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首页> 外文期刊>Cearmics >POTENTIAL OF GLASS, BASALT OR CARBON FIBRES FOR REINFORCEMENT OF PARTIALLY PYROLYSED COMPOSITES WITH IMPROVED TEMPERATURE AND FIRE RESISTANCE
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POTENTIAL OF GLASS, BASALT OR CARBON FIBRES FOR REINFORCEMENT OF PARTIALLY PYROLYSED COMPOSITES WITH IMPROVED TEMPERATURE AND FIRE RESISTANCE

机译:玻璃,玄武岩或碳纤维的潜力,可增强温度和耐火性的部分热解复合材料

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The study considers the mechanical properties and temperature resistance of partially pyrolysed composites reinforced with various fibres. The composites were prepared by pyrolysis at 650 °C, where only partial conversion of the polymer to the inorganic SiOC structure takes place in the matrix. Such a hybrid matrix bears resemblance to polymeric materials in a density and Young's modulus, but oxidation resistance and creep behaviour are closer to silicate glasses. Pyrolysis also ensures that the whole composite material is non-flammable with very low potential for releasing toxic gases during a fire. Three types of glass fibres (E-glass, R-glass, E-CR-glass fibres), two types of basalt fibres, and two types of high-strength (HS) carbon fibres were used as reinforcements. The mechanical properties – Young's and shear moduli, flexural strength, and fracture toughness – were measured at room temperature. Thermogravimetric measurements and creep tests of these composites allowed estimation of their temperature resistance and fire resistance. The results obtained suggest that the materials under investigation can be applied as panels or shells in the building industry and in transportation facilities.
机译:研究考虑了用各种纤维增强的部分热解复合材料的力学性能和耐热性。通过在650°C下热解制备复合材料,其中在基体中仅部分发生聚合物向无机SiOC结构的转化。这样的杂化基质在密度和杨氏模量上类似于聚合物材料,但是抗氧化性和蠕变行为更接近于硅酸盐玻璃。热解还可以确保整个复合材料不可燃,并且在火灾中释放出有毒气体的可能性非常低。三种类型的玻璃纤维(E玻璃,R玻璃,E-CR玻璃纤维),两种类型的玄武岩纤维和两种类型的高强度(HS)碳纤维被用作增强材料。力学性能-杨氏模量和剪切模量,弯曲强度和断裂韧性-在室温下测量。这些复合材料的热重测量和蠕变测试可以估算其耐热性和耐火性。获得的结果表明,所研究的材料可以在建筑行业和运输设施中用作面板或外壳。

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