Handheld treatment box for livestock disease treatment
By designing an instrument fixation area, an ultraviolet disinfection compartment, and a waste storage chamber for the handheld treatment box, the problems of easily damaged tools, easily confused medicines, and medical waste pollution in the treatment of livestock diseases have been solved. It realizes the four-in-one function of instrument fixation, medicine classification, disinfection, and waste collection, thereby improving the operational efficiency and safety of livestock diagnosis and treatment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG BINZHOU ANIMAL SCI & VETERINARY MEDICINE ACADEMY
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-17
AI Technical Summary
Existing animal disease treatment kits have several problems: syringes and needles lack securing devices and are easily damaged; medicines and instruments are mixed together and easily confused; used instruments require separate disinfection equipment, increasing the operational burden; and medical waste lacks independent storage space, which can easily cause pollution.
A handheld treatment box was designed, which includes an instrument fixing area, a UV disinfection compartment, a medicine drawer, and a waste storage chamber. The instrument fixing area is fixed by buckles and an elastic mesh layer. The UV disinfection compartment enables instant disinfection. The waste storage chamber facilitates the collection of medical waste. The medicine drawer allows for classified storage.
It enables the fixation and protection of instruments, the classified storage of medicines, immediate disinfection, and the safe disposal of waste, significantly improving the operational efficiency and safety of animal diagnosis and treatment.
Smart Images

Figure CN224126067U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of livestock breeding equipment, and in particular to a handheld treatment box for treating livestock diseases. Background Technology
[0002] During the diagnosis and treatment of livestock diseases, veterinarians need to carry various tools such as injection equipment, medicines, and disinfectants to and from the breeding site.
[0003] However, existing portable treatment kits generally have the following problems:
[0004] 1. Syringes, needles, cotton swabs, and other tools lack securing devices and are easily damaged by collisions when carried.
[0005] 2. Medicines and medical devices are packaged together, which can easily cause confusion and make them inconvenient to use;
[0006] 3. Used utensils require separate sterilization equipment, increasing the workload;
[0007] 4. Medical waste (such as discarded needles and cotton swabs) lacks a separate storage space, which can easily cause pollution.
[0008] In view of this, the inventor has specifically designed a handheld treatment box for treating livestock diseases, which leads to this invention. Utility Model Content
[0009] To solve the above problems, the technical solution of this utility model is as follows:
[0010] A handheld treatment box for treating livestock diseases includes a treatment box body and a box lid. The upper end of the treatment box body is recessed to form an instrument fixing area. The bottom of the instrument fixing area is provided with a buckle structure for fixing instruments. The upper surface of the instrument fixing area is detachably covered with an elastic mesh layer. The upper side wall of the treatment box body is provided with an ultraviolet disinfection grid for disinfection. The side wall of the treatment box body and below the ultraviolet disinfection grid is provided with a medicine drawer. The other side wall of the treatment box body opposite to the medicine drawer is provided with a dispensing port. The inner side of the treatment box body is provided with a waste storage cavity communicating with the dispensing port.
[0011] Preferably, the instrument fixing area is divided into several storage areas by several separating ribs.
[0012] Preferably, the elastic mesh layer is magnetically connected to the periphery of the instrument fixation area.
[0013] Preferably, the elastic mesh layer has two layers and is symmetrically distributed on both sides of the instrument fixation area. The side of the two elastic mesh layers that are far apart from each other is fixed to the edge of the instrument fixation area, and the side that is close to each other is magnetically connected to the peripheral edge of the instrument fixation area.
[0014] Preferably, the instrument fixing area is provided with continuously distributed magnetic strips along its edge, the elastic mesh layer includes a flexible edging and a mesh surface located in the middle of the flexible edging, and the flexible edging is provided with a plurality of magnetic sheets that magnetically engage with the magnetic strips.
[0015] Preferably, the two elastic mesh layers are provided with easy-open strips on the side that is close to each other, and the two easy-open strips are staggered.
