Auxiliary inspection device for costume design
By designing an auxiliary inspection device for clothing design, and utilizing drive components and airbag expansion support for garment mold components and trouser mold components, the problem of existing devices requiring inflation is solved, enabling more convenient clothing inspection and damage detection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHANGHAI BUSINESS SCHOOL
- Filing Date
- 2023-10-11
- Publication Date
- 2026-04-17
AI Technical Summary
Existing garment inspection devices require garments to be placed on two garment models separately, and then the models are rotated and spliced together by a drive device. Furthermore, garments of different sizes require air intake devices to inflate the models, making the process cumbersome.
A garment design auxiliary inspection device was designed, including an inspection mechanism, a positioning mechanism, and a detection component. The device drives the garment mold component and the trouser mold component to move and splice through the driving component, uses airbags to expand and support the garment, and performs all-round inspection and damage warning through the rotating component and the detection component.
It enables clothing to open without additional inflation equipment, facilitating support and inspection, and reducing the possibility of device misalignment. It can also promptly detect clothing damage and alert the operator.
Smart Images

Figure CN121877879A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of garment inspection technology, and in particular to a garment design auxiliary inspection device. Background Technology
[0002] Clothing design involves conceiving ideas based on the requirements of the design subject, creating renderings and flat designs, and then producing the garments according to the drawings to achieve the design goal. During the clothing design process, in order to better ensure the quality of the designed clothing, clothing designers need auxiliary inspection devices to inspect aspects such as the pattern of the designed clothing. In order to simultaneously inspect the pattern of the upper garment or the pattern of the lower garment, some inspection devices divide the clothing model into two parts, upper and lower, so as to achieve inspection of different combinations.
[0003] Some existing inspection devices require the garment to be placed on two garment models before use. Then, a drive device rotates the garment models and joins them together. However, garments of different sizes are not the same, so an air intake device is needed to inflate the model to make it expand and open the garment, making it easier for the operator to inspect the garment. When using the device, the two garment models need to be joined together before the air intake device is used to inflate them, making the device rather cumbersome to use. Summary of the Invention
[0004] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the invention.
[0005] In view of the problems existing in the prior art, the present invention is proposed.
[0006] Therefore, the technical problem to be solved by the present invention is that some inspection devices require the clothes to be put on two clothing models separately before use, and then the clothing models are rotated and spliced together by a drive device. However, the sizes of clothes of different sizes are not consistent, so it is necessary to inflate the inside of the model by an air intake device to make the model expand and the clothes open, so as to facilitate the operator to inspect the clothes. When the device is used, it is necessary to inflate the two models by an air intake device after the two clothing models are spliced together, so the device is relatively troublesome to use.
[0007] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a garment design auxiliary inspection device, comprising...
[0008] The inspection mechanism includes a base assembly, a rotating assembly, a driving assembly, and a grooved disk. The rotating assembly is disposed inside the base assembly, the grooved disk is disposed inside the base assembly, the driving assembly is inserted into the grooved disk, a clothing mold assembly and a trouser mold assembly are disposed at the end of the driving assembly away from the base assembly, the ends of the clothing mold assembly and the trouser mold assembly closer to the base assembly slide against the inner wall of the grooved disk, and a detection assembly is disposed on the outer side of the base assembly.
[0009] The positioning mechanism includes two inclined grooves and two parking components. The two inclined grooves are both located at the end of the rotating component near the base component. The two parking components pass through the base component and slide against the inner walls of the two inclined grooves respectively.
[0010] Based on the above technical features: First, the garment is placed on the clothing mold component and the pants mold component. Then, the driving component moves the clothing mold component and the pants mold component. The grooved plate causes the clothing mold component and the pants mold component to move in opposite directions and splice together. When the clothing mold component and the pants mold component merge, the clothing mold component and the pants mold component expand to support the garment. Then, the rotation component drives the driving component, the clothing mold component and the pants mold component to rotate. And the detection component detects the garment when it rotates.
[0011] In a preferred embodiment of the garment design auxiliary inspection device of the present invention, the base assembly includes a grooved plate and a plurality of rollers, wherein the plurality of rollers are rectangularly distributed at the bottom of the grooved plate.
