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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Modification of epoxy resin by polysulfone to improve the interfacial and mechanical properties in glass fibre composites.III.Properties of the cured blends and their structures in the polymer/fibre interphase
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Modification of epoxy resin by polysulfone to improve the interfacial and mechanical properties in glass fibre composites.III.Properties of the cured blends and their structures in the polymer/fibre interphase

机译:聚砜对环氧树脂的改性,以改善玻璃纤维复合材料的界面和机械性能。III。聚合物/纤维中间相中固化共混物的性能及其结构

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摘要

Thermal and mechanical properties (linear expansion coefficient,glass transition temperatures,Young's modulus,tensile and bending strengths,and failure energies under quasistatic and impact loadings) of cured epoxy-polysulfone (PSF) blends,as well as their structures have been studied.It was shown that PSF incorporation did not lead to appreciable changes in the linear thermal expansion coefficients and glass transition temperatures of the cured blends.According to this observation,incorporation of PSF into the epoxy matrix should not result in a significant increase in the internal stresses in the system.No drop in the modulus and strength of the bulk blends was observed when compared with unmodified epoxy matrix.The failure energy of the epoxy-PSF matrices increased as the PSF content increased under all loading conditions,whereas the strength of the polymer blend matrices increased only under impact loading.Optimal PSF content was found to be 10 wt%.It was shown that all the blends investigated were homogeneous before curing and became heterogeneous after curing.For epoxy-PSF/fibre joints a mixed (interfacial-cohesive) failure mode was observed for all the samples investigated.The results from the rheology,wetting,thermal,mechanical and structural tests,described in a set of paper's,are compared with each other to explain the reasons for the adhesion strength behaviour of epoxy-PSF/glass fibre joints.Based on the finding here,an epoxy-10% PSF matrix is recommended for composite production.
机译:研究了固化的环氧-聚砜(PSF)混合物的热力学性能(线性膨胀系数,玻璃化转变温度,杨氏模量,拉伸强度和弯曲强度以及在准静态和冲击载荷下的破坏能)及其结构。结果表明,掺入PSF不会导致固化共混物的线性热膨胀系数和玻璃化转变温度发生明显变化。根据这一观察结果,将PSF掺入环氧基质中不会导致内部应力显着增加。与未改性的环氧基质相比,未发现本体共混物的模量和强度下降。在所有负载条件下,随着PSF含量的增加,环氧-PSF基质的破坏能量增加基质仅在冲击载荷下才增加。最佳PSF含量为10 wt%。显示所有共混物被研究的样品在固化前是均匀的,在固化后变得不均匀的。对于环氧-PSF /纤维接头,所有被研究的样品均观察到混合(界面粘结)破坏模式。流变,润湿,热,机械和结构测试的结果相互比较,以解释环氧-PSF /玻璃纤维接头粘合强度行为的原因。基于此处的发现,建议将环氧-10%PSF基质用于复合材料生产。

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