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Quantification of dislocations in hemp fibers using acid hydrolysis and fiber segment length distributions

机译:使用酸水解和纤维段长度分布定量分析麻纤维中的位错

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Natural fibers such as flax or hemp may be used in composite materials. However, their use for this purpose is hampered by the large natural variation in tensile strength and other quality parameters. The first step in managing these variations is to develop methods for fast and reliable determination of relevant parameters. One quality parameter of the fibers is the amount of structural distortions known as dislocations or kink bands. Here, a method developed for the quantification of dislocations in pulp fibers was adapted and tested successfully for hemp yarn segments. The method is based on acid hydrolysis and subsequent determination of the fiber segment length distribution. The premise of the method is that acid hydrolysis causes fibers to break in the dislocations rather than in other places. By use of polarized light microscopy and image analysis it was found that the premise was correct, and furthermore results showed that fibers broke more often in large dislocations than in small ones. However, it was also found that the hemp fiber segments did not break in all dislocations, and strict standardization of the procedure for acid hydrolysis is therefore necessary if results from different batches of fibers are to be compared.
机译:天然纤维(例如亚麻或大麻)可用于复合材料。但是,由于抗拉强度和其他质量参数的较大自然变化,阻碍了它们用于此目的。管理这些变化的第一步是开发用于快速可靠确定相关参数的方法。纤维的一种质量参数是被称为位错或扭结带的结构变形的量。在这里,开发了一种用于量化纸浆纤维中位错的方法,并成功地对大麻纱段进行了测试。该方法基于酸水解和随后确定的纤维段长度分布。该方法的前提是酸水解导致纤维在位错中而不是在其他位置断裂。通过偏光显微镜和图像分析,发现前提是正确的,而且结果表明,大位错中的纤维断裂比小位错中的断裂频率高。但是,还发现大麻纤维段并没有在所有位错中断裂,因此如果要比较不同批次的纤维的结果,则必须严格标准化酸水解程序。

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