[0012] Based on the above technical features: the use of several rollers makes it easy for the operator to move the device, thereby facilitating the adjustment of the device's position.
[0013] In a preferred embodiment of the garment design auxiliary inspection device of the present invention, the rotating component includes a first motor and a turntable. The turntable is rotatably inserted into the inner wall of the groove plate. The first motor is disposed at the bottom of the base assembly, and the rotation shaft of the first motor passes through the base assembly and is fixedly connected to the turntable.
[0014] Based on the above technical features: the first motor facilitates the rotation of the turntable, drive assembly, garment mold assembly and trouser mold assembly, thereby causing the garment to rotate and allowing the operator to observe the garment from all angles.
[0015] In a preferred embodiment of the garment design auxiliary inspection device of the present invention, the driving assembly includes two cylinders, two transmission wheels, a transmission chain, a second motor, two first springs, two connecting plates, and a movable rod. The two cylinders are symmetrically arranged on the top of the grooved plate. The second motor is fixedly connected to the top of the rotating assembly, and the rotating shaft of the second motor is fixedly connected to one of the cylinders. The two transmission wheels are respectively fixedly sleeved on the outer walls of the two cylinders. The two transmission wheels are connected to each other through a transmission chain, which is in the shape of an "8". The two connecting plates are respectively movably inserted into the inner walls of the two cylinders. The two connecting plates are respectively connected to the inner walls of the two cylinders through two first springs. The movable rod is fixedly connected to the bottom of the horizontal plate of the connecting plate, and the lower end of the movable rod slides against the inner wall of the grooved plate.
[0016] Based on the above technical features: the second motor facilitates the rotation of the cylinder, and the figure-eight transmission chain, in conjunction with the two transmission wheels, facilitates the simultaneous rotation of the two cylinders in opposite directions. Consequently, the cylinder facilitates the movement of the connecting plate, and the first spring facilitates the pulling of the connecting plate and the movable rod downwards, thereby ensuring that the movable rod is always in contact with the inner wall of the grooved plate.
[0017] In a preferred embodiment of the garment design auxiliary inspection device of the present invention, the inner wall of the cylinder has two grooves, and the inner walls of the two grooves are slidably connected to sliders, which are fixedly connected to the outer wall of the connecting plate.
[0018] Based on the above technical features: the connecting plate rotates along with the cylinder when the cylinder rotates, through the cooperation of two sliding grooves and two sliders.
[0019] As a preferred embodiment of the garment design auxiliary inspection device of the present invention, the grooved plate includes a plate body and two arc-shaped grooves. The two arc-shaped grooves are symmetrically opened on the top of the plate body. The inner wall of one arc-shaped groove is higher at the end near the base component than at the end away from the base component, and the inner wall of the other arc-shaped groove is lower at the end near the base component than at the end away from the base component.
[0020] Based on the above technical features: when the two connecting plates are rotated simultaneously toward the center of the grooved plate by the two arc grooves, one of the movable rods on the left moves the connecting plate and the clothing mold assembly downwards, while the other movable rod moves the connecting plate and the pants mold assembly upwards.
[0021] As a preferred embodiment of the garment design auxiliary inspection device of the present invention, the garment mold assembly and the trouser mold assembly each include a transparent mold body, an air bladder and a lighting lamp. The air bladder is disposed at one end of the transparent mold body near the connecting rod, and the air inlet end of the air bladder is connected to the transparent mold body. The lighting lamp is disposed inside the transparent mold body.
[0022] Based on the above technical features: when the clothing mold assembly and the pants mold assembly are combined, the airbag is compressed. At this time, the gas in the airbag is delivered to the interior of the transparent mold, causing the transparent mold to expand, thereby causing the clothes to open, which makes it easier for the operator to inspect the clothes. The interior of the clothes is illuminated by the light, and when the clothes are damaged, the light will shine through the damaged area.