[0016] Preferably, the buckle structure is a symmetrically distributed semi-circular plastic buckle.
[0017] Preferably, the outer wall of the waste storage chamber has an opening and an L-shaped operating plate is movably provided. The bottom of the operating plate is hinged to the bottom side of the opening, and its top is snapped to the outer top of the waste storage chamber. The throwing port is located on the side wall of the operating plate.
[0018] Preferably, the inner wall of the waste storage chamber, below the throwing port, is provided with several upwardly bent hooks.
[0019] Preferably, the ultraviolet disinfection grid includes a disinfection chamber with an opening, a foldable door panel, a micro switch, and an ultraviolet lamp located at the top of the disinfection chamber. The micro switch is located between the door panel and the opening of the disinfection chamber, and the micro switch and the ultraviolet lamp are triggered when the door panel is closed.
[0020] The beneficial effects of this utility model are as follows:
[0021] This invention optimizes the spatial structure of the treatment box, achieving a four-in-one function of instrument fixation and protection, drug classification and storage, immediate disinfection, and safe waste disposal, significantly improving the operational efficiency and safety of animal diagnosis and treatment.
[0022] in:
[0023] The semi-circular plastic buckle at the bottom of the instrument fixing area forms a double fixing structure with the upper elastic mesh layer. The buckle can accurately hold the cylindrical body of the syringe and needle. The elastic mesh layer covers the top of the instrument through magnetic connection. With the independent storage area divided by the partition ribs, it can realize the classification and positioning of instruments of different sizes. Compared with the traditional open storage, it can greatly reduce the collision and wear of instruments.
[0024] In addition, the symmetrically distributed double elastic grid layer uses magnetic sheets and magnetic strips to magnetically attract each other, and the grid layer on one side can be lifted separately. The easy-to-lift strips are staggered to avoid simultaneous opening, allowing veterinarians to quickly pick up instruments in specific areas with one hand, achieving efficient operation.
[0025] In addition, the ultraviolet lamp is automatically triggered when the disinfection compartment door is closed, forming a continuous operation line of "retrieval-disinfection-use". Combined with the disposal port design of the waste storage chamber, medical waste generated during treatment can be disposed of immediately without the need to frequently switch operating scenarios, thus greatly improving operational efficiency. Attached Figure Description
[0026] The accompanying drawings, which are provided to further illustrate the present invention and constitute a part of the present invention, illustrate exemplary embodiments of the present invention and are used to explain the present invention, but do not constitute an undue limitation of the present invention.
[0027] in:
[0028] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0029] Figure 2 This is one of the partial structural diagrams highlighting the fixation area of the instrument in this utility model;
[0030] Figure 3 This is the second partial structural schematic diagram highlighting the fixation area of the instrument in this utility model;
[0031] Figure 4 This is a partial cross-sectional view of the waste storage cavity in this utility model.
[0032] Figure 5 This is a block diagram illustrating the connection principle of this utility model.
[0033] Label Explanation:
[0034] 100. Treatment box body; 110. Anti-slip feet; 200. Box lid; 210. Buckle structure; 220. Handle; 300. Instrument fixing area; 310. Dividing ribs; 320. Storage area; 330. Snap-fit structure; 340. Magnetic strip; 400. Elastic mesh layer; 410. Flexible edging; 420. Mesh surface; 430. Magnetic sheet; 440. Easy-open strip; 500. Ultraviolet disinfection compartment; 510. Door panel; 520. Micro switch; 530. Ultraviolet lamp; 540. Control module; 550. Lithium battery; 600. Medicine drawer; 700. Waste storage compartment; 710. Disposal port; 720. Control panel; 730. Hook. Detailed Implementation
[0035] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0036] Please see Figures 1 to 5 This is a handheld treatment box for treating livestock diseases, which is the preferred embodiment of the present utility model. It includes a treatment box body 100 and a box cover 200.
