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Rapid fabrication and characterization of AISI 304 stainless steels modified with Cu additions by additive alloy melting (ADAM)

机译:通过添加合金熔化(ADAM)对添加了Cu的AISI 304不锈钢进行快速制造和表征

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Rapid alloy prototyping is quickly emerging as a manufacturing approach to design novel structural alloys since allows producing low volume of high quality castings quickly at low cost. Thus, a large number of alloys can be produced and tested for finding the optimal composition in an alloy system. In this work, a new high throughput method for rapid alloy manufacturing has been developed and employed to cast AISI 304 stainless steel samples modified with an addition of Cu in the range of 1–4wt.%. The homogeneity of the microstructure and chemical composition of as-cast materials has been characterized at the macro- and micro-scale, using optical and scanning electron microscopy, X-ray fluorescence, X-ray diffraction and electron probe microanalysis. At the macro-scale, no compositional variations have been found, while variations in the distribution of phases in the microstructure were related to variations in the cooling rate and thermal path undergone across the solidifying ingot. At the micro-scale, it has been found that segregation of austenite and ferrite stabilizing elements occurs during solidification, as expected from the phase diagram. Additive alloy melting (ADAM) has been demonstrated to be a suitable, rapid and versatile casting method for manufacturing metallic samples on a laboratory scale with good chemical homogeneity at the macro-scale.
机译:快速合金原型作为制造新颖结构合金的一种制造方法正在迅速出现,因为它允许以低成本快速生产少量的高质量铸件。因此,可以生产和测试大量合金以找到合金系统中的最佳组成。在这项工作中,已经开发了一种用于快速合金制造的新的高通量方法,并用于铸造AISI 304不锈钢样品,该样品经添加1-4wt。%的Cu进行改性。使用光学和扫描电子显微镜,X射线荧光,X射线衍射和电子探针显微分析,可以在宏观和微观尺度上表征铸态材料的微观结构和化学成分的均匀性。在宏观尺度上,没有发现组成变化,而在微观结构中相分布的变化与冷却速率和穿过凝固锭的热路径的变化有关。在微观尺度上,已经发现,如相图所示,凝固过程中会发生奥氏体和铁素体稳定元素的偏析。事实证明,添加合金熔化(ADAM)是一种合适的,快速且通用的铸造方法,用于在实验室规模生产具有良好的化学均匀性的实验室规模的金属样品。

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