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Longitudinal variation in the stress–strain properties of wool fibers

机译:羊毛纤维应力-应变特性的纵向变化

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AbstractIn order to obtain information on possible end‐to‐end differences in the physical properties of wool caused by weathering of the more exposed portions, a comparison has been made of the stress–strain characteristics of the tip and root halves of fibers taken from the midback region of sheep reared outdoors over a 6‐month summer to winter period. The results were further compared with the tip and root halves of fibers taken from animals reared indoors under conditions of essentially continuous darkness. When 11 features of the stress–strain curves were compared, it was found that for the outdoor wools the tip halves had lower initial moduli, higher yield strains, and lower yield moduli than the root halves. In contrast, the dark grown wools showed no end‐to‐end differences. The greater ease of extension of the tip halves of outdoor wools may be attributed to light‐induced diminution in the levels of crosslinking within the keratin structure. The results show that normal environmental influences caused end‐to‐end differences and that longitudinal variations in physical properties may be a typical characteristic of all field grown wools at the
机译:摘要为了获得暴露部分风化引起的羊毛物理性能可能产生的端到端差异的信息,对户外饲养的绵羊中背部区域纤维的尖端和根部半部的应力-应变特性进行了比较,该特征取自户外饲养的绵羊的中背部区域,距冬季6个月。结果与在基本上连续黑暗的条件下从室内饲养的动物身上提取的纤维的尖端和根部进行了进一步比较。当比较应力-应变曲线的11个特征时,发现对于户外羊毛,尖端半部的初始模量较低,产量应变较高,产量模数低于根部半部。相比之下,深色羊毛没有显示出端到端的差异。户外羊毛的尖端半部分更容易延伸,这可能归因于光诱导的角蛋白结构内交联水平的降低。结果表明,正常的环境影响导致了端到端的差异,物理性能的纵向变化可能是所有田间种植羊毛的典型特征。

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