[0037] Specifically, such as Figure 1 , 2 As shown in Figure 3, the upper end of the treatment box body 100 is recessed to form an instrument fixing area 300. The bottom of the instrument fixing area 300 is provided with a buckle structure 330 for fixing the instrument. The upper surface of the instrument fixing area 300 is detachably covered with an elastic mesh layer 400.
[0038] In this embodiment, the instrument fixation area 300 is divided into three parallel storage areas 320 by two separating ribs 310. Two elastic mesh layers 400 are provided and symmetrically distributed on both sides of the instrument fixation area 300. The two elastic mesh layers 400 are fixed to the edge of the instrument fixation area 300 by hot melt adhesive on the side that is far away from each other, and the side that is close to each other is magnetically connected to the peripheral edge of the instrument fixation area 300. Specifically, the instrument fixation area 300 is provided with continuously distributed magnetic strips 340 along its edge. The elastic mesh layer 400 includes a flexible edging 410 and a mesh surface 420 provided in the middle of the flexible edging 410. The flexible edging 410 is a closed edge sewn with fabric, and a number of magnetic pieces 430 that magnetically attract with the magnetic strips 340 are sewn and pasted on the flexible edging 410.
[0039] The buckle structure 330 consists of symmetrically distributed semi-circular plastic buckles.
[0040] Easy-open strips 440 are provided on the side of the two elastic mesh layers 400 that are close to each other, and the two easy-open strips 440 are staggered.
[0041] Thus, the elastic mesh layer 400 forms a shape that can be folded along its fixed side, and its flexible edge 410 can also achieve magnetic attraction with the magnetic strip 340 through several magnetic sheets 430, so as to achieve elastic compression and limitation of instruments in the storage area 320. With the help of the semi-circular plastic buckle, after they are pried apart, the syringe waiting to be fixed can be inserted. After releasing, it can achieve stable support. Finally, the semi-circular plastic buckle at the bottom of the instrument fixing area 300 and the upper elastic mesh layer 400 form a double fixing structure. The buckle can accurately lock the cylindrical body of the syringe and needle. The elastic mesh layer 400 covers the top of the instrument through magnetic connection. With the independent storage area 320 divided by the dividing ribs 310, the classification and limitation of instruments of different specifications can be achieved. Compared with the traditional open storage, the collision and wear of instruments can be greatly reduced. The symmetrically distributed double elastic mesh layer 400 uses magnetic sheets 430 and magnetic strips 340 for magnetic attraction. Each side of the mesh layer can be lifted separately. The easy-to-lift strips 440 are staggered to avoid simultaneous opening. Veterinarians can quickly pick up instruments in specific areas with one hand, achieving efficient operation.
[0042] In addition, one side of the lid 200 is hinged to the treatment box body 100, and the other side is fastened to the treatment box body 100 via a snap fastener structure 210. The snap fastener structure 210 is a common connection structure on commercially available storage boxes, which will not be described in detail here.
[0043] In addition, an inverted U-shaped handle 220 is hinged at the center of the upper end of the lid 200 for easy handling.
[0044] In addition, the bottom of the treatment box body 100 is provided with anti-slip foot pads 110, which are silicone pads in this embodiment.
[0045] like Figure 1 As shown, the upper side wall of the treatment box body 100 is provided with an ultraviolet disinfection grid 500 for disinfection.
[0046] Specifically, the treatment box body 100 has an independent cavity at the front, namely a disinfection cavity with an opening (not shown in the figure). A door panel 510 for closing the opening is hinged at the opening position of the disinfection cavity. The door panel 510 is linked to a micro switch 520. When the door panel 510 is closed, the ultraviolet lamp 530 (power 5W, irradiation time 5 minutes and automatic power off) is automatically activated. The inner wall of the disinfection cavity is provided with a metal reflective layer (not shown in the figure) to enhance the disinfection effect.
