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The Effects of Process Parameters on Nitrogen Infiltration and the Controlling of Nitrogen Concentration in Vacuum Nitriding

机译:工艺参数对真空氮气渗透的影响及控制氮浓度的影响

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In vacuum nitriding, the effect of process parameters such as treating temperature and NH_3 concentration of infiltration gas to furnace on nitrogen concentration of specimen and the controlling of nitrogen concentration of the specimen are investigated. The decomposition of NH_3 in furnace is increased as the treating temperature is increased, therefore the nitrogen concentration of the specimen is decreased. The residual NH_3 concentration is increased as the treating temperature is decreased, therefore the infiltration nitrogen content to specimen is increased. If the residual NH_3 concentration is too high, the voids are generated and the nitrogen concentration decreases. The retention time in the furnace is decreased as the total gas flow rate is increased, therefore the residual NH_3 concentration increase and the nitrogen concentration increases. The number of NH_3 molecules per unit time, which contact on the steel surface can affect the infiltration amount of nitrogen. In other words, the infiltration nitrogen amount is according to the product of the residual NH_3 concentration by the exhaust gas flow rate.
机译:在真空氮化下,研究了诸如处理温度和NH_3浓度的渗透气体对氮气浓度的渗透气体的效果以及样本的氮浓度的控制。随着处理温度的增加,炉中NH_3的分解增加,因此样品的氮浓度降低。随着处理温度降低,残留的NH_3浓度增加,因此渗透到样本的渗透氮含量增加。如果残留的NH_3浓度太高,则产生空隙,并且氮浓度降低。随着总气体流速增加,炉中的保留时间降低,因此残留的NH_3浓度增加,氮浓度增加。每单位时间的NH_3分子的数量,钢表面接触可以影响氮气的渗透量。换句话说,渗透氮量根据废气流速根据残留NH_3浓度的产物。

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