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Experimental analysis of selective laser sintering of polyamide powders: an energy perspective

机译:聚酰胺粉末选择性激光烧结的实验分析:能量视角

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This paper presents an analysis of Selective Laser Sintering (SLS) from an energy standpoint. Selective Laser Sintering (SLS) has a potential as an environmental benign alternative to traditional processes but only few authors deal with the process optimisation including energy aspects. In the present paper an analysis of the energetic aspect of SLS is proposed. In addition, with respect to the classical technological parameters (resolution, productivity) attention is paid to energetic elements (energetic productivity, laser parameters) showing how the perspective of a sensible development of such a kind of technology could be beneficial not only from a technological point of view, but also for energy saving in a lot of manufacturing fields. A polyamide powder is the material tested to acquire some characteristics data of the process. It is shown that the Volumetric Energy Intensity (VEI) of the process in optimal condition could be of the order of 0.2 J for each mm~3 of material agglomerated.
机译:本文从能源角度对选择性激光烧结(SLS)进行了分析。选择性激光烧结(SLS)作为传统工艺在环境上的良性替代品具有潜力,但是只有极少数的作者处理工艺优化,包括能源方面。在本文中,提出了对SLS的能量方面的分析。此外,关于经典的技术参数(分辨率,生产率),人们关注的是能量元素(能量生产率,激光参数),这些元素表明,这种技术的合理发展前景如何不仅可以从技术上受益。观点来看,还用于许多制造领域的节能。聚酰胺粉末是经过测试以获取过程某些特性数据的材料。结果表明,在最佳条件下,该过程的体积能强度(VEI)大约为每mm〜3附聚材料约0.2J。

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