Medical ultrasonic cleaning stainless steel screen frame
By designing a corrugated support rod for the medical ultrasonic cleaning stainless steel mesh frame, the problem of incomplete cleaning in ultrasonic cleaning has been solved, achieving efficient and comprehensive cleaning results and improved instrument adaptability.
Patent Information
- Application Number
- CN202423180227.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-23
AI Technical Summary
During ultrasonic cleaning, the mesh layer of the stainless steel frame cannot come into contact with the cleaning fluid at the contact points with the surgical instruments, resulting in incomplete cleaning and requiring a second flipping operation, which increases the workload.
Design a medical ultrasonic cleaning stainless steel mesh frame, which adopts a corrugated base with horizontal support rods and side frame crossbars. The longitudinal cross section of the support rods is continuously corrugated, providing multiple support points, reducing obstruction, increasing the contact area, and adapting to surgical instruments of different shapes and sizes.
It improves cleaning efficiency and effectiveness, reduces blind spots, ensures that every corner is thoroughly cleaned, adapts to different types of equipment, and enhances the versatility and stability of the cleaning equipment.
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Figure CN223655658U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to hospital supply center ultrasonic wave disinfects the field of instrument, specifically a medical ultrasonic wave cleaning stainless steel net frame. TECHNICAL BACKGROUND
[0002] Ultrasonic wave cleaning technology has been widely popularized in hospital disinfection center, especially in the cleaning and disinfection of surgical instruments. This technology has a wide range of applications and is suitable for various types and specifications of surgical instruments. Ultrasonic wave cleaning technology significantly improves the work efficiency of hospital disinfection center with its efficient and rapid cleaning characteristics. Ultrasonic wave cleaning equipment can complete the cleaning of precision surgical instruments within a few minutes, greatly shortening the turnover time of instruments and improving the efficiency of medical operations. Compared with traditional cleaning methods, ultrasonic wave cleaning technology is more gentle and can achieve ideal cleaning results without damaging the surface of surgical instruments. This cleaning method not only ensures the cleaning quality but also helps to prolong the service life of surgical instruments, reducing the maintenance cost of hospitals.
[0003] As an important tool for carrying surgical instruments, stainless steel net frame includes a net frame body and a net layer, which is welded by horizontal and vertical steel wires or steel pipes. In an ideal situation, during the ultrasonic wave cleaning process, the complex structure and small gaps of surgical instruments can be thoroughly cleaned in the stainless steel net frame. However, in actual cleaning process, for surgical instruments with complex structure and small gaps, there is a problem that the contact part between the net layer and the surgical instrument cannot be contacted by the cleaning liquid, resulting in incomplete cleaning. The staff of the disinfection supply center needs to turn the surgical instruments over 180 degrees for secondary ultrasonic wave cleaning, increasing the workload. SUMMARY
[0004] To solve the above technical problems, the utility model provides a medical ultrasonic wave cleaning stainless steel net frame, which includes a side frame and a bottom frame made of medical stainless steel, the side frame and the bottom frame are fixedly connected, the side frame includes a side frame support frame and a side frame horizontal rod arranged on the side frame support frame, and the bottom frame includes:
[0005] A bottom frame support frame made of stainless steel reinforcement or stainless steel pipe;
[0006] A corrugated base horizontal support rod arranged on the bottom frame support frame, the longitudinal section of the corrugated base horizontal support rod is in a continuous corrugated shape, the longitudinal section of the corrugated base horizontal support rod includes a vertical upward wave crest and a vertical downward wave trough, the wave height between adjacent wave crest and wave trough is 0.5-1 CM, the wavelength between adjacent wave crest or wave trough is 0.5-1 CM, and the wave steepness is 0.5-1;
[0007] A bottom frame support leg fixedly connected with the bottom frame support frame, the height of the bottom frame support leg is 2-5 CM.
