure 8 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 1 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0044] Figure 9 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 1 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0045] Figure 10 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0046] Figure 11 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0047] Figure 12 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0048] Figure 13 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Figure 12 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0049] Figure 14 Structure diagram of a hinge folding vertical pole according to an embodiment of the present application; Structure diagram of a hinge folding vertical pole according to an embodiment of the present application;

[0050] Figure 15 is Figure 14 a partial enlarged view of A in the middle;

[0051] Figure 16 is Figure 14 a partial enlarged view of B in the middle;

[0052] Figure 17 is Figure 14 a partial enlarged view of C in the middle;

[0053] Figure 18 is a structural schematic view of the combined installation state of the model shell and the split lifting rod device in an embodiment;

[0054] Figure 19 is a structural schematic view of the top screw in an embodiment;

[0055] Figure 20 is a structural schematic view of the neck fixing disc in an embodiment.

[0056] Explanation of reference signs:

[0057] 100, split lifting rod device; 101, upper outer tube; 102, lower outer tube; 103, bolt fixing washer; 104, fixing sleeve; 105, screw hole; 106, upper inner tube; 107, lower inner tube; 108, first guide washer; 109, threaded connection sleeve; 110, spring; 111, second guide washer; 112, third guide washer; 113, first top rod; 114, second top rod; 115, anti-dropping washer; 116, neck tube;

[0058] 200, hinged folding stand; 201, clamping hook; 202, short column; 203, fixing seat; 204, hinge joint; 205, hinge seat;

[0059] 300, split support base; 301, intermediate connecting piece; 302, connecting support; 303, support foot; 304, support leg;

[0060] 400, fixed fence type iron frame;

[0061] 500, model shell;

[0062] 600, top screw; 601, spherical connection part; 602, conical connection part;

[0063] 700, neck fixing disc. DETAILED DESCRIPTION

[0064] The present application will be further described in detail below with reference to the accompanying drawings.

[0065] In the description of the present application: unless otherwise specified, the meaning of "a plurality of" is two or more. The terms "first", "second", "third" and the like in the present application are intended to distinguish the objects referred to, and do not have a special meaning in the technical connotation aspect (for example, it should not be understood as emphasizing importance or order, etc.). The expressions "include", "contain", "have" and the like also mean "not limited to" (certain units, components, materials, steps, etc.).

[0066] The terms such as "upper", "lower", "left", "right", "intermediate" and the like referred to in the present application are generally used for easy visual understanding with reference to the drawings, and are not an absolute limitation on the positional relationship in the actual product. Changes in these relative positional relationships are also considered within the scope of the present application without departing from the technical concept disclosed in the present application.

[0067] In order to solve the problems existing in the prior art, the present application provides a split and folded human body model for garment design which is convenient for packaging and transportation. In the present application, the split and folded human body model effectively replaces the lifting base system, the fixed fence type iron frame and the cast iron four-wheel base used in the existing human body model by using a split lifting rod device, a hinge folding type combined fence and a split support base. The overall split structure design is beneficial for packaging and transportation and can effectively reduce the packaging volume.

[0068] Embodiment one

[0069] The embodiment provides a split and folded human body model for garment design which is convenient for packaging and transportation. The human body model uses a split lifting rod device 100 to realize center support adjustment. The split lifting rod device 100 is installed on the model shell. The bottom of the split lifting rod device 100 is connected with the base, and the top of the split lifting rod device 100 is connected with the model neck structure. The split lifting rod device 100 can adjust the height of the model. The structure of the split lifting rod device 100 in the present application will be described in detail below, see Figures 14 to 17 :

[0070] The split lifting rod device 100 in the present application mainly includes an outer pipe assembly and an inner pipe assembly arranged in the outer pipe assembly, wherein a top rod assembly is further arranged in the inner pipe assembly.

[0071] In the embodiment, the outer pipe assembly includes two detachably connected outer pipe segments. Of course, in other embodiments, the outer pipe assembly can include three, four or even more detachably connected outer pipe segments. It is conceivable that the more the number of segments, the more complicated the installation and disassembly. Therefore, the outer pipe assembly in the present application is preferably composed of two detachably connected outer pipe segments, see Figure 15 and Figure 16The two outer tube segments can be respectively denoted as upper outer tube 101 and lower outer tube 102. One end of the upper outer tube 101 is reserved for mounting a neck tube 116, and the lower outer tube 102 is close to the base.

