MECHANICAL PROPERTIES OF SURFACE STRUCTURES OF TITANIUM ALLOY VT9 AFTER REPEATED LOCAL PROCESSING WITH NANOSECOND LASER PULSES

Y. Simonov, I. Ushakov
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引用次数: 2

Abstract

. Purpose. The regularities of a simultaneous increase in microhardness and plastic properties of the surface of titanium alloy VT9 are investigated. The hardness and Young’s modulus of thin surface layers are determined. Methodology and Approach. The methods employed are based on the use of nanosecond laser pulses initiating a complex of physical and chemical processes. The method of continuous indentation with a maximum load of 0,05 N is used. The mechanical properties of surface structures of titanium alloy VT9 after laser treatment are analyzed. Using the load-penetration diagrams, the following values were calculated: the contact depth of penetration, the stiffness of the contact ‘indenter–material’ pair, the projection area of the unreconstructed print, and the effective Young’s modulus. On the basis of the Oliver–Pharr method, the nano- and microhardness, as well as the modulus of longitudinal elasticity of the surface layers of a titanium alloy are estimated Results . It is found that as a result of processing, the microhardness of the surface increases by 2,5–4,5 times, and the Young’s modulus by 1,1–1,5 times. A distinctive feature of the proposed treatment method is good adhesion of the surface layer with the bulk material, which reduces the probability of high mechanical stresses and cracking. Theoretical and Practical implications . The proposed method of laser processing makes it possible to form hardened surface layers in a normal atmosphere, which contributes to a significant simplification of the technological process and reduces its cost.
纳秒激光脉冲重复局部加工后钛合金vt9表面结构的力学性能
. 目的。研究了VT9钛合金表面显微硬度和塑性性能同时提高的规律。测定了薄表面层的硬度和杨氏模量。方法论和方法。所采用的方法是基于使用纳秒激光脉冲启动一个复杂的物理和化学过程。采用连续压痕法,最大载荷为0.05 N。分析了激光处理后钛合金VT9表面组织的力学性能。利用载荷-渗透图,计算了以下值:渗透接触深度、接触压头-材料对的刚度、未重构打印的投影面积和有效杨氏模量。基于oliver - farr法,估算了钛合金表层的纳米、显微硬度和纵向弹性模量。结果表明,加工后的表面显微硬度提高了2,5 - 4,5倍,杨氏模量提高了1,1 - 1,5倍。所提出的处理方法的一个显著特征是表面层与大块材料的良好粘附性,从而降低了高机械应力和开裂的可能性。理论和实践意义。提出的激光加工方法使在正常大气中形成硬化表面层成为可能,这有助于显著简化工艺过程并降低其成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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