Effect of HIP Defects on the Mechanical Properties of Additive Manufactured Ti6Al4V Alloy

机械加工 热等静压 材料科学 疲劳极限 合金 质量(理念) 韧性 极限抗拉强度 钛合金 过程(计算) 断裂韧性 机械工程 冶金 计算机科学 工程类 哲学 操作系统 认识论
作者
Ohad Dolev,Tomer Ron,Eli Aghion,Amnon Shirizly
出处
期刊:Metals [Multidisciplinary Digital Publishing Institute]
卷期号:12 (7): 1210-1210 被引量:7
标识
DOI:10.3390/met12071210
摘要

The expanding use of Additive Manufacturing (AM) technology enables engineers and designers to plan and manufacture highly complex geometries that are impossible to manufacture with any other conventional technology. When comparing this with building parts using powder bed technology, the main differences found in the quality of the products concern fracture toughness, fatigue, and inferiority in tensile tests. To overcome these issues, the Hot Isostatic Press (HIP) procedure may be used to improve the material quality by reducing product porosity. Regarding fatigue, the standard procedure consists of HIP and the machining of specimens to their final geometry. However, in many AM parts, geometrical complexity does not enable complementary machining. Recently, some AM vendors integrated in-process milling capabilities into their machines, in an attempt to address this challenge. In this study, the authors examine the effect of the HIP procedure on representative samples in order to demonstrate its effect on the final products of TI-6Al-4V parts. The results indicate that the fatigue limit of HIPed parts can increase by 12%; however, a dramatic decrease in the fatigue limit was observed if any failure in the HIP process occurred. The authors suggest an optional procedure to improve performance in such cases.
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