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Effect of Print Method Based on SLM Technology on the Microstructure and Property of 316L Stainless Steel

机译:基于SLM技术的印刷方法对316L不锈钢微观结构和性能的影响

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Samples of 316L stainless steel were fabricated by focus print and defocus print under the similar other process parameters with the scanning power, interval and speed of 450 W, 0.05 mm and 2000 mm/s, respectively. The microstructures and defects were observed by optical microscope and scanning electron microscope. Meanwhile, the density, hardness and tensile mechanical property were tested. The results show that only few micro-cracks exist in the microstructure of the focus-printed sample with density of 95.54%, however some holes do in the microstructure of the defocus-printed sample with density of 92.21%. The focus-printed sample exhibits the better comprehensive mechanical property, where the hardness, tensile strength, yield strength and elongation reach 206 HV, 645 MPa, 560 MPa and 45.0%, respectively. While they are 195 HV, 625 MPa, 545 MP and 38.0% for the defocus-printed sample, respectively.
机译:通过在类似的其他工艺参数下通过聚焦印刷和散焦印刷制造316L不锈钢的样品,其扫描功率分别为450W,0.05mm和2000mm / s的扫描功率,间隔和速度。光学显微镜和扫描电子显微镜观察微观结构和缺陷。同时,测试密度,硬度和拉伸力学性能。结果表明,在聚焦印刷样品的微观结构中只有少量微裂纹,密度为95.54%,然而一些孔在散焦印刷样品的微观结构中,密度为92.21%。聚焦印刷样品具有更好的综合力学性能,其中硬度,拉伸强度,屈服强度和伸长率分别达到206HV,645MPa,560MPa和45.0%。虽然它们是195 HV,625MPa,545型媒介和散焦印刷样品的38.0%。

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