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首页> 外文期刊>Journal of Materials Science >Strength of thermally exposed alumina fibers - Part II - bundle behavior
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Strength of thermally exposed alumina fibers - Part II - bundle behavior

机译:热暴露氧化铝纤维的强度-第II部分-束的行为

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Non-ideal bundle models that predict the effect of filament slack, misalignment and bonding were compared to the predicted ideal bundle stress-strain response and the measured response of an Alumina tow (Nextel(TM) 610) as a function of exposure temperature. The ideal bundle model assumes that the filaments are perfectly aligned, independent, and filament strength is characterized by single filament tests; the non-ideal bundle models relax these assumptions. The Nextel(TM) 610 tow was found to behave ideally until the sintering bonds between filaments were strong enough to resist fracture during testing. When bonded filament clusters existed throughout testing, the weakest filament in the cluster likely caused failure of the entire cluster. Therefore, the assumption of independence was not valid, and the measured bundle strength was lower than the ideal bundle prediction. The assumption that the strength distribution of the bonded filaments was the same as the filaments removed from bonded filament clusters also appears to be invalid. It is hypothesized that the effective decrease in strength of bonded filaments is a result of induced shear stresses that form along the bond line when bonded filaments are either bent or twisted. However, within a composite this motion is limited. The modeling indicated that 10% clustering can be tolerated with little degradation in composite properties as long as the clusters remain independent from their neighbors. (C) 2003 Kluwer Academic Publishers. [References: 17]
机译:将预测细丝松弛,未对准和粘结的影响的非理想束模型与预测的理想束应力-应变响应和作为暴露温度的函数的氧化铝丝束(Nextel TM 610)的测量响应进行比较。理想的捆束模型假定细丝完全对齐,独立且细丝强度通过单根细丝测试来表征。非理想捆绑模型放松了这些假设。发现Nextel TM 610丝束表现出理想的性能,直到细丝之间的烧结结合强度足以抵抗测试过程中的断裂为止。如果在整个测试过程中都存在粘结的灯丝簇,则簇中最弱的灯丝可能会导致整个簇失效。因此,独立性的假设无效,并且测得的束强度低于理想束预测。粘合长丝的强度分布与从粘合长丝簇中去除的长丝相同的假设似乎也无效。假设粘合长丝强度的有效降低是当粘合长丝弯曲或扭曲时沿粘合线形成的感应剪切应力的结果。但是,在复合运动中,此运动受到限制。该模型表明,只要簇保持独立于其邻居,就可以忍受10%的簇,而复合材料的性能几乎不会降低。 (C)2003 Kluwer学术出版社。 [参考:17]

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