multimillion-fiber matrix 百万级纤维组合
fiber-matrix 纤维与基体
ceramic fiber matrix 陶瓷纤维
hollow fiber matrix membrane 中空纤维基质膜
failure at the fiber-matrix interface 纤维
matrix fiber 基质纤维
Fiber-Glass-Reinforced Plastic Matrix Pipes 玻璃纤维增强塑料夹砂管
fiber reinforced cement matrix composite 纤维增强水泥复合材料
It is shown that the fiber can considerably resist the matrix creep along the axial direction, but not so for transversely and shear deformation.
研究表明,纤维在轴向对基体的蠕变起到明显阻止作用,而在横向和剪切变形下的作用较小。
It becomes clear, then, that adhesion of the fiber and the matrix at the composite interface is fundamental to the failure of the composite.
这样,显然,复合材料界面上的纤维与基体的粘接是复合材料失效的基础。
The constitutive model had excellent fits to experimental data to yield matrix and fiber parameters that increased with time in culture.
定制的模型具有和实验数据极好的相适性,导致支架和纤维参数随培养时间而增加。
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