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Further Progress in Functional Interlayers with Controlled Mechanical Properties Designed for Glass Fiber/Polyester Composites

机译:设计用于玻璃纤维/聚酯复合材料的具有受控机械性能的功能性中间层的进一步进展

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Compatible interlayers must be coated on reinforcing fibers to ensure effective stress transfer from the polymer matrix to the fiber in high-performance polymer composites. The mechanical properties of the interlayer, and its interfacial adhesion on both interfaces with the fiber and polymer matrix are among the key parameters that control the performance of polymer composite through the interphase region. Plasma-synthesized interlayers, in the form of variable materials from polymer-like to glass-like films with a Young’s modulus of 10–52 GPa, were deposited on unsized glass fibers used as reinforcements in glass fiber/polyester composites. Modulus Mapping (dynamic nanoindentation testing) was successfully used to examine the mechanical properties across the interphase region on cross-sections of the model composite in order to distinguish the fiber, the interlayer, and the modified and bulk polymer matrix. The interfacial shear strength for plasma-coated fibers in glass fiber/polyester composites, determined from the microindentation test, was up to 36% higher than those of commercially sized fibers. The effects of fiber pretreatment, single and double interlayers, and post-treatment of the interlayer on interfacial shear strength were also discussed. Functional interlayers with high shear yield strength and controlled physicochemical properties are promising for high-performance polymer composites with a controlled interphase.
机译:兼容的中间层必须涂覆在增强纤维上,以确保在高性能聚合物复合材料中有效的应力从聚合物基体传递到纤维。中间层的机械性能及其在与纤维和聚合物基体的两个界面上的界面粘附力都是控制聚合物复合材料通过相间区域性能的关键参数。等离子体合成的中间层,以各种材料的形式存在,从类似聚合物的薄膜到类似杨氏模量为10-52 GPa的玻璃状薄膜,均沉积在未尺寸的玻璃纤维上,用作玻璃纤维/聚酯复合材料的增强材料。模量映射(动态纳米压痕测试)已成功用于检查模型复合材料横截面上的相间区域的机械性能,以区分纤维,中间层以及改性和本体聚合物基体。由微压痕测试确定的玻璃纤维/聚酯复合材料中等离子涂层纤维的界面剪切强度比商业上浆的纤维高36%。还讨论了纤维预处理,单层和双层中间层以及中间层的后处理对界面剪切强度的影响。具有高剪切屈服强度和受控理化性质的功能性中间层有望用于具有受控中间相的高性能聚合物复合材料。

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