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首页> 外文期刊>Journal of Applied Polymer Science >Preparation, characterization, and mechanical properties of some microcellular polysulfone foams
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Preparation, characterization, and mechanical properties of some microcellular polysulfone foams

机译:某些微孔聚砜泡沫的制备,表征和力学性能

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摘要

Several polymers were evaluated as candidates for the production of high-performance microcellular closed-cell foams. The polymers involved were a polysulfone, a polyethersulfone, a polyphenylsulfone, a polyetherimide, and a poly(ether ketone ketone), and their suitability was gauged by measuring rates at which they could be impregnated with carbon dioxide under pressure at room temperature. This step is essential to the subsequent step of heating the impregnated samples at various temperatures to create foamed structures. The present study focused primarily on the use of the polysulfone in this regard. Microcellular foams of this polymer were found to have average cell sizes in the range 1-10 Am and cell densities on the order of 10(10)-10(14) cells/cm(3). The microstructures of these foamed samples were controlled through careful choices of the foaming temperature and the foaming Speed to produce a wide range of foam densities, Since these materials were prepared for possible use as structural materials, tensile tests were conducted to investigate the dependence of some of their mechanical properties, on the foam densities (relative to those of the unfoamed polymer). The result,, indicated that the tensile moduli of these polysulfone foams increased with the square of their relative densites, and the tensile strengths were proportional to these densities. Both of these experimental findings are in agreement with theory. (C) 2002 Wiley Periodicals, Inc. [References: 24]
机译:评估了几种聚合物作为生产高性能微孔闭孔泡沫的候选材料。涉及的聚合物是聚砜,聚醚砜,聚苯砜,聚醚酰亚胺和聚醚酮酮,其适用性是通过测量在室温下在压力下可以用二氧化碳浸渍的速率来衡量的。该步骤对于在各种温度下加热浸渍样品以产生泡沫结构的后续步骤至关重要。本研究主要集中在这方面使用聚砜。发现该聚合物的微孔泡沫的平均泡孔大小在1-10 Am范围内,泡孔密度为10(10)-10(14)个泡孔/ cm(3)。通过仔细选择发泡温度和发泡速度来控制这些发泡样品的微观结构,以产生广泛的泡沫密度。由于这些材料被准备用作结构材料,因此进行了拉伸试验以研究某些材料的依赖性。机械性能对泡沫密度的影响(相对于未发泡聚合物的泡沫密度)。结果表明,这些聚砜泡沫的拉伸模量与它们的相对密度的平方成正比,并且拉伸强度与这些密度成正比。这些实验结果均与理论相符。 (C)2002 Wiley Periodicals,Inc. [参考:24]

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