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首页> 外文期刊>Journal of Manufacturing Processes >Effect of cooling rate and laser process parameters on additive manufactured Fe-Ti-C metal matrix composites microstructure and carbide morphology
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Effect of cooling rate and laser process parameters on additive manufactured Fe-Ti-C metal matrix composites microstructure and carbide morphology

机译:冷却速度和激光工艺参数对添加剂制造的Fe-Ti-C金属基复合材料的组织和碳化物形态的影响

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In this paper, laser additive manufacturing (LAM) of Fe-TiC composite coating on AISI 1030 carbon steel is investigated using a numerical and experimental method. In order to have a desired result using LAM, it is crucial to understand the effects of the process parameters' values on the TiC morphology and microstructure. For this purpose, the LAM process is numerically simulated in order to calculate cooling rate and peak temperature. Experimental data and numerical results are in good agreement in terms of the phase development. Results show that cooling rate plays a crucial role in phase transformation in the clad, however, final microstructure strongly depends on the cooling rate and powder's chemical composition. Two main carbide morphologies (i.e. dendritic and particulate) are studied and relevant cooling rates are detected. Based on this paper and developed map, it is possible to control the cooling rate in order to achieve specific carbide morphologies in the clad. In this study, scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) are used to characterize dads' microstructure.
机译:本文采用数值和实验方法研究了AISI 1030碳钢上Fe-TiC复合涂层的激光增材制造(LAM)。为了使用LAM获得理想的结果,至关重要的是要了解工艺参数值对TiC形态和微观结构的影响。为此,对LAM过程进行数值模拟,以计算冷却速率和峰值温度。在阶段发展方面,实验数据和数值结果非常吻合。结果表明,冷却速度在包层的相变中起着至关重要的作用,但是最终的微观结构很大程度上取决于冷却速度和粉末的化学成分。研究了两种主要的碳化物形态(即树枝状和颗粒状),并检测了相关的冷却速率。根据本文和开发的地图,可以控制冷却速率,以实现包层中特定的碳化物形态。在这项研究中,使用扫描电子显微镜(SEM)和能量分散光谱(EDS)来表征爸爸的微观结构。

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