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Laminate behavior for SiC fiber-reinforced reaction-bonded silicon nitride matrix composites

机译:SiC纤维增强的反应粘结氮化硅基复合材料的层压性能

摘要

The room temperature mechanical properties of SiC fiber reinforced reaction-bonded silicon nitride matrix composite laminates (SiC/RBSN) have been measured. The laminates contained approx 30 volume fraction of aligned 142-micron diameter SiC fiber in a porous RBSN matrix. Three types of laminate studied were unidirectional: (1) (0) sub 8, (2) (10) sub 8, and (3) (45) sub 8, and (90) sub 8; cross plied laminates (0 sub 2/90 sub 2); and angle plied laminates: (+45 sub 2/-45 sub 2). Each laminate contained eight fiber plies. Results of the unidirectionally reinforced composites tested at various angles to the reinforcement direction indicate large anisotropy in in-plane properties. In addition, strength properties of these composites along the fiber direction were independent of specimen gage length and were unaffected by notches normal to the fiber direction. Splitting parallel to the fiber at the notch tip appears to be the dominant crack blunting mechanism responsible for notch insensitive behavior of these composites. In-plane properties of the composites can be improved by 2-D laminate construction. Mechanical property results for (0 sub 2/90 sub 2)sub s and (+45/-45 sub 2) sub s laminates showed that their matrix failure strains were similar to that for (0) sub 8 laminates, but their primary elastic moduli, matrix cracking strengths, and ultimate composite strengths were lower. The elastic properties of unidirectional, cross-ply, and angle-ply composites can be predicted from modified constitutive equations and laminate theory. Further improvements in laminate properties may be achieved by reducing the matrix porosity and by optimizing the bond strength between the SiC fiber and RBSN matrix.
机译:测量了SiC纤维增强的反应结合氮化硅基复合材料层压板(SiC / RBSN)的室温力学性能。层压板在多孔RBSN基质中包含约30体积分数的对齐的142微米直径SiC纤维。三种类型的层压板是单向的:(1)(0)子8,(2)(10)子8,(3)(45)子8,和(90)子8;交叉叠层板(0 sub 2/90 sub 2);和角夹层板:(+45子2 / -45子2)。每个层压板包含八个纤维层。在与增强方向不同角度下测试的单向增强复合材料的结果表明,面内性能具有较大的各向异性。此外,这些复合材料沿纤维方向的强度特性与试样长度无关,并且不受垂直于纤维方向的缺口的影响。平行于缺口尖端处的纤维分裂似乎是造成这些复合材料缺口不敏感行为的主要裂纹钝化机制。复合材料的面内特性可以通过二维层压板结构来改善。 (0 sub 2/90 sub 2)sub s和(+ 45 / -45 sub 2)sub s层压板的机械性能结果表明,它们的基体破坏应变与(0)sub 8层压板相似,但它们的主要弹性是模量,基体开裂强度和最终复合强度较低。单向,交叉和角向复合材料的弹性性能可以通过修正的本构方程和层合理论来预测。通过降低基体孔隙率和优化SiC纤维与RBSN基体之间的结合强度,可以进一步提高层压材料的性能。

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    Phillips R. E.; Rhatt R. T.;

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  • 年度 1988
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