Quasi-Static and Dynamic Mechanical Properties of a Ti-6Al-4V Titanium Alloy Produced Using Unconventional Manufacturing Methods

Katarzyna J. Sarzyńska, R. Paszkowski
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引用次数: 0

Abstract

The purpose of this paper was to determine the mechanical properties of a Ti-6Al-4V titanium alloy produced by traditional CIP (Cold Isostatic Pressing) and by LENS (Laser Engineered Net Shaping), an additive manufacturing process. A reference material, being a commercial Ti-6Al-4V alloy, was also tested. The strength test specimens were produced from a high-quality, Grade 5 titanium powder. Each specimen had its density, porosity, and hardness determined. Compression curves were plotted for the tested materials from the strength test results with static and dynamic loads. These tests were performed on an UTS (Universal Testing Machine) and an SHPB (Split Hopkinson Pressure Bar) stand. The test results obtained led to the conclusion that the titanium alloy produced by CIP had lower strength performance parameters than its commercially-sourced counterpart. The LENS-produced specimens outperformed the commercially-sourced alloy both in static and dynamic load conditions.
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非常规工艺制备Ti-6Al-4V钛合金的准静态和动态力学性能
本文的目的是确定传统的CIP(冷等静压)和LENS(激光工程净成形)增材制造工艺生产的Ti-6Al-4V钛合金的力学性能。参考材料是一种商用Ti-6Al-4V合金,也进行了测试。强度测试样品由高质量的5级钛粉制成。测定了每个试样的密度、孔隙率和硬度。根据静、动载荷下的强度试验结果,绘制了被试材料的压缩曲线。这些测试是在UTS(通用试验机)和SHPB(分离式霍普金森压力棒)支架上进行的。试验结果表明,CIP生产的钛合金强度性能参数低于市售钛合金。lens生产的样品在静态和动态载荷条件下都优于商业来源的合金。
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审稿时长
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