Efficient load distribution wearable carrying system

By designing a combination of vest module, waist belt module and load transfer module, the problems of shoulder fatigue and limited flexibility of movement in existing technologies are solved, achieving efficient load distribution and optimization, and improving carrying capacity and comfort.

CN121058992APending Publication Date: 2025-12-05杭州智元研究院有限公司
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Patent Information

Application Number
CN202511612616.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-06
Publication Date
2025-12-05

AI Technical Summary

Technical Problem

While existing bulletproof vests and towing load-bearing vests improve load-carrying capacity, they still suffer from shoulder fatigue and limited flexibility in movement.

Method used

Design an efficient load distribution wearable carrying system, including a vest module, a waist belt module, and a load transfer module. The load transfer module enables the load on the shoulders and waist to be distributed as needed, and the load distribution is optimized by combining a height adjustment mechanism and a rotation mechanism.

Benefits of technology

Reduce shoulder fatigue, improve carrying capacity, adapt to different body types and movement requirements, and ensure flexibility in movement execution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an efficient load distribution wearing and carrying system which comprises a vest module, a waist sealing module and a load transfer module, the vest module is connected with the waist sealing module through the load transfer module, the vest module is used for carrying and loading the upper body, the waist sealing module is arranged on the waist, and force transmission is achieved through the load transfer module. Loads of the shoulders and the waist are distributed according to needs. By improving the carrying bearing capacity and comprehensively considering the flexibility requirement related to action execution, the body area load of a person is transferred from the shoulders to the waist according to needs, the fatigue of the shoulders is reduced through human shoulder and waist cooperative bearing, meanwhile, a height adjusting module is arranged on the basis of load transferring, and the weight of the person is reduced. The shoulder and waist load distribution proportion can be adjusted according to needs, and meanwhile the wearing requirements of people of different body types can be met.
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Description

Technical Field

[0001] This invention belongs to the field of wearable and portable devices, and specifically relates to a high-efficiency load distribution wearable and portable system. Background Technology

[0002] The overall development of carrying and carrying equipment has gone through five typical stages: "waist-mounted," "chest-mounted," "vest-style," "modular," and "integrated carrying and protective equipment." Figure 1 As shown, with the development of modern information and intelligent technologies and equipment, the load-bearing capacity of portable equipment (such as batteries, radios, information terminals, etc.) is constantly increasing, which reduces the mobility (flexibility of action execution, speed of movement, etc.) and sustainability of personnel wearing and carrying such equipment.

[0003] To improve the carrying capacity of personnel, patent application number 202321516229.1 discloses a bulletproof vest structure, which uses a support frame set on the inner side of the rear panel. Figure 2 Serial number 7) and backing ( Figure 2 (Item No. 6) effectively increases back support, improves resistance to sports impacts, and enhances the stability and comfort of back load.

[0004] Patent application number 202220353176.5 discloses a traction-type load-bearing vest structure, which uses a waist connecting belt ( Figure 3 A quick-release connector is provided on serial number 10. Figure 3 (Item No. 15) can be quickly attached and detached from the towing device (such as a towing vehicle, where the load can be placed on the towing vehicle to reduce the load on the person's own equipment), realizing the quick connection and disconnection of the person and the load. It is easy to use. When using the waist connecting belt to carry the load, it can free up the hands. Moreover, the force guide plate can distribute the force to the main body of the vest, making the force more even, reducing waist pressure, less damage to the user, and better comfort. It can also meet the needs of people with different body types.

[0005] The two patents mentioned above improve the load-carrying capacity of personnel through two methods: "enhancing the support performance of the bulletproof vest body" and "transferring the load to the towing equipment". However, the two methods still have the following limitations: 1) Based on the structure of the "enhancing the support performance of the bulletproof vest body" patent, the load carried by the personnel is still concentrated on the shoulders, and the problem of shoulder fatigue cannot be solved; 2) Based on the "transferring the load to the towing equipment" patent, this structure is more focused on transferring the load to the towing equipment, and the flexibility of personnel in performing movements is limited when wearing the equipment. Summary of the Invention

[0006] To address the aforementioned problems, the present invention aims to provide an efficient load-sharing wearable carrying system.

[0007] The specific technical solution for achieving the objective of this invention is as follows:

[0008] The high-efficiency load distribution wearable carrying system comprises a vest module, a waist seal module and a load transfer module.

[0009] The vest module is connected with the load transfer module and the waist seal module.

[0010] The vest module is used to realize the carrying and load of the upper body.

[0011] The waist seal module is arranged at the waist and realizes force transmission through the load transfer module, thereby realizing the on-demand distribution of the load of the shoulder and the waist.