[0072] In the embodiment, the end of the upper outer tube 101 is provided with a bolt fixing gasket 103 for mounting the neck tube 116, and a fixing sleeve 104 is arranged on the lower outer tube 102. The fixing sleeve 104 is provided with a threaded hole 105, and a through hole corresponding to the threaded hole 105 is arranged on the outer tube segment. A screw is fitted and mounted in the threaded hole 105 of the fixing sleeve 104, and the screw abuts against the outer wall of the inner tube segment. The split type lifting rod device can be connected and fixed with the base through the fixing sleeve.

[0073] In the embodiment, the connection between the upper outer tube 101 and the lower outer tube 102 is threaded or correspondingly inserted. When the upper outer tube 101 and the lower outer tube 102 are threaded, an external thread can be arranged at the end of the upper outer tube 101, and a corresponding internal thread is arranged at the end of the lower outer tube 102.

[0074] In the embodiment, the inner tube assembly includes two detachably connected inner tube segments. Of course, in other embodiments, the inner tube assembly can include three, four or even more detachably connected inner tube segments. It is conceivable that the more the number of segments, the more complicated the installation and disassembly. Therefore, the inner tube assembly preferably consists of two detachably connected inner tube segments, which can be respectively denoted as upper inner tube 106 and lower inner tube 107. The upper inner tube 106 is close to the neck tube 116, and the lower inner tube 107 is close to the base.

[0075] In the embodiment, the end of the upper inner tube 106 close to the neck tube 116 is provided with a first guide gasket 108, and the end of the lower inner tube 107 close to the base is provided with a third guide gasket 112.

[0076] A threaded connection sleeve 109 is arranged at the connection between the upper inner tube 106 and the lower inner tube 107. The threaded connection sleeve 109 is located inside the inner tube segment and has a spring 110 mounted thereon. The connection ends of the adjacent two inner tube segments are respectively provided with internal threads, and the threaded connection sleeve 109 is provided with external threads matched with the internal threads. The two inner tube segments are detachably connected through the threaded connection sleeve 109.

[0077] In the embodiment, referring to Figure 15 The upper inner tube 106 consists of two spliced sub-tube segments. The spliced part of the two spliced sub-tube segments is a slope-shaped interface, and the slope of the slope-shaped interface is preferably 30°. Of course, it can also be 45° or 60°, etc. When specifically manufactured, a hollow tube can be cut into two sub-tube segments with matching cross sections and slope-shaped interfaces.

[0078] In this embodiment, the ejector rod assembly includes two ejector rods, denoted as a first ejector rod 113 and a second ejector rod 114. One end of the first ejector rod 113 is connected to the first guide gasket 108, and the other end passes through the threaded connecting sleeve 109 and extends into the spring 110, i.e., the first ejector rod 113 is close to the neck pipe 116. The spring 110 is installed in the threaded connecting sleeve 109 and abuts against the second guide gasket 111 at one end. The second guide gasket 111 is connected to one end of the second ejector rod 114. The other end of the second ejector rod 114 passes through the third guide gasket 112 and extends out of the inner pipe assembly to be connected to the foot pedal assembly. At the same time, the end of the second ejector rod 114 extending out of the inner pipe assembly is adaptively connected to the base. A anti-loosening gasket 115 is arranged at the connection between the second ejector rod 114 and the foot pedal assembly, as shown in Figure 17 .

[0079] In this embodiment, the base is provided with a rotating shaft for installing the foot pedal assembly. One end of the foot pedal assembly extends below the second ejector rod. The end of the second ejector rod passes through the base and is connected to the end of the foot pedal assembly. An anti-loosening gasket is arranged at the connection. When the foot pedal assembly is stepped down, the foot pedal of the foot pedal assembly rotates around the rotating shaft, similar to the action principle of a seesaw. At this time, the end of the foot pedal assembly connected to the second ejector rod 114 rises, and the first ejector rod 113 is lifted by the spring 110.

