Glass cleaning instrument for multiple nuclear magnetic tubes
By using multiple NMR tubes connected in parallel and series to clean glass instruments, the problem of NMR tube cracks caused by ultrasonic cleaning was solved, achieving efficient and rapid cleaning results and ensuring the accuracy of NMR test results.
Patent Information
- Application Number
- CN202520107833.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-17
AI Technical Summary
In the existing technology, using ultrasonic cleaners to clean NMR tubes can easily cause cracks, affecting the NMR test results, and the cleaning quality is affected by factors such as equipment performance and the type of cleaning solution.
Multiple NMR tubes are used to clean glassware in both parallel and series configurations. The cleaning solution enters the cleaning solution flow channel through the cleaning solution inlet tube and swirls or flows within the cleaning solution tube. The inner wall is cleaned first and then the bottom, or the bottom is cleaned first and then the inner wall. The cleaning solution is finally collected in a receiving bottle.
It improves cleaning efficiency and speed, reduces the risk of damage to NMR tubes, ensures the accuracy of NMR test results, and adapts to the cleaning needs of different numbers of NMR tubes.
Smart Images

Figure CN223775623U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass instrument equipment field especially relates to a kind of multi-branch nuclear magnetic tube cleaning glass instrument. BACKGROUND
[0002] The existing glass tube needs to be cleaned, some traditional cleaning methods, such as directly inserting a cotton swab with cleaning liquid into the nuclear magnetic tube for cleaning, although the cleaning effect is good, but it is easy to scratch the inner wall of the nuclear magnetic tube during operation, affecting its service life and performance. When using an ultrasonic cleaner for cleaning, although the cleaning speed is fast, but the strong vibration of the ultrasonic wave may cause cracks in the nuclear magnetic tube that are not easy to find, thereby affecting the test results of the nuclear magnetic instrument. In addition, the cleaning quality of the ultrasonic cleaner may vary due to factors such as equipment performance, type of cleaning liquid and cleaning time. Based on this, we propose a multi-branch nuclear magnetic tube cleaning glass instrument. SUMMARY
[0003] To solve the technical problem that when using an ultrasonic cleaner for cleaning, although the cleaning speed is fast, but the strong vibration of the ultrasonic wave may cause cracks in the nuclear magnetic tube that are not easy to find, thereby affecting the test results of the nuclear magnetic instrument, the utility model provides a multi-branch nuclear magnetic tube cleaning glass instrument.
[0004] The utility model adopts the following technical scheme to realize: a kind of multi-branch nuclear magnetic tube cleaning glass instrument, adopt parallel connection mode, including cleaning liquid inlet pipe, the bottom of cleaning liquid inlet pipe is communicated with cleaning liquid flow passage, the upper side of cleaning liquid flow passage is connected with wash liquid pipe, the bottom of cleaning liquid flow passage is connected with one end of flat flow pipeline, the other end of flat flow pipeline is connected with cleaning liquid outflow passage, the bottom of cleaning liquid outflow passage is connected with cleaning liquid outlet, the outside of cleaning liquid outflow passage is connected with suction port.
[0005] The surface of the wash liquid pipe is sleeved with a nuclear magnetic tube, and the top end of the nuclear magnetic tube is sleeved with a nuclear magnetic tube cap. The surface of the wash liquid pipe is sleeved with a nuclear magnetic tube, and the top end of the nuclear magnetic tube is sleeved with a nuclear magnetic tube cap.
[0006] As a further improvement of the above-mentioned scheme, the parallel connection mode is used, which first washes the inner wall and then washes the bottom. The demand for washing liquid is higher than that of series connection, and the efficiency and speed are high. The cleaning liquid enters the inside of the cleaning liquid flow passage from the cleaning liquid inlet pipe, then enters the wash liquid pipe, and rotates in the inside of the wash liquid pipe to flush the nuclear magnetic tube. The inner wall is washed first, and then the bottom is washed. After flushing, the cleaning liquid flows from the flat flow pipeline to the receiving bottle for collection.