[0008] Further, the longitudinal section of the corrugated base transverse support rod is in the shape of U, or V, or C. Preferably, the longitudinal section of the corrugated base transverse support rod is in the shape of U.
[0009] Further, the apex of the wave crest on the longitudinal section of each corrugated base transverse support rod is in the shape of a point, and a horizontal support surface is formed by the point-shaped apex of each wave crest for supporting the surgical instruments to be cleaned.
[0010] Further, it also comprises vertical support rods, and the upper surface of the vertical support rod is fixedly connected with the valley bottom of the longitudinal section wave trough of the corrugated base transverse support rod.
[0011] Further, the longitudinal section of the side frame cross rod is in the shape of continuous corrugation, and the longitudinal section of the side frame cross rod comprises vertical inward wave crest and vertical outward wave trough, the wave height between adjacent wave crest and wave trough is 0.5-1 CM, the wave length between adjacent wave crest or wave trough is 0.5-1 CM, and the wave steepness is 0.5-1.
[0012] Further, the longitudinal section of the side frame cross rod is in the shape of U, or V, or C. Advantages
[0013] Because the longitudinal section of the corrugated base horizontal support rod is continuous corrugated, the longitudinal section of the corrugated base horizontal support rod includes vertical upward peaks and vertical downward valleys; the peak vertices on the longitudinal section of each corrugated base horizontal support rod are point-shaped, a horizontal support surface is formed by the point-shaped peak vertices, and the horizontal support surface is used for supporting the surgical instruments to be cleaned, on the one hand, the corrugated design allows multiple support points to be provided in a limited space, reducing the obstruction of the horizontal support rod to the surgical instruments, which makes the cleaning frame more compact and efficient. At the same time, this design also helps to reduce the dead angle of the surgical instruments to be cleaned during the cleaning process, ensuring that every corner can be fully cleaned. Secondly, through the corrugated design, the support rod forms multiple point-shaped peak vertices on the longitudinal section, which together constitute a horizontal support surface. Such a design effectively increases the contact area with the surgical instruments, thereby providing more stable and comprehensive support. Thirdly, due to the design of the support rod of the corrugated base, the surgical instruments can be stably supported at multiple points during the cleaning process, which helps to ensure that each part of the instrument can be fully exposed and cleaned. Therefore, this design can improve the efficiency and effectiveness of cleaning. Fourthly, due to the continuous corrugated shape of the support rod of the corrugated base, it can adapt to surgical instruments of different shapes and sizes. This flexibility enables the cleaning device to handle a wider range of instrument types, improving its practicality and versatility. Fifthly, the wave height between adjacent peaks and valleys on the longitudinal section of each corrugated base horizontal support rod of the utility model is 0.5-1CM, the wavelength between adjacent peaks or valleys is 0.5-1CM, and the wave steepness is 0.5-1, so that when the utility model is used for ultrasonic cleaning of surgical instruments, the contact area of the contact points between the surgical instruments to be cleaned and the base horizontal support rod is reduced, and the influence on the contact points between the surgical instruments to be cleaned and the base horizontal support rod is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 A medical ultrasonic cleaning stainless steel mesh frame structure schematic diagram of the utility model;
[0015] Figure 2 A bottom frame structure schematic diagram;
[0016] Figure 3 A V-shaped corrugated base horizontal support rod structure schematic diagram arranged on the bottom frame support frame;
[0017] Figure 4 A corrugated base horizontal support rod with a longitudinal section in the shape of V;
[0018] Figure 5 A corrugated base horizontal support rod with a longitudinal section in the shape of C;
[0019] Figure 6The transverse support rod is a corrugated base with a U-shaped longitudinal cross-section;
[0020] Figure 7 The side frame crossbars have a V-shaped longitudinal cross section;
[0021] Figure 8 The side frame crossbars have a C-shaped longitudinal cross section;
[0022] Figure 9 The side frame crossbar has a U-shaped longitudinal cross section and is corrugated. Detailed Implementation Example
[0023] like Figure 1 As shown, a medical ultrasonic cleaning stainless steel mesh frame includes a side frame 100 and a bottom frame 200 made of medical stainless steel. The side frame 100 and the bottom frame 200 are fixedly connected. The side frame 100 includes a side frame support frame 101 and a side frame crossbar 102 disposed on the side frame support frame 101.