[0023] In a preferred embodiment of the garment design auxiliary inspection device of the present invention, the detection component includes a light receiving plate, a light sensor, a processor, a controller, and an alarm. The light receiving plate is fixedly connected to the outside of the base assembly. The light sensor is disposed on the top of the light receiving plate. The signal output terminal of the light sensor is connected to the signal input terminal of the processor via a data cable. The signal output terminal of the processor is connected to the signal input terminal of the controller via a data cable. The signal output terminal of the processor is connected to the signal input terminal of the first motor via a data cable. The signal output terminal of the processor is connected to the signal input terminal of the alarm via a data cable.
[0024] Based on the above technical features: when the clothes are damaged, light will shine through the damaged area and be received by the light receiving board. At this time, the light sensor detects the light. When light is detected shining on the light receiving board, the signal is transmitted to the processor. Then, the processor and the controller work together to control the first motor to stop running, thereby causing the clothes to stop rotating. At the same time, the controller controls the alarm to operate to warn the operator.
[0025] In a preferred embodiment of the garment design auxiliary inspection device of the present invention, the inclined groove includes an inclined groove and an annular groove, the inclined groove is formed on the inner wall of the annular groove, and the inclined groove is formed on the bottom of the turntable.
[0026] Based on the above technical features: the turntable drives the inclined groove and the annular groove to rotate, thereby facilitating the control of the parking component to move downward and contact the ground.
[0027] In a preferred embodiment of the garment design auxiliary inspection device of the present invention, the parking component includes a round rod, a rubber disc, and a second spring. One end of the round rod passes through the base assembly and slides against the inner wall of the inclined groove. The edge of the round rod near the inclined groove is rounded. The other end of the round rod is fixedly connected to the rubber disc. The rubber disc is connected to the base assembly through the second spring.
[0028] Based on the above technical features: the second spring facilitates the upward movement of the rubber disc and the round rod, allowing them to slide and abut against the inner wall of the inclined groove; when the turntable rotates, the round rod drives the rubber disc downward to contact the ground.
[0029] In summary, the present invention has at least one of the following beneficial effects:
[0030] 1. The device moves the clothing mold assembly and the trouser mold assembly by driving the drive assembly, and the grooved plate causes the clothing mold assembly and the trouser mold assembly to move in opposite directions and splice together. When the clothing mold assembly and the trouser mold assembly are combined, the clothing mold assembly and the trouser mold assembly expand to support the clothes. When the clothes are opened, no additional air blowing equipment is needed to inflate them, so the device is more convenient to use.
[0031] 2. When the rotating component rotates, it can easily drive the inclined groove to rotate as well. The rotation of the inclined groove causes the parking component to move down and come into contact with the ground, thereby increasing the friction between the base component and the ground, and thus reducing the possibility of the device shifting position during use.
[0032] 3. The rotating component facilitates the rotation of the drive component, clothing mold component, and pants mold component. When the clothing is damaged, light can easily pass through the clothing and shine onto the detection component. The detection component then detects the location of the damage and alerts the operator, enabling the operator to promptly locate the damaged area. Attached Figure Description
[0033] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments 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. Wherein:
[0034] Figure 1 This is a schematic diagram of the three-dimensional structure when opened in the first embodiment.
[0035] Figure 2 This is a schematic diagram of the three-dimensional structure when closed in the first embodiment.
[0036] Figure 3 This is a cross-sectional view of the three-dimensional structure in the first embodiment.
[0037] Figure 4 This is a cross-sectional view of a partial three-dimensional unfolded structure in the first embodiment.
[0038] Figure 5 This is a cross-sectional view of a partial three-dimensional unfolded structure in the first embodiment.
[0039] Figure 6 This is a schematic diagram of a partial three-dimensional unfolded structure in the first embodiment.
[0040] Figure 7 This is a partial three-dimensional structural cross-sectional view of the first embodiment.
[0041] Figure 8 This is a schematic diagram of the circuit connection in the second embodiment.
