首页> 外文期刊>Journal of Materials Processing Technology >Relationship between processing parameters, alloy atom diffusion distance and surface hardness in laser hardening of tool steel
【24h】

Relationship between processing parameters, alloy atom diffusion distance and surface hardness in laser hardening of tool steel

机译:工具钢激光淬火工艺参数,合金原子扩散距离与表面硬度的关系

获取原文
获取原文并翻译 | 示例
       

摘要

Laser transformation hardening of tool steel containing 0.64 wt% carbon and 4.48 wt% chromium was studied. The delivery condition of the steel was annealed, with a microstructure of M{sub}7C{sub}3 type carbides in a matrix of ferrite. Hardening was performed with a direct diode laser. Surface temperature during hardening was measured with a dual wavelength pyrometer and the traverse speed was varied between 1.1 and 33.3 mm{sup}(-1). A set of samples was quenched in liquid nitrogen to reveal the effect of retained austenite on the resulting hardness. The surface hardness was greatly influenced by the dissolution of carbides during austenitization. The dissolution of chromium carbides required a high temperature and was assumed to be limited by chromium diffusion. Highest hardness values were achieved with slow traverse speeds and high surface temperatures for both normal and sub-zero hardened samples. Highest measured hardness in samples, in which the surface was cooled by self-quenching, was 822 HV and in samples quenched in liquid nitrogen 926 HV. A good agreement was found between the characteristic diffusion distance of chromium and surface hardness, and the results of this study can be used as a basis for mathematical modelling of laser transformation hardening.
机译:研究了含0.64 wt%碳和4.48 wt%铬的工具钢的激光相变硬化。退火后的钢的交付条件是在铁素体基体中具有M {sub} 7C {sub} 3型碳化物的微观结构。用直接二极管激光器进行硬化。用双波长高温计测量硬化过程中的表面温度,并且移动速度在1.1和33.3 mm {sup}(-1)之间变化。一组样品在液氮中淬火,以揭示残留奥氏体对所得硬度的影响。奥氏体化过程中碳化物的溶解极大地影响了表面硬度。碳化铬的溶解需要高温,并被认为受铬扩散的限制。对于正常和零以下的硬化样品,在慢速移动和高表面温度的情况下获得了最高的硬度值。在表面通过自淬火冷却的样品中,测得的最高硬度为822 HV,在液氮中淬火的样品中为926 HV。铬的特征扩散距离与表面硬度之间找到了很好的一致性,这项研究的结果可以作为激光相变硬化数学模型的基础。

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