Human body trunk measuring device and method for garment production
By designing a portable suitcase built-in lifting measurement assembly and fixed-point rotation mechanism, combined with the arm support assembly, the problems of low efficiency and limited application scenarios of traditional measurement devices are solved, and a rapid, accurate and flexible multi-item data acquisition is achieved.
Patent Information
- Application Number
- CN202510340963.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-06-13
AI Technical Summary
The traditional human torso measurement method is inefficient and the results are inaccurate. The existing measurement devices are complex in structure, large in size, heavy and difficult to move, unable to meet the needs of flexible applications, and it is difficult to collect different types of torso data at the same time.
A measuring device including a suitcase, a lifting measuring assembly, a fixed-point rotating mechanism and an arm support assembly are designed. The suitcase has built-in lifting measuring assembly and fixed-point rotation mechanism, which can easily adjust the height of the measuring assembly and fixed-point rotation mechanism to adapt to different body shapes and standing postures. The arm support assembly provides arm support to improve measurement comfort.
The device is easy to disassemble and transport, expands application scenarios, can quickly and accurately collect multiple torso data, adapt to different body shapes and stances, and significantly improves measurement efficiency and comfort.
Smart Images

Figure CN120130718A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of clothing production, and particularly relates to a human torso measurement device and method for clothing production. Background Art
[0002] In the field of clothing production, accurately measuring human torso data is a key link to ensure that clothing fits comfortably and improve product quality. With the continuous growth of consumers' demand for personalized and customized clothing, as well as the increasing requirements of the clothing industry for production efficiency and product accuracy, more stringent challenges are posed to the performance of human torso measurement devices. Traditional methods for measuring the human torso mostly rely on manual use of a tape measure. This method not only has low measurement efficiency, but also the measurement results are significantly affected by the operation techniques and experience differences of the measurement personnel, making it difficult to ensure the accuracy and consistency of the data.
[0003] Existing human torso measurement devices have improved the measurement efficiency and accuracy to a certain extent, but there are still many defects. For example, they usually have a relatively complex structure, are relatively large and heavy in size. They often include a large-sized base, complex mechanical transmission components, and a fixed measurement frame, etc., making it difficult to be easily carried by a single person, and even more impossible to perform measurements anytime and anywhere, greatly limiting their application scenarios and unable to meet the needs of services for special customers at their doorsteps or flexible transfer of measurement work between different sites; and it is difficult to collect different types of torso data of the human body simultaneously, and the collection efficiency is poor. Most devices are designed for conventional measurements in a static standing posture and lack an adaptation mechanism for the dynamic changes of the arms.
[0004] Therefore, we provide a human torso measurement device and method for clothing production to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a human torso measurement device and method for clothing production in view of the problems in the background art.
[0006] The present invention achieves the above purpose through the following technical solutions:
[0007] A human torso measurement device for clothing production includes a portable box body. An elevating measurement component is provided in the upper part of the inner cavity of the portable box body; the measurement component includes a cross beam and two first adjustable telescopic rods for supporting the cross beam. The bottom ends of the first adjustable telescopic rods are fixed in the portable box body. A plurality of equally spaced chutes are provided on the cross beam, and a height-adjustable measurement unit is provided in the chutes; a push-pull type fixed-point rotation mechanism is provided in the lower part of the inner cavity of the portable box body, and the fixed-point rotation mechanism is used to drive the portable box body to rotate around the human body to comprehensively collect human torso data in a standard standing posture and a non-standard standing posture.
[0008] As a further optimized solution of the present invention, the standard standing posture is the standing state with the human body's arms hanging naturally, and the non-standard standing posture is the standing state with the human body's arms lifted to different angles.
[0009] As a further optimized solution of the present invention, the top of the portable box body is provided with a main chamber for placing the measurement component in the retracted state. The top of the main chamber is hinged with a box cover. A handle is provided on the outer side surface of the box cover, and a display screen is provided on the inner side surface of the box cover. A side chamber for placing the fixed-point rotation mechanism in the retracted state is provided at the lower part of the side of the portable box body. Rollers are provided at the bottom of the portable box body.