[0042] Explanation of reference numerals in the attached drawings: 100, Inspection mechanism; 101, Base assembly; 101a, Groove plate; 101b, Roller; 102, Rotating assembly; 102a, First motor; 102b, Turntable; 103, Drive assembly; 103a, Cylinder; 103a1, Slide groove; 103a2, Slider; 103b, Transmission wheel; 103c, Transmission chain; 103d, Second motor; 103e, First spring; 10 3f. Connecting plate; 103g. Movable rod; 104. Grooved plate; 104a. Plate body; 104b. Arc groove; 105. Clothing mold assembly; 106. Pants mold assembly; 106a. Transparent mold body; 106b. Airbag; 106c. Lighting lamp; 107. Detection assembly; 107a. Light receiving plate; 107b. Light sensor; 107c. Processor; 107d. Controller; 107e. Alarm;
[0043] 200, Positioning mechanism; 201, Inclined groove; 201a, Inclined groove; 201b, Annular groove; 202, Parking assembly; 202a, Round rod; 202b, Rubber disc; 202c, Second spring. Detailed Implementation
[0044] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0045] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.
[0046] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that is mutually exclusive with other embodiments.
[0047] Example 1
[0048] Reference Figure 1-8This is the first embodiment of the present invention, which provides an auxiliary inspection device for clothing design, including an inspection mechanism 100, which includes a base assembly 101, a rotating assembly 102, a driving assembly 103, and a grooved plate 104. The rotating assembly 102 is disposed inside the base assembly 101. The base assembly 101 includes a grooved plate 101a and a plurality of rollers 101b. The plurality of rollers 101b are rectangularly distributed at the bottom of the grooved plate 101a. The plurality of rollers 101b cooperate to facilitate the operator to push the device to move, thereby facilitating the adjustment of the position of the device.
[0049] A grooved disk 104 is disposed inside the base assembly 101. A drive assembly 103 is inserted into the grooved disk 104. The drive assembly 103 includes two cylinders 103a, two transmission wheels 103b, a transmission chain 103c, a second motor 103d, two first springs 103e, two connecting plates 103f, and a movable rod 103g. The two cylinders 103a are symmetrically arranged on the top of the grooved disk 104. The second motor 103d is fixedly connected to the top of the rotating assembly 102. The rotating shaft of the second motor 103d is fixedly connected to one of the cylinders 103a. The two transmission wheels 103b are respectively fixedly sleeved on the outer walls of the two cylinders 103a. The two transmission wheels 103b are connected by a transmission chain 103c, which is figure-eight shaped. The two connecting plates 103f are respectively... The movable rod 103g is fixedly connected to the inner wall of the two cylinders 103a. The lower end of the movable rod 103g slides against the inner wall of the groove plate 101a. The second motor 103d facilitates the rotation of the cylinders 103a. At the same time, the figure-eight transmission chain 103c cooperates with the two transmission wheels 103b to facilitate the simultaneous rotation of the two cylinders 103a in opposite directions. Subsequently, the cylinders 103a facilitate the movement of the connecting plate 103f. The first spring 103e facilitates the pulling of the connecting plate 103f and the movable rod 103g downward, thereby ensuring that the movable rod 103g always abuts against the inner wall of the groove plate 104.
[0050] The drive assembly 103 has a clothing mold assembly 105 and a trouser mold assembly 106 at the end away from the base assembly 101. The grooved plate 104 includes a plate body 104a and two arc-shaped grooves 104b. The two arc-shaped grooves 104b are symmetrically opened on the top of the plate body 104a. The inner wall of one arc-shaped groove 104b is higher than the end away from the base assembly 101 at the end closer to the base assembly 101, and the inner wall of the other arc-shaped groove 104b is lower than the end away from the base assembly 101 at the end closer to the base assembly 101. When the two connecting plates 103f rotate simultaneously toward the center of the grooved plate 104 through the two arc-shaped grooves 104b, one of the movable rods 103g on the left moves the connecting plate 103f and the clothing mold assembly 105 downward, and at the same time moves the other movable rod 103g moves the connecting plate 103f and the trouser mold assembly 106 upward.
