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Fabrication and Characterization of Filament Wound Elastomeric Matrix Composite Materials

机译:长丝卷绕弹性体基复合材料的制造与表征

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Elastomeric matrix composite materials have unique mechanical characteristics which make them attactive candidates for advanced flywheels and other design problems where extremely high resistance to matrix cracking with respect to strain is needed. A method of rapidly manufacturing filament wound rings and tubes of glass and carbon fiber reinforced polyurethane composite is described in this paper. The filament winding method involves the on-line impregnation of dry fiber tows with liquid matrix which is mixed with a solvent to achieve proper viscosity. The solvent is removed by heat flashing and the wt tows are deposited on a heated, rotating mandrel. The radial rate of deposition and temperature of the mandrel are chosen to gel the matrix on the fly and prevent fiber wrinkling for large radial thicknesses of material. Both hoop and helical windings of structures are included in this paper. Physical characteristics of the materials such as fiber and void contents are determined, along with thermo-mechanical properties such as stiffnesses, strengths, ultimate strains, and coefficients of thermal expansion. Predictions of helical-wound tube properties are made based on measurements of unidirectional properties. It is demonstrated that high quality rings and tubes can be efficiently manufactured by methods described in the paper.
机译:弹性体基质复合材料具有独特的机械特性,使其成为先进的飞轮和其他设计问题的辅助候选者,其中需要极高的基质裂缝相对于应变的抗性。本文描述了一种快速制造长丝缠绕环和玻璃和碳纤维增强聚氨酯复合材料的方法。长丝绕组方法涉及用液体基质对干纤维丝束的在线浸渍,所述液体基质与溶剂混合以获得适当的粘度。通过热闪光除去溶剂,并且WT丝将沉积在加热的旋转心轴上。选择凹部的径向和温度的径向速率,以凝胶在飞行上并防止纤维皱纹用于大的径向厚度的材料。本文包括两个结构的箍和螺旋绕组。确定纤维和空隙含量的材料的物理特性,以及热机械性能,例如刚度,强度,极限菌株和热膨胀系数。基于单向性质的测量来进行螺旋缠绕管性能的预测。结果证明,可以通过本文描述的方法有效地制造高质量的环和管。

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