Field rescue fracture traction support

The field rescue fracture traction frame, designed with multi-dimensional clamping components and modular tool storage, solves the problems of poor adaptability, the need for additional tools for positioning, and poor terrain adaptability in existing technologies. It achieves rapid and stable fracture fixation and tool management, and improves the efficiency of field emergency rescue.

CN121489715BActive Publication Date: 2026-05-15THE FIRST MEDICAL CENT CHINESE PLA GENERAL HOSPITAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
THE FIRST MEDICAL CENT CHINESE PLA GENERAL HOSPITAL
Filing Date
2025-11-27
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing field fracture traction braces have poor adaptability, require additional tools for positioning, cannot quickly adapt to complex terrain, and lack modular tool storage, thus delaying emergency rescue.

Method used

A field rescue fracture traction frame was designed, which adopts multi-dimensional clamping components, anti-slip positioning components and modular tool storage components to achieve rapid adaptation to different body sizes and complex terrains, and integrates modular storage of first aid tools.

Benefits of technology

It enables rapid and stable immobilization of the injured person's limbs, adapts to complex terrain, avoids tool loss, meets the needs of rapid rescue, and improves the timeliness and efficiency of fracture emergency care.

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Abstract

The application provides a field rescue fracture traction support and belongs to the field medical equipment field. The traction support comprises a traction frame and a supporting frame. The supporting frame is fixedly connected to the bottom of the traction frame. The outer wall of the supporting frame is provided with guide grooves which are symmetrically distributed about the supporting frame. The inner wall of the guide groove is provided with a tool storage assembly. A U-shaped frame is fixedly connected to the top of the traction frame. The clamping assembly comprises a connecting block which is fixedly connected to the outer wall of the traction frame and is symmetrically distributed about the traction frame. An arc-shaped frame is fixedly connected between the symmetric connecting blocks. The longitudinal moving block, the transverse moving block and the flexible contact clamping plate of the clamping assembly are adjusted in multiple dimensions. The flexible contact clamping plate is compatible with the limb contour of the wounded person with different body types. The clamping block and the clamping groove of the limiting assembly are matched. The rapid positioning can be completed without additional tools. The connection and fixation of the equipment and the limbs of the wounded person are rapidly realized. The operation is simple and fast, and the rhythm requirement of rapid rescue is met.
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Description

Technical Field

[0001] This invention relates to the field of field medical equipment, and more specifically, to a field rescue fracture traction brace. Background Technology

[0002] In wilderness rescue scenarios far from conventional medical facilities and with complex terrain, if a wounded person's limbs, especially the leg, are not effectively tractioned and fixed in time, it can easily lead to serious complications such as fracture displacement and nerve and blood vessel damage, and even endanger life. Therefore, there is an urgent need for a special fracture traction frame to achieve rapid and stable fracture reduction and fixation.

[0003] Existing technologies for traction braces for fractures of limbs such as the legs have significant shortcomings: 1. Some braces have poor adaptability of clamping components, making it difficult to accommodate the limb contours of patients of different body types, and positioning operations rely on additional tools, which cannot meet the needs of rapid rescue; 2. Some braces lack adaptation designs for complex outdoor terrain, making them prone to sliding and shifting on mountainous or muddy ground, affecting the traction effect, and the components are inconvenient to store and deploy; 3. Some braces do not integrate modular storage functions for emergency tools, resulting in tools being scattered and lost during field rescue, delaying the opportunity for emergency treatment.

[0004] Therefore, we have made improvements to this by proposing a field rescue fracture traction brace to solve the aforementioned problems. Summary of the Invention

[0005] In view of the problems existing in the field, such as poor compatibility of traction braces, the need for additional tools for positioning, which does not meet the needs of rapid rescue; lack of adaptability to complex terrain, muddy and slippery mountainous areas, and inconvenient component deployment and retrieval; lack of modular storage of tools, easy loss of tools, and delay in emergency treatment, the purpose of this invention is to provide a field rescue fracture traction brace.

[0006] To solve the above problems, the present invention adopts the following technical solution.

