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Characterization of texture and grain boundary character distributions of selective laser melted Inconel 625 alloy

机译:选择性激光熔化Inconel 625合金纹理和晶界特征分布的特征

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摘要

Select laser melting (SLM) is one of the practical metal additive manufacturing processes to fabricate complex structures. The inhomogeneous microstructure and high residual stress are typically resulted from a non-uniform melting and rapid solidification during a SLM process, which has the significant impact on part dimensional instability, corrosion resistance, and mechanical properties. The bulk of current research is limited to the general characterization of grain size, texture, and mechanical properties. However, grain boundary character distribution (GBCD) and its relationship with texture are yet to be understood. This study has shown that the preferred 110 along building direction and 100 along laser scanning direction were produced. The high density of low angle grain boundary (LAGB) can be an indicator of residual stress levels in the as-SLMed samples. The newly-developed Sigma 3, Sigma 9 and Sigma 27 grain boundaries were heavily populated, and the cluster of grains interfaced by Sigma 3(n) (n = 0, 1, 2...) was introduced at the expense of LAGB only at high recrystallization annealing (1150 degrees C or over). The research results suggest that GBCD optimization be possible in the SLMed Inconel 625 alloy via suitable post annealing, which allows improving intergranular corrosion resistance and enhancing mechanical properties.
机译:选择激光熔化(SLM)是制造复杂结构的实用金属添加剂制造工艺之一。不均匀的微观结构和高残余应力通常是由于在SLM过程中的不均匀熔化和快速凝固而导致,这对部件尺寸不稳定性,耐腐蚀性和机械性能具有显着影响。大部分电流研究仅限于晶粒尺寸,质地和机械性能的一般表征。然而,谷本边界字符分布(GBCD)及其与纹理的关系尚未理解。该研究表明优选的<110&沿建筑方向和& 100&生产沿着激光扫描方向。低角度晶界(LAGB)的高密度可以是AS-SLMED样品中的残余应力水平的指示。新开发的Sigma 3,Sigma 9和Sigma 27晶界受到严重填充的,并且仅引入由Sigma 3(n = 0,1,2 ...)的粒联的颗粒以延续的滞后在高再结晶退火(1150℃或结晶)。该研究结果表明,通过合适的后退火,SLMED Inconel 625合金中可以在SLMED INCOLEL 625合金中进行GBCD优化,这允许改善晶间耐腐蚀性和增强机械性能。

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