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首页> 外文期刊>International Journal of Fatigue >Smooth and notch fatigue behavior of selectively laser melted Inconel 718 with as-built surfaces
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Smooth and notch fatigue behavior of selectively laser melted Inconel 718 with as-built surfaces

机译:具有预制表面的选择性激光熔化的Inconel 718的光滑和缺口疲劳行为

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摘要

The selective laser melting (SLM) technology applied to Inconel 718 produces near-net shape parts of unlimited geometrical complexity directly from a CAD model and a metal powder bed processing system. With respect to conventional manufacturing, SLM potentially fabricates parts that can be lighter in weight, cheaper and have complex geometries that are difficult or impossible to produce otherwise. However, the surface quality of SLM parts with as-built surfaces negatively affects their fatigue performance and post fabrication surface finishing may be cost-wisely unacceptable in most applications and often impossible because of surface inaccessibility.Two aspects significantly affecting the fatigue performance of SLM Inconel 718 parts have been investigated and are reported here: (i) the directional knock-down factor of the as-built surface state with respect to the surface machined condition, and (ii) the role of a geometrical notch in the as-built surface state as commonly found in complex SLM parts.Eight batches of un-notched and notched miniature specimens of heat treated SLM Inconel 718 with as-built surfaces were tested in cyclic plane bending. The unnotched fatigue strength was found to be sensitive to direction of the applied stress with respect to build direction. The as-built notch fatigue strength of heat treated SLM Inconel 718 is also highly directional in nature. Four SLM-technology-dependent factors are introduced and determined. The un-notched and notched fatigue behavior of SLM Inconel 718 with as-built surfaces obtained here compares satisfactorily with recently published data for the same material and SLM technology but different specimen geometry and test method. Therefore, the proposed experimental methodology based on the use of miniature specimens in cyclic bending may a viable tool for the efficient evaluation of the fatigue response of SLM metals.
机译:应用于Inconel 718的选择性激光熔化(SLM)技术直接从CAD模型和金属粉末床处理系统中生产出无限几何复杂性的近净形零件。关于传统制造,SLM可能会制造重量更轻,价格更便宜且具有复杂几何形状的零件,而这些零件很难或不可能生产。但是,具有已建成表面的SLM零件的表面质量会对它们的疲劳性能产生负面影响,并且在制造后的表面精加工在大多数应用中可能在成本上是不可接受的,并且由于表面难以接近而常常是不可能的。两个方面都严重影响了SLM Inconel的疲劳性能已经研究了718个零件,并在此处进行了报道:(i)竣工表面状态相对于表面机加工条件的定向击倒系数,以及(ii)几何缺口在竣工表面中的作用在复杂的SLM零件中通常会发现这种状态。在循环平面弯曲中测试了8批未经热处理和经加工的SLM Inconel 718初加工表面的无缺口微型试样。发现无缺口疲劳强度相对于构建方向对所施加应力的方向敏感。经过热处理的SLM Inconel 718的缺口缺口疲劳强度本质上也是高度定向的。引入并确定了四个依赖于SLM技术的因素。此处获得的SLM Inconel 718具有竣工表面的无缺口和有缺口的疲劳行为与相同材料和SLM技术,但不同的试样几何形状和测试方法的最新数据令人满意地比较。因此,基于在循环弯曲中使用微型试样的建议的实验方法可能是有效评估SLM金属疲劳响应的可行工具。

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