[0012] Further, the vest module comprises a vest main body, a fixing main surface and a fixing auxiliary part.

[0013] The fixing main surface is arranged on the vest main body.

[0014] The fixing main surface and the fixing auxiliary part cooperate to realize the reinforcement of the structure of the vest main body.

[0015] Further, the fixing main surface is provided with a Velcro or other structure with a fixing accessory.

[0016] The fixing auxiliary part is provided with a Velcro or other structure with a fixing accessory which cooperates with the fixing main surface.

[0017] Further, the waist seal module comprises a waist seal body, a waist lock buckle and a load transfer interface.

[0018] The waist seal body is connected through the waist lock buckle.

[0019] The waist seal body is provided with the load transfer interface for connecting with the load transfer module.

[0020] Further, the load transfer module comprises a connecting mechanism, a load transmission structure, a quick-release pin, a height adjustment rope, a fixing pin, a fastening cover plate and a movable guide rail structure.

[0021] The connecting mechanism is connected with the fixing main surface, and the connecting mechanism and the load transmission structure are connected through the quick-release pin.

[0022] The other end of the load transmission structure is provided with the height adjustment rope.

[0023] The load transmission structure is further connected with the movable guide rail structure, and the fastening cover plate is connected with the movable guide rail structure through the fixing pin.

[0024] Further, when the end of the load transmission structure connected with the connecting mechanism is locked through the quick-release pin, the transmission structure and the connecting mechanism can rotate around the axis of the quick-release pin.

[0025] Further, one end of the height adjustment rope is fixed to the load transfer structure, and the other end is a free end and is threaded through the movable guide rail structure.

[0026] The surface of the fastening cover plate and the movable guide rail structure is provided with a sawtooth structure, which clamps the free end of the height adjustment rope after cooperation.

[0027] Further, the MOLLE load unit is arranged on the vest module and the waist seal module.

[0028] Compared with the prior art, the present application has the following beneficial effects:

[0029] (1) The scheme of the present application improves the carrying load capacity of the personnel, comprehensively considers the flexibility requirements related to the execution of personnel actions, designs a high-efficiency load distribution and wearing carrying assembly, transfers the body load of the personnel from the shoulder to the waist as needed, reduces the shoulder fatigue degree through the shoulder and waist collaborative load bearing, and at the same time, sets the height adjustment mechanism on the basis of the load transfer mechanism, so as to realize the adjustable load distribution ratio of the shoulder and the waist, and meet the wearing requirements of personnel of different body types.

[0030] (2) The scheme realizes the load transfer of the wearing carrying load to the waist seal through the shoulder-waist load distribution and load transfer structure, realizes the collaborative force of the shoulder and the waist, reduces the shoulder fatigue degree of the human body, improves the carrying load efficiency of the human body, and adjusts the load distribution ratio of the shoulder and the waist through the height adjustment rope mechanism.

[0031] (2) The height of the scheme is flexible and adjustable: in view of the problem that the longitudinal distance between the vest and the waist seal is not fixed due to different body types and different wearing habits of personnel, the height adjustment rope mechanism is set, the overall length of the load transfer structure can be quickly adjusted by one person, and quick adaptation to different personnel is realized.

[0032] (3) The scheme does not affect the execution and use of personnel actions: the load transfer mechanism is provided with a rotating mechanism (the combination part of 301, 302 and 303) for the action requirements such as bending and leaning back of the human body, in the bending working condition, on the basis that the rotating mechanism realizes the bending of the structure according to the movement service of the human body, the 302 structure can be freely moved upward (304 only realizes the bottom limiting of 302, and the upper space of the 302 structure is not limited), so as to avoid the interference between the movement process of the human body and the structure and cause the limitation of bending.

[0033] The present application will be further described in conjunction with the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 The figure is a schematic diagram of the development process of the carrying load equipment in the background art, wherein (a) to (e) are waist hanging type, chest hanging type, vest type, modular type and carrying and defense integrated type.

[0035] Figure 2The structure diagram of the bulletproof vest in the background art.

[0036] Figure 3 The structure diagram of the load-bearing vest in the background art.

[0037] Figure 4 The structure diagram of the high-efficiency load distribution wearable carrying system in the present application.

[0038] Figure 5 The structure diagram of the vest module in the present application.

[0039] Figure 6 The structure diagram of the waist seal module in the present application.

[0040] Figure 7 The structure diagram of the load transfer module fixing mode in the present application.

[0041] Figure 8 The structure diagram of the load transfer module in the present application.

[0042] Figure 9 The connection diagram of the load transfer module and the vest module in the present application.

[0043] Figure 10 The internal connection diagram of the load transfer module in the present application.

