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Effect of internal structure and local defects on fiber strength

机译:内部结构和局部缺陷对纤维强度的影响

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AbstractTensile measurements on fibers from nylon 66 and polyethylene terephthalate have shown that the fiber tenacities at relatively high temperatures (about 250 to −100°C.) are controlled by the internal molecular structure of the fiber and not by any local defect. While it is true that fibers always break at some local defect, the actual strength was determined by a yielding of the molecular structure which occurred before fiber breakage. In contrast, the tenacity at low temperatures (generally −100 to −196°C.) was controlled by local defects which propagated under stress, causing fiber failure before the internal molecular structure exhibited any yield. The temperature at which the mechanism changed was dependent on the severity of local defects and on the internal molecular structure as well. The low‐temperature tenacity was found to be independent of the actual temperature of measurement, and this constant level of tenacity, at low temperatures, was shown to be a measure of the severity of the most critical local defect in the fib
机译:摘要对尼龙66和聚对苯二甲酸乙二醇酯纤维的拉伸测量表明,纤维在相对较高的温度(约250至−100°C)下的韧性是由纤维的内部分子结构控制的,而不是由任何局部缺陷控制的。虽然纤维总是在某些局部缺陷处断裂,但实际强度是由纤维断裂前发生的分子结构的屈服决定的。相比之下,低温(通常为-100至-196°C)下的韧性由在应力下传播的局部缺陷控制,导致纤维在内部分子结构表现出任何屈服之前失效。机理变化的温度取决于局部缺陷的严重程度以及内部分子结构。发现低温韧性与实际测量温度无关,并且在低温下这种恒定的韧性水平被证明是衡量 fib 中最关键的局部缺陷严重程度的指标

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