A human body shape measuring device for clothing design

By using a motor-driven device with a supporting frame and magnetic wall structure, combined with magnetic pen drawing technology, the problem of traditional human body measuring devices for clothing design being unable to accurately measure multiple parts has been solved, enabling simple and efficient measurement of various parts of the human body.

CN115177059BActive Publication Date: 2025-12-12MEISHENG CULTURE INNOVATION HLDG
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Patent Information

Application Number
CN202210967297.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-12
Publication Date
2025-12-12
Estimated Expiration
2042-08-12

AI Technical Summary

Technical Problem

Traditional clothing design cannot accurately measure multiple parts of the human body using human body measuring devices, which is especially inconvenient for obese people and people with limb defects, and the measurement process is also cumbersome.

Method used

It adopts a support frame and magnetic wall structure, and uses a motor-driven lifting and sliding device, combined with a magnetic pen to draw the human body shape on the magnetic wall to realize automatic measurement of various parts. It uses magnetic force transmission and non-contact gear transmission to ensure accurate measurement and simple operation.

Benefits of technology

It enables precise measurement of various parts of the human body, simplifies the measurement process, is particularly suitable for specific populations, and improves measurement efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a human body shape measuring device for clothing design, which comprises a support frame, a pair of first magnetic walls are installed on one side of the support frame, a compensation block is installed between the two first magnetic walls, a second magnetic wall is installed on the other side of the support frame, and sliding grooves are installed on both sides of the side provided with the second magnetic wall of the support frame. The human body shape measuring device is driven by a motor to move up and down along a path rack through a transmission gear, a first limiting groove is installed between the two motor shafts, a pair of first movable rollers are installed between the two first limiting grooves, the two first movable rollers are in close contact with the front and back of the body of a tester, then when the first limiting groove is driven to move up by the motor, the two first movable rollers slide along the front and back of the body, and a first magnetic pen installed on the first movable roller draws a line on the second magnetic wall, so that the front and back parameters and shape of the tester are depicted.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clothing design measuring device, in particular to a human body shape measuring device for clothing design. BACKGROUND

[0002] Clothing design belongs to the category of arts and crafts, and is a combination of practicality and artistry. Design refers to planning, conception, and scheme establishment, and also includes imagery, mapping, and modeling. Clothing design is defined as a creative plan and creative behavior that addresses various issues in the clothing system. It is an interdisciplinary subject that is closely related to literature, art, history, philosophy, religion, aesthetics, psychology, physiology, and human engineering.

[0003] Traditional human body measuring devices for clothing design and production can only measure the height of the user, and other dimensions need to be measured with external tools, such as a tape measure. Designers need to measure from head to leg, which is extremely inconvenient to use. This results in insufficient usability of the human body measuring device, and it is difficult to achieve measurement of multiple parts. For specific groups of people, such as obese people and people with partial limb disabilities, private customization is required. During customization, the arm length and arm circumference are measured from head to toe. Existing measuring devices cannot guarantee accurate measurement of each part of the human body, and multiple parts need to be measured separately, which is very cumbersome. Therefore, we propose a human body shape measuring device for clothing design. SUMMARY

[0004] The present application relates to the technical field of clothing design measuring device, in particular to a human body shape measuring device for clothing design.

[0005] In order to achieve the above object, the present application provides the following technical scheme: A human body shape measuring device for clothing design, comprising a support frame, a pair of first magnetic walls is installed on one side of the support frame, a compensation block is installed between the two first magnetic walls, a second magnetic wall is installed on the other side of the support frame, sliding grooves are installed on both sides of the side of the support frame provided with the second magnetic wall, and a driving device sliding with the human body is installed on the side opposite to the sliding grooves; the driving device comprises a lifting driving assembly and a following attachment device; the lifting driving assembly comprises path racks arranged at both ends of one side of the support frame, a sliding rod arranged on the path racks, a motor slidingly connected to the sliding rod, and a sliding seat fixedly arranged at the bottom of the motor and sliding along the sliding rod; the following attachment device comprises a first limiting groove arranged on the output shaft of the motor, a pair of first movable rollers slidingly connected to the first limiting groove, and a sliding connecting piece arranged at the top of each sliding seat and sliding along the torso, and a first magnetic pen is installed on one end of each first movable roller facing the second magnetic wall; the sliding connecting piece comprises a pair of support frames arranged on each sliding seat, a second limiting groove arranged on each support frame, a second movable roller slidingly connected between the two second movable rollers, and a support plate arranged on one of the sliding seats and used for supporting the first limiting groove, and a second magnetic pen is installed on one end of the second movable roller close to the first magnetic wall, and the first movable roller and the second movable roller are driven to rise by the first limiting groove and the second limiting groove, respectively, and when rising, the first magnetic pen and the second pen are driven to draw along the human body contour on the magnetic wall, thereby facilitating the recorder to record the appearance.

