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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 >The use of a modified microindentation technique to evaluate enviro-mechanical changes in composite interphase properties
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The use of a modified microindentation technique to evaluate enviro-mechanical changes in composite interphase properties

机译:使用改进的微压痕技术评估复合材料相间特性的环境机械变化

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Fiber sizing can improve the performance of fiber-reinforced polymer composites. The focus of this work was to determine if the improvement in performance could be ascertained from a micromechanical test for interfacial adhesion on as-processed materials under hygrothermal exposure. Three types of sizings were examined: a carboxyl modified poly(hydroxyether), that is identified as low spread phenoxy (LSP), a poly(vinylpyrrolidone) (PVP) sample and a standard industrial sizing (G'). A nanoindenter was effectively used to obtain interfacial shear strength (IFSS) using a modified micro-indentation technique. The results showed that LSP outperforms the PVP and G' materials in bulk composite properties, but showed equivalent interfacial shear strength to G' and experienced hygrothermal degradation in interfacial adhesion that the PVP did not. The LSP composite loses 10% of its original interfacial shear strength after 576 h, while for PVP composite it improves by 25%. The tensile strengths for LSP and PVP composites decrease by 7% and 10%, respectively, at 576 h of hygrothermal exposure. The relationship between tensile strength and interfacial adhesion proved to be weak, but processing defects and other failure processes showed a strong influence of interfacial adhesion on tensile strength of compsites.
机译:纤维上浆可以改善纤维增强的聚合物复合材料的性能。这项工作的重点是确定是否可以通过在湿热条件下对加工后的材料进行界面粘合的微机械试验来确定性能的提高。检查了三种类型的上浆剂:一种羧基改性的聚(羟基醚),它被确定为低扩散苯氧基(LSP),一种聚乙烯基吡咯烷酮(PVP)样品和一个标准的工业上浆剂(G')。使用改进的微压痕技术,纳米压头有效地用于获得界面剪切强度(IFSS)。结果表明,在整体复合材料性能方面,LSP的性能优于PVP和G',但与G'的界面剪切强度相当,并且在湿润性方面的降解是PVP没有的。 576小时后,LSP复合材料失去了其初始界面剪切强度的10%,而PVP复合材料则提高了25%。湿热暴露576 h,LSP和PVP复合材料的拉伸强度分别降低了7%和10%。拉伸强度和界面附着力之间的关系被证明是微弱的,但是加工缺陷和其他破坏过程显示了界面附着力对复合材料的拉伸强度的强烈影响。

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