[0007] A field rescue fracture traction frame, including a traction frame,

[0008] A support frame is fixedly connected to the bottom of the traction frame. The outer wall of the support frame has guide grooves symmetrically distributed about the support frame, and the inner wall of the guide groove is provided with a tool storage assembly. A U-shaped frame is fixedly connected to the top of the traction frame.

[0009] The clamping assembly includes connecting blocks, which are fixedly connected to the outer wall of the traction frame and symmetrically distributed about the traction frame. Arc-shaped frames are fixedly connected between the symmetrical connecting blocks. Arc-shaped grooves are formed on the outer wall of the arc-shaped frames and symmetrically distributed about the arc-shaped frames. A longitudinally moving block is slidably connected to the inner wall of the arc-shaped groove. Slots are formed on the outer wall of the arc-shaped frames and symmetrically distributed about the arc-shaped frames. A mounting plate is fixedly connected to the bottom of the longitudinally moving block.

[0010] The lateral moving block is slidably connected to the inner wall of the mounting plate through a traction groove formed on the inner wall of the mounting plate, and a flexible contact clamp is fixedly connected to the bottom of the lateral moving block; an anti-slip positioning component is disposed at the bottom of the support frame; a limiting component is disposed on the inner wall of the longitudinal moving block, and the limiting component cooperates with the clamping component; and a traction component is disposed on the outer wall of the U-shaped frame.

[0011] Optionally, the tool storage assembly includes guide blocks that are slidably connected to the inner wall of a guide groove, and tool boxes that are fixedly connected symmetrically between the guide blocks; a pull groove is formed on the side wall of the guide blocks, and the pull groove is used to pull the tool box.

[0012] Optionally, the anti-slip positioning component includes a storage compartment, which is fixedly connected to the bottom of the support frame and symmetrically distributed about the support frame; a limiting compartment is fixedly connected to the side wall of the storage compartment, and an inclined support column is slidably connected to the inner wall of the limiting compartment; an anti-sinking plate is fixedly connected to the end of the inclined support column away from the limiting compartment, and evenly distributed grounding rods are fixedly connected to the bottom of the anti-sinking plate.

[0013] Optionally, the limiting component includes a square groove, which is formed on the inner wall of the longitudinal moving block, and two to four sets of the square groove are provided; a locking block is slidably connected to the inner wall of the square groove, and the locking block is slidably connected to the locking groove; one end of a strong spring B is fixedly connected to the inner wall of the square groove, and the other end is fixedly connected to the locking block.

[0014] Optionally, the traction assembly includes a rotating seat A, which is fixedly connected to the outer wall of the U-shaped frame and symmetrically distributed about the U-shaped frame; a pulley A is rotatably connected to the inner wall of the rotating seat A, and a traction rope is drivenly connected to the outer wall of the pulley A; a hook is sleeved on the outer wall of the traction rope, and a counterweight is provided at the bottom of the hook.

[0015] Optionally, a rotating seat B is fixedly connected to the outer wall of the traction frame, and pulleys B symmetrically distributed about the rotating seat B are rotatably connected to the inner wall of the rotating seat B, and the pulleys B are connected to the traction rope for transmission.

[0016] Optionally, a strong spring A is fixedly connected to the side wall of the longitudinal moving block, and the end of the strong spring A away from the longitudinal moving block is fixedly connected to the arc-shaped groove.

[0017] Optionally, the flexible contact clamp is fixedly connected to a rope-winding rod symmetrically distributed about the flexible contact clamp, and the rope-winding rod is connected to a traction rope. A limit block is fixedly connected to the end of the rope-winding rod away from the flexible contact clamp.

[0018] Optionally, a support pad is fixedly connected to the side wall of the traction frame, and the support pad is used to support the legs.

[0019] Optionally, a baffle is fixedly connected to the outer wall of the support frame, and the outer wall of the baffle abuts against the outer wall of the toolbox.

[0020] Compared with the prior art, the technical solution provided by this invention has at least the following beneficial effects:

[0021] In the above solution, the longitudinal moving block, lateral moving block and flexible contact plate of the clamping component are adjusted in multiple dimensions. With the flexible contact plate, it can be compatible with the limb contours of patients of different body sizes. Through the cooperation of the locking block and the locking slot of the limiting component, it can be quickly positioned without additional tools, and quickly connect and fix the device to the patient's limb. The operation is simple and quick, which meets the needs of rapid rescue. It solves the problems of poor compatibility of traction brackets and the need for additional tools for positioning in the existing technology, which does not meet the needs of rapid rescue.