[0006] Preferably, a feedback device for the first movable roller to slide along the arm after contacting the underarm is installed on one side of the support frame, the feedback device comprises a rotating disc arranged on the support frame, a plurality of notches arranged on the rotating disc, a fixed column connected to one of the notches of the rotating disc, a second rotating handle sleeved on the fixed column, a fixed rod fixed at the bottom of the sliding seat, a first connecting column rotatably connected to one end of the second rotating handle and sleeved on the outer circle of one end of the fixed rod, a second connecting column arranged on the outer circle of the other end of the fixed rod, a hinge shaft fixedly connected to one end of the second connecting column and sleeved into the outer circle of the sliding rod, and a bolt fixed on the hinge shaft, the bolt is movably connected with the path rack, a spiral slide groove is formed in the outer circle of the fixed rod, a fixed small ball is movably arranged in the spiral slide groove through the second connecting column, and when the rotating disc rotates, the motor can be inserted into the path rack hole through the bolt, thereby preventing the first movable roller from continuing to rise when the second movable roller reaches the underarm, and the height position is adjusted in real time.

[0007] Preferably, the rotating disc has at least three notches, and a displacement rod is slidably connected in the notch adjacent to the fixed column on the rotating disc, a feedback disengaging device is rotatably connected to one end of the displacement rod, the feedback disengaging device comprises a long rod arranged on the displacement rod, a first rotating handle rotatably connected to the long rod, a rotating handle pushing block fixed on the first rotating handle, and a disengaging device arranged on the motor output shaft, which facilitates the rotation of the rotating disc, so that the motor height can be disengaged between the first limiting groove and the second limiting groove during the locking process to drive the feedback disengaging device to transmit between each other.

[0008] Preferably, the motor output shaft is provided with an inner diameter main shaft, and an outer diameter main shaft is arranged on the outer circle of the inner diameter main shaft, the outer diameter main shaft is composed of three connected cylinders, the disengaging device comprises a magnetic moment gear arranged on the outer circle of one of the cylinders, a first bevel gear arranged between the rotating handle pushing block and the magnetic moment gear, a transmission gear arranged on the outer circle of another cylinder, and a connecting transmission device arranged between the two support frames, so that the transmission gear loses rotation, facilitating the rotation of the first bevel gear, and facilitating transmission.

[0009] Preferably, the connecting transmission device comprises a second bevel gear rotatably connected between the two support frames, two pulleys fixed on the second bevel gear and the second limiting groove through the rotating shaft, and one of the pulleys is coaxially provided with a driving gear, which facilitates the sliding of the driving transmission chain along the second limiting groove.

[0010] Preferably, each second limiting groove is provided with a transmission chain on one side facing the driving gear, a plurality of fixed columns are arranged between the second limiting groove and the transmission chain, a plurality of tooth columns are arranged on the inner and outer circles of the transmission chain, and a limiting baffle is arranged on one side of the transmission chain facing the rotating disc, the limiting baffle and the notch of the rotating disc coincide and the length is half of the transmission chain, the inner circle tooth column of the transmission chain meshes with the driving gear, and the fixed column and the transmission chain are slidably connected, which facilitates the limiting baffle and the notch of the rotating disc to lose contact when the motor reverses, facilitates the resetting of the rotating disc, and the device can be lowered.

[0011] Preferably, two fixed brushes are arranged on the first limiting groove near the top of the second magnetic wall, the first limiting groove is in the shape of a V-shaped positive installation on the two motor output shafts, and the first movable roller is pressed to facilitate its resetting.

[0012] Preferably, scales are arranged on the second magnetic wall and the two first magnetic walls, and the length of the compensation block is 100mm, which facilitates the fixation of the two second magnetic walls.