[0010] As a further optimized solution of the present invention, the measurement unit includes a vertical plate body and a slider slidably arranged in the through groove of the vertical plate body. A ball joint is fixed on the slider, and an installation plate is fixed on the ball head of the ball joint. Measuring components and two laser positioning light strips symmetrically distributed on both sides of the measuring components are installed on the installation plate.
[0011] As a further optimized solution of the present invention, a magnetic sheet magnetically coupled with the vertical plate body is provided in the chute. A magnetic sheet magnetically coupled with the slider is provided in the through groove of the vertical plate body.
[0012] As a further optimized solution of the present invention, the fixed-point rotation mechanism includes a fixed plate fixed on the bottom surface of the side chamber and an adjustable telescopic plate located above the fixed plate. A plurality of springs are provided between the bottom surface of the inner end of the adjustable telescopic plate and the fixed plate. An outer ring body is fixed at the outer end of the adjustable telescopic plate. An inner ring body is provided inside the outer ring body. A plurality of suction cups evenly distributed along the circumference are provided at the bottom of the inner ring body. A groove for the rotation of the outer ring body is provided on the surface of the inner ring body.
[0013] As a further optimized solution of the present invention, both the outer ring body and the inner ring body are composed of two semi-ring bodies spliced together. The two semi-ring bodies are hinged through a connecting member to realize the folding of the outer ring body and the inner ring body.
[0014] As a further optimized solution of the present invention, it further includes two lifting armrest assemblies for supporting the human arms. The armrest assemblies are installed at the outer ends of the fixed-point rotation mechanism. Card slots for placing the armrest assemblies in the retracted state are provided at both ends of the side of the portable box body.
[0015] As a further optimized solution of the present invention, the armrest assembly includes a connecting plate fixed on the surface of the inner ring body and a second adjustable telescopic rod; a first support is fixedly provided at the bottom end of the second adjustable telescopic rod, a second support rotatably matched with the first support is fixedly provided on the connecting plate, and a fastener for locking the first support is provided on the side surface of the second support; a shock isolation support is fixedly provided at the top end of the second adjustable telescopic rod, a cylindrical body is fixedly provided on the top of the shock isolation support, a ring body is rotatably provided in the annular groove of the cylindrical body, an arm support plate is fixedly provided on the ring body, a fastener for locking the ring body is provided at one end of the cylindrical body, a protractor for measuring the rotation angle of the arm support plate is rotatably provided at the other end of the cylindrical body, and a counterweight for keeping it always in a horizontal state is provided at the bottom of the protractor.
[0016] The present invention also provides a method for measuring the human torso for clothing production, including the following steps:
[0017] S1. Pull out the measuring assembly from the suitcase body, adjust it to a suitable height based on the human height, and then adjust the height of each measuring unit to measure different types of human torso data;
[0018] S2. Pull out the fixed-point rotation mechanism from the suitcase body and fix its outer end on the ground;
[0019] S3. The human body stands at the center of the outer end of the fixed-point rotation mechanism, and the suitcase body is pushed to rotate along the human body to comprehensively collect the human torso data in the standard standing posture and the non-standard standing posture.
[0020] The beneficial effects of the present invention are as follows:
[0021] 1. By setting the suitcase body, the retractable measuring assembly, the fixed-point rotation mechanism and the armrest assembly, the present invention is designed in a form that is easy to disassemble and assemble, which is convenient for saving space when not in use, and is also convenient for transportation and storage, greatly improving its application scenario range, such as on-site service, etc.
[0022] 2. By setting multiple measuring units and the fixed-point rotation mechanism, the present invention can measure multiple torso data of the human body at the same time, greatly improving the acquisition efficiency of human torso data. Moreover, the measuring assembly adopts a multi-stage height adjustment method, which can adapt to the use of human bodies of different body types. The measuring unit can rotate around the human body based on the fixed-point rotation mechanism to comprehensively collect the human torso data in the standard standing posture and the non-standard standing posture.