[0024] like Figure 2 , 3 As shown, the bottom frame 200 includes:
[0025] The bottom frame support frame 201 is made of stainless steel steel bars or stainless steel pipes;
[0026] A corrugated base transverse support rod 202 is provided on the bottom frame support frame 201. The longitudinal section of the corrugated base transverse support rod 202 is continuously corrugated. The longitudinal section of the corrugated base transverse support rod 202 includes vertically upward wave crests 203 and vertically downward wave troughs 204. The wave height between adjacent wave crests 203 and wave troughs 204 is 0.5-1 cm, the wavelength between adjacent wave crests 203 or wave troughs 204 is 0.5-1 cm, and the wave steepness is 0.5-1 cm.
[0027] And, a bottom frame support leg 300 fixedly connected to the bottom frame support frame 201, wherein the height of the bottom frame support leg 300 is 2-5CM.
[0028] Furthermore, such as Figure 4 , 5 As shown in Figure 6, the longitudinal section of the corrugated base transverse support rod 202 is V-shaped, C-shaped, or U-shaped. Preferably, the longitudinal section of the corrugated base transverse support rod 202 is U-shaped.
[0029] Furthermore, such as Figure 4 , 5 As shown in Figure 6, the apex of the wave crest 203 on the longitudinal section of each corrugated base transverse support rod 202 is point-shaped, and the apex of each point-shaped wave crest 203 forms a horizontal support surface for supporting the surgical instruments to be cleaned.
[0030] Furthermore, it also includes a vertical support rod 400, the upper surface of which is fixedly connected to the bottom of the longitudinal section trough 204 of the corrugated base transverse support rod 202.
[0031] Furthermore, the longitudinal section of the side frame crossbar 102 is a continuous corrugation. The longitudinal section of the side frame crossbar 102 includes vertically inward crests and vertically outward troughs. The wave height between adjacent crests and troughs is 0.5-1 cm, the wavelength between adjacent crests or troughs is 0.5-1 cm, and the wave steepness is 0.5-1 cm.
[0032] Furthermore, such as Figure 7 , 8 As shown in Figures 9 and 10, the longitudinal cross section of the side frame crossbar 102 is V-shaped, U-shaped, or C-shaped.
[0033] When the supply and sterilization center requires ultrasonic cleaning of surgical instruments...
[0034] First, check the ultrasonic cleaner cavity for any foreign objects to avoid affecting the cleaning process and results. The ultrasonic cleaner is the accessory for this invention and is commonly used in hospital sterilization supply centers. As it is existing technology, this invention does not innovate on this equipment, and the working principle and operation method of the ultrasonic cleaner will not be elaborated upon here.
[0035] Then, place the medical instruments to be cleaned horizontally within the stainless steel mesh frame of this medical ultrasonic cleaning device. Specifically, place them horizontally on the transverse support rods 202 of the corrugated base, ensuring that the instruments do not touch. The apexes of the corrugated peaks 203 on the longitudinal section of each transverse support rod 202 are dotted, forming a horizontal support surface that supports the instruments to be cleaned. Simultaneously, ensure the mesh frame is placed correctly, that the items do not protrude beyond the frame, and that the items are packed strictly according to the label to avoid errors in the cleaning procedure.
[0036] Next, place the mesh frame containing the instruments into the chamber of the ultrasonic cleaner, ensuring the instruments are submerged in the liquid. Set the cleaning solution temperature, cleaning time, and cleaning power according to the cleaning requirements. Start the ultrasonic cleaner to begin cleaning. The cleaning time depends on the degree of soiling of the instruments, typically 5-10 minutes. During the cleaning process, ensure the equipment is operating normally and carefully observe the cleaning results. After cleaning, remove the instruments and turn off the power to the ultrasonic cleaner. Rinse the cleaned instruments thoroughly with clean water.