[0013] Preferably, the vertical distance from the first limiting groove to the second limiting groove is 15cm, which facilitates the disengagement between the first limiting groove and the second limiting groove when the first movable roller reaches the neck.

[0014] Preferably, the inner bottom of the support frame is provided with a body weight scale, which facilitates the testing of the body shape parameters and the testing of the body weight.

[0015] Compared with the prior art, the present application has the following advantages:

[0016] The present application drives the transmission gear to ascend along the path rack by the motor, and a first limiting groove is installed between the two motor shafts, and a pair of first movable rollers are installed between the two first limiting grooves, which are in close contact with the front and back of the tester's body, and then when the first limiting groove is driven to ascend by the motor, the two first movable rollers slide along the front and back of the body, and the first magnetic pen installed on the first movable roller draws a line on the second magnetic wall during the sliding, so that the front and back parameters and the shape of the tester are depicted, and then when the first movable roller reaches the neck, the displacement rod continues to ascend to drive the rotating disc to rotate, drives the first connecting column to rotate and advance the second connecting column, rotates the hinged shaft, locks the motor on the path rack, separates the outer diameter main shaft, and makes the first bevel gear contact the second bevel gear, so as to drive the driving gear to drive the transmission chain to slide on the second limiting groove, and the second movable roller moves between the armpit and the palm, and the arm thickness line is drawn, so that the body shape of each part of the person can be scanned by the first movable roller and the second movable roller sliding along the outer surface of the human body, and the accurate measurement of each part of the human body is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0018] Figure 2 It is a schematic diagram of the overall side structure of the present application;

[0019] Figure 3 It is a schematic diagram of the feedback device structure of the present application;

[0020] Figure 4 It is another schematic diagram of the feedback device of the present application

[0021] Figure 5 It is a schematic diagram of the feedback device structure of the present application

[0022] Figure 6 It is a schematic diagram of the feedback device structure of the present application

[0023] Figure 7 It is a schematic diagram of the overall structure of the transmission chain of the present application;

[0024] Figure 8 It is a schematic diagram of the transmission chain and the various components installed thereon of the present application;

[0025] Figure 9For the first limiting groove and the second limiting groove of the application, the specific connection relationship structure schematic diagram is shown in the figure.

[0026] Figure 10 For the disengaging device structure schematic diagram of the application.

[0027] Figure 11 For the lifting driving assembly structure schematic diagram of the application.

[0028] Figure 12 For the transmission chain driving force source structure schematic diagram of the application.

[0029] Figure 13 For the transmission chain driving force source another side schematic diagram of the application.

[0030] In the figure: 1-support frame; 2-first magnetic wall; 201-compensation block; 3-body weight scale; 4-second magnetic wall; 5-first limiting groove; 6-first movable roller; 601-supporting plate; 7-fixed brush; 8-second limiting groove; 9-transmission chain; 901-fixed column; 902-limiting baffle; 10-second movable roller; 1001-supporting frame; 11-motor; 12-rotary disc; 13-displacement rod; 14-first rotary handle; 15-second rotary handle; 16-fixed rod; 1601-spiral chute; 17-first connecting column; 18-second connecting column; 1801-fixed small ball; 19-hinge shaft; 20-latch; 21-outer diameter main shaft; 22-inner diameter main shaft; 23-rotary handle propulsion block; 24-first bevel gear; 25-magnetic moment gear; 26-transmission gear; 27-path rack; 28-sliding seat; 29-sliding rod; 31-second bevel gear; 32-pulley; 33-driving gear. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0032] Please refer to Figures 1-13The application provides a technical scheme: a human body shape measuring device for clothing design, which comprises a support frame 1, one side of the support frame 1 is provided with a pair of first magnetic walls 2, a compensation block 201 is arranged between the two first magnetic walls 2, the other side of the support frame 1 is provided with a second magnetic wall 4, the support frame 1 is provided with sliding grooves on both sides of the side provided with the second magnetic wall 4, and a driving device for sliding along the human body is arranged on the side of the support frame 1 opposite to the sliding grooves; in the scheme, a plurality of equidistant small compartments are arranged on the first magnetic wall 2 and the second magnetic wall 4 during manufacturing, and the interval of each small compartment can be 5-15 cm, so that the tester can be conveniently recorded by the recorder;

