Medical drying cabinet
By designing drying modules and detachable drying sleeves in the drying cabinet, the problem of insufficient space in the drying cabinet was solved, achieving efficient drying of instruments and improving drying efficiency and rate.
Patent Information
- Application Number
- CN202520251831.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-17
AI Technical Summary
The limited internal space of conventional drying cabinets leads to longer drying times for instruments, affecting the timely supply of instruments.
A medical drying cabinet was designed, which adopts a drying module and a detachable drying sleeve structure. The drying sleeve includes a connecting tube, a cavity tube and multiple branch tubes. The branch tubes are equipped with an inner nozzle and a limiting component. The inner wall of the branch tube is equipped with an abutment strip. The inner nozzle is used to dry the inner and outer walls of instruments simultaneously.
By increasing the drying space of the drying cabinet and optimizing the drying structure, the drying efficiency and rate of instruments were improved, and the drying time was shortened.
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Figure CN223795735U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of drying cabinet, especially to a medical drying cabinet. BACKGROUND
[0002] Many cavity instruments will be used in the medical field to examine the patient's body, also known as lumen instruments, these cavity instruments are usually reused, so they need to be cleaned in time after use, and the cleaned cavity instruments also need to be dried to meet the subsequent medical needs.
[0003] The cleaned cavity instruments are usually dried by using a drying cabinet, but the conventional drying cabinet has a fixed volume and limited internal space, while sometimes there are many clinical cavity instruments that need to be dried, which leads to insufficient drying space, thus prolonging the drying time and affecting the timely supply of instruments. SUMMARY
[0004] In order to improve the limited drying space inside the conventional drying cabinet and affect the drying efficiency of the instruments, the present application provides a medical drying cabinet.
[0005] The present application provides a medical drying cabinet, which adopts the following technical solutions:
[0006] A medical drying cabinet comprises
[0007] A cabinet body, a drying module is arranged at the top of the cabinet body, a plurality of drying ports are formed in the bottom of the drying module, and the drying module transports hot air through the drying ports;
[0008] At least one drying sleeve, the drying sleeve comprises a butt joint pipe and a plurality of independent branch pipes connected with the butt joint pipe, the butt joint pipe is detachably inserted into one of the drying ports, and the branch pipes are used to insert the cavity instruments that need to be dried.
[0009] Further, the drying sleeve further comprises a lumen dividing pipe, the lumen dividing pipe is located between the butt joint pipe and the branch pipes, and the lumen dividing pipe is in communication with the butt joint pipe and each branch pipe.
[0010] Further, a connecting port is formed in the side wall of the lumen dividing pipe, the branch pipes are correspondingly inserted into the connecting port, and the branch pipes are detachably connected with the lumen dividing pipe.
[0011] Further, a plurality of abutting strips are circumferentially arranged on the inner wall of the branch pipe, the abutting strips extend along the length direction of the branch pipe, the length of the abutting strips corresponds to the length of the branch pipe, and the abutting strips are used to separate the cavity instruments from the inner wall of the branch pipe.
[0012] Further, the inner blowing nozzle is coaxially arranged inside the branch pipe near one end of the cavity-dividing pipe, a gap is left between the outer wall of the inner blowing nozzle and the inner wall of the branch pipe, and the inner blowing nozzle is used to be inserted into the pipe diameter of the cavity instrument.
[0013] Further, the outer diameter of the inner blowing nozzle gradually decreases along the length of the branch pipe and in the direction gradually away from the cavity-dividing pipe.
[0014] Further, a plurality of drying through holes are arranged on the side wall of the inner blowing nozzle away from one end of the cavity-dividing pipe, the drying through holes are arranged at intervals and are in communication with the inner space of the inner blowing nozzle.
[0015] Further, the openings of the drying through holes on the outer wall of the inner blowing nozzle are inclined to the direction away from the cavity-dividing pipe.
[0016] Further, a plurality of limiting members are arranged on the side wall of the branch pipe away from one end of the docking pipe, the limiting members are threadedly connected with the side wall of the branch pipe, the limiting members are arranged at intervals and are symmetrically distributed with respect to the axis of the branch pipe, and one end of the limiting members inside the branch pipe is used to abut against the outer wall of the instrument.
[0017] Further, the docking pipe is coated with a soft protective sleeve.
[0018] In summary, the present application has at least one of the following beneficial effects:
[0019] 1. By arranging a plurality of drying ports in the drying cabinet and inserting a drying sleeve into each drying port, the instrument can be directly inserted into the drying sleeve for drying, the drying cabinet can increase the number of instruments dried at the same time by arranging the drying ports, and the drying efficiency of the instruments is improved. In addition, each drying sleeve includes a plurality of independent branch pipes, so that each drying sleeve can further divide a plurality of independent drying positions, and the instrument can be inserted into the independent branch pipe for drying, thereby further increasing the number of instruments dried at the same time and further improving the drying efficiency of the instruments.
