Experimental instrument cleaning and drying integrated device
By designing an integrated cleaning and drying device for experimental instruments, and utilizing high-pressure water spraying and atomizing nozzles combined with a heating structure, the problems of insufficient cleaning capacity and water vapor discharge in existing devices were solved, and efficient cleaning of the inner wall of the container and water vapor recovery were achieved.
Patent Information
- Application Number
- CN202422569079.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-10-23
AI Technical Summary
The cleaning capacity of existing cleaning and drying equipment is insufficient, and water vapor is difficult to be effectively discharged during the drying process, which may cause chemical agents to be discharged externally.
An integrated cleaning and drying device for experimental instruments was designed, which included an installation shell, upper and lower chambers separated by partitions, a water inlet pipe, a water guide pipe, a flushing mechanism, a heating mechanism and a sealing cover. Through high-pressure water spraying, atomizing nozzles, heating and water vapor guiding structures, the inner wall of the container was cleaned effectively and water vapor was recovered.
It achieves efficient cleaning of the inner wall of the experimental container and recovery of water vapor, avoids the discharge and retention of chemical agents, and improves the cleaning effect and the sealing of the device.
Smart Images

Figure CN223338000U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of instrument cleaning, in particular to an integrated cleaning and drying device for experimental instruments. Background Art
[0002] In some chemical experiments, in order to experiment with some chemical substances, containers such as measuring cups are used to hold chemical materials, and then the chemical substances are tested through measuring cups and other containers. After the experiment, in order to facilitate later use of measuring cups and other containers, the measuring cups and other containers will be cleaned.
[0003] When cleaning the above-mentioned experimental containers, manual or machine cleaning is generally adopted. During the machine cleaning process, some laboratories will use a cleaning device that combines cleaning and drying to reduce the number of times the experimental containers are moved. However, most of the cleaning devices that combine cleaning and drying have low cleaning capabilities, which may easily lead to some experimental containers not being cleaned thoroughly and requiring manual cleaning again. In addition, during the drying process, the water vapor generated by drying is difficult to discharge, or is directly discharged to the outside, causing some chemical agents to be discharged to the outside. Utility Model Content
[0004] To this end, the utility model provides an integrated cleaning and drying device for experimental instruments to solve the above-mentioned problems in the prior art.
[0005] In order to achieve the above purpose, the present invention provides the following technical solutions:
[0006] According to a first aspect of the present invention, a laboratory instrument cleaning and drying integrated device comprises:
[0007] An installation shell is installed, and an installation partition is installed on the inner side of the installation shell. The installation shell is separated by the installation partition to form two groups of upper and lower chambers. A partition plate is installed on the lower side of the installation partition. A water inlet pipe is provided on the inner side of the partition plate, and a water guide pipe is installed on the upper end of the water inlet pipe. A plurality of connecting pipes are provided at equal angles on the outer side of the water guide pipe, and a plurality of protruding tubular structures are provided on the outer side of the connecting pipe. A flushing mechanism is correspondingly installed on the outer side of the protruding tubular structure for spraying water for cleaning, wherein the flushing mechanism includes a mounting cover, and a plurality of flushing holes are evenly opened on the inner side of the mounting cover for discharging water;
[0008] A heating mechanism is installed on the upper surface of the installation partition to heat the temperature of the inner chamber of the installation shell;
[0009] A sealing cover is installed at the upper end of the installation shell, and a mesh plate is installed on the inner side of the sealing cover. A plurality of hole structures are opened on the inner side of the mesh plate for discharging water vapor. A connecting pipe is installed on the lower side of the mesh plate, and the inner side of the sealing cover is connected with the lower side chamber of the installation shell through the connecting pipe. A drain port is also installed on the outer side of the lower end of the installation shell for discharging water.
[0010] Furthermore, a plurality of atomizing nozzles are installed on the outer side of the installation cover, and the atomizing nozzles and the flushing holes are arranged in a staggered manner.
[0011] Furthermore, the mounting cover is elastically connected to the connecting tube via a reset spring, and the mounting cover and the connecting tube are slidably connected.
[0012] Furthermore, a motor installed in the partition plate is provided on one side of the water conduit, and the motor is connected to the water conduit through a belt to form a transmission connection.