[0033] The driving device comprises a lifting driving assembly and a following attachment device, wherein when the human body parameter needs to be tested, the following attachment device can be driven by the lifting driving assembly to slide along the outside of the human body close to the middle position in the support frame 1, Figure 1 It can be known that the middle part of one of the first magnetic walls 2 is provided with an alignment line, so that the tester can find the standing position, and when the tester stands in the support frame 1, the following attachment device is driven by the lifting driving assembly to slide along the outside of the human body;

[0034] The lifting driving assembly comprises path racks 27 arranged at both ends of one side of the support frame 1, sliding rods 29 arranged on the path racks 27, motors 11 slidingly connected to the sliding rods 29 and sliding seats 28 fixedly arranged at the bottom of the motors 11 and sliding along the sliding rods 29, the device starts to slide from the tester's feet to below the head, and when sliding, the motors 11 can be started in advance, then the output shafts of the two motors 11 drive the transmission gears 26 to slide on the path racks 27, and the sliding rods 29 are used for preventing the motors 11 from deviating during output, so that the shafts of the motors 11 drive the following attachment device to slide along the outside of the human body;

[0035] The following attachment device comprises a first limiting groove 5 arranged on the output shaft of the motor 11, a pair of first movable rollers 6 slidingly connected to the first limiting groove 5 and sliding connecting pieces arranged on the top of each sliding seat 28 and sliding along the trunk, and the first movable rollers 6 are provided with first magnetic pens at one end facing the second magnetic wall 4, when the motor 11 rises, the pair of first movable rollers 6 slide along the front and back of the human body, when sliding, the first magnetic pens at one end of the first movable rollers 6 contact the second magnetic wall 4 and draw lines on the second magnetic wall 4 after the contact, the magnetic powder on the second magnetic wall 4 is concentrated at a point after contacting the first magnetic pens, the magnetic powder on the second magnetic wall 4 forms a line due to the movement of the first magnetic pens driven by the first movable rollers 6, so that the approximate shape of the front and back of the human body is displayed on the second magnetic wall 4, and then the lines drawn can be recorded according to the reference of the small compartment of the second magnetic wall 4 by the recorder, so that the parameters of each part of the human body side can be collected;

[0036] The sliding connector comprises a pair of support frames 1001 arranged on each sliding seat 28, a second limiting groove 8 arranged on each support frame 1001, a second movable roller 10 slidingly connected between the two second limiting grooves 8, and a support plate 601 arranged on one of the sliding seats 28 for supporting the first limiting groove 5, wherein the second movable roller 10 is provided with a second magnetic pen at one end close to the first magnetic wall 2, the support plate 601 and the first limiting groove 5 are attracted by magnetic force, and the second movable roller 10 and the second limiting groove 8 are made of light materials. During use, the tester stretches out one hand and places it in a vertical form with the body, when the first movable roller 6 is placed on the chin, the first limiting groove 5 and the second limiting groove 8 are separated, and then the second movable roller 10 is driven by the motor 11 to move from the armpit to the palm to test the arm length and arm shape, as follows:

[0037] The support frame 1001 is provided with a feedback device on one side for the second movable roller 10 to slide along the arm after contacting the armpit, which comprises a rotating disc 12 arranged on the support frame 1001, a plurality of notches arranged on the rotating disc 12, a fixed column connected to one of the notches of the rotating disc 12, a second rotating handle 15 sleeved on the fixed column, a fixed rod 16 fixed at the bottom of the sliding seat 28, a first connecting column 17 rotatably connected to one end of the second rotating handle 15 and sleeved on the outer circle of one end of the fixed rod 16, a second connecting column 18 arranged on the outer circle of the other end of the fixed rod 16, a hinge shaft 19 fixedly connected to one end of the second connecting column 18 and sleeved into the outer circle of the slide rod 29, and a latch 20 fixed on the hinge shaft 19, wherein the latch 20 is movably connected with the path rack 27, the outer circle of the fixed rod 16 is provided with a spiral slide groove 1601, and the inner circle of the second connecting column 18 is provided with a fixed small ball 1801 movably arranged on the spiral slide groove 1601. When the first movable roller 6 is placed on the chin, the fixed column rotates around the notch of the rotating disc 12 to drive the shaft of the second rotating handle 15 to rotate, when the second rotating handle 15 rotates, the first connecting column 17 rotates, and then during the rotation of 120 degrees, the first connecting column 17 drives the second connecting column 18 to move on the outer circle of the fixed rod 16, and when the second connecting column 18 rotates, the fixed small ball 1801 arranged on the inner circle of the second connecting column 18 moves on the spiral slide groove 1601 of the outer circle of the fixed rod 16, as Figure 5 It can be seen that a elastic strip is arranged between the first connecting column 17 and the second connecting column 18 in actual operation, so that when the first connecting column 17 rotates, the elastic strip and the second connecting column 18 can also move axially along the outer circle of the fixed rod 16. When the second connecting column 18 advances along the outer circle of the fixed rod 16, the hinge shaft 19 is driven to rotate around the outer circle of the slide rod 29, and when the hinge shaft 19 rotates, the latch 20 is driven to insert into the hole of the path rack 27 to lock the height of the motor 11, preventing it from falling.

