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Design and Fabrication of Partially Foamed Grid Structure Using Additive Manufacturing and Solid State Foaming

机译:使用添加剂制造和固态发泡的部分发泡网格结构的设计和制造

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摘要

A partially foamed lattice structure based on synthetic polymers was considered as a functionally graded materials due to their unique properties. In this study, a copolymer is manufactured to be porous functional materials by physical foaming technology, using carbon dioxide. Through morphological characterization, using scanning electron microscope, we identified a potential to fabricate partially foamed structures with micropores. We showed that variation of post-foaming temperature can tune the pore size distribution in the range of 0.9 to 30 μm. Thermal data of the foam grid from differential scanning calorimeter showed some shifts in glass transition, cold crystallization, and melting points. Mechanical strength and thermal conductivity were also measured to find rationale of thermal insulation with tunable mechanical strength and to elucidate the actual 3D lattice foam of a copolymer.
机译:基于合成聚合物的部分发泡晶格结构被认为是由于它们独特的性质而被认为是功能梯度的材料。在该研究中,使用二氧化碳,通过物理发泡技术制造共聚物以成为多孔官能材料。通过使用扫描电子显微镜的形态学表征,我们确定了用微孔制造部分发泡结构的潜力。我们表明,发泡后温度的变化可以调节孔径分布在0.9至30μm的范围内。来自差示扫描量热计的泡沫网格的热数据显示出玻璃化转变,冷结晶和熔点的一些变化。还测量了机械强度和导热性,以找到具有可调谐机械强度的绝热性的理由,并阐明共聚物的实际3D格子泡沫。

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