...
首页> 外文期刊>Materials Science and Engineering >Characterisation of precipitation and carbide coarsening in low carbon low alloy Q&T steels during the early stages of tempering
【24h】

Characterisation of precipitation and carbide coarsening in low carbon low alloy Q&T steels during the early stages of tempering

机译:低碳低合金Q&T钢回火初期的析出和碳化粗化特征

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In order to ensure that appropriate tempering conditions are used to obtain desired strength and toughness for low carbon low alloy quench and tempered (Q&T) steel plates in a range of thickness, it is desirable to be able to predict the effect of composition and tempering conditions (time and temperature) on the microstructure and hence the hardness evolution for these steels. In this paper, carbide precipitation and coarsening behaviour in three low carbon low alloy Q&T steels have been investigated during tempering at 600 degrees C up to 16 h to determine the role of alloying additions of Mo, V, Cr and Si. It has been found that auto-tempering occurs during water quenching with e'-carbide and cementite being present within the martensite laths for all three steels. In the Base steel, cementite becomes the stable second phase after 2 h tempering and has an elliptical (sometimes spherical) shape, which coarsens with time during tempering from 2 h to 16 h. However, in the Base-Mo-V and Base-Cr-Mo-V-Si steels, elliptical and needle-shaped cementite (shown to contain Mn, Mo and Cr) both exist during tempering; furthermore, finer elliptical secondary Mo-V-rich carbides are observed after tempering for 4 h. The coarsening of cementite contributing to the softening process in the three steels has been quantified with, most significantly, the inter- and intra-lath carbides coarsening independently. Although fine secondary alloy carbides are observed after 4 h tempering, they do not result in any noticeable secondary hardening peak in the Base-Mo-V and Base-Cr-Mo-V-Si steels.
机译:为了确保使用适当的回火条件以获得厚度范围内的低碳低合金淬火和回火(Q&T)钢板所需的强度和韧性,希望能够预测成分和回火条件的影响(时间和温度)在显微组织上的变化,从而导致这些钢的硬度变化。在本文中,已经研究了三种低碳低合金Q&T钢在600℃回火至16 h时的碳化物析出和粗化行为,以确定Mo,V,Cr和Si合金化添加的作用。已经发现在所有三种钢的马氏体板条中都存在e'-碳化物和渗碳体时,在水淬过程中会发生自回火。在基体钢中,渗碳体在2 h回火后成为稳定的第二相,并呈椭圆形(有时为球形)形状,在2 h至16 h的回火过程中随时间变粗。然而,在基础Mo-V和基础Cr-Mo-V-Si钢中,回火过程中同时存在椭圆形和针状渗碳体(显示含有Mn,Mo和Cr)。此外,回火4 h后观察到更细的椭圆形的富Mo-V的二次碳化物。量化了这三种钢中软化过程中渗碳体的粗化程度,其中最重要的是板条间和板条间碳化物独立地粗化。尽管在4 h的回火后观察到细小的二次合金碳化物,但它们不会在Base-Mo-V和Base-Cr-Mo-V-Si钢中引起任何明显的二次硬化峰。

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