[0080] When the foot pedal assembly is in the initial state, the two sections of the spliced sub-pipe segments are in close abutment and slide out of position along the slope-shaped interface, so that the center axes of the two sections of the spliced sub-pipe segments are out of position. The outer walls of the two sections of the spliced sub-pipe segments abut against the inner walls of the outer pipe assembly, achieving locking of the inner pipe assembly and the outer pipe assembly. When the foot pedal assembly is stepped down, the spring lifts the first ejector rod, so that the two sections of the spliced sub-pipe segments are separated, and the center axes of the two sections of the spliced sub-pipe segments coincide, achieving unlocking of the outer pipe assembly and the inner pipe assembly. The outer pipe assembly can be driven to move up and down along the inner pipe assembly. When the foot pedal assembly is released, the inner pipe assembly and the outer pipe assembly are locked, and the lifting adjustment is completed.

[0081] In one embodiment, the outer pipe assembly of the split lifting rod device is provided with a neck fixing disc 700 at one end of which a bolt fixing gasket is installed. The neck fixing disc 700 is connected to the model outer shell 500, as shown in Figure 18 The model outer shell 500 covers the outside of the split lifting rod device. The neck fixing disc 700 has a mounting hole in the center to allow the neck pipe to pass through. An outer thread is formed on the outer wall of the neck pipe. A top screw 600 is adaptively connected to the outer thread. The top screw 600 is used to connect and fix the outer pipe assembly with the model outer shell. When the outer pipe assembly is adjusted to lift, the model outer shell lifts with the outer pipe assembly.

[0082] Referring to Figure 19The top screw 600 comprises a spherical connecting part 601 arranged at the bottom and a conical connecting part 602 arranged at the top end of the spherical connecting part 601, the top end of the conical connecting part 602 is formed in a hemispherical shape, the spherical connecting part 601 and the conical connecting part 602 form a gourd-shaped structure, and the outer wall of the conical connecting part 602 is uniformly provided with protrusions; the spherical connecting part and the conical connecting part are formed with internal threads matched with external threads on the neck pipe. Figure 19 The conical connecting part 602 of the top screw 600 is provided with a plurality of protrusions on the outer wall in the longitudinal direction, the conical connecting part is similar to a flower bud, the overall structure is beautiful, the external protrusions also increase the friction, and the screwing adjustment is facilitated.

[0083] Therefore, the application improves the integrated lifting chassis system into a split type by arranging the split type lifting rod device 100, replaces the lifting chassis system of the existing mannequin, reduces the length of the split type lifting rod device 100, and then reduces the packaging length and packaging volume, thereby facilitating packaging and transportation; the packaging length of the existing mannequin is about 170 cm, and the packaging length of the mannequin provided with the split type lifting rod device 100 of the application is about 95-105 cm, and the packaging width and height are unchanged, therefore, the split and folded mannequin for clothing design provided by the application greatly reduces the product packaging size, reduces the transportation cost, and also reduces the use cost of the product.

[0084] Embodiment two

[0085] This embodiment is based on embodiment one and provides another split and folded mannequin for clothing design which is convenient for packaging and transportation, and contains all the contents of embodiment one.

[0086] This embodiment is based on the mannequin provided in embodiment one and adds a hinge folding type combined fence, the hinge folding type combined fence is used as a model leg, and also plays an auxiliary role in size measurement.

[0087] The connection state of the fixed fence type iron frame 400 in the prior art with the mannequin can be seen from Figure 11 The hinge folding type combined fence in the application replaces the traditional fixed fence type iron frame 400, and is also connected to the bottom of the middle section of the thigh of the mannequin, replaces the lower half of the thigh, the knee and the lower leg, and thus can be used as a model leg. The structure of the hinge folding type combined fence in the application will be described in detail below.

[0088] The hinge folding type combined fence in the application comprises a plurality of ring-shaped rings and a plurality of hinge folding type vertical rods 200, each ring-shaped ring is horizontally arranged, the plurality of ring-shaped rings are arranged in an interval from top to bottom, and the ring-shaped rings are connected and positioned by the hinge folding type vertical rods 200 arranged vertically or vertically and obliquely. The hinge folding type combined fence in the application is in a hollow cylinder structure with a cross section in a shape of a waist hole or a runway after installation, the hinge folding type vertical rods 200 and the ring-shaped rings form a net structure, which can be referred to Figure 11 .