[0007] As a further improvement to the above scheme, the series method washes the bottom first and then the inner wall, which requires less washing solution and has high washing solution utilization efficiency. The cleaning solution enters the interior of the cleaning solution flow channel from the cleaning solution inlet pipe and then enters the washing solution pipe to rinse the NMR tube. After rinsing, the cleaning solution flows to the receiving bottle for collection. Series cleaning can connect more sets of NMR tubes.
[0008] As a further improvement to the above scheme, the cleaning liquid inlet pipe and the washing liquid pipe are connected in both series and parallel.
[0009] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0010] 1. This utility model adopts a parallel connection method. The cleaning liquid enters the interior of the cleaning liquid flow channel from the cleaning liquid inlet pipe, and then enters the washing liquid pipe. It swirls inside the washing liquid pipe to rinse the NMR tube. The inner wall is washed first, and then the bottom is washed. After rinsing, the cleaning liquid flows from the horizontal flow pipe to the receiving bottle for collection. The inner wall is washed first, and then the bottom is washed. The washing liquid requirement is more than that of the series connection, which is more efficient and faster.
[0011] 2. In this utility model, the cleaning solution enters the cleaning solution flow channel through the cleaning solution inlet pipe, then enters the washing solution pipe to rinse the NMR tubes. After rinsing, the cleaning solution flows into the receiving bottle for collection. Series cleaning allows for the connection of more NMR tubes. The bottom is washed first, followed by the inner wall, resulting in lower cleaning solution requirements and higher cleaning solution utilization efficiency. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the overall parallel structure of this utility model;
[0013] Figure 2 This is a schematic diagram of the overall parallel connection method of this utility model;
[0014] Figure 3 This is a schematic diagram of the overall series structure of this utility model;
[0015] Figure 4 This is a schematic diagram of the overall series connection method of this utility model;
[0016] Figure 5 This is a schematic diagram of the nuclear magnetic resonance tube connection structure of this utility model.
[0017] Explanation of key symbols:
[0018] 1. Cleaning liquid inlet pipe; 2. Cleaning liquid flow channel; 3. Cleaning liquid pipe; 4. Horizontal flow pipe; 5. Cleaning liquid outflow channel; 6. Cleaning liquid outlet; 7. Suction port; 8. Receiving bottle; 9. NMR tube; 10. NMR tube cap. Detailed Implementation
[0019] Hereinafter, the utility model is further described in conjunction with the drawings and specific embodiments, it is explained that, under the premise of not conflicting, the following described embodiments between or between various technical features can be combined to form new embodiments. Embodiment 1:
[0020] Please combine Figures 1-2 And Figure 5 The embodiment proposes a plurality of nuclear magnetic tube cleaning glass instruments, which adopt a parallel mode, comprising a cleaning liquid inlet pipe 1, the bottom end of the cleaning liquid inlet pipe 1 is communicated with a cleaning liquid flow channel 2, the upper side of the cleaning liquid flow channel 2 is connected with a washing liquid pipe 3, one end of the bottom end of the cleaning liquid flow channel 2 is connected with a horizontal flow pipeline 4, the other end of the horizontal flow pipeline 4 is connected with a cleaning liquid outflow channel 5, the bottom end of the cleaning liquid outflow channel 5 is connected with a cleaning liquid outlet 6, and the outer side of the cleaning liquid outflow channel 5 is connected with a suction port 7.
[0021] The surface of the washing liquid pipe 3 is sleeved with a nuclear magnetic tube 9, and the top end of the nuclear magnetic tube 9 is sleeved with a nuclear magnetic tube cap 10.
[0022] More specifically, the parallel mode is to wash the inner wall first and then wash the bottom, and the washing liquid demand is more than that of the series connection, and the efficiency is high and the speed is fast; the cleaning liquid enters the inside of the cleaning liquid flow channel 2 from the cleaning liquid inlet pipe 1, then enters the washing liquid pipe 3, and rotates in the inside of the washing liquid pipe 3 to flush the nuclear magnetic tube 9, first washes the inner wall, then washes the bottom, and after flushing, the cleaning liquid flows to the receiving bottle 8 for collection from the horizontal flow pipeline 4; Embodiment 2:
[0023] Please combine Figures 3-4 The difference between the embodiment 1 and the embodiment 2 is that the embodiment 2 adopts a series connection mode, the series connection mode washes the bottom first and then washes the inner wall, the washing liquid demand is less, the washing liquid use efficiency is high, the cleaning liquid enters the inside of the cleaning liquid flow channel 2 from the cleaning liquid inlet pipe 1, then enters the washing liquid pipe 3 to flush the nuclear magnetic tube 9, and after flushing, the cleaning liquid flows to the receiving bottle 8 for collection; the series connection cleaning can connect more groups of nuclear magnetic tubes 9.
