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Roughening of metallic biomaterials by abrasiveless waterjet peening: Characterization and viability

机译:通过无磨喷水喷丸处理对金属生物材料进行粗糙化处理:表征和可行性

摘要

This study addresses the roughening of AISI 316 LVM and Ti6Al4V by waterjet peening (WJP) without abrasive particles, looking for rough surfaces free of embedded particles that could act as severe notches. Strong parameters have been selected to characterize and check viability of abrasiveless WJP; a water pressure of 360. MPa and two slow traverse velocities: 0.05 and 0.1. m/min. After processing, large number of pits with undercuts plus some larger intrusions are observed, which are more abundant and larger in the steel specimens and in those treated with the lower traverse speed. Cross sectional examination of 316 LVM reveals a significant grain size refinement in the subsurface zone, 10-20. μm wide, that exhibits a submicrometric/nanometric grain size, accompanied with a hardness gradient (50% increase) that extends to a depth of up to about 100. μm. The analysis of the magnetic hysteresis loops discards the presence of strain induced α-martensite. No hardness or microstructural gradient was developed in the Ti6Al4V alloy. The results indicate that in AISI 316 LVM the volume loss occurs through hardening of the subsurface, embrittlement, crack formation and erosion. In Ti6Al4V the material removal may take place first at the vanadium reach β-phase. © 2011 Elsevier B.V.
机译:这项研究旨在通过不使用磨料颗粒的喷水喷丸(WJP)来解决AISI 316 LVM和Ti6Al4V的粗糙化问题,寻找没有嵌入颗粒的粗糙表面,这些颗粒可能会成为严重的缺口。选择了强大的参数来表征和检查无磨料WJP的可行性; 360. MPa的水压和两个慢速速度:0.05和0.1。米/分加工后,观察到大量带有咬边的凹坑以及一些较大的侵入,这些凹痕在钢试样中以及在以较低的行进速度处理的试样中更为丰富和较大。 316 LVM的横截面检查表明,在10-20的地下区域中,晶粒尺寸显着改善。宽μm,具有亚微米/纳米级的晶粒尺寸,并伴随着硬度梯度(增加了50%),延伸至大约100.μm的深度。磁滞回线的分析放弃了应变诱导的α-马氏体的存在。 Ti6Al4V合金中没有出现硬度或微观组织梯度。结果表明,在AISI 316 LVM中,体积损失是通过地下硬化,脆化,裂纹形成和腐蚀发生的。在Ti6Al4V中,材料去除可首先在钒达到β相时进行。 ©2011 Elsevier B.V.

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