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首页> 外文期刊>Macromolecular materials and engineering >Semi‐Crystalline Polymer Blends for Material Extrusion Additive Manufacturing Printability: A Case Study with Poly(ethylene terephthalate) and Polypropylene
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Semi‐Crystalline Polymer Blends for Material Extrusion Additive Manufacturing Printability: A Case Study with Poly(ethylene terephthalate) and Polypropylene

机译:半结晶聚合物混合材料挤压加法制造印刷适性:一个与聚(对苯二甲酸乙二醇酯乙烯)和案例研究聚丙烯

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摘要

Abstract Semi‐crystalline polymers are an important class of materials for engineering applications due to their high modulus and barrier properties. Traditional manufacturing methods process semi‐crystalline polymers via rigid molds and well‐controlled temperature and pressure environments to handle the significant change in specific volume occurring during crystallization; however, material extrusion additive manufacturing does not use these features. This often leads to warpage‐induced build failure in fused filament fabrication (FFF). To enable FFF of semi‐crystalline polymers, this work investigates characteristics of immiscible polymer blends (e.g., disparate crystallization behavior and phase separation) to mitigate warping failure during printing. A series of poly(ethylene terephthalate)/polypropylene/polypropylene–graft–maleic anhydride blends are explored and the effect of thermal and morphological characteristics on printability is analyzed. It is shown that these blends can be extruded into filament and printed into a 3D structure. Extrapolations indicate that phase‐separated blends with increased total crystallization half‐time are beneficial for FFF printing.
机译:<标题聚合物是一种重要的一类材料由于其高的工程应用模量和屏障属性。制造方法过程半结晶聚合物通过刚性模具和控制温度和压力环境处理具体体积的显著变化发生在结晶;材料挤压加法制造不使用这些特性。在熔丝翘曲量导致构建失败制造(FFF)。半高结晶聚合物在这项工作调查非混相聚合物混合的特征(例如,不同的结晶行为和相分离)以减轻变形故障在印刷。

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