[0047] In this embodiment, a control module 540 is also provided. The control module 540 is an MCU microprocessor. The MCU microprocessor is connected to the ultraviolet lamp 530, the micro switch 520 that links the door panel 510, and the lithium battery 550 inside the housing via wires. The MCU microprocessor has multiple input and output ports. The input port is connected to the micro switch 520 to receive the opening and closing status signal of the door panel 510. The output port is connected to the driving circuit of the ultraviolet lamp 530 to control the start, stop, and operating duration of the ultraviolet lamp 530. The power port of the MCU microprocessor is connected to the lithium battery 550 to obtain the power required for operation.
[0048] The micro switch 520 linked to the door panel 510 is in the open state when the door panel 510 is opened and in the closed state when the door panel 510 is closed. The electrical signal generated by the state change is transmitted to the input port of the MCU microprocessor in real time. After processing the input signal according to the preset program, the MCU microprocessor sends the control signal to the drive circuit of the ultraviolet lamp 530 through the output port.
[0049] The ultraviolet lamp 530 is located at the top of the disinfection chamber, and the micro switch 520 is located between the door panel 510 and the opening of the disinfection chamber. When the door panel 510 is closed, the micro switch 520 and the ultraviolet lamp 530 are triggered.
[0050] Disinfection process:
[0051] Initial state: When the treatment box is not in operation, the MCU microprocessor is in low-power standby mode and the UV lamp 530 is off.
[0052] Disinfection Activation: When the veterinarian places used needles, tweezers, and other instruments into the disinfection chamber and closes the door panel 510, the micro switch 520 closes, sending an electrical signal to the MCU microprocessor indicating that the door is closed. Upon receiving the signal, the MCU microprocessor, according to its internal preset program, sends a start command to the drive circuit of the ultraviolet lamp 530 through its output port. Upon receiving the command, the drive circuit supplies power to the ultraviolet lamp 530, enabling it to start operating at 5W power, and simultaneously starts the internal timer.
[0053] Timed shutdown: After the timer in the MCU microprocessor starts counting, it continuously monitors the time. When the countdown reaches 5 minutes, the MCU microprocessor sends a shutdown command to the drive circuit of the UV lamp 530 through the output port. The drive circuit cuts off the power supply to the UV lamp 530, causing it to stop working. At the same time, the MCU microprocessor module enters a low-power standby mode, waiting for the next door panel 510 switch signal to trigger.
[0054] By introducing an MCU microprocessor to control the UV lamp 530, not only has the disinfection process been automated and made intelligent, but the safety during use has also been improved, and the function of the handheld treatment box for treating livestock diseases has been further optimized.
[0055] In addition, a medicine drawer 600 is provided on the side wall of the treatment box body 100 and below the ultraviolet disinfection compartment 500.
[0056] In this embodiment, two medicine drawers 600 are provided, and the medicine drawers 600 are divided into multiple medicine areas (not shown in the figure), which facilitates the storage of various types of medicines.
[0057] like Figure 2 , 3 As shown in Figure 4, the side wall opposite to the medicine drawer 600 of the treatment box body 100 is provided with a throwing port 710, and the inside of the treatment box body 100 is provided with a waste storage cavity 700 that communicates with the throwing port 710.
[0058] Specifically, the outer wall of the waste storage chamber 700 has an opening and an L-shaped operating plate 720 is movably provided. The operating plate 720 is made of an elastic material such as plastic. The bottom of the operating plate 720 is hinged to the bottom side of the opening, and its top is snapped to the outer top of the waste storage chamber 700. The throwing port 710 is provided on the side wall of the operating plate 720.
[0059] The waste storage chamber 700 features a disposal port 710 design, allowing medical waste generated during treatment to be disposed of immediately without frequent switching of operating scenarios, thus significantly improving operational efficiency. The hinged and snap-lock design of the control panel 720 enables easy opening and closing of the waste storage chamber 700, facilitating the operator's access to the waste bags inside.
