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Design of Shape Memory Thermoplastic Material Systems for FDM-Type Additive Manufacturing

机译:FDM型添加剂制造形状记忆热塑性材料系统设计

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摘要

The work presented here describes a paradigm for the design of materials for additive manufacturing platforms based on taking advantage of unique physical properties imparted upon the material by the fabrication process. We sought to further investigate past work with binary shape memory polymer blends, which indicated that phase texturization caused by the fused filament fabrication (FFF) process enhanced shape memory properties. In this work, two multi-constituent shape memory polymer systems were developed where the miscibility parameter was the guide in material selection. A comparison with injection molded specimens was also carried out to further investigate the ability of the FFF process to enable enhanced shape memory characteristics as compared to other manufacturing methods. It was found that blend combinations with more closely matching miscibility parameters were more apt at yielding reliable shape memory polymer systems. However, when miscibility parameters differed, a pathway towards the creation of shape memory polymer systems capable of maintaining more than one temporary shape at a time was potentially realized. Additional aspects related to impact modifying of rigid thermoplastics as well as thermomechanical processing on induced crystallinity are also explored. Overall, this work serves as another example in the advancement of additive manufacturing via materials development.
机译:本文提出的工作描述了基于通过制造工艺利用赋予材料上的独特物理性质的添加剂制造平台的材料的范例。我们试图进一步调查与二进制形状记忆聚合物共混物的过去的工作,这表明由熔融灯丝制造(FFF)工艺增强的形状存储器性能引起的相位纹理化。在这项工作中,开发了两个多组成形状记忆聚合物系统,其中误解参数是材料选择的指导。还进行了与注塑样品的比较,以进一步研究FFF工艺的能力,与其他制造方法相比能够提高形状记忆特性。结果发现,在产生可靠的形状记忆聚合物系统时,具有更紧密匹配的混溶性参数的混合组合更容易。然而,当混溶性参数不同时,潜在地实现了一种朝向能够保持多于一种临时形状的形状记忆聚合物系统的途径。还探讨了与刚性热塑性塑料的冲击改性相关的其他方面以及对诱导结晶度的热机械加工。总体而言,这项工作是通过材料开发推进添加剂制造的另一个例子。

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