[0051] Both the clothing mold assembly 105 and the trouser mold assembly 106 include a transparent mold body 106a, an airbag 106b, and a lighting lamp 106c. The airbag 106b is located at one end of the transparent mold body 106a near the connecting rod, and the air inlet of the airbag 106b is connected to the transparent mold body 106a. The lighting lamp 106c is located inside the transparent mold body 106a. When the clothing mold assembly 105 and the trouser mold assembly 106 are combined, the airbag 106b is compressed. At this time, the gas in the airbag 106b is transported to the interior of the transparent mold body 106a, causing the transparent mold body 106a to expand, thereby causing the clothing to open up, which makes it easier for the operator to inspect the clothing. The lighting lamp 106c illuminates the inside of the clothing, and when the clothing is damaged, the light shines through the damaged area.
[0052] The clothing mold assembly 105 and the pants mold assembly 106 are slidably abutted against the inner wall of the grooved plate 104 at one end near the base assembly 101, and a detection assembly 107 is provided on the outer side of the base assembly 101.
[0053] The rotating assembly 102 includes a first motor 102a and a turntable 102b. The turntable 102b is rotatably inserted into the inner wall of the groove plate 101a. The first motor 102a is located at the bottom of the base assembly 101. The rotation shaft of the first motor 102a passes through the base assembly 101 and is fixedly connected to the turntable 102b. The first motor 102a facilitates the rotation of the turntable 102b, the drive assembly 103, the garment mold assembly 105, and the trouser mold assembly 106, thereby causing the garment to rotate and facilitating the operator's observation of the garment from all angles. Furthermore, the garment mold assembly 105 and the trouser mold assembly 106 emit light to illuminate the inside of the garment. When there is a tear in the garment, the light can easily shine out, and the light is then detected by the detection assembly 107.
[0054] The positioning mechanism 200 includes two inclined grooves 201 and two parking components 202. The two inclined grooves 201 are both opened at the end of the rotating component 102 near the base component 101. The inclined groove 201 includes an inclined groove 201a and an annular groove 201b. The inclined groove 201a is opened on the inner wall of the annular groove 201b and is opened at the bottom of the turntable 102b. The turntable 102b drives the inclined groove 201a and the annular groove 201b to rotate, thereby facilitating the control of the parking component 202 to move downward and contact the ground, thus facilitating the parking of the device.
[0055] Two parking components 202 pass through the base assembly 101 and slide against the inner walls of the two inclined grooves 201 respectively. The parking component 202 includes a round rod 202a, a rubber disc 202b and a second spring 202c. One end of the round rod 202a passes through the base assembly 101 and slides against the inner wall of the inclined groove 201. The edge of the round rod 202a near the inclined groove 201 is rounded. The other end of the round rod 202a is fixedly connected to the rubber disc 202b. The rubber disc 202b is connected to the base assembly 101 through the second spring 202c. The second spring 202c facilitates the upward movement of the rubber disc 202b and the round rod 202a and their sliding contact with the inner wall of the inclined groove 201. When the turntable 102b rotates, the round rod 202a drives the rubber disc 202b to move downward and contact the ground, thereby reducing the possibility of the device shifting position during use.
[0056] Furthermore, two sliding grooves 103a1 are formed on the inner wall of the cylinder 103a. Sliding blocks 103a2 are slidably connected to the inner walls of the two sliding grooves 103a1. The sliding blocks 103a2 are fixedly connected to the outer wall of the connecting plate 103f. The cooperation between the two sliding grooves 103a1 and the two sliding blocks 103a2 causes the connecting plate 103f to rotate together when the cylinder 103a rotates. The cooperation between the sliding grooves 103a1 and the sliding blocks 103a2 also helps to increase the stability of the connecting plate 103f when it moves.
[0057] In summary, firstly, the garment is placed on the garment mold assembly 105 and the pants mold assembly 106. Then, the drive assembly 103 moves the garment mold assembly 105 and the pants mold assembly 106. The grooved plate 104 causes the garment mold assembly 105 and the pants mold assembly 106 to move in opposite directions and splice together. When the garment mold assembly 105 and the pants mold assembly 106 are combined, the garment mold assembly 105 and the pants mold assembly 106 expand to support the garment.
