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Control Gas Nitriding Process: A Review

Author

Listed:
  • Nguyen Duong Nam

    (Vietnam Maritime University, Haiphong city, Vietnam)

  • Nguyen Anh Xuan

    (Vietnam Maritime University, Haiphong city, Vietnam)

  • Nguyen Van Bach

    (Vietnam Maritime University, Haiphong city, Vietnam)

  • Le Thi Nhung

    (Vietnam Maritime University, Haiphong city, Vietnam)

  • Le Thi Chieu

    (Ha Noi University of Science and Technology)

Abstract

The detailed surface is the boundary between the machine part and the working environment or with other machine parts in the structure of the machine. The surface is directly affected by the mechanical, physical and chemical effects of the environment. It is also the first place to receive loads, often subject to friction, abrasion The surface of the machine is where the hardest working conditions are, so it is also vulnerable to abrasion. There are many methods to the durable surface; But the most common method is diffusion. In diffusion method, there are many methods, but the chapter only focuses on the gas nitriding method and control of the gas nitriding process. Nitriding process can only be best achieved by control of the gas nitriding process, in particular by controlling the amount of incoming air at each stage. The specifications of the gas nitriding process will determine the quality of the nitriding layer. One of the very difficult parameters to control this process is the concentration of NH3 and N2 into the air. In order to control this air which will use the air control equiments but to control the permeability components in the equipment need special control processes with modern equipment. In this paper, we present a technique for control of the gas nitriding process by sensor hydro.

Suggested Citation

  • Nguyen Duong Nam & Nguyen Anh Xuan & Nguyen Van Bach & Le Thi Nhung & Le Thi Chieu, 2019. "Control Gas Nitriding Process: A Review," Journal of Mechanical Engineering Research & Developments (JMERD), Zibeline International Publishing, vol. 42(1), pages 17-25, January.
  • Handle: RePEc:zib:zjmerd:v:42:y:2019:i:1:p:17-25
    DOI: 10.26480/jmerd.01.2019.17.25
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    References listed on IDEAS

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    1. repec:zib:zjmerd:3jmerd2018-27-31 is not listed on IDEAS
    2. repec:zib:zjmerd:2jmerd2018-97-102 is not listed on IDEAS
    3. T. Nhung Le & M. Khanh Pham & A. Tuan Hoang & T.N. Mai Bui & D. Nam Nguyen, 2018. "Microstructure Change For Multi-Pass Welding Between Austenitic Stainless Steel And Carbon Steel," Journal of Mechanical Engineering Research & Developments (JMERD), Zibeline International Publishing, vol. 41(2), pages 97-102, July.
    4. T.Nhung Le & M.Khanh Pham & A.Tuan Hoang & D.Nam Nguyen, 2018. "Microstructures And Elements Distribution In T he Transition Zone Of Carbon Steel And Stainless Steel Welds," Journal of Mechanical Engineering Research & Developments (JMERD), Zibeline International Publishing, vol. 41(3), pages 27-31, September.
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