...
首页> 外文期刊>Materials Science and Engineering >Effect of microstructure on tensile and fatigue properties of laser-welded DP780 and DP980 high-strength steel joints
【24h】

Effect of microstructure on tensile and fatigue properties of laser-welded DP780 and DP980 high-strength steel joints

机译:显微组织对激光焊接DP780和DP980高强度钢接头拉伸和疲劳性能的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The aim of this study is to report the impact of microstructure on the tensile and fatigue properties of laserwelded DP780 and DP980 high-strength steel joints. The grain size at the fusion zone of the DP780/DP980 welded joint (WJ) was larger, but the microstructures at the sub-critical zone, inter-critical zone, fine-grained zone and coarse-grained zone at the DP780 and DP980 sides of DP780/DP980 WJ were not significantly different from those of DP780/DP780 WJ and DP980/DP980 WJ, respectively. The evolution trend of microhardness for the three types of WJs was consistent, featuring valleys in the softening zone and peaks in the hardening zone. The yield strength of DP780/DP980 WJ was 1.15 and 1.17 times greater than that of DP780/ DP780 WJ and DP780 BM, respectively. The elongation of DP780/DP980 WJ was 6.49%, lower than the 9.22% of DP780/DP780 WJ but closer to the 6.19% of DP980/DP980 WJ. The yield-to-tensile ratio of DP780/DP980 WJ was 1.15 times that of DP780/DP780 WJ and 92.9% of DP980/DP980 WJ. The fatigue strength of DP780/ DP980 WJ was 1.36 times that of DP780/DP780 WJ and 80.9% of DP980/DP980 WJ. The fatigue cracks of DP780 BM and DP980 BM propagated along the two-phase interface or inside the ferrite, and the secondary crack mainly occurred at the martensite and ferrite junction. However, the main fatigue cracks for all the WJs showed noticeable transgranular fracture, and the origin of the secondary crack was located at the grain boundary or inner grain. Fatigue crack initiations for all samples were located at the surface. The fatigue crack initiations for DP780 and DP980 BMs were mainly caused by the dislocation movement hindered by the harder martensite and impurities in the samples, while, the fatigue crack initiations of all the WJs were mainly due to oxide inclusions on the fusion zone surface.
机译:这项研究的目的是报告显微组织对激光焊接的DP780和DP980高强度钢接头的拉伸和疲劳性能的影响。 DP780 / DP980焊接接头(WJ)的熔合区的晶粒尺寸较大,但在DP780和DP980侧面的亚临界区,临界间区,细粒区和粗粒区的显微组织DP780 / DP980 WJ的分别与DP780 / DP780 WJ和DP980 / DP980 WJ的分别无显着差异。三种类型的WJ的显微硬度变化趋势是一致的,其特征在于软化区为谷,而硬化区为峰。 DP780 / DP980 WJ的屈服强度分别是DP780 / DP780 WJ和DP780 BM的屈服强度的1.15和1.17倍。 DP780 / DP980 WJ的伸长率为6.49%,低于DP780 / DP780 WJ的9.22%,但接近DP980 / DP980 WJ的6.19%。 DP780 / DP980 WJ的屈服比是DP780 / DP780 WJ的1.15倍,是DP980 / DP980 WJ的92.9%。 DP780 / DP980 WJ的疲劳强度是DP780 / DP780 WJ的1.36倍,是DP980 / DP980 WJ的80.9%。 DP780 BM和DP980 BM的疲劳裂纹沿两相界面或在铁素体内部传播,其次裂纹主要发生在马氏体与铁素体的交界处。然而,所有WJ的主要疲劳裂纹均表现出明显的晶间断裂,而次生裂纹的起源位于晶界或内部晶粒。所有样品的疲劳裂纹萌生都位于表面。 DP780和DP980 BM的疲劳裂纹萌生主要是由于样品中较硬的马氏体和杂质阻碍了位错运动,而所有WJ的疲劳裂纹萌生主要是由于熔合区表面的氧化物夹杂。

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