[0058] The rotating component 102 facilitates the rotation of the drive component 103, clothing mold component 105, and trouser mold component 106. When the rotating component 102 rotates, it facilitates the rotation of the inclined groove 201. The rotation of the inclined groove 201 causes the parking component 202 to move down and come into contact with the ground, thereby increasing the friction between the base component 101 and the ground, and thus reducing the possibility of the device shifting position during use.
[0059] Example 2
[0060] Reference Figure 1 , 8 This is the second embodiment of the present invention, which is based on the previous embodiment. The detection component 107 includes a light receiving plate 107a, a light sensor 107b, a processor 107c, a controller 107d, and an alarm 107e. The light receiving plate 107a is fixedly connected to the outside of the base assembly 101 and receives light through the light receiving plate 107a. The light sensor 107b is disposed on the top of the light receiving plate 107a. The signal output terminal of the light sensor 107b is connected to the signal input terminal of the processor 107c through a data cable. The light sensor 107b detects light, and when light is detected on the light receiving plate 107a, the signal is transmitted to the processor 107c.
[0061] The signal output terminal of processor 107c is connected to the signal input terminal of controller 107d via a data cable. The signal output terminal of processor 107c is also connected to the signal input terminal of first motor 102a via a data cable. By cooperating with controller 107d, processor 107c controls first motor 102a to stop running, thereby causing the clothes to stop rotating. The signal output terminal of processor 107c is also connected to the signal input terminal of alarm 107e via a data cable. Controller 107d controls alarm 107e to operate and warn the operator.
[0062] In summary, when the clothing is damaged, light shines through the damaged area and is received by the light receiving board 107a. The light is then detected by the light sensor 107b. When light is detected shining on the light receiving board 107a, a signal is transmitted to the processor 107c. The processor 107c then works with the controller 107d to stop the first motor 102a, thereby stopping the clothing from rotating. At the same time, the controller 107d activates the alarm 107e to alert the operator, making it easier for the operator to locate the damaged area of the clothing.
[0063] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape, and proportions of various elements, as well as parameter values (e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of the invention. The order or sequence of any process or method steps may be changed or rearranged according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structurally equivalent but also equivalent in structure. Other substitutions, modifications, alterations, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments without departing from the scope of the invention. Therefore, the present invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.
[0064] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the currently considered best mode for carrying out the invention, or those features that are not relevant to implementing the invention) may be omitted.
[0065] It should be understood that numerous specific implementation decisions can be made during the development of any practical implementation, such as in any engineering or design project. Such development efforts may be complex and time-consuming, but for those skilled in the art who benefit from this disclosure, the development effort will be a routine work of design, manufacturing, and production without requiring much experimentation.
[0066] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.
Claims
1. An apparel design aid inspection device, characterized by: include, The inspection mechanism (100) includes a base assembly (101), a rotating assembly (102), a driving assembly (103), and a grooved disk (104). The rotating assembly (102) is disposed inside the base assembly (101), the grooved disk (104) is disposed inside the base assembly (101), and the driving assembly (103) is inserted into the grooved disk (104). A clothing mold assembly (105) and a trouser mold assembly (106) are disposed at the end of the driving assembly (103) away from the base assembly (101). The ends of the clothing mold assembly (105) and the trouser mold assembly (106) close to the base assembly (101) slide against the inner wall of the grooved disk (104). A detection assembly (107) is disposed on the outer side of the base assembly (101). The positioning mechanism (200) includes two inclined grooves (201) and two parking components (202). The two inclined grooves (201) are both opened at one end of the rotating component (102) near the base component (101). The two parking components (202) pass through the base component (101) and slide against the inner wall of the two inclined grooves (201) respectively.
2. The garment design aid inspection apparatus of claim 1, wherein: The base assembly (101) includes a grooved plate (101a) and a plurality of rollers (101b), the plurality of rollers (101b) being rectangularly distributed at the bottom of the grooved plate (101a).
3. The garment design auxiliary inspection device as described in claim 2, characterized in that: The rotating assembly (102) includes a first motor (102a) and a turntable (102b). The turntable (102b) is rotatably inserted into the inner wall of the groove plate (101a). The first motor (102a) is located at the bottom of the base assembly (101). The rotation shaft of the first motor (102a) passes through the base assembly (101) and is fixedly connected to the turntable (102b).
