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Experimental analysis of the effectiveness of current modelling methods for SLS parameter determination

机译:当前建模方法对SLS参数确定有效性的实验分析

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Selective Laser Sintering (SLS) is a powder-bed Additive Manufacturing process that has a large amount of potential for future growth. Historically SLS has been limited to a narrow selection of polymers, although there have been recent advances in working with composite powders, such as Alumide. One of the biggest limitations to developing new materials for sintering is the elevated risk involved in testing to determine their suitability. In recent years, models of powder behaviour have largely focused on thermal characteristics. Models such as the Sintering Window and Energy Melt Ratio demonstrate how methodologies such as Differential Scanning Calorimetry can be used to determine suitability of materials. Testing of two Nylon powders with similar physical and thermal properties reveals limitations in the models when accounting for the colour of material and therefore the absorption of laser energy. Thus, it was identified that existing models require further investigation of laser energy inputs. This paper contributes a framework upon which new models can be tested in order to characterize their effectiveness.
机译:选择性激光烧结(SLS)是粉末床增材制造工艺,具有巨大的未来增长潜力。从历史上看,SLS仅限于聚合物的狭窄选择,尽管在处理复合粉末(如铝化物)方面已有最新进展。开发用于烧结的新材料的最大限制之一是确定其适用性的测试所涉及的风险较高。近年来,粉末行为的模型主要集中在热特性上。诸如“烧结窗口”和“能量熔融比”之类的模型演示了如何使用诸如差示扫描量热法之类的方法来确定材料的适用性。在考虑材料的颜色并因此吸收激光能量时,对两种具有相似物理和热性能的尼龙粉末的测试显示出该模型的局限性。因此,可以确定现有模型需要进一步研究激光能量输入。本文提供了一个框架,可以在此框架上测试新模型以表征其有效性。

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