[0089] Referring to Figure 1 and Figure 2 , the hinge folding type vertical rod 200 is provided with a plurality of hooks 201 for installing the ring-shaped rings at intervals, the number of the hooks 201 on one hinge folding type vertical rod 200 is the same as that of the ring-shaped rings, that is, a plurality of hooks 201 on one hinge folding type vertical rod 200 are arranged at intervals, one ring-shaped ring is clamped on each hook 201, and the ring-shaped ring and the hook 201 are convenient to install and dismount.

[0090] One hinge folding type vertical rod 200 is composed of a plurality of short columns 202 hingedly connected with each other, and the lengths of the plurality of short columns 202 can be the same or different.

[0091] Referring to Figure 3 , the short column 202 at the top end of the hinge folding type vertical rod 200 forms a mounting and fixing part for connecting with a model, and the short column 202 at the tail end of the hinge folding type vertical rod 200 forms the hook 201 for installing the ring-shaped ring.

[0092] In the embodiment, the mounting and fixing part on the short column 202 comprises a fixing seat 203 connected to the end of the short column 202, the fixing seat 203 is provided with a threaded connection hole, and the fixing seat 203 is fastened and connected with the model by a fastening screw. Of course, using the fastening screw and the threaded connection hole is only a preferred connection mode. In other embodiments, the hinge folding type vertical rod 200 can be detachably connected with the model by other modes such as insertion and clamping.

[0093] In the embodiment, any two adjacent short columns 202 of the hinge folding type vertical pole 200 are hingedly connected, one end of one short column 202 forms a hinge joint 204, the other end of the other short column 202 forms a hinge seat 205 matched with the hinge joint 204, an installation slot for installing the hinge joint 204 is formed on the hinge seat 205, and an installation hole for installing a rotating shaft is formed on the slot wall of the installation slot; a hole is formed on the hinge joint 204 to allow the rotating shaft to pass through, and when the hinge joint 204 is installed in the installation slot, the hole on the hinge joint 204 and the installation hole on the installation slot are in communication to form a channel for installing the rotating shaft. Any two adjacent short columns 202 can rotate along the rotating shaft, so that the included angle between the two adjacent short columns 202 is 90°-180°.

[0094] In the embodiment, referring to Figure 6 , an L-shaped opening is formed on the installation slot opened at the end of the short column 202, the L-shaped opening is formed by the continuous opening formed on the end of the short column 202 and the side wall close to the end of the short column 202, and the L-shaped opening can ensure that the included angle between the two adjacent short columns 202 is 90°-180°, and the limit is formed at the two limit included angles of 90° and 180°.

[0095] In the embodiment, the hinge joint 204 is arranged at both ends of one short column 202, the hinge seat 205 is arranged at both ends of the short column 202 connected thereto, and the directions of the L-shaped openings formed on the two hinge seats 205 on one short column 202 are opposite. Therefore, when the included angle between any two adjacent short columns 202 is 90°, the several short columns 202 are arranged in a continuous arch shape.

[0096] Therefore, the hinge folding type combined fence used in the application is a detachable and foldable structure, which is composed of several ring-shaped rings and several hinge folding type vertical poles 200, the several hinge folding type vertical poles 200 are vertically and spaced apart, and a clamping hook 201 for installing the ring-shaped ring is formed thereon, the plurality of ring-shaped rings are arranged horizontally and spaced apart, and the general shape of the hinge folding type combined fence in the application is basically consistent with the general shape of the existing fixed fence type iron frame 400, but the hinge folding type vertical pole 200 of the hinge folding type combined fence in the application can be folded, and the volume can be reduced as much as possible during packaging, thereby effectively reducing the overall packaging volume and transportation cost.

[0097] The disassembly and installation process of the hinge folding type combined fence in the application is relatively convenient, when storing, the ring-shaped ring can be taken out of the clamping hook 201 by slightly applying force, then the fastening screw of each fixed hinge folding type vertical pole 200 is unscrewed by a screwdriver, and then each hinge folding type vertical pole 200 is folded, and the installation is opposite to the above disassembly operation, therefore, the overall disassembly and installation is simple, the fence is designed in a split type through a simple structure, and the packaging volume and transportation cost are reduced.

