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首页> 外文期刊>Journal of Applied Polymer Science >Effect of hybrid hollow microspheres on thermal insulation performance and mechanical properties of silicone rubber composites
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Effect of hybrid hollow microspheres on thermal insulation performance and mechanical properties of silicone rubber composites

机译:杂交中空微球对硅橡胶复合材料热绝缘性能和力学性能的影响

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摘要

Hollow microspheres (HM) of ceramic, silica, and glass-filled silicone rubber (SR) composites were prepared, and the effects of hybrid HM on thermal and mechanical properties of composites were investigated. The results indicate that hybrid HM can effectively improve the thermal insulation property of HM/ SR composites. Especially, for sample 15S, the thermal conductivity and thermal degradation temperature reached 0.1273 W/ m K and 521 degrees C (45 degrees C higher than that of neat SR), respectively. Besides, thermal insulation performance was improved, showing as a temperature of 103.2 degrees C after 15 min heating, which is 37.8 degrees C lower than that of SR. The tensile strength of composites was enhanced from 1.92 MPa at 11.56 vol % hollow silica microspheres (HSM) loading to 3.08 MPa at 21.88 vol % HSM loading. Moreover, the compressive strength was improved from 3.33 to 5.68 MPa by introducing more hollow ceramic microspheres into the matrix, in this case, from 7.79 to 15.33 vol %. Furthermore, the failure mechanism was analyzed. (C) 2017 Wiley Periodicals, Inc.
机译:制备了陶瓷,二氧化硅和玻璃砂橡胶(SR)复合材料的中空微球(HM),研究了杂交HM对复合材料热和力学性能的影响。结果表明,杂交HM可以有效地改善HM / SR复合材料的绝热性能。特别是对于样品15S,热导率和热降解温度分别达到0.1273W / m k和521℃(比纯SR高45℃)。此外,改善了保温性能,在15分钟后显示为103.2℃的温度,比SR低37.8℃。复合材料的拉伸强度从1.92MPa在11.56体积%中空二氧化硅微球(HSM)加载至31.08MPa的21.88 Vol%HSM负载。此外,通过将更多中空陶瓷微球引入基质中的3.33至5.68MPa,在这种情况下,从3.79升至5.79至15.33体积%,从3.33到5.68MPa改善了抗压强度。此外,分析了失效机制。 (c)2017 Wiley期刊,Inc。

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