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Influence of Silicon on the Properties of Aluminum Alloy Powders of the Silumin Type and the Mechanical Properties of Products Made from These Powders by Selective Laser Melting

机译:通过选择性激光熔化对硅粉粉铝合金粉末铝合金粉末性能的影响及其由这些粉末制成的产品的力学性能

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摘要

Technologies for the 3D printing of metallic powders are being increasingly extensively used around the world as alternatives to casting and machining to manufacture components of complex shapes and prototypes. Silicon-alloyed aluminum alloys are the most widely used materials in the selective laser melting technologies, which is caused by the price of these alloys and their high manufacturability for the layer-by-layer fused deposition, owing to their low susceptibility to hot cracking under thermal and shrinkage stresses. High rates of cooling the melt facilitate the formation in the material of ultradispersed silicon-containing phases, which results in increased strength. In the article, exemplified by two cast alloys (AK7ch and AK9ch), the speeds of the process of building up the products by the selective laser melting technology have been determined at a laser-beam power of 300 and 325 W and an energy density within the range 89-32 J/mm(3). It is shown that, for the AK9ch alloy, lower porosity values are achieved within the investigated energy density range when compared with the AK7ch alloy and better mechanical properties of the alloy with a higher silicon content are achieved within the range of lower laser-beam energy densities than for the alloy with a lower silicon content. The mechanical properties of the materials produced under the optimal selective laser melting conditions comply with the most stringent requirements for the mechanical characteristics of the castings of the AK7ch alloy upon heat treatment.
机译:金属粉末的3D印刷技术越来越多地广泛地广泛地用于铸造和加工以制造复杂形状和原型的组件的替代方案。硅合金铝合金是选择性激光熔化技术中最广泛使用的材料,这是由这些合金的价格引起的,由于它们对热裂纹的低敏感性,因此逐层融合沉积的高度可制造性引起的热和收缩应力。冷却速率高熔体促进了含硅相材料的形成,这导致强度增加。在该制品中,通过两个铸造合金(Ak7ch和Ak9ch),通过选择性激光熔化技术构建产品的过程的速度已经以300和325W的激光束功率确定和内部能量密度确定范围89-32 j / mm(3)。结果表明,对于AK9CH合金,与Ak7ch合金相比,在调查的能量密度范围内实现下孔隙率值,并且在较低激光束能量的范围内实现了具有较高硅含量的合金的更好的机械性能比硅含量较低的合金的密度。在最佳选择性激光熔化条件下生产的材料的机械性能符合最严格的施工机械特性,在热处理时Ak7ch合金铸件的机械特性。

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