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首页> 外文期刊>Journal of Applied Polymer Science >PVDF/PMMA/Basalt Fiber Composites: Morphology, Melting and Crystallization, Structure, Mechanical Properties, and Heat Resistance
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PVDF/PMMA/Basalt Fiber Composites: Morphology, Melting and Crystallization, Structure, Mechanical Properties, and Heat Resistance

机译:PVDF / PMMA /玄武岩纤维复合材料:形态,熔融和结晶,结构,机械性能和耐热性

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This paper is to study the effect of basalt fiber on morphology, melting and crystallization, structure, mechanical properties, melting and crystallization of PVDF/PMMA composites using scanning electron microscopy (SEM), X-ray, differential scanning calorimeter (DSC), dynamical mechanical analysis (DMA), etc. Basalt fiber may disperse well in PVDF/PMMA matrix and form compact fiber network, and this makes tensile and flexural strength of fiber reinforced PVDF/PMMA composites get to the maximum value of 62 and 102 MPa, respectively. However, the mechanical properties begin to decrease when basalt fiber content exceeds 20 wt %. The α and β phase of PVDF can coexist in composites, and basalt fiber and PMMA can induce β phase of PVDF. The melting temperature of PVDF in composites is kept unchanged, but the degree of crystallinity of composites increases as basalt fiber content increase, and then declines when fiber content exceeds 20%. The DSC results confirm that the nucleation ability of PVDF is enhanced by basalt fiber. Also, the heat resistance of PVDF/PMMA composite is improved from 133 to 146.1℃ due to basalt fiber. The DMA shows that basalt fiber increases the storage modulus of PVDF/PMMA composite, and the loss peak of PMMA increases from 116.1 to 130℃.
机译:本文采用扫描电子显微镜(SEM),X射线,差示扫描量热仪(DSC),动力学研究玄武岩纤维对PVDF / PMMA复合材料的形貌,熔融和结晶,结构,力学性能,熔融和结晶的影响。玄武岩纤维可以很好地分散在PVDF / PMMA基体中并形成致密的纤维网络,这使得纤维增强的PVDF / PMMA复合材料的拉伸强度和弯曲强度分别达到62 MPa和102 MPa的最大值。 。然而,当玄武岩纤维含量超过20wt%时,机械性能开始下降。 PVDF的α和β相可以共存,玄武岩纤维和PMMA可以诱导PVDF的β相。复合材料中PVDF的熔融温度保持不变,但是复合材料的结晶度随玄武岩纤维含量的增加而增加,而当纤维含量超过20%时,其结晶度下降。 DSC结果证实玄武岩纤维增强了PVDF的成核能力。另外,由于玄武岩纤维,PVDF / PMMA复合材料的耐热性从133℃提高到146.1℃。 DMA显示玄武岩纤维增加了PVDF / PMMA复合材料的储能模量,PMMA的损失峰从116.1增加到130℃。

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