[0037] Because the longitudinal section of the transverse support rod of the corrugated base of this utility model is a continuous corrugation, the longitudinal section of the transverse support rod includes vertically upward crests and vertically downward troughs; the apexes of the crests on the longitudinal section of each transverse support rod are point-like, forming a horizontal support surface to support the surgical instruments to be cleaned. Firstly, the corrugated design allows for multiple support points within a limited space, reducing the obstruction of the surgical instruments by the transverse support rod, making the cleaning frame more compact and efficient. Simultaneously, this design also helps reduce blind spots during the cleaning process of the surgical instruments, ensuring that every corner is thoroughly cleaned. Secondly, the corrugated design creates multiple point-like crests on the longitudinal section of the support rod, which together form a horizontal support surface. This design effectively increases the contact area with the surgical instruments, thus providing more stable and comprehensive support. Thirdly, due to the support rod design of the corrugated base, the surgical instruments can be stably supported at multiple points during the cleaning process, which helps ensure that all parts of the instruments are fully exposed and cleaned. Therefore, this design improves cleaning efficiency and effectiveness. Fourthly, because the support rod of the corrugated base has a continuous corrugated shape, it can adapt to surgical instruments of different shapes and sizes. This flexibility allows the cleaning equipment to handle a wider range of instrument types, improving its practicality and versatility.
Claims
1. A medical ultrasonic cleaning stainless steel mesh frame, comprising a side frame and a bottom frame made of medical stainless steel, the side frame and the bottom frame being fixedly connected, the side frame comprising a side frame support frame and a side frame crossbar disposed on the side frame support frame, characterized in that... The bottom frame includes: The bottom frame support frame is made of stainless steel steel bars or stainless steel pipes; A corrugated base transverse support rod is installed on the bottom frame support frame. The longitudinal section of the corrugated base transverse support rod is continuously corrugated. The longitudinal section of the corrugated base transverse support rod includes vertically upward wave peaks and vertically downward wave troughs. The wave height between adjacent wave peaks and wave troughs is 0.5-1 cm, the wavelength between adjacent wave peaks or wave troughs is 0.5-1 cm, and the wave steepness is 0.5-1 cm. The bottom frame support leg is fixedly connected to the bottom frame support frame, and the height of the bottom frame support leg is 2-5CM.
2. The medical ultrasonic cleaning stainless steel mesh frame according to claim 1, characterized in that: The longitudinal section of the transverse support rod of the corrugated base is U-shaped, V-shaped, or C-shaped.
3. The medical ultrasonic cleaning stainless steel mesh frame according to claim 1, characterized in that: The crests on the longitudinal sections of the transverse support rods of each corrugated base are point-like, forming a horizontal support surface to support the surgical instruments to be cleaned.
4. The medical ultrasonic cleaning stainless steel mesh frame according to claim 1, characterized in that: It also includes a vertical support rod, the upper surface of which is fixedly connected to the bottom of the longitudinal section trough of the transverse support rod of the corrugated base.
5. The medical ultrasonic cleaning stainless steel mesh frame according to claim 1, characterized in that: The longitudinal section of the side frame crossbar is a continuous corrugation. The longitudinal section of the side frame crossbar includes vertically inward crests and vertically outward troughs. The wave height between adjacent crests and troughs is 0.5-1 cm, the wavelength between adjacent crests or troughs is 0.5-1 cm, and the wave steepness is 0.5-1 cm.
6. The medical ultrasonic cleaning stainless steel mesh frame according to claim 1, characterized in that: The longitudinal cross section of the side frame crossbar is U-shaped, V-shaped, or C-shaped.