Yang Jianlei, Jiao Xueyan, Chen Wenzhen, Zhang Wencong, Wang Guofeng
School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China.
Materials (Basel). 2017 Mar 31;10(4):375. doi: 10.3390/ma10040375.
The present work introduces a novel extrusion with filler material to produce the high-performance TiBw/Ti-6Al-4V composite tube with a quasi-continuous reinforced structure. A simulation was adopted to study the effect of the filler material on the shape accuracy of the tubes. Based on the simulation results, the flow stress of the filler material was not the important factor, but the friction coefficient between the filler and TiBw/Ti-6Al-4V composite and the canning shape were critical to the tube precision. The microstructure and mechanical performance for the as-extruded TiBw/Ti-6Al-4V composite tubes were systematically investigated. After extrusion, the transverse section microstructure of the TiBw/Ti6Al4V composite tube remained quasi-continuous and the TiBw were rotated to align the extrusion direction. Moreover, the tensile strength and elongation reached 1240 MPa and 13.5%, resulting from dynamic recrystallization and whisker rotation.
目前的工作引入了一种新型的带填充材料的挤压工艺,以生产具有准连续增强结构的高性能TiBw/Ti-6Al-4V复合管。采用模拟方法研究填充材料对管材形状精度的影响。基于模拟结果,填充材料的流动应力不是重要因素,而填充材料与TiBw/Ti-6Al-4V复合材料之间的摩擦系数以及包套形状对管材精度至关重要。系统地研究了挤压态TiBw/Ti-6Al-4V复合管的微观结构和力学性能。挤压后,TiBw/Ti6Al4V复合管的横截面微观结构保持准连续,TiBw旋转以与挤压方向对齐。此外,由于动态再结晶和晶须旋转,抗拉强度和伸长率分别达到1240MPa和13.5%。