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High Temperature Corrosion of Additively Manufactured Inconel 625

机译:增材制造的Inconel 625的高温腐蚀

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Inconel alloys are used for the components of gas turbine, heat exchanger, and pressure vessels, etc., in aerospace, nuclear, chemical processing, and similar industries. In these applications, components made of Inconel are subjected to high temperatures and very corrosive environment. With the advent of additive manufacturing, components with relatively complex geometries can be fabricated. The objective of this work is to investigate the high temperature corrosion characteristics of additively manufactured (AM) Inconel 625. The specimens are exposed to 700 and 900 °C for different time periods. Upon cooling the samples to the room temperature, the weight change is examined. Post-characterization of Inconel 625 specimens is conducted using scanning electron microscopy and energy dispersive X-ray spec-troscopy to identify the corrosion products and their distribution. This presentation will highlight the effect of specimen density (due to porosity) as a result of AM process.
机译:铬镍铁合金用于航空航天,核能,化学加工以及类似行业中的燃气轮机,热交换器和压力容器等部件。在这些应用中,Inconel制成的组件要经受高温和非常腐蚀性的环境。随着增材制造的出现,可以制造具有相对复杂的几何形状的组件。这项工作的目的是研究增材制造(AM)Inconel 625的高温腐蚀特性。样品在不同的时间段内暴露于700和900°C的温度下。将样品冷却至室温后,检查重量变化。使用扫描电子显微镜和能量色散X射线光谱仪对Inconel 625样品进行后表征,以鉴定腐蚀产物及其分布。本演讲将重点介绍由于AM处理而导致的样品密度(由于孔隙)的影响。

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