Sterile kidney basin
By setting jacks and insert rods on the sterile curve discs, allowing multiple sterile curve discs to be connected together, it solves the problem that medical staff finds it difficult to quickly find the required needs in multiple sterile curve discs and improves the efficiency of disposing of waste.
Patent Information
- Application Number
- CN202421899330.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-07
AI Technical Summary
When medical staff need multiple sterile bends to be used together, existing sterile bends are difficult to quickly find the required sterile bends, and they need to be taken individually and multiple times when dealing with waste, which is a waste of time.
A sterile curved disk is designed, and by providing two jacks and two plug rods at the upper end of the disk body, multiple sterile curved disks are allowed to be connected together through the plug rod and socket, for easy splicing and use.
The regular splicing of multiple sterile bends is achieved, which facilitates medical staff to quickly find the sterile bends they need, and reduces the number of times they take them separately during cleaning, saving time.
Smart Images

Figure CN223009262U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of medical appliances, and more specifically to a sterile kidney dish. Background Art
[0002] Medical sterile kidney dishes are commonly used containers in hospitals. They are often used to hold medical waste or medical instruments during clinical use. Conventional sterile kidney dishes have a simple structure and a single function. When medical staff need to use multiple sterile kidney dishes in cooperation, multiple sterile kidney dishes are placed on the table and medical staff cannot quickly find the required sterile kidney dish. Moreover, when dealing with waste, it is necessary to take them one by one multiple times, wasting time. Content of the Utility Model
[0003] The utility model provides a sterile kidney dish, which can splice multiple sterile kidney dishes together regularly, facilitating medical staff to pick up or quickly find the required sterile kidney dish when using them together.
[0004] A sterile kidney dish includes a dish body. The left and right ends of the dish body are circular arcs, and the left and right ends of the dish body are connected by an arc transition. Two jacks are provided at the upper edge of one side of the dish body, and two inserting rods are fixedly connected to the upper edge of the other side of the dish body. The diameters of the jacks are the same.
[0005] Two groups of limiting grooves are arranged at the upper end of the dish body.
[0006] A partition is fixedly connected inside the dish body, and the partition and the inner wall of the dish body form a closed circle.
[0007] Support protrusions are arranged on the inner wall of the dish body, a separation plate is arranged at the upper end of the support protrusions, and a plurality of leakage holes are formed in the separation plate. Description of the Drawings
[0008] The following further describes the present utility model in detail with reference to the drawings and specific implementation methods.
[0009] Figure 1 and Figure 2 is a schematic diagram of the overall structure of a sterile kidney dish;
[0010] Figure 3 is a schematic diagram of the structure of an anti-slip pad;
[0011] Figure 4 is a schematic diagram of the structure of a partition;
[0012] Figure 5 is a schematic diagram of the structure of a separation plate. Specific Embodiment
[0013] Refer to Figures 1-4 ,
[0014] A sterile kidney dish, comprising a dish body 101. The left and right ends of the dish body 101 are arc-shaped, and the left and right ends of the dish body 101 are connected by an arc transition. Two jacks 102 are provided at the upper edge of one side of the dish body 101, and two inserting rods 103 are fixedly connected by welding at the upper edge of the other side of the dish body 101. The jacks 102 have the same diameter as each other.
[0015] When multiple sterile kidney dishes are needed to be used in combination, the staff insert the two inserting rods 103 on one sterile kidney dish into the two jacks 102 on another sterile kidney dish respectively, so as to realize the connection of the two sterile kidney dishes. Furthermore, when in use, multiple sterile kidney dishes can be spliced together regularly, and thus it is convenient for medical staff to find the required sterile kidney dish when in use, so as to achieve the purpose of convenience.
[0016] When multiple sterile kidney dishes need to be cleaned, the multiple spliced sterile kidney dishes are convenient for medical staff to lift them together, and thus there is no need to take the sterile kidney dishes individually and repeatedly, effectively saving time.