[0023] 3. By setting the armrest assembly, the present invention can significantly improve the comfort during the measurement process, effectively solve the problem of fatigue caused by the arms being suspended for a long time and lacking support during the measurement, enabling the device to collect the torso data of the human body at different angles when the arms are lifted, and the height and angle of the armrest assembly can be adjusted to adapt to the use of human bodies of different body types. Brief Description of the Drawings
[0024] Figure 1 is a three-dimensional schematic diagram of the overall structure of the present invention;
[0025] Figure 2 is a schematic diagram of the structure of the portable box body of the present invention;
[0026] Figure 3 is a schematic diagram of the structure of the measurement component of the present invention;
[0027] Figure 4 is a schematic diagram of the structure of the measurement unit of the present invention Figure 1 ;
[0028] Figure 5 is a schematic diagram of the structure of the measurement unit of the present invention Figure 2 ;
[0029] Figure 6 is a schematic diagram of the structure of the fixed-point rotation mechanism of the present invention;
[0030] Figure 7 is a schematic diagram of the connection structure between the outer ring body and the inner ring body of the present invention;
[0031] Figure 8 is a schematic diagram of the structure of the armrest assembly of the present invention.
[0032] In the figure:
[0033] 1. Portable box body; 101. Main chamber; 102. Box cover; 103. Display screen; 104. Side chamber; 105. Card slot; 106. Roller; 2. Measurement component; 201. Cross beam; 202. First adjustable telescopic rod; 203. Slide groove; 204. Measurement unit; 204a. Vertical plate body; 204b. Slide block; 204c. Mounting plate; 204d. Measurement component; 204e. Laser positioning light bar; 204f. Ball joint; 3. Fixed-point rotation mechanism; 301. Adjustable telescopic plate; 302. Fixed plate; 303. Spring; 304. Outer ring body; 305. Inner ring body; 306. Suction cup; 307. Groove; 4. Armrest assembly; 401. Second adjustable telescopic rod; 402. First support; 403. Second support; 404. Connecting plate; 405. Vibration isolation support; 406. Cylindrical body; 407. Ring body; 408. Armrest plate; 409. Protractor; 410. Counterweight. Detailed Description of the Preferred Embodiment
[0034] The following further describes the present application in detail with reference to the accompanying drawings. It is necessary to point out here that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the protection scope of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content.
[0035] Example 1
[0036] In order to solve the problems that existing human torso measurement devices are usually complex in structure, large in size and heavy in weight, which greatly limit their application scenarios, and most devices are for conventional measurements in a static standing posture and lack an adaptation mechanism for the dynamic changes of the arms, please refer to Figures 1 - 3 , a human torso measurement device for clothing production provided by the present invention includes a portable box body 1, and a lifting measurement assembly 2 is provided in the upper part of the inner cavity of the portable box body 1; the measurement assembly 2 includes a cross beam 201 and two first adjustable telescopic rods 202 for supporting the cross beam 201, the bottom ends of the first adjustable telescopic rods 202 are fixed in the portable box body 1, a plurality of equally spaced chutes 203 are provided on the cross beam 201, and a height-adjustable measurement unit 204 is provided in the chutes 203; a push-pull type fixed-point rotation mechanism 3 is provided in the lower part of the inner cavity of the portable box body 1, and the fixed-point rotation mechanism 3 is used to drive the portable box body 1 to rotate around the human body to comprehensively collect human torso data in a standard standing posture and a non-standard standing posture. The portable box body 1 and the retractable measurement assembly 2, the fixed-point rotation mechanism 3 and the armrest assembly 4 are designed in a form that is easy to disassemble and assemble, which is convenient for saving space when not in use, and is also convenient for transportation and storage, greatly improving the scope of its application scenarios, such as on-site service, etc.
[0037] The standard standing posture is the standing state with the human arms hanging naturally, and the non-standard standing posture is the standing state with the human arms raised to different angles, such as collecting human torso data when the human arms are raised to 45 degrees, 90 degrees, 135 degrees and 180 degrees. The human torso data includes but is not limited to the following items: chest circumference, waist circumference, hip circumference, neck circumference, abdominal circumference, shoulder width, chest width, back width, back length and waist length.
[0038] The top of the portable box body 1 is provided with a main chamber 101 for placing the measurement assembly 2 in a retracted state. The top of the main chamber 101 is hinged with a box cover 102. A handle is provided on the outer side surface of the box cover 102, and a display screen 103 is provided on the inner side surface of the box cover 102 for real-time display of measurement data; a side chamber 104 for placing the fixed-point rotation mechanism 3 in a retracted state is provided at the lower part of the side surface of the portable box body 1; rollers 106 are provided at the bottom of the portable box body 1.
