3d打印17-4PH不锈钢的烧结性能

N. Raju, P. Warren, R. Subramanian, Hossein Ebrahimi, E. Fernandez, S. Raghavan, J. Kapat
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引用次数: 1

摘要

本研究的主要目的是研究17-4PH不锈钢3D打印材料的烧结行为及其对材料性能的影响。样品是通过原子扩散增材制造技术,金属X系统制造的。以不同的构建方向打印样品的冷却孔,概述了原子扩散增材制造(ADAM)技术的可打印性和准确性。样品经过洗涤、热脱粘和烧结处理,最终制成固体金属零件。通过对预烧结件水洗后的化学成分、粗糙度、粒度分析、密度、能量色散x射线光谱和扫描电子显微镜(SEM)的微观结构分析进行测试,了解材料的性能。对烧结后的样品进行了相同的测试,以了解烧结的影响。本研究采用独特的概念方法和统计分析。为了了解热脱粘和烧结动力学,进行了差示扫描量热法(DSC)和膨胀法(DIL)测试。DSC结果给出了热脱胶和粘结剂信息的详细信息。膨胀测量(DIL)结果显示温度曲线上的收缩,并且在1250°C以上发现收缩的显著变化。结果概述了3D打印17-4PH不锈钢的烧结动力学和烧结影响。这有助于确定最佳的热脱脂和烧结轮廓,以实现高密度材料。值得注意的是,这是首次根据ADAM技术详细研究热脱粘和烧结动力学及其对材料性能影响的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sintering Behaviour of 3d Printed 17-4PH Stainless Steel
The main aim of the research work is to investigate the sintering behavior and its impact on the material properties of 3D printed 17-4PH stainless steel. The samples were manufactured by the Atomic Diffusion Additive Manufacturing technique, the Metal X system. Cooling holes were printed with the sample in different build orientations giving an overview of the printability and accuracy of the atomic diffusion additive manufacturing (ADAM) technique. Samples were processed by washing, thermal de-binding, and sintering to produce a final solid metal part. Pre-sintered parts, after washing, were tested for chemical composition, roughness, particle size analysis, density, Energy Dispersive X-ray spectroscopy, and microstructure analysis using Scanning electron microscopy (SEM) to understand the material properties. Post-sintered samples were tested for the same tests to understand the sintering impact. A unique conceptual approach and statistical analysis are included in this research. To understand the thermal de-binding and sintering kinetics Differential Scanning Calorimetry (DSC) and Dilatometry (DIL) tests were performed. DSC results gave details about the thermal de-binding and binder information. Dilatometry (DIL) results showed shrinkage over the temperature profile, and significant changes in shrinkages were found above 1250 °C. The results gave an overview of the sintering kinetics and sintering impact of 3D printed 17-4PH stainless steel. This helps decide the optimized thermal debinding and sintering profile to achieve high dense material. It should be noted that this is the first-ever study investigating in detail thermal de-binding and sintering kinetics and its impact on the material properties according to the ADAM technique.
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