[0098] Embodiment Three

[0099] The embodiment is based on embodiment two and provides another kind of split folding type mannequin for garment design which is convenient for packaging and transportation. The embodiment contains all the contents of embodiment two.

[0100] The embodiment is based on the mannequin provided in embodiment two and adds a split type supporting base 300 which replaces the traditional cast iron four-legged wheel base. The structure of the split type supporting base 300 in the application will be described in detail as follows:

[0101] Referring to Figure 12 , the split type supporting base 300 in the application includes an intermediate connecting piece 301 connected to the bottom of the split type lifting rod device 100 and a plurality of supporting foot stands 303 detachably connected to the intermediate connecting piece 301.

[0102] In the embodiment, referring to Figure 13 , the intermediate connecting piece 301 mainly includes a center cylinder which forms the plug-in mounting position of the split type lifting rod device 100. A plurality of connecting supports 302 are uniformly arranged on the outer wall of the center cylinder, and one supporting foot stand 303 is installed on each connecting support 302.

[0103] The embodiment describes that four connecting supports 302 are uniformly arranged on the outer wall of the center cylinder, but in other embodiments, three, five, six or other numbers of connecting supports 302 can also be arranged.

[0104] In the embodiment, the end of the connecting support 302 away from the center cylinder forms a mounting clamping groove which is a surface groove recessed inward from one side surface of the connecting support 302. A first connecting hole penetrating through the connecting support 302 is formed in the groove bottom of the mounting clamping groove.

[0105] In the embodiment, one end of the supporting foot stand 303 forms a mounting clamping convex which is adapted to lap with the mounting clamping groove. A second connecting hole corresponding to the first connecting hole is formed on the mounting clamping convex. When the mounting clamping groove and the mounting clamping convex are adapted to lap, the first connecting hole and the second connecting hole are correspondingly connected to form an installation channel for installing a fastening screw, and the detachable connection between the intermediate connecting piece 301 and the supporting foot stand 303 can be realized through the fastening screw.

[0106] In another embodiment, a connector is arranged on the end of the connecting support 302 of the intermediate connecting piece 301, and one end of the supporting foot stand 303 is adapted to plug in the connector.

[0107] In another embodiment, a threaded mounting hole can also be provided on the connecting support 302, and an externally threaded connecting column is provided on one end of the support foot 303, and then the connecting support 302 and the support foot 303 are threadedly connected.

[0108] In addition to the above-mentioned several connection modes, the connecting support 302 and the support foot 303 in the present application can also be detachably connected in other ways, which will not be listed one by one.

[0109] Since the support feet 303 and the connecting supports 302 in the present application are detachably connected, when the user places the uneven ground, the installation angle of the corresponding support feet 303 and the connecting supports 302 can be manually adjusted, so that the support feet 303 can adapt to the uneven ground and ensure the balance of the model angle.

[0110] In the present embodiment, in order to further ensure the stability of the split support base 300, a foot 304 can also be provided on the end of the support foot 303 away from the connecting support 302, which is a block structure and can be hollow inside, but the foot 304 should have a horizontal bottom surface. When the combined split support base 300 is placed on the ground, the split support base 300 is stably supported by the plurality of support feet 303 and the feet 304 thereon.

[0111] Therefore, the split support base in the present application is connected to the split lifting rod device through the intermediate connecting piece, and the split design of the intermediate connecting piece and the support foot realizes the reduction of the horizontal area of the original base. When packaging, the split support base is split into multiple small parts, and the overall packaging volume is reduced.

[0112] In summary, the human model for clothing design provided by the present application has a hinged folding combined fence (which can be understood as a foldable leg stand), a detachable foot lifting rod, and a split support base. Through the folding and split design of the three modules, the overall packaging volume is reduced, the cost of packaging, transportation, and storage is reduced, and the product competitiveness is improved.

[0113] The present application uses a split lifting rod device to replace the previous straight rod lifting rod, uses a hinged folding combined fence to replace a fixed fence type iron frame, and uses a split support base to replace a fixed four-foot base. Such structural improvements greatly shorten the packaging size when packaging, and the user can easily install it when using it without affecting the use effect. The overall appearance also does not change significantly, which does not cause the user to misjudge visually. Moreover, the split support base in the present application can allow the user to adjust the product angle balance according to the concave-convex condition of the ground.