[0017] See Figure 1 ,
[0018] Two groups of limiting grooves 104 are provided at the upper end of the dish body 101, and the two groups of limiting grooves 104 play a role in limiting the forceps. The forceps used by medical staff can be placed in the two groups of limiting grooves 104. Furthermore, the two groups of limiting grooves 104 can play a role in limiting the forceps, preventing the forceps from slipping. At the same time, the forceps are in a suspended state, which is convenient for medical staff to take.
[0019] See Figure 4 ,
[0020] A partition plate 201 is welded inside the dish body 101. The partition plate 201 and the inner wall of the dish body 101 form a closed circle, and this area is used to place a disinfection can containing iodophor, and thus plays a role in limiting the disinfection can, preventing the disinfection can from tipping over when accidentally touched.
[0021] See Figure 5 ,
[0022] Support protrusions 202 are integrally formed by stamping on the inner wall of the dish body 101. A separation plate 203 is provided at the upper end of the support protrusions 202, and a plurality of leakage holes 204 are provided on the separation plate 203.
[0023] The separation plate 203 is used to separate medical waste into dry and wet. After the disinfection cotton balls are used, they are placed on the separation plate 203, and the iodophor can fall through the plurality of leakage holes 204 into the inside of the dish body 101, while the cotton balls are isolated at the upper end of the separation plate 203, playing a role in separating medical waste into dry and wet.
[0024] A round rod 205 is bonded to the upper end of the separation plate 203. The round rod 205 facilitates medical staff to lift the separation plate 203 by hand, thereby facilitating the cleaning of the separation plate 203 and the disk body 101.
[0025] See Figure 5 ,
[0026] Two anti-slip pads 206 are bonded to the lower end of the disk body 101. The two anti-slip pads 206 play a role in preventing the bottom of the disk body 101 from slipping, increasing the friction between the disk body 101 and the tabletop, and preventing the disk body 101 from moving around during use.
[0027] See Figure 3 ,
[0028] Both of the two anti-slip pads 206 are made of rubber material, and the rubber material has good wear resistance.
[0029] See Figure 1 ,
[0030] The round rod 205 is made of rubber material, and the round rod 205 made of rubber material has the characteristic of corrosion resistance.
[0031] See Figure 4 ,
[0032] Both the disk body 101 and the separation plate 203 are made of stainless steel material, and the disk body 101 and the separation plate 203 made of stainless steel material have the characteristic of rust prevention.
[0033] See Figure 4 ,
[0034] Both groups of the limiting grooves 104 and the disk body 101 are integrally formed by stamping.
Claims
1. A sterile curved tray, characterized in that: The invention comprises a disk body (101), the left and right ends of the disk body (101) are arc-shaped, the left and right ends of the disk body (101) are connected by an arc transition, two insertion holes (102) are arranged on the upper edge of one side of the disk body (101), two insertion rods (103) are fixedly connected to the upper edge of the other side of the disk body (101), and the diameters of the insertion holes (102) and the insertion holes (102) are the same.
2. A sterile curved tray according to claim 1, characterized in that: Two groups of limiting grooves (104) are arranged at the upper end of the disk body (101).
3. A sterile curved tray according to claim 2, characterized in that: A partition plate (201) is fixedly connected inside the disk body (101), and the partition plate (201) and the inner wall of the disk body (101) form a closed circle.
4. A sterile curved tray according to claim 3, characterized in that: A supporting protrusion (202) is arranged on the inner wall of the disk body (101), a separation plate (203) is arranged on the upper end of the supporting protrusion (202), and a plurality of leakage holes (204) are opened on the separation plate (203).
5. A sterile curved tray according to claim 4, characterized in that: The upper end of the separation plate (203) is fixedly connected to a round rod (205).
6. A sterile curved tray according to claim 5, characterized in that: Two anti-slip pads (206) are fixedly connected to the lower end of the disk body (101).
7. A sterile curved tray according to claim 6, characterized in that: The two anti-slip pads (206) are both made of rubber.
8. The aseptic curved tray according to claim 5, characterized in that: The round rod (205) is made of rubber.
9. The sterile curved tray according to claim 4, characterized in that: The disc body (101) and the separation plate (203) are both made of stainless steel.
10. The aseptic curved tray according to claim 2, characterized in that: The two groups of limiting grooves (104) are integrally formed with the disc body (101) by stamping.