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EFFECT OF PROCESSING PARAMETERS ON THE DENSITY AND MICROSTRUCTURE OF DIRECT LASER SINTERED Al-12Si POWDERS

机译:加工参数对直激光烧结Al-12Si粉末密度和微观结构的影响

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The effect of processing parameters on the sintering behaviour of gas atomised Al-12Si powders has been investigated. Laser power, scanning rate, scan spacing and layer thickness are found to control the densification and the resultant microstructural characteristics of the laser sintered parts. It was found that sintered density increased as the energy density increased reaching a maximum of 80.2% at an energy input per unit volume of 67 J mm~(-3). For parts produced with a slightly lower power density (50 J mm~(-3)), the microstructure consisted of fine dendrites with interconnected porosity while parts fabricated with a slightly higher power density (100 J mm~(-3)) were noted to have a preponderance of coarse dendrites with a discontinuous network of irregular shaped pores surrounded by a fully dense aluminium-silicon matrix.
机译:研究了处理参数对气体雾化Al-12Si粉末烧结行为的影响。发现激光功率,扫描速率,扫描间距和层厚度控制激光烧结部件的致密化和所得的微观结构特性。发现烧结密度随着能量密度的增加而增加,在每单位体积为67Jm〜(-3)的能量输入时达到最大80.2%。对于用稍低的功率密度产生的部件(50 J mm〜(-3)),微观结构由具有相互连接的孔隙率的细小枝晶组成,而用稍高的功率密度制造的部件(100jmm〜(-3))为了具有粗枝曲曲的优势,具有由完全致密的铝 - 硅基矩阵包围的不连续形状的孔隙网络。

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