[0039] Such as Figures 4 - 5As shown in the figure, the measuring unit 204 includes a vertical plate body 204a and a slider 204b slidably disposed in the through groove of the vertical plate body 204a; a ball joint 204f is fixedly provided on the slider 204b, and a mounting plate 204c is fixedly provided on the ball head of the ball joint 204f. A measuring component 204d and two laser positioning light strips 204e symmetrically distributed on both sides of the measuring component 204d are mounted on the mounting plate 204c. A magnetic sheet magnetically coupled with the vertical plate body 204a is provided in the chute 203; a magnetic sheet magnetically coupled with the slider 204b is provided in the through groove of the vertical plate body 204a. The measuring component 204d includes, but is not limited to, a distance measuring sensor, a camera, a scanner, etc.
[0040] During use, based on the height of the human body, adjust the height of the first adjustable telescopic rod 202 to adapt to the overall height of the person to be measured. Subsequently, for the specific proportion of the upper body of the human body, move the vertical plate body 204a up and down in the chute 203, and move the slider 204b up and down in the vertical plate body 204a to further fine-tune the height. During adjustment, position by means of the laser positioning light strip 204e, and then adjust the angle of the mounting plate 204c through the ball joint 204f. Through a multi-stage and refined height adjustment method, ensure that the device can accurately fit the unique sizes and postures of different human bodies, providing the best support for measurement; use multiple measuring components 204d to simultaneously collect different types of torso data of the human body, greatly reducing the measurement time and significantly improving the collection efficiency of human torso data.
[0041] As Figures 6 - 7 As shown in the figure, the fixed-point rotation mechanism 3 includes a fixed plate 302 fixed on the bottom surface of the side chamber 104 and an adjustable telescopic plate 301 located above the fixed plate 302; a plurality of springs 303 are provided between the bottom surface of the inner end of the adjustable telescopic plate 301 and the fixed plate 302. The outer end of the adjustable telescopic plate 301 is fixedly provided with an outer ring body 304. An inner ring body 305 is provided in the outer ring body 304. A plurality of suction cups 306 evenly distributed along the circumference are provided at the bottom of the inner ring body 305. A groove 307 for the rotation of the outer ring body 304 is provided on the surface of the inner ring body 305. Both the outer ring body 304 and the inner ring body 305 are formed by splicing two semi-circular bodies, and the two semi-circular bodies are hinged through a connecting member to realize the folding of the outer ring body 304 and the inner ring body 305.
[0042] During use, pull the adjustable telescopic plate 301 outwards to an appropriate length, then unfold the outer ring body 304 and the inner ring body 305, press the inner ring body 305 downwards so that the suction cups 306 are adsorbed on the ground. A person stands at the center of the inner ring body 305. By pushing the hand-held box body 1, the hand-held box body 1 drives the adjustable telescopic plate 301 and the outer ring body 304 to rotate along the groove 307 of the inner ring body 305, and the hand-held box body 1 drives the measuring assembly 2 to rotate, so as to collect the torso data of the human body in both standard and non-standard standing postures in all directions.
[0043] Example 2
[0044] On the basis of Example 1, in order to significantly improve the comfort during the measurement process and effectively solve the problem of fatigue caused by the arm being suspended for a long time without support during measurement, as Figure 1 , Figure 8 shown, it further includes two lifting armrest assemblies 4 for supporting the human arm, and the armrest assemblies 4 are installed at the outer ends of the fixed-point rotation mechanism 3; slots 105 for placing the armrest assemblies 4 in the retracted state are provided at both ends of the side surface of the portable box body 1.
[0045] The armrest assembly 4 includes a connecting plate 404 fixed on the surface of the inner ring body 305 and a second adjustable telescopic rod 401; a first support 402 is fixedly provided at the bottom end of the second adjustable telescopic rod 401, a second support 403 rotatably matched with the first support 402 is fixedly provided on the connecting plate 404, and a fastener for locking the first support 402 is provided on the side surface of the second support 403; a shock isolation support 405 is fixedly provided at the top end of the second adjustable telescopic rod 401, a cylindrical body 406 is fixedly provided at the top of the shock isolation support 405, a ring body 407 is rotatably provided in the annular groove of the cylindrical body 406, and an arm support plate 408 is fixedly provided on the ring body 407. In order to ensure the comfort and safety of the user, the cylindrical body 406 and the arm support plate 408 should be wrapped with soft and elastic materials such as memory foam, etc. A fastener for locking the ring body 407 is provided at one end of the cylindrical body 406, and a protractor 409 for measuring the rotation angle of the arm support plate 408 is rotatably provided at the other end of the cylindrical body 406, and a counterweight 410 for keeping it always in a horizontal state is provided at the bottom of the protractor 409.