[0020] 2. By arranging an inner blowing nozzle in each branch pipe, when the instrument is inserted into the branch pipe, the inner blowing nozzle is simultaneously inserted into the pipe diameter of the instrument, the outer wall of the instrument is blown dry in the branch pipe, and the inner wall of the instrument is blown dry by the inner blowing nozzle, so that the outer wall and the inner wall of the cavity instrument can be dried at the same time, which can effectively accelerate the drying rate of the instrument and shorten the drying time of the instrument. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a structural schematic view of the inside of the drying cabinet according to an embodiment of the present application;
[0022] Figure 2 is Figure 1 is a partial sectional view at A-A;
[0023] Figure 3 is a sectional view of a drying sleeve according to an embodiment of the present application;
[0024] Figure 4 is Figure 3 an enlarged schematic view at B;
[0025] Figure 5 is a partial schematic view of a limiting member according to an embodiment of the present application.
[0026] Reference signs: 1, cabinet; 11, accommodating cavity; 2, drying module; 21, drying port; 3, drying sleeve; 31, butt joint pipe; 311, soft protective sleeve; 32, sub-cavity pipe; 321, connecting port; 33, branch pipe; 34, abutting strip; 35, inner blowing nozzle; 351, drying through hole; 4, official cavity instrument; 5, limiting member. DETAILED DESCRIPTION
[0027] In order to make the purpose, technical scheme and advantages of the present application clearer, the embodiments of the present application will be further described below in combination with the drawings. The following is a relatively preferred one of the multiple possible embodiments of the present application, which is intended to provide a basic understanding of the present application, but is not intended to confirm the key or decisive elements or limit the scope of protection.
[0028] In all examples shown and discussed herein, any specific value should be interpreted as merely exemplary and not as a limitation. Thus, other examples of the exemplary embodiments can have different values.
[0029] Techniques, methods and devices known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered as part of the specification where appropriate.
[0030] In the description of the present application, it should be noted that the circuits and electronic components and modules involved in the present application are all prior art, which can be realized by those skilled in the art without further description, and the content protected by the present application does not involve improvement of internal structure and method.
[0031] It should be further noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, or internal communication of two elements. For those of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0032] The embodiments of the present application provide a medical drying cabinet, referring to Figure 1 andFigure 2 The medical drying cabinet comprises a cabinet body 1 and a drying sleeve 3 placed in the cabinet body 1, a containing cavity 11 for placing various instruments is left in the cabinet body 1, a drying module 2 is fixed on the top of the cabinet body 1, the drying module 2 comprises a heating assembly and a blowing assembly (not shown), which are used to provide temperature and airflow for drying the space in the cabinet body 1.
[0033] A plurality of downward vertical drying ports 21 are formed in the bottom of the drying module 2, the heating assembly and the blowing assembly in the drying module 2 can deliver hot air to the drying ports 21, and one end of the top of the drying sleeve 3 is inserted into the drying port 21, so that the hot air for drying is blown into the drying sleeve 3, and the cavity instrument 4 is inserted and fixed in the drying sleeve 3, so that the cavity instrument 4 can be dried in the drying sleeve 3. The number of drying ports 21 can be increased or decreased according to the size of the actual cabinet body 1, and the drying ports 21 are spaced apart.
[0034] Referring to Figure 2 and Figure 3 The drying sleeve 3 comprises a docking pipe 31, a cavity dividing pipe 32 and a plurality of independent branch pipes 33, wherein the docking pipe 31 is vertically inserted into each drying port 21, the end of the docking pipe 31 is fixed with a protruding sealing rubber ring, after the docking pipe 31 is inserted into the drying port 21, the sealing rubber ring can block the drying port 21, improve the sealing between the docking pipe 31 and the drying module 2, and reduce the leakage of the hot air provided by the drying module 2 for the drying sleeve 3.
[0035] In the embodiment of the present application, three branch pipes 33 are provided for one drying sleeve 3, in other embodiments, the number of branch pipes 33 can be increased or decreased according to actual conditions, when the number of branch pipes 33 is large, the drying sleeves 3 can be placed at a slight deflection angle, so that the drying sleeves 3 are inclined at a certain angle, so that more drying sleeves 3 can be placed in the drying cabinet.