[0038] The notch on the rotating disc 12 is provided with at least three, and the displacement rod 13 is slidingly connected in the notch adjacent to the fixed column on the rotating disc 12, the feedback disengaging device rotatingly connected to one end of the displacement rod 13, the feedback disengaging device comprising a long rod provided on the displacement rod 13, a first rotating handle 14 rotatingly connected to the long rod, a rotating handle pushing block 23 fixed on the first rotating handle 14, and a disengaging device provided on the output shaft of the motor 11. When the first limiting groove 5 and the second limiting groove 8 are separated, the displacement rod 13 drives the rotating disc 12 to rotate 120°, so that the above-mentioned fixed column rotates 120° around the notch of the rotating disc 12, and then the rotating handle pushing block 23 rotates with the first rotating handle 14, so that the motor 11 drives the second movable roller 10 to rotate under the contact armpit. The specific implementation is as follows:

[0039] The output shaft of the motor 11 is provided with an inner diameter spindle 22, the outer circle of the inner diameter spindle 22 is provided with an outer diameter spindle 21, the outer diameter spindle 21 is composed of three connected cylinders, the disengaging device comprises a magnetic moment gear 25 provided on the outer circle of one of the connected cylinders, a first bevel gear 24 provided between the rotating handle pushing block 23 and the magnetic moment gear 25, a transmission gear 26 provided on the outer circle of another connected cylinder, and a connecting transmission device provided between the two support frames 1001. The inner diameter spindle 22 is directly connected with the main shaft of the motor 11, the outer diameter spindle 21 is made of elastic material, and the inner diameter spindle 22 is connected with the main shaft of the motor 11. Figure 10 It can be seen that a small ball is also installed at the inner circle of the middle connected cylinder, and the inner diameter spindle 22 is provided with a spiral slide groove near the small ball, the rotating handle pushing block 23 and the middle connected cylinder are connected through a fixed rod, so that the outer diameter spindle 21 can slide a certain distance on the inner diameter spindle 22, and can make the magnetic moment gear 25 contact with the first bevel gear 24 and the transmission gear 26 respectively when rotating, as shown in the drawing 10, when the magnetic moment gear 25 and the transmission gear 26 are connected, the transmission gear 26 and the path rack 27 are engaged, the motor 11 can be raised and lowered, when the rotating handle pushing block 23 drives the outer diameter spindle 21 to separate, the magnetic moment gear 25 and the transmission gear 26 are not in contact, the transmission gear 26 is braked to stop rotating, the spiral slide groove and the spiral slide groove 1601 on 16 are opposite in spiral, and when the displacement rod 13 drives the long rod to rise, the first rotating handle 14 is rotated, when the first rotating handle 14 is rotated, the outer diameter spindle 21 is driven to separate from each other, when the outer diameter spindle 21 is separated, the latch 20 is just inserted into the hole of the diameter rack 27.

[0040] The connecting transmission device comprises a second bevel gear 31 rotatably connected between the two support frames 1001, two pulleys 32 fixed on the second bevel gear 31 and the second limiting groove 8 respectively, and a driving gear 33 coaxially installed on one of the pulleys 32, wherein the first bevel gear 24 and the magnetic moment gear 25 are not in direct contact at the other end, when the transmission gear 26 is braked to stop rotating, the first bevel gear 24 is driven to rotate by the ball and the spiral sliding groove, the first bevel gear 24 and the magnetic moment gear 25 are in contact, the outer diameter main shaft 21 is separated, the first bevel gear 24 and the second bevel gear 31 are in meshing contact to drive the pulley 32 to rotate, and the driving gear 33 is driven to rotate when the pulley 32 rotates.