[0060] Preferably, the waste storage chamber 700 has several upwardly bent hooks 730 on its inner wall at a position lower than the throwing port 710.
[0061] This makes it easier for operators to hook and connect the top of the garbage bag, improving its stability when containing items.
[0062] The beneficial effects of this utility model are as follows:
[0063] This utility model optimizes the spatial structure of the treatment box body 100, realizing the four-in-one functions of instrument fixation and protection, drug classification and storage, immediate disinfection, and safe waste disposal, significantly improving the operational efficiency and safety of animal diagnosis and treatment.
[0064] The present invention has been described above with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention, or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. A hand-held treatment case for livestock disease treatment, comprising a treatment case body (100) and a case cover (200), characterized in that, The upper end of the treatment box body (100) is recessed to form an instrument fixing area (300). The bottom of the instrument fixing area (300) is provided with a buckle structure (330) for fixing instruments. The upper surface of the instrument fixing area (300) is detachably covered with an elastic mesh layer (400). The upper side of the side wall of the treatment box body (100) is provided with an ultraviolet disinfection grid (500) for disinfection. The side wall of the treatment box body (100) and below the ultraviolet disinfection grid (500) is provided with a medicine drawer (600). The other side wall of the treatment box body (100) opposite to the medicine drawer (600) is provided with a disposal port (710). The inner side of the treatment box body (100) is provided with a waste storage cavity (700) communicating with the disposal port (710).
2. The hand-held treatment case for livestock disease treatment according to claim 1, wherein The instrument fixing area (300) is divided into several storage areas (320) by several separating ribs (310).
3. The hand-held treatment case for livestock disease treatment according to claim 1, wherein The elastic mesh layer (400) is magnetically connected to the periphery of the instrument fixation area (300).
4. The hand-held treatment case for livestock disease treatment according to claim 3, wherein Two elastic mesh layers (400) are provided and symmetrically distributed on both sides of the instrument fixation area (300). The two elastic mesh layers (400) are fixed to the edge of the instrument fixation area (300) on the side that is far away from each other, and the side that is close to each other is magnetically connected to the peripheral edge of the instrument fixation area (300).
5. The hand-held treatment case for livestock disease treatment according to claim 4, wherein The instrument fixing area (300) is provided with continuously distributed magnetic strips (340) along its edge. The elastic mesh layer (400) includes a flexible edging (410) and a mesh surface (420) located in the middle of the flexible edging (410). The flexible edging (410) is provided with a plurality of magnetic sheets (430) that magnetically engage with the magnetic strips (340).
6. The hand-held treatment case for livestock disease treatment according to claim 4, wherein The two elastic mesh layers (400) are provided with easy-open strips (440) on the side that are close to each other, and the two easy-open strips (440) are staggered.
7. The hand-held treatment case for livestock disease treatment according to claim 1, wherein The buckle structure (330) consists of symmetrically distributed semi-circular plastic buckles.
8. The hand-held treatment case for livestock disease treatment according to claim 1, wherein The outer wall of the waste storage chamber (700) is open and movably provided with an L-shaped operating plate (720). The bottom of the operating plate (720) is hinged to the bottom side of the opening, and its top is snapped to the top of the waste storage chamber (700). The throwing port (710) is provided on the side wall of the operating plate (720).
9. The hand-held treatment case for livestock disease treatment according to claim 8, wherein The waste storage chamber (700) has several upward-bent hooks (730) on its inner wall below the throwing port (710).
10. The hand-held treatment case for livestock disease treatment according to claim 1, wherein The ultraviolet disinfection grid (500) includes a disinfection chamber with an opening, a foldable door panel (510), a micro switch (520), and an ultraviolet lamp (530) located at the top of the disinfection chamber. The micro switch (520) is located between the door panel (510) and the opening of the disinfection chamber. When the door panel (510) is closed, the micro switch (520) and the ultraviolet lamp (530) are triggered.