[0036] The cavity dividing pipe 32 is located between the docking pipe 31 and the branch pipe 33, the docking pipe 31 is perpendicular to the cavity dividing pipe 32, and the docking pipe 31 and the cavity dividing pipe 32 are in communication. A connecting port 321 is formed through the side wall near the bottom side of the cavity dividing pipe 32, the branch pipe 33 is vertically inserted into the connecting port 321 and detachably connected with the cavity dividing pipe 32, and the detachable connection mode is screw connection, that is, the external thread at the end of the branch pipe 33 matches the internal thread at the connecting port 321 of the cavity dividing pipe 32, and the branch pipe 33 is screwed to realize screw connection with the cavity dividing pipe 32. The detachable connection of the branch pipe 33 and the cavity dividing pipe 32 facilitates the subsequent disassembly and assembly of the branch pipe 33 by medical staff according to actual use conditions.
[0037] The branch pipe 33 is located below the cavity dividing pipe 32 and is in communication with the docking pipe 31, and in use, the cavity instrument 4 is only inserted into the branch pipe 33.
[0038] Further, the connecting pipe 31 is wrapped with a soft protective sleeve 311 made of soft material such as rubber, which can protect the connecting pipe 31 and reduce the friction between the connecting pipe 31 and the drying module 2.
[0039] Referring to Figure 3 and Figure 4 , the inner wall of the branch pipe 33 is provided with a plurality of abutting strips 34 in the circumferential direction, which are also made of rubber. The abutting strips 34 extend along the length direction of the branch pipe 33, and the length of the abutting strips 34 corresponds to the length of the branch pipe 33.
[0040] After the cavity instrument 4 is inserted into the branch pipe 33, if the outer diameter of the cavity instrument 4 is large, the abutting strips 34 can separate the outer wall of the cavity instrument 4 from the inner wall of the branch pipe 33, so that a gap is left between the cavity instrument 4 and the inner wall of the branch pipe 33 for airflow to pass through, which is more conducive to drying the outer wall of the cavity instrument 4. The number of abutting strips 34 can be increased or decreased according to the diameter of the branch pipe 33, and the abutting strips 34 are symmetrically distributed relative to the axis of the branch pipe 33.
[0041] Further, the inner blowing nozzle 35 is coaxially fixed inside the branch pipe 33 near one end of the cavity dividing pipe 32, and a gap is left between the outer wall of the inner blowing nozzle 35 and the inner wall of the branch pipe 33 for airflow to pass through. The outer diameter of the inner blowing nozzle 35 gradually decreases along the length direction of the branch pipe 33 from top to bottom, so that the whole inner blowing nozzle 35 is in a downwardly tapered shape, which is more conducive to the insertion of the inner blowing nozzle 35 into the cavity instrument 4 with different diameters.
[0042] The inner blowing nozzle 35 can be inserted into the cavity instrument 4 to dry the inner wall of the cavity instrument 4, which can not only improve the drying rate of the cavity instrument 4, but also further improve the drying effect of the cavity instrument 4.
[0043] Further, to improve the drying effect of the inner wall of the cavity instrument 4, a plurality of drying holes 351 are formed in the side wall of the inner blowing nozzle 35 away from one end of the cavity dividing pipe 32, and the number of the drying holes 351 can be increased or decreased according to the actual size of the inner blowing nozzle 35. The plurality of drying holes 351 are spaced apart in the circumferential direction of the inner blowing nozzle 35 and are in communication with the inner space of the inner blowing nozzle 35, and the openings of the drying holes 351 on the outer wall of the inner blowing nozzle 35 are inclined towards the direction away from the cavity dividing pipe 32.
[0044] The dry air flow can be blown out through the dry holes 351 on the side wall of the inner blow nozzle 35, so that the dry air flow is more accurately blown to the inner wall of the cavity instrument 4. Meanwhile, the dry holes 351 are arranged downwardly inclined, so that the dry air flow can be blown downwardly inclined, which is more conducive to blowing off the residual moisture on the inner wall of the cavity instrument 4. The dry holes 351 can also be slightly inclined to the left and right, so that the air flow blown therefrom can spiral downward along the inner wall of the cavity instrument 4, which can prolong the path of the dry air flow in the branch pipe 33, and further improve the drying effect.
[0045] Referring to Figure 5 In order to stably fix the cavity instrument 4 in the branch pipe 33, a limiting piece 5 is arranged on the side wall of the branch pipe 33 near one end of the bottom, and the limiting piece 5 is threadedly connected with the side wall of the branch pipe 33, so that when an external force is applied to rotate the limiting piece 5, one end of the limiting piece 5 can be tightly pressed against or loosened from the cavity instrument 4.