[0041] Each of the second limiting grooves 8 is installed with a transmission chain 9 on the side facing the driving gear 33, a plurality of fixed columns 901 are installed between the second limiting groove 8 and the transmission chain 9, a plurality of tooth columns are arranged in the inner and outer circles of the transmission chain 9, a limiting baffle 902 is installed on the side of the transmission chain 9 facing the rotating disc 12, the limiting baffle 902 and the rotating disc 12 are coincided with the gap, and the length of the limiting baffle 902 is half of the transmission chain 9, wherein the inner circle tooth column of the transmission chain 9 is in meshing contact with the driving gear 33, and the fixed column 901 and the transmission chain 9 are in sliding connection, when the driving gear 33 rotates, the transmission chain 9 is driven to slide on the fixed column 901, so that the driving gear 33 drives the transmission chain 9 to drive the second movable roller 10 to move under the armpit, and the second magnetic pen slides on the first magnetic wall 2.

[0042] The two first limiting grooves 5 are installed with a fixed brush 7 near the top of the second magnetic wall 4, the first limiting groove 5 is in the shape of a V-shaped positive installation on the output shaft of the two motors 11, when the device needs to be reset, the limiting baffle 902 and the rotating disc 12 gap are separated, the rotating disc 12 is reversely rotated due to the gravity of the long rod on the displacement rod 13, the magnetic moment gear 25 and the transmission gear 26 are in contact again, the motor 11 is reversed and lowered, and the fixed brush 7 is lowered to evenly wipe the magnetic powder on the second magnetic wall 4, wherein a fixed brush 7 is also installed on the first magnetic wall 2 in actual operation to facilitate the wiping of the magnetic powder on the magnetic wall.

[0043] The magnetic moment gear 15 adopts magnetic transmission, which is a gear meshing without mechanical contact. Due to the meshing of the gears without contact and friction energy consumption, the transmission is stable, which reflects the advantages of high efficiency, high reliability and long service life of the magnetic moment gear 15. Secondly, it does not need to be lubricated, clean, no oil stains, dustproof and waterproof. And has the function of overload protection, the main shaft of the motor 11 will not be damaged when overloaded, and the transmission relationship is cut off at any time when overloaded.

[0044] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and illustrative figures, it should be apparent that the scope of the present application is not limited to these specific embodiments.

[0045] While the embodiments of the application have been shown and described herein, it will be understood by those skilled in the art that many changes, modifications, substitutions and alterations to these embodiments can be made without departing from the principles and spirits of the application, and it is intended that the scope of the application be limited solely by the scope of the appended claims and the equivalents thereof.

