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首页> 外文期刊>Journal of Materials Processing Technology >An experimental study into the effects of bulk and flow behaviour of laser sintering polymer powders on resulting part properties
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An experimental study into the effects of bulk and flow behaviour of laser sintering polymer powders on resulting part properties

机译:激光烧结聚合物粉末的体积和流动行为对所得零件性能影响的实验研究

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The properties of parts manufactured by laser sintering (LS) are, amongst others, influenced by the packing and flow efficiencies of the powders being processed. In particular, this study investigated the influence of the bulk and flow characteristics of two thermoplastic elastomers, present in three different particle size distributions (PSD), on the resulting part properties. The powder characteristics examined, were the packing and bulk density as well as the flow efficiency of the powder samples. The resulting part properties were evaluated in terms of their mechanical properties (tensile), surface quality and density. The results helped to validate the basic input from previous studies interconnecting the powder behaviour with the properties of sintered part's. The majority of the components with increased tensile properties were manufactured with powder fractions that showed enhanced bulk density and enriched flowability. The part's surface quality demonstrated a high dependence on the packing and the surface roughness of the raw powder bulk. A strong connection between the packing density of the powder bulk and the porosity of the sintered parts has been revealed for the observed polymers. In contrast to previous studies which have rarely taken into account the characteristics of the un-sintered powder and correlated them to the properties of components fabricated by LS, this work provided a novel approach describing the interconnection between the powder behaviour and the part properties.
机译:通过激光烧结(LS)制造的零件的特性尤其受到所加工粉末的堆积和流动效率的影响。特别是,这项研究调查了两种热塑性弹性体的体积和流动特性(以三种不同的粒度分布(PSD)表示)对所得零件性能的影响。检查的粉末特性是粉末样品的堆积和堆积密度以及流动效率。根据零件的机械性能(拉伸),表面质量和密度对其进行评估。结果有助于验证以前的研究的基本信息,这些研究将粉末的行为与烧结零件的性能联系起来。具有提高的拉伸性能的大多数组件都是用粉末级分制造的,这些粉末级分显示出增强的堆积密度和丰富的流动性。零件的表面质量显示出对填料和原料粉末块的表面粗糙度的高度依赖性。对于观察到的聚合物,已经显示出粉末块的堆积密度与烧结部件的孔隙率之间的牢固联系。与以前的研究很少考虑未烧结粉末的特性并将其与LS制造的部件的特性相关联的研究相比,这项工作提供了描述粉末行为与零件特性之间相互联系的新颖方法。

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