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Effects on the Long-Term Aging of Low Temperature Salt Bath Nitrided AISI 321 Stainless Steel

机译:低温盐浴长期老化的影响氮化AISI 321不锈钢

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AISI 321 stainless steel was salt bath nitrided at 430K for 8 hours,then being long-term aging treatment at different temperature.To study the changes of microstructures and performances of these samples by using X-ray diffraction(XRD),scanning electron microscopy(SEM),micro hardness tester,electrochemical workstation,and universal tensile testing machine.Experimental results showed that a nitrided layer was formed on the surface with the thickness ranging from 7.6 to 22.5 μm varying with changing aging treatment time and temperature after dealing with salt bath nitriding.The thickness of the nitrided layer increased with increasing aging time and temperature.According to the fick’s second law,the growth of the nitride layer is mainly due to the diffusion of nitrogen,as expected.The active energy of nitrogen atoms in AISI 321 stainless steel is 340.2kJ/mol by calculated form Thermodynamics formula.The surface micro hardness significantly increased to nearly 1430 Hv0.098,which is about 4 times harder the non-treated material,and then gradually reduced.The corrosion resistance of the 321 stainless steel is increases with proper aging treatment,but when the aging time more than 15.552xl0~6s,the corrosion resistance decrease.The tensile properties of AISI 321 ASS of strength decrease but the plastic increase a little after salt bathing nitriding and aging.
机译:AISI 321不锈钢是盐浴在430K氮化8小时,然后在不同温度下进行长期老化处理。通过使用X射线衍射(XRD),扫描电子显微镜研究微观结构和这些样品的性能的变化( SEM),微型硬度测试仪,电化学工作站和通用拉伸试验机。实验结果表明,在处理盐浴后,厚度为7.6至22.5μm的表面上形成氮化层。在处理盐浴后改变老化处理时间和温度,厚度为7.6至22.5μm。氮化层的厚度随着老化时间和温度的增加而增加。根据Fick的第二律,氮化物层的生长主要是由于氮的扩散,如预期的那样。AISI 321中氮原子的活性能量。通过计算形式的热力学配方,不锈钢是340.2KJ / mol。表面微硬度明显增加至近1430 HV0.098,即关于较硬4倍,未处理过的材料,然后逐渐减少。321不锈钢的耐腐蚀性随着适当的老化处理而增加,但是当老化时间超过15.552xl0〜6s时,耐腐蚀性降低。拉伸性能AISI 321屁股的力量降低,但盐沐浴氮化和衰老后的塑料会增加。

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