[0022] By combining the inclined support column, anti-sinking plate, and ground-inserting rod of the anti-slip positioning component, it can quickly adapt to various complex outdoor terrains such as mountains, mud, and grasslands, avoiding the problem of the traction support slipping easily on soft and rugged ground. Moreover, the component can be quickly stored and deployed through the storage compartment and the limiting compartment, meeting the needs of rapid response and solving the problems of existing technologies that lack complex terrain adaptation, muddy and slippery terrain, and inconvenient component storage and deployment.

[0023] By designing guide slots, tool boxes, and pull slots for tool storage components, centralized and modular storage of first aid tools is achieved. Medical personnel can quickly access and store tools, avoiding the loss of tools during field rescues. This significantly improves the timeliness of fracture first aid and solves the problems of lack of modular tool storage, easy loss of tools, and delays in first aid in existing technologies.

[0024] The entire support system adopts a modular design, with functional modules such as tool storage, limb clamping, and traction system working independently yet collaboratively. While ensuring comprehensive functionality, each component can be quickly disassembled or stored, making it easy for individual soldiers to carry and adapting to the mobility needs of the field. Attached Figure Description

[0025] The accompanying drawings, which are incorporated herein and form part of the specification, illustrate embodiments of the invention and, together with the specification, further serve to explain the principles of the invention and enable those skilled in the art to practice and use the invention.

[0026] Figure 1 This is one of the overall structural schematic diagrams of the present invention;

[0027] Figure 2 This is the second schematic diagram of the overall structure of the present invention;

[0028] Figure 3 This is an exploded view of the toolbox portion of the present invention;

[0029] Figure 4 This is a cross-sectional view of the storage compartment of the present invention;

[0030] Figure 5 This is a schematic diagram of the arc-shaped frame part of the present invention;

[0031] Figure 6 This is a cross-sectional view of the longitudinal moving block portion of the present invention;

[0032] Figure 7 This is a schematic diagram of the flexible contact clamp portion of the present invention;

[0033] Figure 8 This is a schematic diagram of the traction rope part of the present invention.

[0034] [Figure Labels]

[0035] 1. Traction frame; 2. Support frame; 3. Guide groove; 4. Guide block; 5. Tool box; 6. Pulling groove; 7. Baffle; 8. Storage compartment; 9. Limiting compartment; 10. Diagonal support column; 11. Anti-sinking plate; 12. Grounding rod; 13. Connecting block; 14. Arc frame; 15. Arc groove; 16. Longitudinal moving block; 17. Slot; 18. Locking block; 19. Strong spring A; 20. Square groove; 21. Strong spring B; 22. Mounting plate; 23. Traction groove; 24. Lateral moving block; 25. Flexible contact clamp; 26. Rope winding rod; 27. Limiting block; 28. U-shaped frame; 29. ​​Rotating seat A; 30. Rotating seat B; 31. Pulley A; 32. Pulley B; 33. Traction rope; 34. Hook; 35. Counterweight block; 36. Bearing pad.

[0036] As shown in the figure, specific structures and devices are marked in the figure to clearly illustrate the structure of the embodiments of the present invention. However, this is only for illustrative purposes and is not intended to limit the present invention to this specific structure, device and environment. Those skilled in the art can adjust or modify these devices and environments according to specific needs. Detailed Implementation

[0037] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments. It should also be noted that, to make the embodiments more comprehensive, the following embodiments are the best and preferred embodiments, and those skilled in the art can use other alternative methods to implement some well-known technologies; moreover, the accompanying drawings are only for more specific description of the embodiments and are not intended to specifically limit the present invention.

[0038] It should be noted that the use of terms such as "an embodiment," "an embodiment," "an exemplary embodiment," and "some embodiments" in the specification indicates that the described embodiment may include a specific feature, structure, or characteristic, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, when a specific feature, structure, or characteristic is described in connection with an embodiment, implementing such a feature, structure, or characteristic in conjunction with other embodiments (whether explicitly described or not) should be within the knowledge of those skilled in the art.