[0024] It should be noted that the cleaning liquid inlet pipe 1 and the washing liquid pipe 3 adopt two modes of series connection and parallel connection.
[0025] The specific implementation steps of the utility model are as follows:
[0026] The utility model discloses adopt parallel and series two ways, adopt parallel way, is first wash inner wall, after washing bottom, and the washing liquid demand is more than series, and the efficiency is high, and the speed is fast, and the cleaning fluid enters the inside of cleaning fluid flow channel 2 from cleaning fluid body liquid inlet pipe 1, and then enters washing liquid pipe 3, and whirls in the inside of washing liquid pipe 3, and flushes the nuclear magnetic tube 9, first washes inner wall, after washing bottom, and after flushing, the cleaning fluid flows to the receiving bottle 8 in the horizontal flow pipeline 4 and is collected, and the cleaning fluid enters the inside of cleaning fluid flow channel 2 from cleaning fluid body liquid inlet pipe 1 in series, and then enters washing liquid pipe 3, and flushes the nuclear magnetic tube 9, and after flushing, the cleaning fluid flows to the receiving bottle 8 and is collected, and series cleaning can connect more groups of nuclear magnetic tube 9.
[0027] The utility model discloses adopt parallel and series two ways, adopt parallel way, is first wash inner wall, after washing bottom, and the washing liquid demand is more than series, and the efficiency is high, and the speed is fast, and the cleaning fluid enters the inside of cleaning fluid flow channel 2 from cleaning fluid body liquid inlet pipe 1, and then enters washing liquid pipe 3, and whirls in the inside of washing liquid pipe 3, and flushes the nuclear magnetic tube 9, first washes inner wall, after washing bottom, and after flushing, the cleaning fluid flows to the receiving bottle 8 in the horizontal flow pipeline 4 and is collected, and the cleaning fluid enters the inside of cleaning fluid flow channel 2 from cleaning fluid body liquid inlet pipe 1 in series, and then enters washing liquid pipe 3, and flushes the nuclear magnetic tube 9, and after flushing, the cleaning fluid flows to the receiving bottle 8 and is collected, and series cleaning can connect more groups of nuclear magnetic tube 9.
[0028] The above embodiment is only the preferred embodiment of the utility model, and cannot be used to limit the range of the utility model protection, and any non-substantial change and replacement of the technical personnel in the art on the basis of the utility model all belong to the range of the utility model claimed protection.
Claims
1. A multi-nuclei magnetic tube cleaning glass instrument, characterized in that, Including the cleaning liquid inlet pipe (1), the bottom end of the cleaning liquid inlet pipe (1) is communicated with the cleaning liquid flow channel (2), the upper side of the cleaning liquid flow channel (2) is connected with the washing liquid pipe (3), one end of the bottom end of the cleaning liquid flow channel (2) is connected with the horizontal flow pipe (4), the other end of the horizontal flow pipe (4) is connected with the cleaning liquid outlet channel (5), the bottom end of the cleaning liquid outlet channel (5) is connected with the cleaning liquid outlet (6), the outer side of the cleaning liquid outlet channel (5) is connected with the suction port (7).
2. A plurality of nuclear magnetic resonance tubes cleaning glassware as claimed in claim 1, wherein, The surface of the washing liquid pipe (3) is sleeved with the nuclear magnetic tube (9), the top end of the nuclear magnetic tube (9) is sleeved with the nuclear magnetic tube cap (10).
3. A plurality of nuclear magnetic resonance tubes cleaning glassware as defined in claim 1, wherein, The cleaning liquid outlet (6) is inserted into the inside of the receiving bottle (8).
4. A plurality of nuclear magnetic resonance tubes cleaning glassware as defined in claim 1, wherein, The cleaning liquid inlet pipe (1) and the washing liquid pipe (3) adopt two ways of series connection and parallel connection.