Claims

1. A body shape measuring device for garment design, comprising a support frame (1), characterized in that: The support frame (1) is provided with a pair of first magnetic walls (2) on one side, a compensation block (201) is arranged between the two first magnetic walls (2), a second magnetic wall (4) is arranged on the other side of the support frame (1), sliding grooves are arranged on both sides of the support frame (1) on the side provided with the second magnetic wall (4), and a driving device for sliding along the human body is arranged on the side opposite to the sliding grooves; The driving device comprises a lifting driving assembly and a following attachment device; The lifting driving assembly comprises path racks (27) arranged at both ends of one side of the support frame (1), a sliding rod (29) arranged on the path racks (27), a motor (11) slidingly connected to the sliding rod (29), and a sliding seat (28) fixedly arranged at the bottom of the motor (11) and sliding along the sliding rod (29); The following attachment device comprises a first limiting groove (5) arranged on the output shaft of the motor (11), a pair of first movable rollers (6) slidingly connected to the first limiting groove (5), and a sliding connecting piece arranged at the top of each sliding seat (28) and sliding along the trunk, and a first magnetic pen is arranged at one end of each first movable roller (6) and faces the second magnetic wall (4). The sliding connecting piece comprises a pair of support frames (1001) arranged on each sliding seat (28), a second limiting groove (8) arranged on each support frame (1001), a second movable roller (10) slidingly connected between the two second limiting grooves (8), and a support plate (601) arranged on one of the sliding seats (28) and used for supporting the first limiting groove (5), and a second magnetic pen is arranged at one end of the second movable roller (10) and close to the first magnetic wall (2). A feedback device for sliding along the arm after contacting the armpit is arranged on one side of the support frame (1001), the feedback device comprises a rotating disc (12) arranged on the support frame (1001), a plurality of notches arranged on the rotating disc (12), a fixed column connected to one of the notches of the rotating disc (12), a second rotating handle (15) sleeved on the fixed column, a fixed rod (16) fixed at the bottom of the sliding seat (28), a first connecting column (17) rotatably connected to one end of the second rotating handle (15) and sleeved on the outer circle of one end of the fixed rod (16), a second connecting column (18) arranged on the outer circle of the other end of the fixed rod (16), a hinge shaft (19) fixedly connected to one end of the second connecting column (18) and sleeved in the outer circle of the sliding rod (29), and a bolt (20) fixed on the hinge shaft (19), the bolt (20) is movably connected with the path rack (27), a spiral sliding groove (1601) is arranged on the outer circle of the fixed rod (16), and a fixed small ball (1801) is movably arranged in the spiral sliding groove (1601) on the inner circle of the second connecting column (18).

2. A body shape measuring device for garment design according to claim 1, wherein: The notch on the rotating disc (12) is provided with at least three, and the displacement rod (13) is slidably connected in the notch adjacent to the fixed column on the rotating disc (12), the feedback disengaging device is rotatably connected to one end of the displacement rod (13), the feedback disengaging device comprises a long rod arranged on the displacement rod (13), a first rotating handle (14) rotatably connected to the long rod, a rotating handle pushing block (23) fixed on the first rotating handle (14), and a disengaging device arranged on the output shaft of the motor (11).

3. A body shape measuring device for garment design according to claim 2, wherein: The inner diameter main shaft (22) is installed on the output shaft of the motor (11), the outer diameter main shaft (21) is sleeved on the outer circle of the inner diameter main shaft (22), the outer diameter main shaft (21) is composed of three connected cylinders, the disengaging device comprises a magnetic moment gear (25) arranged on the outer circle of one of the connected cylinders, a first bevel gear (24) arranged between the rotating handle pushing block (23) and the magnetic moment gear (25), a transmission gear (26) arranged on the outer circle of another connected cylinder, and a connecting transmission device arranged between the two support frames (1001).

4. A body shape measuring device for garment design according to claim 3, wherein: The connecting transmission device comprises a second bevel gear (31) rotatably connected between the two support frames (1001), two pulleys (32) fixed on the second bevel gear (31) and the second limiting groove (8) through the rotating shaft respectively, and one of the pulleys (32) is coaxially provided with a driving gear (33).

5. The body shape measuring device for garment design according to claim 1, wherein: Each of the second limiting grooves (8) is provided with a transmission chain (9) on the side facing the driving gear (33), a plurality of fixed columns (901) are arranged between the second limiting groove (8) and the transmission chain (9), a plurality of tooth columns are arranged in the inner and outer circles of the transmission chain (9), a limiting baffle (902) is arranged on the side of the transmission chain (9) facing the rotating disc (12), the limiting baffle (902) and the notch of the rotating disc (12) coincide and the length is half of the transmission chain (9), the inner circle tooth column of the transmission chain (9) meshes with the driving gear (33), and the fixed column (901) and the transmission chain (9) are slidably connected.

6. A body measurement device for garment design according to claim 1, wherein: Two first limiting grooves (5) are provided with fixed brushes (7) near the top of the second magnetic wall (4), and the first limiting grooves (5) are V-shaped and arranged on the output shafts of the two motors (11).

7. A body measurement device for garment design according to claim 1, wherein: The second magnetic wall (4) and the two first magnetic walls (2) are provided with scales, and the length of the compensation block (201) is 100mm.

8. A body measurement device for garment design according to claim 1, wherein: The vertical distance between the first limiting groove (5) and the second limiting groove (8) is 15cm.

9. A body shape measuring device for garment design according to claim 1, wherein: The inner bottom of the support frame (1) is provided with a body weight scale (3).

Citation Information

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