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Investigations on Mechanical Properties of Lattice Structures with Different Values of Relative Density Made from 316L by Selective Laser Melting (SLM)

机译:用316L通过选择性激光熔融(SLM)对不同值的晶格结构力学性能的研究

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Nine variants of regular lattice structures with different relative densities have been designed and successfully manufactured. The produced structures have been subjected to geometrical quality control, and the manufacturability of the implemented selective laser melting (SLM) technique has been assessed. It was found that the dimensions of the produced lattice struts differ from those of the designed struts. These deviations depend on the strut orientation in relation to the specimen-building direction. Additionally, the microstructures and phase compositions of the obtained structures were characterized and compared with those of conventionally produced 316L stainless steel. The microstructure analysis and X-ray diffraction (XRD) patterns revealed a single austenite phase in the SLM samples. Both a certain broadening and a displacement of the austenite peaks were observed due to residual stresses and a crystallographic texture induced by the SLM process. Furthermore, the mechanical behavior of the lattice structure material has been defined. It was demonstrated that under both quasi-static and dynamic testing, lattice structures with high relative densities are stretch-dominated, whereas those with low relative densities are bending-dominated. Moreover, the linear dependency between the value of energy absorption and relative density under dynamic loading conditions has been established.
机译:设计和成功制造了九个具有不同相对密度的六个常规晶格结构的变体。所生产的结构已经进行了几何质量控制,并评估了实施的选择性激光熔化(SLM)技术的可制造性。发现产生的晶格支柱的尺寸与设计的支柱的尺寸不同。这些偏差取决于与样品建筑方向相关的支柱取向。另外,所获得的结构的微观结构和相组合物的特征和相位组成与常规生产的316L不锈钢的结构进行了比较。微观结构分析和X射线衍射(XRD)图案在SLM样品中显示出单一奥氏体相。由于SLM工艺诱导的残余应力和结晶纹理,观察到奥氏体峰的一定展大和偏移的膨胀。此外,已经定义了晶格结构材料的力学行为。据证明,在准静态和动态测试下,具有高相对密度的晶格结构是拉伸的,而相对密度低的那些是弯曲的。此外,已经建立了动态​​负载条件下的能量吸收值和相对密度之间的线性依赖性。

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