首页> 外文期刊>Cellular Polymers: An International Journal >The Effect of Cell Size on the Physical Properties of Crosslinked Closed Cell Polyethylene Foams Produced by a High Pressure Nitrogen Solution Process
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The Effect of Cell Size on the Physical Properties of Crosslinked Closed Cell Polyethylene Foams Produced by a High Pressure Nitrogen Solution Process

机译:泡孔尺寸对高压氮溶液法制备的交联闭孔聚乙烯泡沫物理性能的影响

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摘要

The thermal conductivity, thermal expansion, mechanical properties at low strain rates and dynamic mechanical properties of a collection of crosslinked closed cell polyethylene foams manufactured by a high pressure nitrogen solution process have been studied as a function of the cell size. The main mechanisms that influence each property and the foam microstructure have been considered to rationalise the results. A theoretical model has been used to examine the thermal conductivity values. The results have shown the extent to which reducing the cell size could improve the insulating capabilities of these materials. The effect of cell size on the mechanical properties at low strain rates is very small, as a consequence the thermal expansion does not depend on cell size. Nevertheless, the structural characteristics are seen to influence dynamic mechanical response at temperatures below 15 deg C.
机译:已经研究了通过高压氮溶液法制造的交联闭孔聚乙烯泡沫集合体的热导率,热膨胀,低应变速率下的机械性能和动态机械性能随孔尺寸的变化。已经考虑了影响每种性能和泡沫微结构的主要机理,以使结果合理化。理论模型已用于检查热导率值。结果表明减小单元尺寸可以改善这些材料的绝缘能力的程度。在低应变速率下,孔尺寸对机械性能的影响非常小,因此热膨胀不取决于孔尺寸。尽管如此,在低于15摄氏度的温度下,结构特性仍会影响动态机械​​响应。

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