[0039] Generally, terms can be understood at least partly from their use in context. For example, depending at least partly on the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in a singular sense, or a combination of features, structures, or characteristics in a plural sense. Additionally, the term "based on" can be understood not necessarily to convey an exclusive set of factors, but rather, alternatively, depending at least partly on the context, to allow for the presence of other factors that are not necessarily explicitly described.

[0040] It is understood that the meanings of “on”, “above”, and “above” in this invention should be interpreted in the broadest manner, such that “on” means not only “directly on” something, but also includes the meaning of being “on” something with an intervening feature or layer, and that “above” or “above” means not only “on” something, but also includes the meaning of being “on” something without an intervening feature or layer.

[0041] Furthermore, spatially related terms such as “below,” “under,” “lower,” “above,” and “upper” are used herein for convenience to describe the relationship of one element or feature to one or more other elements or features, as illustrated in the accompanying drawings. Spatially related terms are intended to cover different orientations in the use or operation of the device other than those depicted in the accompanying drawings. The device may be oriented in other ways, and the spatially related descriptive terms used herein can be interpreted similarly.

[0042] like Figures 1 to 8As shown, this embodiment of the invention provides a field rescue fracture traction bracket, including a traction frame 1 and a support frame 2, which is fixedly connected to the bottom of the traction frame 1; a U-shaped frame 28 is fixedly connected to the top of the traction frame 1. The clamping assembly includes connecting blocks 13, which are fixedly connected to the outer wall of the traction frame 1 and symmetrically distributed about the traction frame 1. Arc-shaped frames 14 are fixedly connected between the symmetrical connecting blocks 13; arc-shaped grooves 15 are formed on the outer wall of the arc-shaped frame 14 and symmetrically distributed about the arc-shaped frame 14, and longitudinal moving blocks 16 are slidably connected to the inner wall of the arc-shaped grooves 15; slots 17 are formed on the outer wall of the arc-shaped frame 14 and symmetrically distributed about the arc-shaped frame 14; a mounting plate 22 is fixedly connected to the bottom of the longitudinal moving blocks 16; and a transverse moving block 24 is slidably connected to the inner wall of the mounting plate 22 through a traction groove 23 formed on the inner wall of the mounting plate 22. A flexible contact clamp 25 is fixedly connected to the bottom of the lateral moving block 24, pushing the longitudinal moving block 16 to slide along the arc groove 15 of the arc frame 14. A strong spring A19 continuously applies elastic tension to the longitudinal moving block 16 to help maintain its position and prevent displacement during clamping. The movement of the longitudinal moving block 16 will drive the mounting plate 22, the lateral moving block 24 and the flexible contact clamp 25 to move, thereby adapting to the different thicknesses of the injured limbs. The strong spring B21 in the limiting component pushes the locking block 18 into the locking groove 17 of the arc frame 14 to complete the height positioning of the longitudinal moving block 16. At the same time, the sliding lateral moving block 24 moves along the traction groove 23 of the mounting plate 22, so that the flexible contact clamp 25 fits the thigh and calf of the injured limb, adapting to the injured limbs of different lengths. The flexible material of the flexible contact clamp 25 can adapt to different limb contours and avoid secondary pressure injury to the injured, achieving precise clamping of the limb.

[0043] like Figure 3 As shown, in a preferred embodiment, based on the above method, the outer wall of the support frame 2 is further provided with guide grooves 3 symmetrically distributed about the support frame 2. The inner wall of the guide grooves 3 is provided with a tool storage component, including guide blocks 4, which are slidably connected to the inner wall of the guide grooves 3. Tool boxes 5 are fixedly connected between the symmetrical guide blocks 4. Pull grooves 6 are opened on the side wall of the guide blocks 4 and are used to pull the tool boxes 5. The tool storage component allows for quick access to tools. When first aid tools are needed, the guide blocks 4 are pulled by the pull grooves 6, causing the guide blocks 4 to slide along the guide grooves 3 of the support frame 2, and the tool boxes 5 are pulled out from the guide grooves 3. First aid tools such as disinfectant cotton and tourniquets can be quickly accessed from the boxes. After use, the tool boxes 5 are pushed back into the guide grooves 3 by the limiting action of the baffles 7, realizing modular storage of tools and avoiding the loss of tools in the field.