[0013] Furthermore, a placement plate is installed on the outside of the water pipe for placing experimental tools.
[0014] Furthermore, a sealing ring is installed on the lower side of the cover for fitting against the upper side of the mounting shell.
[0015] Furthermore, the upper surface of the mesh plate is inclined to guide water.
[0016] The utility model has the following advantages:
[0017] The utility model can flush the inner wall of the experimental container one by one, ensuring the cleaning effect of the inner wall of the experimental container, and can recover the water vapor generated during the drying process to prevent it from being discharged to the outside and to prevent the steam from being retained inside the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a front cross-sectional view of an integrated cleaning and drying device for an experimental instrument provided in some embodiments of the present invention.
[0019] Figure 2 This is a front cross-sectional view of the connection between a flushing mechanism and a connecting pipe of an integrated cleaning and drying device for an experimental instrument provided in some embodiments of the present invention.
[0020] In the figure: 1. Install the shell, 2. Water guide pipe, 3. Water inlet pipe, 4. Motor, 5. Connecting pipe, 6. Flushing mechanism, 601. Install the cover, 602. Flushing hole, 603. Atomizing nozzle, 604. Return spring, 7. Heating mechanism, 8. Partition plate, 9. Sealing cover, 10. Mesh plate, 11. Connecting pipe, 12. Sealing ring, 13. Drainage outlet, 14. Install the partition, 15. Place the plate. DETAILED DESCRIPTION
[0021] The following describes the implementation of the present invention through specific embodiments. Those skilled in the art can readily understand the other advantages and benefits of the present invention from the contents disclosed in this specification. Obviously, the embodiments described are only a portion of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are also within the scope of protection of the present invention.
[0022] like Figures 1 to 2 As shown, an integrated cleaning and drying device for an experimental instrument in an embodiment of the first aspect of the present invention comprises a mounting shell 1, a mounting partition 14 is mounted on the inner side of the mounting shell 1, and the mounting partition 14 is used to separate the mounting shell 1 to form an upper and lower chamber. A partition plate 8 is mounted on the lower side of the mounting partition 14, and a water inlet pipe 3 is arranged on the inner side of the partition plate 8, and a water guide pipe 2 is mounted on the upper end of the water inlet pipe 3. A plurality of connecting pipes 5 are arranged at equal angles on the outer side of the water guide pipe 2, and a plurality of protruding tubular structures are arranged on the outer side of the connecting pipe 5. A flushing mechanism 6 is correspondingly mounted on the outer side of the protruding tubular structure for spraying water for cleaning, wherein the flushing mechanism 6 comprises a mounting cover 601, and a plurality of flushing holes 602 are evenly opened on the inner side of the mounting cover 601 for discharging water.
[0023] Specifically, an experimental instrument, such as a measuring cylinder, beaker, or other container, is inverted outside the flushing mechanism 6 so that the interior of the container corresponds to the outside of the mounting cover 601. Water is then fed into the water inlet pipe 3 and maintained in the water conduit 2. The water inlet pipe 3 is connected to a high-pressure water pump. Under the action of high pressure, water is discharged from the flushing hole 602 to directly flush the interior of the container.
[0024] Several atomizing nozzles 603 are also installed on the outside of the installation cover 601, and the atomizing nozzles 603 and the flushing holes 602 are staggered, so that the water guided by the atomizing nozzles 603 is atomized and discharged from the flushing holes 602 in a straight manner, thereby attaching and flushing the residual particles in the container, thereby improving the cleaning effect;
[0025] The mounting cover 601 is elastically connected to the connecting tube 5 through the return spring 604, and the mounting cover 601 and the connecting tube 5 are slidably connected, so that during the flushing process, the mounting cover 601 can be flushed upward by the pressure brought by the water. When the water no longer rushes out, the mounting cover 601 moves downward due to the weight of the container, which can generate a certain amount of vibration, thereby facilitating the downward flow of water and reducing adhesion.
[0026] A heating mechanism 7 is installed on the upper surface of the installation partition 14 for heating the temperature of the inner chamber of the installation shell 1 so that the container placed in the installation shell 1 can be dried.
