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首页> 外文期刊>Physics of atomic nuclei >Study of Mechanical Characteristics of Stainless Steel Samples Obtained by Direct Laser Deposition
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Study of Mechanical Characteristics of Stainless Steel Samples Obtained by Direct Laser Deposition

机译:直接激光沉积获得的不锈钢样品力学特性研究

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The paper presents the results of mechanical tensile tests and microhardness of samples obtained from stainless steel 316L powder by direct laser deposition. The strength characteristics of the deposited samples are better than those of rolled ones obtained in the traditional way. The material strength is reduced and its plasticity is increased with the growth of the laser radiation power during deposition. The obtained regularities are explained by analysis of the microstructure. It is found that the hardness of the cladding is substantially higher than that of the substrate material with the corresponding composition. This is a consequence of hardening of each layer during deposition of the next layer and formation of nanosized spherical inclusions representing oxides of metals that make up the powder in the sample bulk. The density of these particles affects the overall hardness of the material and depends on the radiation power supplied. Individual properties of the material for various applications can be modified by appropriate selection of technological parameters of the printing process.
机译:本文通过直接激光沉积提出了由不锈钢316L粉末获得的样品的机械拉伸试验和微硬度的结果。沉积的样品的强度特性优于以传统方式获得的轧制物的强度特性。通过在沉积期间激光辐射功率的生长,材料强度降低,其可塑性增加。通过对微观结构的分析来解释所获得的规则性。发现包层的硬度基本上高于与相应组合物的基底材料的硬度。这是在沉积下一个层期间和形成代表构成样品块状的粉末的氧化物的纳米型球形夹杂物的形成结果。这些颗粒的密度影响了材料的整体硬度,并取决于供应的辐射电力。 Individual properties of the material for various applications can be modified by appropriate selection of technological parameters of the printing process.

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