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首页> 外文期刊>Journal of Applied Polymer Science >Polyurethane-infiltrated carbon foams: A coupling of thermal and mechanical properties
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Polyurethane-infiltrated carbon foams: A coupling of thermal and mechanical properties

机译:聚氨酯渗透碳泡沫:热性能和机械性能的结合

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摘要

The thermal and mechanical properties of polyurethane-infiltrated carbon foam of various densities were investigated. By combining the high thermal conductivity of the carbon foam with the mechanical toughness of the pure polyurethane, a mechanically tough composite (relative to the unfilled foam) that could be used at higher temperatures than the polyurethane's degradation was formed. Both the tensile strength and the modulus increased by an order of magnitude for the composites compared to unfilled foam, while the compressive and shear strengths and moduli of the composites approached values exhibited by pure polyurethane. At both 300 and 400degreesC, the rectangular blocks of pure polyurethane lost their mechanical integrity due to decomposition in air. Thermogravimetric analysis confirms substantial initial weight loss above 290degreesC. Filled carbon foam blocks, however, maintain their mechanical integrity at both 300 and 400degreesC indefinitely, although the bulk of the rectangular block mass is polyurethane. Three different carbon foam densities are examined. As expected, the higher density foams show greater heat transfer. (C) 2003 Wiley Periodicals, Inc. J Appl Polym Sci 87:2348-2355,2003. [References: 17]
机译:研究了不同密度的聚氨酯渗透碳泡沫的热力学性能。通过将碳泡沫的高导热性与纯聚氨酯的机械韧性相结合,形成了可以在比聚氨酯降解更高的温度下使用的机械韧性复合材料(相对于未填充泡沫)。与未填充的泡沫相比,复合材料的拉伸强度和模量都增加了一个数量级,而复合材料的压缩强度和剪切强度以及模量接近纯聚氨酯所显示的值。在300和400摄氏度下,纯聚氨酯矩形嵌段由于在空气中分解而失去了机械完整性。热重分析证实高于290摄氏度时会有明显的初始失重。然而,尽管矩形块的大部分是聚氨酯,但填充的碳泡沫块仍可在300和400℃无限期保持其机械完整性。检查了三种不同的碳泡沫密度。如所期望的,较高密度的泡沫显示出更大的热传递。 (C)2003 Wiley Periodicals,Inc. J Appl Polym Sci 87:2348-2355,2003。 [参考:17]

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