[0114] In summary, the present application aims at the current problems of the mannequin product, adopts a new structure design to effectively split the appearance of the product accessories and the lifting chassis system, greatly reduces the original packaging volume, the total packaging length of the product is reduced from 170cm to 95-105cm, the width and height remain unchanged, greatly reduces the product packaging size, reduces the use cost of the product, improves the use interest of the user, and is beneficial to expand the market share of the product.

[0115] The technical features of the above embodiments can be combined in any manner (as long as the combination of the technical features does not contradict), and to make the description concise, all possible combinations of the technical features in the above embodiments are not described; the embodiments not explicitly written should also be considered as the scope of the present disclosure.

[0116] The present application is described in detail above by general description and specific embodiments. It should be understood that, based on the technical concept of the present application, some conventional adjustments or further innovations can be made to these specific embodiments; as long as the technical concept of the present application is not deviated, the technical solutions obtained by these conventional adjustments or further innovations also fall within the protection scope of the claims of the present application.

Claims

1. A split and foldable mannequin for garment design, which is convenient for packing and transportation, characterized in that, The application relates to a split lifting rod device, which comprises an outer tube assembly and an inner tube assembly arranged in the outer tube assembly, the outer tube assembly comprises at least two detachably connected outer tube segments, the end of the outer tube segment at one end of the outer tube assembly is provided with a bolted pad for mounting a neck tube, a fixing sleeve is arranged on the outer tube segment at the other end of the outer tube assembly, and screw holes are formed in the fixing sleeve, and through holes corresponding to the screw holes are formed in the outer tube segment; The inner tube assembly comprises at least two detachably connected inner tube segments, a top rod assembly is arranged in the inner tube assembly, a first guide pad is arranged at one end of the inner tube assembly, the first guide pad is close to the neck tube, a third guide pad is arranged at the other end of the inner tube assembly, a threaded connecting sleeve is arranged at the connecting position of the two adjacent inner tube segments, and a spring is arranged on the threaded connecting sleeve; the inner tube segment close to the neck tube comprises two spliced sub-segments, and the spliced position of the two spliced sub-segments is a slope-shaped interface; the top rod assembly comprises a first top rod and a second top rod, one end of the first top rod is connected with the first guide pad, the other end of the first top rod penetrates through the threaded connecting sleeve and extends into the spring, the spring abuts against a second guide pad, one end of the second guide pad is connected with the second top rod, and the other end of the second top rod penetrates through the third guide pad and extends out of the inner tube assembly and is connected with a pedal assembly; One end of the second top rod extending out of the inner tube assembly is connected with a base, a rotating shaft for mounting the pedal assembly is arranged on the base, one end of the pedal assembly is connected with the second top rod, and a anti-disengagement pad is arranged at the connecting position; When the pedal assembly is in an initial state, the two spliced sub-segments abut against each other and slide in a staggered mode along the slope-shaped interface, so that the central axes of the two spliced sub-segments are staggered, the outer wall of the two spliced sub-segments abuts against the inner wall of the outer tube assembly, and the inner tube assembly and the outer tube assembly are locked; when the pedal assembly is stepped on, the spring lifts the first top rod, so that the two spliced sub-segments are separated, the central axes of the two spliced sub-segments are coincided, the outer tube assembly and the inner tube assembly are unlocked, the outer tube assembly can be driven to move up and down along the inner tube assembly, and when the pedal assembly is released, the inner tube assembly and the outer tube assembly are locked, and the lifting adjustment is completed.

2. The split-folding mannequin design for easy packing and shipping according to claim 1, wherein, The two adjacent outer tube segments are threadedly connected or correspondingly inserted; A screw is arranged in the screw hole of the fixing sleeve and abuts against the outer wall of the inner tube segment; The slope of the slope-shaped interface of the two spliced sub-segments is 30 degrees; The connecting ends of the two adjacent inner tube segments are respectively provided with inner threads, the threaded connecting sleeve is provided with outer threads matched with the inner threads, and the two inner tube segments are detachably connected through the threaded connecting sleeve.