4. The garment design auxiliary inspection device as described in claim 3, characterized in that: The drive assembly (103) includes two cylinders (103a), two drive wheels (103b), a drive chain (103c), a second motor (103d), two first springs (103e), two connecting plates (103f), and a movable rod (103g). The two cylinders (103a) are symmetrically arranged on the top of the grooved plate (104). The second motor (103d) is fixedly connected to the top of the rotating assembly (102). The rotating shaft of the second motor (103d) is fixedly connected to one of the cylinders (103a). The two drive wheels (103b) are respectively fixedly sleeved on the two cylinders (103a). The outer wall of a cylinder (103a) is connected to two transmission wheels (103b) via a transmission chain (103c), which is shaped like an "8". Two connecting plates (103f) are movably inserted into the inner walls of the two cylinders (103a) respectively. The two connecting plates (103f) are connected to the inner walls of the two cylinders (103a) via two first springs (103e). The movable rod (103g) is fixedly connected to the bottom of the horizontal plate of the connecting plate (103f), and the lower end of the movable rod (103g) slides against the inner wall of the groove plate (101a).
5. The garment design auxiliary inspection device as described in claim 4, characterized in that: The inner wall of the cylinder (103a) has two sliding grooves (103a1), and the inner walls of the two sliding grooves (103a1) are slidably connected to sliders (103a2), and the sliders (103a2) are fixedly connected to the outer wall of the connecting plate (103f).
6. The garment design auxiliary inspection device as described in claim 4, characterized in that: The grooved disc (104) includes a disc body (104a) and two arc-shaped grooves (104b). The two arc-shaped grooves (104b) are symmetrically opened on the top of the disc body (104a). The inner wall of one arc-shaped groove (104b) is higher than the end away from the base assembly (101) at the end closer to the base assembly (101), and the inner wall of the other arc-shaped groove (104b) is lower than the end away from the base assembly (101) at the end closer to the base assembly (101).
7. The garment design auxiliary inspection device as described in claim 1, characterized in that: Both the clothing mold assembly (105) and the pants mold assembly (106) include a transparent mold body (106a), an airbag (106b), and a lighting lamp (106c). The airbag (106b) is located at one end of the transparent mold body (106a) near the connecting rod. The air inlet of the airbag (106b) is connected to the transparent mold body (106a). The lighting lamp (106c) is located inside the transparent mold body (106a).
8. The garment design auxiliary inspection device as described in claim 1, characterized in that: The detection component (107) includes a light receiving plate (107a), a light sensor (107b), a processor (107c), a controller (107d), and an alarm (107e). The light receiving plate (107a) is fixedly connected to the outside of the base assembly (101). The light sensor (107b) is located on the top of the light receiving plate (107a). The signal output terminal of the light sensor (107b) is connected to the signal input terminal of the processor (107c) via a data cable. The signal output terminal of the processor (107c) is connected to the signal input terminal of the controller (107d) via a data cable. The signal output terminal of the processor (107c) is connected to the signal input terminal of the first motor (102a) via a data cable. The signal output terminal of the processor (107c) is connected to the signal input terminal of the alarm (107e) via a data cable.
9. The garment design auxiliary inspection device as described in claim 1, characterized in that: The inclined groove (201) includes an inclined groove (201a) and an annular groove (201b). The inclined groove (201a) is formed on the inner wall of the annular groove (201b) and the inclined groove (201a) is formed at the bottom of the turntable (102b).
10. The garment design auxiliary inspection device as described in claim 9, characterized in that: The parking assembly (202) includes a round rod (202a), a rubber disc (202b), and a second spring (202c). One end of the round rod (202a) passes through the base assembly (101) and slides against the inner wall of the inclined groove (201). The edge of the round rod (202a) near the inclined groove (201) is rounded. The other end of the round rod (202a) is fixedly connected to the rubber disc (202b). The rubber disc (202b) is connected to the base assembly (101) through the second spring (202c).