[0044] Figure 11 The adjustment diagram of the load transfer module in the present application. DETAILED DESCRIPTION

[0045] EMBODIMENT

[0046] In order to clearly describe the technical solutions of the present application and the effects achieved, the technical solutions of the present application will be clearly explained below in combination with the drawings and specific embodiments of the present application, so that the skilled in the art can realize the present application without creative labor. The structure shown in the drawings is not the whole of the actual structure but only a part of the actual structure. It should be noted that all other embodiments made by the ordinary skilled in the art on the basis of the embodiments of the present application without creative labor shall belong to the protection scope of the present application.

[0047] The following listed partial examples are only for better illustrating the present application, but the present application is not limited to the application in the listed examples. Therefore, the skilled in the art can make non-essential modifications to the embodiments based on the above summary of the application and apply them to other examples, which are still within the protection scope of the present application. In addition, the experimental methods in the following examples are not specified, which should be carried out according to the conventional or manufacturer's recommended conditions. The expressions in the text are only used for distinguishing, and do not have other meanings unless otherwise specified.

[0048] In combination Figure 4 and Figure 7 , a high-efficiency load distribution wearable carrying system, comprising a vest module 1, a waist seal module 2 and a load transfer module 3;

[0049] The vest module 1 is connected through the load transfer module 3 and the waist seal module 2;

[0050] The vest module 1 can be directly worn on the upper body of the human body, and can be used to realize the carrying and load of the upper body;

[0051] Among them, the vest module 1 and the waist seal module 2 can be provided with MOLLE load units as needed, which is a modular lightweight load equipment, and is a freely assembled carrying tool. The sub-system accessories can be assembled on the main body through nylon webbing, so that the sub-system components and the main body are coordinated with each other;

[0052] The waist seal module 2 is arranged at the waist and realizes force transmission through the load transfer module 3, so as to realize the load distribution of the shoulder and the waist as needed.

[0053] Compared with the existing vest type carrying assembly, the load is mainly borne by the human shoulder. In the present scheme, the vest and the waist seal are connected with the load transfer structure through the fixing structure and the bag inserting structure respectively. The load transfer module 3 can be regarded as a rigid structure, which can transfer the load of the vest to the waist seal part in the wearing state of the human body, optimize the rationality of the overall load distribution, and improve the carrying capacity of the personnel.

[0054] In actual use, the load transfer module 3 can not only be adjusted according to the body shape, but also be adjusted in length according to the load condition, so as to realize the adjustment of the position of the vest module 1 on the upper body of the human body. Whether the vest module 1 is a relatively hard rigid material or a flexible material, when it is loaded with external mounting equipment, adjusting the length of the load transfer module 3 can make the vest module 1 move up or down. At this time, due to the upward movement of the vest module 1, a certain gap is formed between the vest module 1 and the upper body of the human body (especially the shoulder), so that the load of the vest can be transferred to the waist seal part, realizing the load distribution as needed.

[0055] In combinationFigure 5 The vest module 1 comprises a vest body 101, a fixing main surface 102 and a fixing auxiliary 103;

[0056] The fixing main surface 102 is arranged on the vest body 101;

[0057] The fixing main surface 102 and the fixing auxiliary 103 cooperate to realize the connection and reinforcement of the load transfer module 3.

[0058] The fixing main surface 102 can be provided with a magic tape or other structure with a fixing accessory;

[0059] The fixing auxiliary 103 is provided with a magic tape or other structure with a fixing accessory matched with the fixing main surface 102, and the fixing main surface 102 and the fixing auxiliary 103 cooperate to realize the fastening of the connecting mechanism 301 in the load transfer module 3.

[0060] In combination Figure 6 The waist seal module 2 comprises a waist seal body 201, a waist lock 202 and a load transfer interface 203;

[0061] The waist seal body 201 is connected through the waist lock 202 and is tightened on the waist of the human body to realize reliable connection;

[0062] The waist seal body 201 is provided with the load transfer interface 203 for connecting with the load transfer module 3;

[0063] The load transfer interface 203 can be integrated on the back side of 2 through the MOLLE interface and other connection forms, and the load transfer module 3 can be loaded on the load transfer interface 203 to realize structural fixation.

[0064] In combination Figures 8 to 11 The load transfer module 3 comprises a connecting mechanism 301, a load transfer structure 302, a quick release pin 303, a height adjustment rope 304, a fixing pin 305, a fastening cover plate 306 and a movable guide rail structure 307;

[0065] The connecting mechanism 301 is connected with the fixing main surface 102, and the connecting mechanism 301 and the load transfer structure 302 are connected through the quick release pin 303;

[0066] The connecting mechanism 301 can be provided with a magic tape, a locking accessory and other structures as needed, which cooperate with the fixing main surface 102 to realize connection and fixation, and further can be matched with the connecting structure on the fixing auxiliary 103 to increase the reliability of the structure;

[0067] The other end of the load transfer structure 302 is provided with a height adjustment rope 304, through which the relative position between the waist seal module 2 and the load transfer module 3 can be adjusted, so as to adjust the entire carrying system.