3. The split-folding mannequin design for easy packing and shipping according to claim 2, wherein, The outer tube assembly is provided with a neck fixing disc at one end of the bolt fixing gasket, the neck fixing disc is connected with the model outer shell body, the model outer shell body is covered outside the split type lifting rod device, the center of the neck fixing disc forms a mounting hole allowing the neck tube to pass through, the outer wall of the neck tube forms external threads, the external threads are adaptively connected with a top screw, the top screw is used to connect and fix the outer tube assembly with the model outer shell body, when the outer tube assembly is adjusted and lifted, the model outer shell body is lifted with the outer tube assembly; The top screw includes a spherical connecting part arranged at the bottom and a conical connecting part arranged at the top end of the spherical connecting part, the top end of the conical connecting part forms a hemispherical shape, the spherical connecting part and the conical connecting part form a gourd-shaped structure, the outer wall of the conical connecting part is uniformly provided with protrusions; the spherical connecting part and the conical connecting part form internal threads.

4. The split-folding mannequin design for easy packing and shipping of claim 1, wherein, It also includes a hinge folding type combined fence, which includes a plurality of ring-shaped rings and a plurality of hinge folding type vertical rods. The ring-shaped rings are horizontally arranged, and a plurality of ring-shaped rings are arranged in an upper and lower interval. The hinge folding type vertical rod is vertically arranged or vertically inclined, and a plurality of hooks for mounting the ring-shaped rings are arranged at intervals on the hinge folding type vertical rod, and the number of hooks on one hinge folding type vertical rod is the same as the number of ring-shaped rings. The hinge folding type vertical rod is composed of a plurality of short columns hingedly connected to each other, and the lengths of the plurality of short columns are the same or different, a mounting and fixing part for connecting with a model is formed on the short column at the top end of the hinge folding type vertical rod, and a hook for mounting the ring-shaped ring is formed on the short column at the tail end of the hinge folding type vertical rod.

5. The knock down foldable mannequin design for packed and shipped convenience as claimed in claim 4 wherein, The mounting and fixing part includes a fixing seat connected to the end of the short column, and the fixing seat is provided with a threaded connection hole, and the fixing seat is fastened and connected with the model by a fastening screw; Any two adjacent short columns are hingedly connected, one end of one short column forms a hinge joint, and the other end of the other short column forms a hinge seat matched with the hinge joint, a mounting groove for mounting the hinge joint is formed on the hinge seat, and a mounting hole for mounting a rotating shaft is formed on the groove wall of the mounting groove; a hole is formed in the hinge joint to allow the rotating shaft to pass through, and when the hinge joint is mounted in the mounting groove, the hole in the hinge joint and the mounting hole in the mounting groove are in communication to form a channel for mounting the rotating shaft.

6. The knock down foldable mannequin design for packed and shipped convenience as claimed in claim 5 wherein, Any two adjacent short columns can rotate along the rotating shaft, so that a 90°-180° included angle is formed between the two adjacent short columns. When the included angle between any two adjacent short columns is 90°, a plurality of short columns are arranged in a continuous arch shape.

7. The split-folding mannequin design for easy packing and shipping of claim 1, wherein, It also includes a split type support base, which includes an intermediate connecting piece connected with the bottom of the split type lifting rod device and a plurality of support foot supports detachably connected with the intermediate connecting piece.

8. The knock down foldable mannequin design for packed shipping as claimed in claim 7, wherein, The intermediate connecting piece includes a center cylinder, the center cylinder forms a plug-in mounting position of the split type lifting rod device, and the outer wall of the center cylinder is uniformly provided with four connecting supports, and one support foot support is mounted on each connecting support.

9. The knock down foldable mannequin design for packed shipping as claimed in claim 8, wherein, The end of the connecting support forms a mounting clamping groove, which is a groove recessed inward from a side surface of the connecting support, and a first connecting hole is formed in the groove bottom and penetrates the connecting support; One end of the supporting foot forms a mounting clamping convex which is adapted to overlap the mounting clamping groove, and a second connecting hole corresponding to the first connecting hole is formed in the mounting clamping convex, so that the first connecting hole and the second connecting hole are in communication to form a mounting channel for mounting a fastening screw when the mounting clamping groove and the mounting clamping convex are overlapped.

10. The knock down foldable mannequin design for packed shipping as claimed in claim 9, wherein, The other end of the supporting foot is provided with a foot, which is a block structure and has a horizontal bottom surface.

Citation Information

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