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FAQ

  • Q What are the common errors in glove box operation and how can they be avoided?

    A Common errors in glove box operation include failure to check glove integrity, failure to follow strict procedures for inserting or removing materials, improper operating speed, and failure to continuously monitor environmental parameters inside the box. To avoid these errors, gloves and other components should be carefully inspected before use, strict experimental procedures should be followed, operating speed should be controlled, and environmental parameters inside the box, such as gas purity, temperature, and humidity, should be regularly monitored.
  • Q How to ensure the safety of experimental materials when conducting experiments in a glove box?

    A When conducting experiments in a glove box, special attention should be paid to the purity of the inert gas, pressure regulation, integrity of the gloves, and cleanliness and dryness inside the box to ensure the safety of the experimental materials. At the same time, when placing or removing experimental materials, the contact time with air should be minimized as much as possible. Special transfer devices such as sealed transfer chambers should be used, and gentle movements should be maintained during operation inside the chamber to avoid violent movements that may cause glove breakage or gas disorder inside the chamber.
  • Q How should the maintenance cycle of the glove box be arranged, and what are the specific inspection items?

    A The maintenance cycle of the glove box should be arranged according to the frequency of use and experimental requirements, usually including daily inspections and regular maintenance stages. The daily inspection items include the integrity and installation firmness of gloves, internal cleaning of the box, and sealing of seals and gas interfaces. Regular maintenance involves replacing the vacuum pump oil, inspecting the transition chamber sealing gasket, replacing the filter, comprehensively checking the purification capacity of the gas purification system, the accuracy of the water oxygen pressure sensor, and the safety performance of the system. By implementing a scientifically reasonable maintenance cycle and detailed inspection items, the stable operation and extended service life of the glove box can be ensured.
  • Q How to combine the automated production line of lithium batteries with manual operation?

    A In the preparation of lithium batteries, automated production lines and manual operations can be efficiently combined through collaborative work. The automated production line is responsible for highly standardized and automated tasks in the lithium battery manufacturing process, such as assembling battery casings, stacking and connecting battery cells, in order to reduce manual operation time and improve production efficiency. And manual operations focus on monitoring the operating status of automated production lines, handling abnormal situations, and performing tasks that require flexibility and judgment, such as quality inspection and fine adjustments. This combination method can fully leverage the advantages of automation and manual labor, improving the overall efficiency and quality of lithium battery preparation.
  • Q How to choose a glove box that is suitable for specific experimental needs?

    A When selecting a glove box model that is suitable for specific experimental needs, it is necessary to comprehensively consider factors such as the type of experiment, sample characteristics, ease of operation, and safety regulations. The size and shape of the sample should also consider whether it will affect the operating space, as well as the number of experimental personnel required for the operating space. For explosion-proof glove boxes and radiation resistant glove boxes, specific glove box bodies are required, and the size of the box body is not fixed. We can find suppliers with our own glove box production factories to customize the glove box design according to actual needs, which can better meet the requirements of specific experiments.
  • Q What should be done if the water analyzer in the glove box fails to measure accurately?

    A The inaccurate measurement of the water analyzer in the glove box may be due to the accumulation of pollutants in the sensor. You can wipe the sensor with deionized water or purified water, then sprinkle a layer of water probe cleaning solution (such as 85% phosphoric acid) on the sensor, let it sit for a while for reaction, and then install it on the glove box for testing to see if it returns to normal.
  • Q What faults will the glove box oxygen analyzer encounter and their solutions?

    A The oxygen analyzer in the glove box may encounter faults such as inaccurate measurement, large data fluctuations, and slow instrument response, which may be caused by battery replacement, detector maintenance, sensor aging or contamination. The solution includes repairing or replacing the stabilized power supply to improve performance, testing and maintaining instruments to maintain stability, dry blowing or replacing sensors to restore performance, etc., to ensure the accuracy and reliability of the glove box oxygen analyzer.
  • Q What are the different types of lighting systems for glove boxes?

    A The lighting system of the glove box mainly includes types such as fluorescent lamps, LED lamps, etc. Choosing a suitable lighting system requires consideration of factors such as the operating environment of the glove box, observation requirements, and energy consumption. Fluorescent lamps usually have high brightness and are suitable for occasions that require strong lighting effects; LED lights have the advantages of low energy consumption and long lifespan, making them more suitable for glove boxes that operate for a long time.
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