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首页> 外文期刊>Polymers & Polymer Composites >Experimental Study on the Mechanical Properties of Basalt Fibres and Pultruded BFRP Plates at Elevated Temperatures
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Experimental Study on the Mechanical Properties of Basalt Fibres and Pultruded BFRP Plates at Elevated Temperatures

机译:高温下玄武岩纤维和拉挤BFRP板力学性能的实验研究

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Basalt fibre reinforced polymer (BFRP) composites have been widely used for structural strengthening and reinforcement in civil engineering recently. Since fire risk is unavoidable for most civil structures, the degradation of BFRP at elevated temperatures needs to be known for the safe design of its strengthened or reinforced structures under fire risk. In this study, the mechanical properties of basalt fibre roving and pultruded basalt fibre reinforced epoxy plates were investigated at elevated temperatures. As the temperatures increasing from room temperature to 200 degrees C, the tensile strength and modulus of the fibre roving were reduced by 8.3% and 9.7%, respectively. Meanwhile, the Weibull shape parameter (m) of the fibre roving decreased by 20.5%. As regards the BFRP plates, however, the elevated temperatures show more adverse influence. The tensile strength and modulus of the BFRP plates is reduced by 37.5% and 31% as temperature rising to 200 degrees C. Compared to the tensile properties, the short beam shear strength (SBS) was reduced by around 90%, more susceptible to the elevated temperatures. The glass transition temperature (similar to 93 degrees C) plays a key role on the inflexion of the variation of the mechanical properties, especially for the tensile strength. In a wide temperature range, the relationship between the tensile strength and the SBS showed a good linearity, indicating the reduction of the tensile strength comes from the deterioration of the interlaminar shear strength at elevated temperatures.
机译:玄武岩纤维增强聚合物(BFRP)复合材料最近已广泛用于土木工程中的结构增强和增强。由于大多数民用建筑都不可避免地存在着火危险,因此,为了安全设计其在火灾下的加固或加强结构,需要知道高温下BFRP的降解。在这项研究中,研究了高温下玄武岩纤维粗纱和拉挤玄武岩纤维增强环氧板的力学性能。随着温度从室温升高到200摄氏度,纤维粗纱的拉伸强度和模量分别降低了8.3%和9.7%。同时,纤维粗纱的威布尔形状参数(m)降低了20.5%。然而,对于BFRP板,升高的温度显示出更多的不利影响。随着温度升高至200摄氏度,BFRP板的抗拉强度和模量分别降低了37.5%和31%。与抗拉性能相比,短梁抗剪强度(SBS)降低了约90%,更容易受到高温。玻璃化转变温度(约93摄氏度)在提高机械性能变化(尤其是拉伸强度)方面起着关键作用。在较宽的温度范围内,抗张强度与SBS之间的关系表现出良好的线性,表明抗张强度的降低是由于高温下层间剪切强度的降低所致。

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