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depth of nitriding layer
相关语句
  渗层深度
     This paper deals with the effect of pre-oxidation on the gas nitriding layer and the nitriding kinetics. It is found the relationship of the depth of nitriding layer at 540℃ . 580℃ .
     研究了预氧化对气体渗氮渗层深度和动力学过程的影响,试验找出了在540、58Q及620℃不同温度下渗氮层深度和氧化时间的变化关系.研究发现,短时预氧化对气体渗氮具有强的催渗作用;
短句来源
  “depth of nitriding layer”译为未确定词的双语例句
     The invastigations have shown that depth of nitriding layer increases and then decreases with increase of deformation;
     结果表明,渗氮层深度随形变量增加先增后减;
短句来源
     Reducing discharge interval and increasing electric field intensity could increase the hardness and depth of nitriding layer markedly.
     在本工艺条件下 ,适当减小放电间隙 ,增大电场强度 ,可以明显提高渗层的硬度和深度
短句来源
     At the same permeating temperature condition, the depth of nitriding layer could increase by 30% compared with the ionic cardon-sulfonitring, and by 10% with rare-earth ionic carbon-sulfonitriding without the permeated layer, making the nitriding-carbon compound precipiate in fine and scattered form, and enhancing the hardness of the permeated layer.
     在相同的共渗温度条件下,可使氮化层深度比离子硫氮碳共渗增加30%以上,比未加辅助铁板的稀土离子硫氮碳增加10%。 且稀土元素可渗入钢表层,细化渗层组织,促进氮碳化合物弥散细小析出,提高渗层硬度。
短句来源
  相似匹配句对
     nitrided layer depth is in direct proportion to the root of nitriding time;
     渗层深度与渗氮时间的平方根成正比;
短句来源
     nitrided layer depth is directly proportional to the square root of nitriding time;
     渗层深度与渗氮时间的平方根成正比;
短句来源
     The invastigations have shown that depth of nitriding layer increases and then decreases with increase of deformation;
     结果表明,渗氮层深度随形变量增加先增后减;
短句来源
     The Influence of Nitriding on the Properties of Chromovanadinizing Layer
     渗氮对Cr—V共渗渗层结构及性能的影响
短句来源
     A Water Layer Depth Telemeter
     水层深度遥测仪
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This paper deals with effect of deformation of C3 and W6Mo5Cr4V2 steels at room temperature on the speed and case hardness of alloying nitriding and recovery and recrystallization of deformed specimen during nitriding. The invastigations have shown that depth of nitriding layer increases and then decreases with increase of deformation; hardness of nitriding layer increases with increase of deformation; nitriding hinders recovery and recrystallization of deformation structure in nitriding...

This paper deals with effect of deformation of C3 and W6Mo5Cr4V2 steels at room temperature on the speed and case hardness of alloying nitriding and recovery and recrystallization of deformed specimen during nitriding. The invastigations have shown that depth of nitriding layer increases and then decreases with increase of deformation; hardness of nitriding layer increases with increase of deformation; nitriding hinders recovery and recrystallization of deformation structure in nitriding layer.

研究了C3钢和W6Mo5Cr4V2钢室温形变对合金化渗氮渗速和渗层硬度的影响以及渗氮过程中形变试样的回复和再结晶形为。结果表明,渗氮层深度随形变量增加先增后减;渗层硬度随形变量增大而增加;渗氮阻碍渗层形变组织的回复与再结晶。

This paper deals with the effect of pre-oxidation on the gas nitriding layer and the nitriding kinetics.It is found the relationship of the depth of nitriding layer at 540℃ .580℃ .620℃ temperature with the pro-oxidation time. It is also found that the catalytic effect of brief pro-oxidation is strong on the process of the gas nitriding. The rates of the gas nitriding catalyzed by brief pre-oxidation are increased more than 30%  ̄50% and better results wereachieved. The optium processing paramoters...

This paper deals with the effect of pre-oxidation on the gas nitriding layer and the nitriding kinetics.It is found the relationship of the depth of nitriding layer at 540℃ .580℃ .620℃ temperature with the pro-oxidation time. It is also found that the catalytic effect of brief pro-oxidation is strong on the process of the gas nitriding. The rates of the gas nitriding catalyzed by brief pre-oxidation are increased more than 30%  ̄50% and better results wereachieved. The optium processing paramoters obtained by test have directive function for the industrial production of the gas nitriding.

研究了预氧化对气体渗氮渗层深度和动力学过程的影响,试验找出了在540、58Q及620℃不同温度下渗氮层深度和氧化时间的变化关系.研究发现,短时预氧化对气体渗氮具有强的催渗作用;据此,提出了预氧化一渗氮循环处理工艺,并获得较好效果.

Nonequilibrium Plasma nitriding at atmosphere pressure was carried out through dielectric barrier discharge (DBD). Effects of technology parameters were discussed. Orthogonal experimental results showed that the key for obtaining good nitriding layer was to choose the discharge voltage, discharge interval and nitriding temperature properly. Reducing discharge interval and increasing electric field intensity could increase the hardness and depth of nitriding layer markedly.

利用介质阻挡放电 ,进行了常压非平衡等离子体渗氮 ,着重讨论了有关工艺参数的影响情况。正交试验结果表明 ,合理选择放电电压、放电间距和渗氮温度是获得良好渗氮层的关键。在本工艺条件下 ,适当减小放电间隙 ,增大电场强度 ,可以明显提高渗层的硬度和深度

 
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