[0046] During use, based on the body shape of the human body, adjust the angle and length of the second adjustable telescopic rod 401 so that the cylindrical body 406 is adjusted to the armpit part of the human body to ensure that people of different body shapes can find a comfortable position. When adjusting the angle, loosen the fastener on the side surface of the second support 403. At this time, the first support 402 can rotate freely to drive the second adjustable telescopic rod 401 to rotate to a suitable angle, and then tighten the fastener on the side surface of the second support 403; based on the measurement needs, adjust the angle of the arm support plate 408 in sequence to collect the human torso data when the human arms are lifted to different angles, such as 45 degrees, 90 degrees, 135 degrees, and 180 degrees, etc. When adjusting, loosen the fastener at one end of the cylindrical body 406. At this time, the ring body 407 can rotate freely to drive the arm support plate 408 to rotate to the measurement angle, accurately measure through the protractor 409, and then tighten the fastener at one end of the cylindrical body 406.
[0047] The setting of the armrest assembly 4 can significantly improve the comfort during the measurement process, effectively solve the problem of fatigue caused by the arm being suspended for a long time and lacking support during measurement, and the height and angle of the armrest assembly 4 can be adjusted to adapt to the use of people with different body types.
[0048] Embodiment Three
[0049] Based on Embodiment One and Embodiment Two, the present invention further provides a method for measuring the human torso for clothing production, including the following steps:
[0050] S1. Pull out the measurement assembly 2 from the portable box body 1, adjust it to a suitable height based on the human height, and then adjust the height of each measurement unit 204 to measure the human torso data of different types.
[0051] S2. Pull out the fixed-point rotation mechanism 3 from the portable box body 1 and fix its outer end to the ground. The armrest assembly 4 leaves the card slot 105 as the fixed-point rotation mechanism 3 is pulled out, and its height and angle are adjusted to a suitable level based on the human height.
[0052] S3. The human body stands at the center of the outer end of the fixed-point rotation mechanism 3, with the armpit supported by the cylinder body 406 and the arm supported by the armrest plate 408. Push the portable box body 1 to rotate along the human body to comprehensively collect the human torso data in the standard standing posture and non-standard standing posture.
[0053] The above-described embodiments only represent one implementation manner of the present invention, and the description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the present invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention.
Claims
1. A human body torso measuring device for garment production, comprising a suitcase body (1), characterized in that: A lifting measuring assembly (2) is provided at the upper part of the inner cavity of the suitcase body (1); The measuring assembly (2) comprises a crossbeam (201) and two first adjustable telescopic rods (202) for supporting the crossbeam (201), the bottom ends of the first adjustable telescopic rods (202) being fixed in the suitcase body (1), the crossbeam (201) being provided with a plurality of equally spaced sliding grooves (203), and the sliding grooves (203) being provided with height-adjustable measuring units (204); A push-pull fixed-point rotating mechanism (3) is provided at the lower part of the inner cavity of the suitcase body (1), and the fixed-point rotating mechanism (3) is used to drive the suitcase body (1) to rotate around the human body to comprehensively collect human body trunk data in standard standing postures and non-standard standing postures.
2. A human torso measuring device for clothing production according to claim 1, characterized in that: The standard standing posture is a standing state in which the human body's arms are naturally hanging down, and the non-standard standing posture is a standing state in which the human body's arms are raised to different angles.
3. The human body torso measuring device for clothing production according to claim 1, characterized in that: The top of the suitcase body (1) is provided with a main chamber (101) for placing the measuring assembly (2) in a folded state, the top of the main chamber (101) is hingedly provided with a case cover (102), the outer side surface of the case cover (102) is provided with a handle, and the inner side surface of the case cover (102) is provided with a display screen (103); A side chamber (104) for accommodating the fixed-point rotating mechanism (3) in a folded state is provided at the lower side of the suitcase body (1); The bottom of the suitcase body (1) is provided with rollers (106).
