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back-fire arrester,flashback arrester是什么意思


中文翻译回火制止器

网络释义

1)back-fire arrester,flashback arrester,回火制止器2)tempering,回火3)temper,回火4)flashback,回火5)annealing,回火6)Backfire,回火

用法例句

    Influence of tempering on microstructure of FeCoV alloy deformed by equal channel angular pressing;

    回火对等通道角变形FeCoV合金组织的影响

    Development of Tempering Process of Die Steel in Car Bottom Heat Treatment Furnace;

    模具钢车底式炉回火的工艺开发

    Effect of cold deformation and tempering on ductility of low carbon martensite steel;

    冷变形低碳马氏体钢的回火塑性

    Study on Tempered Heat Treatment Microstructure and Properties of ZG30CrMn2Si2 Mo Cast Steel;

    新型贝氏体铸钢回火热处理组织和性能的研究

    Quench-temper Process Research of H13 and DFD Steel Wire;

    H13和DFD钢丝的淬火—回火工艺研究

    The effect of tempering temperatures on fatigue damage characteristics of 40Cr steel;

    回火温度对40Cr钢疲劳损伤特性的影响

    Causes for Flashback of PQZ-T Combustor and Preventive Measures;

    PQZ-T燃烧器的回火原因与预防措施

    Numerical Simulation on the Flashback Character for Lean Premixed Combustion;

    贫燃料预混燃烧回火特性数值模拟

    Oxygen/fuel flashback arrester is a necessary safety apparatus during oxygen-fuel cutting, gas welding, iron and steel casting, and is widely applied in the transportation pipe, gas cutting and gas welding.

    氧气、燃气回火防止器是氧-燃气气割、气焊、钢铁连铸等热加工过程中必备的劳动安全防护装置,在氧气和燃气输送管道、气割、气焊中大量使用。

    It has been investigated that the process of annealing influences the properties of carbides,and that the precipitated phase separated from supersaturated solid solution.

    研究了回火工艺对热处理产品的影响,系统地分析了回火时过饱和固溶体的析出物,从而制定合适的回火工艺。

    Annealing at a moderate temperature can make up for these above disadvantages.

    合金在适当温度下回火可弥补以上不足。

    It was found that after high vacuum annealing, the density, maximum energy product and remanence of magnets become lower.

    为研究回火过程中真空度对烧结NdFeB磁体显微结构及磁性能的影响,对烧结态磁体采用不同的真空度进行回火。

    Calculation of Anti-Backfire Design for Burner of Side Wall in Hydrogen Production Transformation Furnace;

    制氢转化炉附墙燃烧器防回火设计计算

    It was shown that in the smooth tubes without any obstacle, with the increasing intake speed, the area of backfire widened and the air-fuel ratio needed decreased; there are no significant changes in location of backfire region and of the air-fuel ratio with.

    实验表明,在小当量比情况下,在没有障碍物的光管中,随着进气速度的增加,点火所需要的当量比逐渐减小,回火区域逐渐增大。

    To solve the backfire problems which we often meet in the process of boiler gas burner design, we found out some backfire resolving methods based on the structural reasons.

    针对锅炉燃气燃烧器中易出现的回火问题,根据燃烧学的基本原理,采用有限元软件分析方法,分析了回火原因,提出了解决方案,并将其应用于实际的燃烧器产品的结构设计中。