[0044] like Figure 4As shown, in a preferred embodiment, based on the above method, the anti-slip positioning component is further disposed at the bottom of the support frame 2; the anti-slip positioning component includes a storage compartment 8, which is fixedly connected to the bottom of the support frame 2 and symmetrically distributed about the support frame 2; a limiting compartment 9 is fixedly connected to the side wall of the storage compartment 8, and an inclined support column 10 is slidably connected to the inner wall of the limiting compartment 9; an anti-sinking plate 11 is fixedly connected to the end of the inclined support column 10 away from the limiting compartment 9, and a uniformly distributed ground-inserting rod 12 is fixedly connected to the bottom of the anti-sinking plate 11. When it is necessary to fix the support in complex terrain in the field, the inclined support column 10 is pulled out from the limiting compartment 9 on the side wall of the storage compartment 8, so that the ground-inserting rod 12 at the bottom of the anti-sinking plate 11 is inserted into the ground such as mountains, mud, or grass. The multi-spiked structure of the ground-inserting rod 12 enhances the gripping force. The large area design of the anti-sinking plate 11 prevents the support from sinking, thereby achieving stable deployment of the support in the field environment. When no fixation is required, the inclined support column 10 can be slid down and pushed back into the storage compartment 8 to complete the component storage.

[0045] like Figure 5-6 As shown, in a preferred embodiment, based on the above method, a limiting component is disposed on the inner wall of the longitudinal moving block 16, and the limiting component and the clamping component cooperate with each other. The limiting component includes a square groove 20, which is opened on the inner wall of the longitudinal moving block 16, and two to four sets of square grooves 20 are provided; a locking block 18 is slidably connected to the inner wall of the square groove 20, and the locking block 18 is slidably connected to the locking groove 17.

[0046] One end of the strong spring B21 is fixedly connected to the inner wall of the square groove 20, and the other end is fixedly connected to the locking block 18. The strong spring B21 in the limiting assembly pushes the locking block 18 into the locking groove 17 of the arc frame 14 to complete the height positioning of the longitudinal moving block 16.

[0047] like Figure 8 As shown, in a preferred embodiment, the traction component is disposed on the outer wall of the U-shaped frame 28 based on the above method. The traction assembly includes a rotating seat A29, which is fixedly connected to the outer wall of the U-shaped frame 28 and symmetrically distributed about the U-shaped frame 28; a pulley A31 is rotatably connected to the inner wall of the rotating seat A29, and a traction rope 33 is drivenly connected to the outer wall of the pulley A31; a hook 34 is sleeved on the outer wall of the traction rope 33, and a counterweight 35 is provided at the bottom of the hook 34. When assembling the traction system for fracture stabilization traction of the traction assembly, the traction rope 33 is sequentially passed around the pulley A31 of the rotating seat A29 on the U-shaped frame 28 and the pulley B32 of the rotating seat B30 on the traction frame 1, and one end of the traction rope 33 is connected to the rope winding rod 26 of the flexible contact clamp 25. The limiting block 27 prevents the traction rope 33 from slipping off, and the other end of the hook 34 suspends the counterweight 35. Through the transmission action of the pulley group, the gravity of the counterweight 35 is converted into traction force on the fracture site. The traction force can be precisely adjusted by increasing or decreasing the number of counterweights 35 to achieve stable and controllable traction of the fracture site.

[0048] like Figure 8 As shown, in a preferred embodiment, based on the above method, a rotating seat B30 is fixedly connected to the outer wall of the traction frame 1, and pulleys B32 symmetrically distributed about the rotating seat B30 are rotatably connected to the inner wall of the rotating seat B30. The pulleys B32 are connected to the traction rope 33 for transmission, and the traction of the fracture site is achieved by the traction rope 33 cooperating with the pulleys B32.

[0049] like Figure 5 As shown, in a preferred embodiment, based on the above method, a strong spring A19 is fixedly connected to the side wall of the longitudinal moving block 16, and the end of the strong spring A19 away from the longitudinal moving block 16 is fixedly connected to the arc groove 15. Through the elastic action of the strong spring A19, the longitudinal moving block 16 is always moved towards the center, so that the flexible contact splint 25 can automatically fit the injured person's limb.