[0046] The end of the limiting piece 5 located in the branch pipe 33 can be fixed with a rubber block, which can be in contact with the outer wall of the cavity instrument 4, so as to reduce the abrasion of the outer wall of the cavity instrument 4. The limiting piece 5 can be provided with a plurality of limiting pieces according to actual conditions, and the limiting pieces 5 are symmetrically distributed with respect to the axis of the branch pipe 33, so that the two symmetric limiting pieces 5 can tightly press the cavity instrument 4 from two directions at the same time, thereby effectively limiting the movement of the cavity instrument 4.
[0047] The implementation principle of the medical drying cabinet according to the embodiment of the present application is that the connecting pipe 31 is inserted into the drying port 21, the dry air flow is introduced into the branch pipe 33 through the cavity dividing pipe 32, the cavity instrument 4 is inserted into the branch pipe 33 for drying, and the same drying sleeve 3 can dry a plurality of cavity instruments 4 at the same time, which greatly improves the drying efficiency of the cavity instrument 4, and the air flow can directly dry the inner wall of the cavity instrument 4 through the inner blow nozzle 35, thereby further improving the drying effect.
[0048] In this document, the front, back, up, down and other orientation words are defined according to the positions of the components in the drawings and the positions of the components relative to each other, which are only for the purpose of expressing the technical solutions clearly and conveniently. It should be understood that they are relative concepts, which can be changed accordingly according to different ways of use and placement, and the use of the orientation words should not limit the scope of protection of the present application.
[0049] In the case of no conflict, the above-mentioned embodiments and features in the embodiments can be combined with each other.
[0050] The above-mentioned only is the preferred embodiment of the present application, and does not limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A medical drying cabinet, characterized in that: The utility model relates to a cabinet body (1), the top of the cabinet body (1) is provided with a drying module (2), the bottom of the drying module (2) is provided with a plurality of drying ports (21), the drying module (2) is transported hot air through the drying port (21); At least one drying sleeve (3) includes a docking pipe (31) and a plurality of independent branch pipes (33) connected with the docking pipe (31), the docking pipe (31) is detachably inserted into one of the drying ports (21), and the branch pipes (33) are used for inserting the cavity instrument (4) to be dried. The drying sleeve (3) further includes a cavity dividing pipe (32) located between the docking pipe (31) and the branch pipes (33), and the cavity dividing pipe (32) is in communication with the docking pipe (31) and each of the branch pipes (33).
2. The medical drying cabinet according to claim 1, characterized in that: The cavity dividing pipe (32) is provided with a connecting port (321) on the side wall, and the branch pipes (33) are correspondingly inserted into the connecting port (321) and detachably connected with the cavity dividing pipe (32).
3. The medical drying cabinet of claim 2, wherein: A plurality of abutting strips (34) are circumferentially arranged on the inner wall of the branch pipe (33), the abutting strips (34) extend along the length direction of the branch pipe (33), the length of the abutting strips (34) corresponds to the length of the branch pipe (33), and the abutting strips (34) are used for separating the cavity instrument (4) from the inner wall of the branch pipe (33).
4. The medical drying cabinet of claim 2, wherein: An inner blowing nozzle (35) is coaxially arranged inside the branch pipe (33) near one end of the cavity dividing pipe (32), a gap is left between the outer wall of the inner blowing nozzle (35) and the inner wall of the branch pipe (33), and the inner blowing nozzle (35) is used for being inserted into the pipe diameter of the cavity instrument (4).
5. The medical drying cabinet of claim 2, wherein: The outer diameter of the inner blowing nozzle (35) gradually decreases in the direction away from the cavity dividing pipe (32) along the length of the branch pipe (33).
6. The medical drying cabinet of claim 5, wherein: A plurality of drying through holes (351) are arranged on the side wall of the inner blowing nozzle (35) away from the cavity dividing pipe (32), the drying through holes (351) are spaced apart and in communication with the inner space of the inner blowing nozzle (35).
7. The medical drying cabinet of claim 5, wherein: The opening of the drying through hole (351) on the outer wall of the inner blowing nozzle (35) is inclined to the direction away from the cavity dividing pipe (32).
8. The medical drying cabinet of claim 7, wherein: A limiting piece (5) is arranged on the side wall of the branch pipe (33) away from the docking pipe (31), the limiting piece (5) is threadedly connected with the side wall of the branch pipe (33), a plurality of limiting pieces (5) are arranged, and the limiting pieces (5) are symmetrically distributed with respect to the axis of the branch pipe (33), and one end of the limiting piece (5) located inside the branch pipe (33) is used for abutting against the outer wall of the instrument.
9. The medical drying cabinet of claim 1, wherein: The docking pipe (31) is covered with a soft protective sleeve (311).
10. The medical drying cabinet of claim 1, wherein: