...
首页> 外文期刊>Surface & Coatings Technology >Enhanced surface hardening of AISI D2 steel by atomic attrition during ion nitriding
【24h】

Enhanced surface hardening of AISI D2 steel by atomic attrition during ion nitriding

机译:在离子渗氮过程中通过原子磨蚀增强AISI D2钢的表面硬化

获取原文
获取原文并翻译 | 示例
           

摘要

An experimental studywas conducted in order to investigate the surface hardness enhancement of AISI D2 steel, by ion nitriding through atomic attrition. Following a conventional ion nitriding process of 120 min under an atmosphere of H_2 and N_2, an atomic attrition process was applied to the surface of AISI D2 steel under a gas mixture of Ar and N_2 for 360 min. A conventional ion nitriding of 480 min was also performed for the purposes of comparison. The results obtained demonstrate that the surface hardness of AISI D2 steel undergoing ion nitriding and atomic attritionwas about 1500HV;which is the highest surface hardness among all the specimens tested, and almost 250 HV higher than that of a conventionally ion nitrided specimen. After nitriding by atomic attrition, those grains located along grain boundaries and in the vicinity of precipitates in the surface regionwere recrystallized, which is believed to be caused by the stress field formed between grains and different phases. In addition, the specimen that was ion-nitrided by atomic attrition exhibited a higher nitrogen concentration and a consequently greater quantity of chromium nitrides at the surface region, when compared to a single nitrided specimen. This could be attributed to the sputtering characteristics of argon in the plasma nitriding. The refined grains, higher nitrogen concentration, and greater amount of chromium nitrides all represent significant factors in the enhanced surface hardening of AISI D2 steel.
机译:为了研究AISI D2钢的表面硬度通过原子磨蚀进行离子渗氮处理而进行了实验研究。在H_2和N_2气氛下进行120分钟的常规离子氮化处理之后,在Ar和N_2的混合气体下对AISI D2钢的表面进行了360分钟的原子磨蚀处理。为了比较,还进行了480分钟的常规离子渗氮。获得的结果表明,经过离子渗氮和原子磨蚀的AISI D2钢的表面硬度约为1500HV;这是所有测试样品中最高的表面硬度,比常规的离子氮化样品高出近250 HV。在通过原子磨损进行氮化之后,沿着晶粒边界和在表面区域中的沉淀物附近的那些晶粒被再结晶,这被认为是由晶粒之间和不同相之间形成的应力场引起的。另外,与单个氮化样品相比,通过原子消耗进行离子氮化的样品在表面区域表现出更高的氮浓度,因此在表面区域的氮化铬数量也更多。这可以归因于等离子体氮化中氩气的溅射特性。精炼的晶粒,较高的氮浓度和大量的氮化铬都代表了AISI D2钢增强的表面硬化的重要因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号