[0050] like Figure 8 As shown, in a preferred embodiment, based on the above method, further, the flexible contact clamp 25 has a rope-winding rod 26 symmetrically distributed about the flexible contact clamp 25 fixedly connected to its side wall, and the rope-winding rod 26 is connected to the traction rope 33. The end of the rope-winding rod 26 away from the flexible contact clamp 25 is fixedly connected to a limiting block 27. The traction rope 33 is wound around the rope-winding rod 26 to achieve the connection between the traction rope 33 and the flexible contact clamp 25, which facilitates the quick pulling of the flexible contact clamp 25.

[0051] like Figure 3 As shown, in a preferred embodiment, based on the above method, a support pad 36 is further fixedly connected to the side wall of the traction frame 1. The support pad 36 is used to support the legs, thereby supporting the injured person's legs. A baffle 7 is fixedly connected to the outer wall of the support frame 2, and the outer wall of the baffle 7 abuts against the outer wall of the tool box 5, thereby preventing tools inside the tool box 5 from falling out.

[0052] The working process of the technical solution provided by this invention is as follows:

[0053] When using this invention, firstly, when fixing the support in complex terrain in the field, pull the inclined support column 10 out of the inner cavity of the storage compartment 8, and then insert the inclined support column 10 into the limiting compartment 9, so that the grounding rod 12 at the bottom of the anti-sinking plate 11 is inserted into the ground such as mountains, mud, or grass. The multi-spiked structure of the grounding rod 12 enhances the grip, and the large area design of the anti-sinking plate 11 prevents the support from sinking, thereby achieving stable deployment of the support in the field environment. When no fixing is required, the inclined support column 10 can be pulled out from the limiting compartment 9 and inserted into the storage compartment 8 to complete the component storage.

[0054] The tool storage component allows for quick access to tools. When first aid tools are needed, the guide block 4 is pulled along the guide groove 3 of the support frame 2 by pulling the pull groove 6. This allows the tool box 5 to be pulled out from the guide groove 3, enabling quick access to first aid tools such as disinfectant cotton and tourniquets. After use, the tool box 5 is pushed back into the guide groove 3 by the limiting action of the baffle 7, achieving modular storage of tools and preventing tools from being scattered and lost in the field.

[0055] The longitudinal moving block 16 is pushed to slide along the arc groove 15 of the arc frame 14. The strong spring A19 continuously applies elastic tension to the longitudinal moving block 16 to help maintain its position and prevent displacement during clamping. The movement of the longitudinal moving block 16 will drive the mounting plate 22, the lateral moving block 24 and the flexible contact clamp 25 to move, so as to adapt to the limbs of the injured person of different thicknesses. The strong spring B21 in the limiting component pushes the locking block 18 into the locking groove 17 of the arc frame 14 to complete the height positioning of the longitudinal moving block 16. At the same time, the lateral moving block 24 slides along the traction groove 23 of the mounting plate 22, so that the flexible contact clamp 25 fits the thigh and calf of the injured person's limb, adapting to the limbs of different lengths. The flexible material of the flexible contact clamp 25 can adapt to different limb contours and avoid causing secondary pressure damage to the injured person, so as to achieve precise clamping of the limb.

[0056] When assembling the traction system for fracture stabilization traction, the traction rope 33 is sequentially passed around the pulley A31 of the rotating seat A29 on the U-shaped frame 28 and the pulley B32 of the rotating seat B30 on the traction frame 1. One end of the traction rope 33 is connected to the rope winding rod 26 of the flexible contact clamp 25. The limiting block 27 prevents the traction rope 33 from slipping off. The hook 34 at the other end suspends the counterweight 35. Through the transmission action of the pulley group, the gravity of the counterweight 35 is converted into traction force on the fracture site. The traction force can be precisely adjusted by increasing or decreasing the number of counterweights 35 to achieve stable and controllable traction of the fracture site.

[0057] This invention encompasses any substitutions, modifications, equivalent methods, and solutions made within the spirit and scope of this invention. To provide the public with a thorough understanding of this invention, specific details are described in detail in the following preferred embodiments; however, those skilled in the art will fully understand the invention even without these details. Furthermore, to avoid unnecessary misunderstanding of the essence of this invention, well-known methods, processes, procedures, components, and circuits are not described in detail.

