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Influence of hydrogen content in working gas on growth kinetics of hardened layer at ion nitriding of 16MnCr5 and A290C1M steels

机译:16MnCr5和A290C1M钢离子氮化下硬化层生长动力学对工作气体的影响

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The impact of hydrogen content from 10 to 30% in the mixture of operating gas environment on the growth kinetics and structure of a hardened layer during ion nitriding of martensite and pearlite steels has been studied. It is stated that hydrogen in the vacuum chamber in the range from 10 to 30% contributed to a 1.2-time increase of nitrogen diffusion rate in 16MnCr5 steel and 1.3-time increase in A290C1M steel. The dependence of the hardened layer thickness and microhardness distribution over the depth on the gas environment composition is stated. The structure of the nitrided layer of steels at different hydrogen contents during ion nitriding is studied.
机译:研究了在马氏体和珠光体钢的离子氮化过程中对运动环境的混合物对操作气体环境的混合物的影响和终止层的生长动力学和结构的影响。据说真空室中的氢在10〜30%的范围内有助于16Mncr5钢中的氮气扩散速率的1.2次增加,并增加了A290c1m钢的1.3次。阐述了硬化层厚度和微硬度分布在气体环境组合物上的深度上的依赖性。研究了在离子氮化期间不同氢含量的钢的氮化层的结构。

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