4. The human body torso measuring device for clothing production according to claim 1, characterized in that: The measuring unit (204) comprises a vertical plate body (204a) and a sliding block (204b) slidably arranged in a through groove of the vertical plate body (204a); A ball joint (204f) is fixedly provided on the slider (204b), a mounting plate (204c) is fixedly provided on the ball head of the ball joint (204f), and a measuring component (204d) and two laser positioning light bars (204e) symmetrically distributed on both sides of the measuring component (204d) are mounted on the mounting plate (204c).
5. A human body torso measuring device for clothing production according to claim 4, characterized in that: The slide groove (203) is provided with a magnetic sheet that magnetically cooperates with the vertical plate body (204a); A magnetic sheet that magnetically cooperates with the slider (204b) is provided in the through groove of the vertical plate body (204a).
6. The human body torso measuring device for clothing production according to claim 3, characterized in that: The fixed-point rotation mechanism (3) comprises a fixed plate (302) fixed on the bottom surface of the side chamber (104) and an adjustable telescopic plate (301) located above the fixed plate (302); A plurality of springs (303) are arranged between the inner end bottom surface of the adjustable telescopic plate (301) and the fixed plate (302); an outer ring body (304) is fixedly arranged at the outer end of the adjustable telescopic plate (301); an inner ring body (305) is arranged inside the outer ring body (304); a plurality of suction cups (306) evenly distributed along the circumference are arranged at the bottom of the inner ring body (305); and a groove (307) for the outer ring body (304) to rotate is arranged on the surface of the inner ring body (305).
7. A human body torso measuring device for clothing production according to claim 6, characterized in that: The outer ring body (304) and the inner ring body (305) are both formed by splicing two half-ring bodies, and the two half-ring bodies are hingedly connected by a connecting piece to achieve folding of the outer ring body (304) and the inner ring body (305).
8. The human body torso measuring device for clothing production according to claim 6, characterized in that: It also includes two lifting arm support assemblies (4) for supporting human arms, wherein the arm support assemblies (4) are mounted on the outer ends of the fixed-point rotating mechanism (3); Both ends of the side surface of the suitcase body (1) are provided with slots (105) for accommodating the arm support assembly (4) in a folded state.
9. A human body torso measuring device for clothing production according to claim 8, characterized in that: The arm support assembly (4) comprises a connecting plate (404) fixed on the surface of the inner ring body (305) and a second adjustable telescopic rod (401); A first support (402) is fixedly provided at the bottom end of the second adjustable telescopic rod (401), a second support (403) rotatably matched with the first support (402) is fixedly provided on the connecting plate (404), and a fastener for locking the first support (402) is provided on the side surface of the second support (403); A seismic isolation support (405) is fixedly provided at the top end of the second adjustable telescopic rod (401), a cylindrical body (406) is fixedly provided at the top of the seismic isolation support (405), a ring body (407) is rotatably provided in the annular groove of the cylindrical body (406), an arm support plate (408) is fixedly provided on the ring body (407), a fastener for locking the ring body (407) is provided at one end of the cylindrical body (406), a protractor (409) for measuring the rotation angle of the arm support plate (408) is rotatably provided at the other end of the cylindrical body (406), and a counterweight block (410) for keeping the protractor (409) always in a horizontal state is provided at the bottom of the protractor (409).
10. A method for measuring a human body trunk for garment production, using a human body trunk measuring device for garment production as claimed in any one of claims 1 to 9, characterized in that: The following steps are involved: S1, pulling the measuring assembly (2) out of the suitcase (1), adjusting it to a suitable height based on the height of a human body, and then adjusting the height of each measuring unit (204) to measure different types of human body trunk data; S2, pull the fixed-point rotating mechanism (3) out of the suitcase body (1), and fix its outer end on the ground; S3. The human body stands at the center of the outer end of the fixed-point rotating mechanism (3), and the suitcase body (1) is pushed to rotate along the human body, so as to comprehensively collect human body trunk data in standard standing postures and non-standard standing postures.
Citation Information
Cited By
Human body trunk measuring device and method for garment production
CN120678276A