[0058] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A field rescue fracture traction frame, comprising a traction frame, characterized in that... The system includes a support frame, which is fixedly connected to the bottom of the traction frame. The outer wall of the support frame has guide grooves symmetrically distributed about the support frame, and the inner wall of the guide grooves is provided with a tool storage assembly. A U-shaped frame is fixedly connected to the top of the traction frame. The clamping assembly includes connecting blocks, which are fixedly connected to the outer wall of the traction frame and symmetrically distributed about the traction frame. Arc-shaped frames are fixedly connected between the symmetrical connecting blocks. Arc-shaped grooves are formed on the outer wall of the arc-shaped frames and symmetrically distributed about the arc-shaped frames. A longitudinally moving block is slidably connected to the inner wall of the arc-shaped groove. Slots are formed on the outer wall of the arc-shaped frames and symmetrically distributed about the arc-shaped frames. A mounting plate is fixedly connected to the bottom of the longitudinally moving block. The lateral moving block is slidably connected to the inner wall of the mounting plate through a traction groove formed on the inner wall of the mounting plate, and a flexible contact clamp is fixedly connected to the bottom of the lateral moving block; an anti-slip positioning component is disposed at the bottom of the support frame; a limiting component is disposed on the inner wall of the longitudinal moving block, and the limiting component cooperates with the clamping component; a traction component is disposed on the outer wall of the U-shaped frame; The tool storage assembly includes guide blocks that are slidably connected to the inner wall of a guide groove, and tool boxes that are fixedly connected symmetrically between the guide blocks; a pull groove is formed on the side wall of the guide block, and the pull groove is used to pull the tool box. The anti-slip positioning component includes a storage compartment, which is fixedly connected to the bottom of the support frame and symmetrically distributed about the support frame; a limiting compartment is fixedly connected to the side wall of the storage compartment, and an inclined support column is slidably connected to the inner wall of the limiting compartment; an anti-sinking plate is fixedly connected to the end of the inclined support column away from the limiting compartment, and evenly distributed grounding rods are fixedly connected to the bottom of the anti-sinking plate. The limiting component includes a square groove, which is formed on the inner wall of the longitudinal moving block, and two to four sets of the square groove are provided; a locking block is slidably connected to the inner wall of the square groove, and the locking block is slidably connected to the locking groove; one end of a strong spring B is fixedly connected to the inner wall of the square groove, and the other end is fixedly connected to the locking block. The traction assembly includes a rotating seat A, which is fixedly connected to the outer wall of the U-shaped frame and symmetrically distributed about the U-shaped frame; a pulley A is rotatably connected to the inner wall of the rotating seat A, and a traction rope is drivenly connected to the outer wall of the pulley A; a hook is sleeved on the outer wall of the traction rope, and a counterweight is provided at the bottom of the hook.

2. The field rescue fracture traction frame according to claim 1, characterized in that, The outer wall of the traction frame is fixedly connected to a rotating seat B, and the inner wall of the rotating seat B is rotatably connected to pulleys B that are symmetrically distributed about the rotating seat B, and the pulleys B are connected to the traction rope for transmission.

3. The field rescue fracture traction frame according to claim 1, characterized in that, A strong spring A is fixedly connected to the side wall of the longitudinal moving block, and the end of the strong spring A away from the longitudinal moving block is fixedly connected to the arc-shaped groove.

4. The field rescue fracture traction frame according to claim 1, characterized in that, The flexible contact clamp is fixedly connected to a rope-winding rod that is symmetrically distributed about the flexible contact clamp, and the rope-winding rod is connected to the traction rope. A limit block is fixedly connected to the end of the rope-winding rod away from the flexible contact clamp.

5. The field rescue fracture traction frame according to claim 1, characterized in that, The side wall of the traction frame is fixedly connected to a bearing pad, which is used to support the legs.

6. The field rescue fracture traction frame according to claim 1, characterized in that, A baffle is fixedly connected to the outer wall of the support frame, and the outer wall of the baffle abuts against the outer wall of the toolbox.