[0027] A cover 9 is installed at the upper end of the installation shell 1, and a mesh plate 10 is installed on the inner side of the cover 9. A plurality of hole structures are opened on the inner side of the mesh plate 10 for the discharge of water vapor. A connecting pipe 11 is installed on the lower side of the mesh plate 10, and the inner side of the cover 9 is connected with the lower chamber of the installation shell 1 through the connecting pipe 11, so that the water formed after the whole entering the cover 9 is cooled can be discharged into the lower chamber of the installation shell 1. A drain port 13 is also installed on the outer side of the lower end of the installation shell 1 for water discharge. A sealing ring 12 is also installed on the lower side of the cover 9 for fitting with the upper side of the installation shell 1 to increase the sealing performance.
[0028] The upper surface of the mesh plate 10 is inclined to guide water to flow toward the connecting pipe 11 .
[0029] A motor 4 installed in the partition plate 8 is also provided on one side of the water pipe 2, and the motor 4 is connected to the water pipe 2 through a belt, so that the water pipe 2 can rotate with the motor 4, thereby driving the container to rotate, so that it is heated evenly and the drying effect is improved.
[0030] A placement plate 15 is also installed on the outside of the water pipe 2 for placing experimental tools, so that the experimental tools can be placed on the surface of the placement plate 15 for drying.
Claims
1. An integrated device for cleaning and drying experimental instruments, characterized in that: include: A mounting shell (1) is installed on the inner side of the mounting shell (1), and the mounting shell (1) is separated by the mounting shell (14) to form two groups of upper and lower chambers. A partition plate (8) is installed on the lower side of the mounting partition plate (14), and a water inlet pipe (3) is provided on the inner side of the partition plate (8), and a water guide pipe (2) is installed on the upper end of the water inlet pipe (3). A plurality of connecting pipes (5) are provided at equal angles on the outer side of the water guide pipe (2), and a plurality of protruding tubular structures are provided on the outer side of the connecting pipe (5). A flushing mechanism (6) is correspondingly installed on the outer side of the protruding tubular structure for spraying water for cleaning, wherein the flushing mechanism (6) includes a mounting cover (601), and a plurality of flushing holes (602) are evenly opened on the inner side of the mounting cover (601) for discharging water. A heating mechanism (7) is installed on the upper surface of the installation partition (14) for heating the temperature of the inner chamber of the installation housing (1); The upper end of the installation shell (1) is provided with a cover (9), and the inner side of the cover (9) is provided with a mesh plate (10). The inner side of the mesh plate (10) is provided with a plurality of hole-shaped structures for the discharge of water vapor. The lower side of the mesh plate (10) is provided with a connecting pipe (11), and the inner side of the cover (9) is connected to the lower side chamber of the installation shell (1) through the connecting pipe (11). The outer side of the lower end of the installation shell (1) is also provided with a drain port (13) for the discharge of water.
2. The integrated cleaning and drying device for experimental instruments according to claim 1, characterized in that: A plurality of atomizing nozzles (603) are also installed on the outer side of the installation cover (601), and the atomizing nozzles (603) and the flushing holes (602) are arranged in a staggered manner.
3. The integrated cleaning and drying device for experimental instruments according to claim 1, characterized in that: The installation cover (601) is elastically connected to the connecting tube (5) via a return spring (604), and the installation cover (601) and the connecting tube (5) are slidably connected.
4. The integrated cleaning and drying device for experimental instruments according to claim 1, characterized in that: A motor (4) installed in a partition plate (8) is also provided on one side of the water conduit (2), and the motor (4) is in transmission connection with the water conduit (2) via a belt.
5. The integrated cleaning and drying device for experimental instruments according to claim 1, characterized in that: A placement plate (15) is also installed on the outside of the water pipe (2) for placing experimental tools.
6. The integrated cleaning and drying device for experimental instruments according to claim 1, characterized in that: A sealing ring (12) is also installed on the lower side of the cover (9) for fitting against the upper side of the housing (1).
7. The integrated cleaning and drying device for experimental instruments according to claim 1, characterized in that: The upper surface of the mesh plate (10) is arranged to be inclined for guiding water.