Animal operation platform used under field operation condition

By designing a mobile animal surgical platform, utilizing multi-person operation, extension rod locking, and magnetic fixation, the problem of platform instability in field environments was solved, ensuring the safety and success of the surgery.

CN223969186UActive Publication Date: 2026-03-06THE 32237TH UNIT OF THE PEOPLES LIBERATION ARMY OF CHINA
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing surgical platforms are large and heavy in field environments, making them difficult to move easily and maintain stability on uneven ground, which affects the safety and smooth conduct of animal surgeries.

Method used

An animal surgical platform was designed, comprising a horizontal board, supporting corner plates, an extension rod, and self-locking casters. It can be moved quickly by multiple operators using a grip ring, the animal is restrained by the side plates, and the extension rod is flipped to lock the locking lever into the ground. Combined with magnets and pins for fixation, stability is enhanced.

Benefits of technology

It enables convenient movement and stable support in field conditions, preventing shaking caused by animal struggles and ensuring the smooth progress of surgery.

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Abstract

The animal operation platform used under the field operation condition comprises a lying plate, a plurality of sets of supporting angle plates are symmetrically arranged on the outer walls of the two sides of the lying plate, side plates are symmetrically arranged on the inclined faces of the supporting angle plates on the two sides, and two sets of installation rods are symmetrically arranged at the two ends of the lower surface of the lying plate. A plurality of operators can hold the four-corner holding rings to quickly move, so that the flexibility is improved. After the animal is moved to a proper position, the injured animal is placed on the lying plate, a binding belt penetrates through a retaining ring to be bound, meanwhile, the animal is limited through a side plate, a stable environment is created for an operation, aiming at a large animal, the extension rod is turned over after binding, the rod extrudes the inclined surface of the clamping rod to enable the clamping rod to move upwards, the spring is pressed, and the spring rebounds after the rod is turned over to enable the clamping rod to be inserted into the clamping groove to be locked. The pin penetrates through the through hole of the extension rod and is nailed into the ground, so that the supporting area and stability are increased, shaking and displacement caused by animal struggling are prevented, and smooth operation is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of field medical equipment technology, specifically an animal surgical platform for use in field conditions. Background Technology

[0002] In field military operations, animals used for military purposes (such as military dogs and military horses) are often injured, and wild animals are often injured due to conflicts in the areas related to military operations. At the same time, the terrain of the field environment is complex, including mountains, jungles, deserts, etc., and the climate is changeable, with alternating high temperature, low temperature and humidity. There may also be adverse conditions such as enemy threats and limited resources.

[0003] In scenarios such as natural disaster relief sites, remote rescue points, and military field environments, existing surgical platforms are too large and heavy to meet the needs of treating injured animals. At the same time, animals may struggle on the platform, which may affect its stability and cause it to roll over. Therefore, there is a need for an animal surgical platform that is easy to move, lightweight, and can be easily transported. It should be able to maintain relative stability on uneven ground, in bumpy environments, or in simple locations, providing reliable support for surgery and ensuring the safe and smooth conduct of the surgery to save the lives and health of injured animals. Utility Model Content

[0004] Therefore, the purpose of this utility model is to provide an animal surgical platform for use in field conditions, so as to solve the technical problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an animal surgical platform for use in field conditions, including a horizontal board, wherein multiple sets of supporting corner plates are symmetrically arranged on the outer walls of both sides of the horizontal board, side plates are symmetrically arranged on the inclined surfaces of the supporting corner plates on both sides, and two sets of mounting rods are symmetrically arranged at both ends of the lower surface of the horizontal board.

[0006] Extension rods are rotatably connected to the inner walls of both sides of the mounting rod. Movable cavities are opened at both ends of the extension rods. A locking rod is slidably connected inside the movable cavity. The bottom end of the locking rod penetrates the lower surface of the extension rod and extends into the interior of the extension rod. A spring is sleeved on the outer wall of the upper end of the locking rod. The two ends of the spring contact the inner wall of the movable cavity and the outer wall of the locking rod, respectively.

[0007] By adopting the above technical solution, multiple operators can quickly move the device by holding the four-corner grip rings, improving flexibility. After moving the device to the appropriate position, place the injured animal on the lying board, pass the tightening strap through the buckle ring to tie it up, and at the same time use the side plate to limit the animal, creating a stable environment for the operation. For large-sized animals, after tying up, flip the extension rod. The rod squeezes the inclined surface of the clamping rod, causing the clamping rod to move upward and the spring to be compressed. After the rod is flipped, the spring rebounds and the clamping rod is inserted into the card slot to lock. Then, pass the pin through the through hole of the extension rod and nail it into the ground to increase the support area and stability, prevent the animal from struggling and causing shaking and displacement, and ensure the smooth progress of the operation.

[0008] Further, two groups of grip rings are symmetrically and rotatably connected to the upper surface of the mounting rod, and connecting buckle rings are symmetrically arranged on the outer walls on both sides of the mounting rod.

[0009] By adopting the above technical solution, the two groups of grip rings can facilitate the operator to move the whole device, and the connecting buckle rings can facilitate the installation of the strap and facilitate the restraint of the animal.

[0010] Further, self-locking universal wheels are symmetrically and fixedly installed on the lower surfaces on both sides of the mounting rod. The cross-sectional shape of the mounting rod is "匚"-shaped. Two groups of first magnets are symmetrically installed on the outer wall of the mounting rod at the fitting position above the extension rod, and the first magnet and the second magnet have opposite magnetic poles.

[0011] By adopting the above technical solution, the self-locking universal wheels can facilitate the movement of the device on a relatively flat terrain, eliminating the need for manual lifting and being more labor-saving. When performing the operation, the self-locking universal wheels can be closed, and the device can be initially fixed by using its自带刹车效果 (the built-in braking effect).

[0012] Further, a second magnet is embedded in the upper surface of the extension rod. A pin penetrates through one end of the extension rod, and a matching through hole is opened at the contact position between the extension rod and the pin.

[0013] By adopting the above technical solution, the second magnet corresponds to the first magnet. Using the principle of异性相吸 (opposite-sex attraction) of magnets, the extension rod can be locked when the extension rod is flipped and retracted, preventing it from rotating accidentally and ensuring the stability of the device during use. By passing the pin through the through hole and nailing it into the ground, the overall fixation of the device can be strengthened, further reducing the possibility of the device flipping due to the animal's struggle during use.

[0014] Further, one side at the bottom end of the clamping rod is an inclined surface, and a dial is arranged on the outer wall of one side of the clamping rod, and the dial is slidably connected to the outer wall of the mounting rod.

[0015] By adopting the above technical solution, one side at the bottom end of the clamping rod being an inclined surface can cause the clamping rod to be squeezed through the inclined surface of the clamping rod when the extension rod is flipped, thereby带动卡杆上移 (causing the clamping rod to move upward), and the dial can facilitate the user to lift and thereby带动卡杆上移解除固定锁止 (cause the clamping rod to move upward to release the fixed lock).

[0016] Furthermore, a groove is provided on the upper surface of the extension rod at the contact position with the locking rod, and the cross-sectional shape of the groove is rectangular.

[0017] By adopting the above technical solution, the rectangular slot corresponds to the locking rod, which can limit and fix the extension rod.

[0018] Furthermore, the lower surface of the horizontal plate is symmetrically provided with two sets of reinforcing rods, and both sets of reinforcing rods are connected to the mounting rods.

[0019] By adopting the above technical solution, the two sets of reinforcing rods connect the horizontal plate and the mounting rod to enhance the overall structural strength of the equipment.

[0020] In summary, the present invention has the following main advantages:

[0021] This invention allows for rapid relocation by multiple operators holding the four corner rings, improving flexibility. After moving to a suitable position, the injured animal is placed on a board and secured with a tight strap through the buckle. Simultaneously, side panels are used to limit the animal's position, creating a stable environment for surgery. For larger animals, after securing, the extension rod is flipped. The rod presses against the inclined surface of the locking rod, causing it to move upwards and compressing the spring. After the rod flips completely, the spring returns, locking the locking rod into the slot. Finally, a pin is driven into the ground through the extension rod's through hole, increasing the support area and stability, preventing the animal from struggling and causing swaying or displacement, thus ensuring the smooth progress of the surgery. Attached Figure Description

[0022] Figure 1 This is the front view of the present invention;

[0023] Figure 2 This is a top view of the present invention;

[0024] Figure 3 This is a bottom view of the present invention;

[0025] Figure 4 This is a partial exploded view of the present invention;

[0026] Figure 5 For the present utility model Figure 3 Enlarged detail at point A in the middle;

[0027] Figure 6 For the present utility model Figure 3 Enlarged detail of section B in the middle.

[0028] In the diagram: 1. Horizontal plate; 11. Supporting corner plate; 12. Side plate; 13. Reinforcing rod; 2. Mounting rod; 201. Grip ring; 202. Connecting buckle ring; 203. First magnet; 204. Movable cavity; 21. Extension rod; 211. Second magnet; 212. Slot; 22. Self-locking caster wheel; 23. Locking rod; 231. Toggle block; 24. Spring; 3. Pin. Detailed Implementation

[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0030] The embodiments of this utility model will be described below based on its overall structure.

[0031] like Figure 1 - Figure 6 As shown, the animal surgical platform used in field conditions of this utility model includes a horizontal board 1. Multiple sets of support corner plates 11 are symmetrically arranged on the outer walls of both sides of the horizontal board 1. Side plates 12 are symmetrically arranged on the inclined surfaces of the support corner plates 11 on both sides. Two sets of mounting rods 2 are symmetrically arranged at both ends of the lower surface of the horizontal board 1.

[0032] Extension rods 21 are rotatably connected to the inner walls of both sides of the mounting rod 2. Both ends of the extension rod 21 are provided with movable cavities 204. A locking rod 23 is slidably connected inside the movable cavity 204. The bottom end of the locking rod 23 passes through the lower surface of the extension rod 21 and extends into the interior of the extension rod 21. A spring 24 is sleeved on the outer wall of the upper end of the locking rod 23. The two ends of the spring 24 are in contact with the inner wall of the movable cavity 204 and the outer wall of the locking rod 23, respectively.

[0033] The utility model enables multiple operators to respectively hold the grip rings 201 at the four corners of the device, facilitating the quick relocation of the device. This convenient design makes the transfer of the device between different sites efficient and labor-saving, greatly enhancing the flexibility of use. After the device is moved to the appropriate position, the injured animal is placed on the lying board 1. Then, the tightening strap is passed through the connecting buckle 202 to tie up the animal, and at the same time, the side plate 12 is used to limit the animal, which can effectively prevent the animal from escaping during the surgical preparation process, thereby reasonably restricting the movement of the animal and creating a stable operating environment for the subsequent surgery, ensuring that the surgery can be carried out safely and orderly. For larger animals, after tying up, multiple groups of extension rods 21 need to be rotated by a flat angle. During the rotation of the extension rods 21, their movement presses the inclined surface of the clamping rod 23, causing the clamping rod 23 to move upward. At the same time, the spring 24 is compressed, thereby accumulating energy for the downward reset of the clamping rod 23. When the extension rods 21 are rotated completely, the spring 24 rebounds, driving the clamping rod 23 to insert into the internal card slot 212, thereby achieving the quick locking of the extension rods 21. Subsequently, the pin 3 is passed through the through hole on the extension rod 21 and nailed into the ground. The extension rods 21 increase the support area and stability of the device, and by inserting the pin 3 into the ground, the stability of the device during use is enhanced, effectively preventing the shaking and displacement caused by the struggle of larger animals, ensuring that the surgical process is not interfered by external factors, and guaranteeing the successful completion of the surgery.

[0034] Two groups of grip rings 201 are symmetrically and rotatably connected to the upper surface of the mounting rod 2, and two connecting buckles 202 are symmetrically arranged on the outer walls on both sides of the mounting rod 2. By setting the above structure, the two groups of grip rings 201 can facilitate the operator to move the whole device, and the connecting buckles 202 can facilitate the installation of the strap and facilitate the restraint of the animal.

[0035] Self-locking universal wheels 22 are symmetrically and fixedly installed on the lower surfaces on both sides of the mounting rod 2. The cross-sectional shape of the mounting rod 2 is a "C" shape. Two groups of first magnets 203 are symmetrically installed on the outer wall of the mounting rod 2 at the upper fitting position of the extension rod 21, and the first magnet 203 and the second magnet 211 have opposite magnetic poles. By setting the above structure, the self-locking universal wheels 22 can facilitate the movement of the device on relatively flat terrain, eliminating manual lifting and being more labor-saving. During the surgery, the self-locking universal wheels 22 can be closed to initially fix the device by using their built-in braking effect.

[0036] A second magnet 211 is embedded in the upper surface of the extension rod 21. A pin 3 is inserted through one end of the extension rod 21. A matching through hole is opened at the contact position between the extension rod 21 and the pin 3. By setting the above structure, the second magnet 211 corresponds to the first magnet 203. Utilizing the principle of attraction between opposite poles of magnets, the extension rod 21 can be locked when it is flipped and retracted to prevent accidental rotation and ensure the stability of the equipment. By using the pin 3 to pass through the through hole and nail it into the ground, the overall equipment can be strengthened and fixed, further reducing the possibility of the equipment flipping over due to animal struggle during use.

[0037] The bottom end of the locking rod 23 is sloped on one side, and a lever 231 is provided on the outer wall of one side of the locking rod 23. The lever 231 is slidably connected to the outer wall of the mounting rod 2. By setting the above structure, the bottom end of the locking rod 23 is sloped on one side. When the extension rod 21 is flipped, the locking rod 23 can be squeezed through the slope of the locking rod 23, thereby driving the locking rod 23 to move upward. The lever 231 can be easily lifted by the user to drive the locking rod 23 to move upward and release the fixed lock.

[0038] A slot 212 is provided at the contact position between the upper surface of the extension rod 21 and the locking rod 23, and the cross-sectional shape of the slot 212 is rectangular. By setting the above structure, the rectangular slot 212 corresponds to the locking rod 23, and the extension rod 21 can be limited and fixed.

[0039] Two sets of reinforcing rods 13 are symmetrically arranged on the lower surface of the horizontal plate 1, and both sets of reinforcing rods 13 are connected to the mounting rod 2. By setting the above structure, the two sets of reinforcing rods 13 connect the horizontal plate 1 and the mounting rod 2 to enhance the overall structural strength of the equipment.

[0040] The working principle of this utility model is as follows: when the equipment needs to be moved, multiple operators need to hold the four corner grips 201 of the equipment to facilitate the quick movement of the equipment. This convenient design makes the transfer of the equipment between different sites efficient and labor-saving, and greatly improves the flexibility of use.

[0041] Once the equipment is moved to the appropriate position, the injured animal is placed on the bed 1. Then, the animal is secured by straps passing through the connecting buckles 202, while the side panels 12 are used to limit the animal's movement. This effectively prevents the animal from escaping during surgical preparation, thus reasonably restricting the animal's movement and creating a stable operating environment for the subsequent surgery, ensuring that the surgery can be carried out safely and orderly.

[0042] For larger animals, after binding, multiple extension rods 21 need to be flipped at a flat angle. During the flipping process, the movement of the extension rods 21 compresses the inclined surface of the locking rod 23, causing the locking rod 23 to move upward. At the same time, the spring 24 is compressed, thus accumulating energy for the locking rod 23 to move downward and reset. When the extension rods 21 are fully flipped, the spring 24 rebounds, driving the locking rod 23 into the slot 212, thereby achieving quick locking of the extension rods 21. Then, the pin 3 is passed through the through hole on the extension rod 21 and driven into the ground. The extension rods 21 increase the support area and stability of the device, and the insertion of the pin 3 into the ground enhances the stability of the device during use, effectively preventing shaking and displacement caused by the struggle of large animals, ensuring that the surgical process is not interfered with by external factors, and guaranteeing the smooth completion of the surgery.

[0043] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, and variations are within the scope of the claims of the present invention and are protected by patent law.

Claims

1. An animal operating platform for use in field conditions, comprising a lying board (1), characterized in that: Both sides of the lying plate (1) are symmetrically provided with a plurality of groups of supporting angle plates (11), the inclined surfaces of the supporting angle plates (11) on both sides are symmetrically provided with side plates (12), and the lower surfaces of the lying plate (1) are symmetrically provided with two groups of mounting rods (2); Both sides of the mounting rod (2) are rotatably connected with extension rods (21), both ends of the extension rod (21) are provided with movable cavities (204), the movable cavities (204) are slidably connected with clamping rods (23), the bottom ends of the clamping rods (23) penetrate through the lower surfaces of the extension rods (21) and extend into the extension rods (21), the upper end outer walls of the clamping rods (23) are sleeved with springs (24), and the two ends of the springs (24) are in contact with the inner walls of the movable cavities (204) and the outer walls of the clamping rods (23) respectively.

2. The animal surgical platform for use in field conditions according to claim 1, characterized in that: The upper surfaces of the mounting rod (2) are symmetrically rotatably connected with two groups of handle rings (201), and the outer walls of the mounting rod (2) are symmetrically provided with connecting buckle rings (202).

3. The animal surgical platform for use in field conditions according to claim 1, characterized in that: The lower surfaces of the mounting rod (2) are symmetrically fixedly provided with self-locking universal wheels (22), the cross-sectional shape of the mounting rod (2) is a "H" shape, the outer walls of the mounting rod (2) are symmetrically provided with two groups of first magnets (203) above the abutting positions of the extension rods (21), and the first magnets (203) and the second magnets (211) are opposite in magnetic pole.

4. The animal surgical platform for use in field conditions according to claim 1, characterized in that: The upper surfaces of the extension rods (21) are embedded with second magnets (211), one end of the extension rod (21) is provided with a pin (3), and the extension rod (21) is provided with a matching through hole at the position in contact with the pin (3).

5. The animal surgical platform for use in field conditions according to claim 1, characterized in that: The bottom end of the clamping rod (23) is inclined, the outer wall of the clamping rod (23) is provided with a pushing block (231), and the pushing block (231) is slidably connected with the outer wall of the mounting rod (2).

6. The animal surgical platform for use in field conditions according to claim 1, characterized in that: The upper surfaces of the extension rods (21) are embedded with second magnets (211), one end of the extension rod (21) is provided with a pin (3), and the extension rod (21) is provided with a matching through hole at the position in contact with the pin (3).

7. The animal surgical platform for use in field conditions according to claim 1, characterized in that: The bottom end of the clamping rod (23) is inclined, the outer wall of the clamping rod (23) is provided with a pushing block (231), and the pushing block (231) is slidably connected with the outer wall of the mounting rod (2). The upper surfaces of the extension rods (21) are embedded with second magnets (211), one end of the extension rod (21) is provided with a pin (3), and the extension rod (21) is provided with a matching through hole at the position in contact with the pin (3). The bottom end of the clamping rod (23) is inclined, the outer wall of the clamping rod (23) is provided with a pushing block (231), and the pushing block (231) is slidably connected with the outer wall of the mounting rod (2). The upper surfaces of the extension rods (21) are embedded with second magnets (211), one end of the extension rod (21) is provided with a pin (3), and the extension rod (21) is provided with a matching through hole at the position in contact with the pin (3). The bottom end of the clamping rod (23) is inclined, the outer wall of the clamping rod (23) is provided with a pushing block (231), and the pushing block (231) is slidably connected with the outer wall of the mounting rod (2). The lower surfaces of the lying plate (1) are symmetrically provided with two groups of reinforcing rods (13), and the two groups of reinforcing rods (13) are connected with the mounting rod (2).