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FAQ

  • Q How to customize the size specifications of the glove box?

    A The size specifications of glove boxes are usually customized according to the specific needs of customers. Customers can provide key information such as expected operating space size, sample size, number of workers, and equipment that needs to be integrated. Based on this information, glove box manufacturers will design customized glove boxes that meet customer needs. In the customization process, factors such as the sealing performance, gas purification efficiency, ease of operation, and safety of the glove box also need to be considered. By closely communicating with customers, manufacturers can ensure that the glove boxes they produce not only meet size requirements, but also achieve good performance in terms of functionality.
  • Q What is the function of the vacuum pump in the glove box system?

    A The vacuum pump of the glove box plays a crucial role in the system. It is mainly responsible for extracting the gas inside the box to create a vacuum environment, thereby reducing the oxygen and moisture content inside the box. By continuously running the vacuum pump, the consistency of the high-purity inert gas atmosphere inside the glove box can be maintained, effectively preventing sample oxidation, contamination, or deterioration. In addition, vacuum pumps are often used in conjunction with gas purification systems to further remove impurities that may remain in the tank, ensuring the accuracy and reliability of experiments or production processes.
  • Q How does the IoT glove box improve operational safety?

    A The IoT system of glove boxes improves operational safety mainly through the integration of sensors and monitoring devices. The system can monitor the pressure, temperature, and gas composition inside the glove box in real time. Once an abnormality is detected, an alarm will be immediately issued to remind the operator to take corresponding measures. In addition, the IoT system can remotely control the operation of the glove box, such as adjusting gas flow and pressure, as well as initiating emergency shutdown procedures, thereby reducing operational risks. Through data recording and analysis, the system can also help track operational history, provide a basis for accident investigation and equipment maintenance, and further enhance the safety and reliability of operations.
  • Q What is the operation process of the glove box?

    A
    The operation process of a glove box usually includes the following steps:
    -Firstly, prepare before starting up to ensure that the doors inside the glove box and transition compartment are closed, and check if the nitrogen cylinder pressure is sufficient.
    -Next, ventilate, open the main valve of the high-purity nitrogen cylinder, adjust the pressure, and start the power supply. The system performs a self-test.
    -Then, turn on the circulation system, ensuring that no cleaning or regeneration operations have been performed (the function keys on the main interface include circulation, regeneration, lighting, etc., which can be operated as needed). During the operation, it is necessary to closely monitor the pressure, temperature, and gas composition of the glove box to ensure that they remain within the set range.
    -Finally, after completing the operation, close the corresponding valve, cut off the power, and clean and maintain the equipment.
  • Q What are the safety measures for the nuclear power glove box series?

    A The nuclear power series glove box has implemented a series of strict safety measures. Firstly, in terms of material selection, special materials with high corrosion resistance and radiation resistance are used to ensure that the glove box can operate stably for a long time in a nuclear power environment. Secondly, in terms of sealing design, advanced sealing technology is adopted to ensure that radioactive substances inside the glove box will not leak into the external environment. At the same time, it is equipped with a comprehensive monitoring system to monitor key parameters such as temperature, pressure, and radioactive concentration inside the glove box in real time. Once abnormal situations occur, an alarm can be issued in a timely manner. In addition, strict operating procedures and personnel training systems have been established to ensure that operators can correctly use the glove box and avoid safety accidents caused by improper operation.
  • Q What is the main purpose of the glove box evaporation film coating all-in-one machine?

    A The glove box evaporation film coating all-in-one machine is mainly used in the research and production fields related to material surface treatment. Widely used in industries such as semiconductors and solar cells. For semiconductor manufacturing, it can be used for processes such as depositing metal thin films, precisely controlling the thickness and quality of the films. In the production of solar cells, it can be used for evaporating electrode materials to improve the photoelectric conversion efficiency of the cell. The high vacuum environment it provides can effectively reduce impurity interference and ensure the quality of vapor deposition. At the same time, samples can be processed in a high-purity inert gas atmosphere to avoid the influence of external air and other factors, ensuring stable sample performance and providing important technical support for the research and production of related materials.
  • Q What are the advantages of the flange window of the glove box compared to traditional windows?

    A The flange window of the glove box has significant advantages compared to traditional windows. Structurally, the flange window is cut into a rectangular ring shape using a thick plate, which has high strength and can withstand impact and compression deformation. It can also be sealed with a groove, while the traditional window structure is relatively fragile. In terms of processing accuracy, the flange window and sealing groove are formed by a large gantry machining center with one cut, and the flatness of the sealing support surface and sealing groove bottom surface is less than 0.1 mm/m. Traditional windows are difficult to achieve this accuracy. In terms of connection method, the flange window is continuously welded to the box and undergoes non-destructive testing to ensure no leakage. Traditional windows have poor sealing performance. In terms of sealing method, the flange window adopts a seamless integral annular solid core "O" - shaped sealing ring embedded in the annular groove, with a leakage rate of less than 0.0006vol%/h. The sealing effect and reliability of traditional windows are far inferior to those of flange windows.
  • Q What is the functional difference between a single purification column and a double purification column in a glove box?

    A The main difference in function between the single purification column and the double purification column of the glove box lies in its purification ability and processing efficiency. The single purification column system is suitable for general low pollution environments and can effectively remove trace impurities such as water and oxygen in the box, meeting basic purification needs. However, when higher purification levels are required or when dealing with more complex gas components, the dual purification column system exhibits greater advantages. It provides stronger purification capability and higher purification efficiency through the synergistic effect of two purification columns, which can effectively and quickly reduce the impurity concentration inside the glove box, thereby ensuring the stability and safety of the internal environment of the glove box. In addition, dual purification column systems typically have more flexible configuration and adjustment capabilities to adapt to different operational requirements and process conditions.
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