[0068] When the connecting mechanism 301 is locked through the quick release pin 303, the load transfer structure 302 and the connecting mechanism 301 can rotate around the axis of the quick release pin 303.

[0069] More specifically, the load transfer structure 302 is also connected with a movable guide rail structure 307, and the fastening cover plate 306 is connected with the movable guide rail structure 307 through a fixing pin 305.

[0070] One end of the height adjustment rope 304 is fixed with the load transfer structure 302, and the other end is a free end and is inserted into the movable guide rail structure 307. The height adjustment rope 304 is led out to the outside and naturally falls down.

[0071] The surface of the fastening cover plate 306 and the movable guide rail structure 307 is provided with a sawtooth structure, which clamps the free end of the height adjustment rope 304 after cooperation.

[0072] When the fastening cover plate 306 is closed, the fastening cover plate 306 and the movable guide rail structure 307 can clamp the height adjustment rope 304 through the surface sawtooth structure, so as to limit the bottom end of the transfer structure 302. When the fastening cover plate 306 is opened, the overall structure height of the load transfer module 3 can be adjusted by pulling or loosening the movable guide rail structure 307, so as to adapt to different body types of personnel.

[0073] The above-described embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the patent. It should be noted that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the scope of the present application. Therefore, the scope of protection of the present application should be subject to the appended claims.

Claims

1. A high-efficiency load distribution wearable carriage system, characterized by, The heart module (1), the waist seal module (2) and the load transfer module (3); The heart module (1) is connected by the load transfer module (3) and the waist seal module (2); The heart module (1) is used to realize the carrying and load of the upper body. The waist seal module (2) is arranged on the waist, and force transmission is realized through the load transfer module (3), so that the load of the shoulder and the waist is distributed as required.

2. The high efficiency load distribution wearable carried system according to claim 1, wherein, The heart module (1) comprises a heart main body (101), a fixed main surface (102) and a fixed auxiliary part (103); The fixed main surface (102) is arranged on the heart main body (101); The fixed main surface (102) and the fixed auxiliary part (103) cooperate to realize the connection and reinforcement of the load transfer module (3).

3. The high efficiency load distribution wearable carried system according to claim 2, wherein, The fixed main surface (102) is provided with a Velcro or other structure with a fixed accessory; The fixed auxiliary part (103) is provided with a Velcro or other structure with a fixed accessory matched with the fixed main surface (102).

4. The high efficiency load distribution wearable carried system according to claim 1, wherein, The waist seal module (2) comprises a waist seal body (201), a waist lock buckle (202) and a load transfer interface (203); The waist seal body (201) is connected by the waist lock buckle (202); The waist seal body (201) is provided with a load transfer interface (203) for connecting the load transfer module (3).

5. The high efficiency load distribution wearable carried system according to claim 2, wherein, The load transfer module (3) comprises a connecting mechanism (301), a load transmission structure (302), a quick release pin (303), a height adjustment rope (304), a fixed pin (305), a fastening cover plate (306) and a movable guide rail structure (307); The connecting mechanism (301) is connected with the fixed main surface (102), and the connecting mechanism (301) and the load transmission structure (302) are connected by the quick release pin (303); The other end of the load transmission structure (302) is provided with the height adjustment rope (304); The load transmission structure (302) is also connected with the movable guide rail structure (307), and the fastening cover plate (306) is connected with the movable guide rail structure (307) by the fixed pin (305).

6. The high efficiency load distribution wearable carried system according to claim 5, wherein, When the end of the load transmission structure (302) connected with the connecting mechanism (301) is locked by the quick release pin (303), the transmission structure (302) and the connecting mechanism (301) can rotate around the axis of the quick release pin (303).

7. The high efficiency load distribution wearable carried system according to claim 5, wherein, One end of the height adjustment rope (304) is fixedly connected with the load transmission structure (302), and the other end is a free end and penetrates into the movable guide rail structure (307); The fastening cover plate (306) and the surface of the movable guide rail structure (307) are provided with sawtooth structures, which clamp the free end of the height adjustment rope (304) after cooperation.

8. The high efficiency load distribution wearable carried system according to claim 1, wherein, The heart module (1) and the waist seal module (2) are provided with MOLLE load units.

Citation Information

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