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Does Thermal Annealing Affect the Mechanical Properties of Silkworm (Bombyx mori) Cocoon Silk?

机译:热退火是否会影响蚕(Bombyx Mori)茧丝的机械性能?

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It has been reported [1] that microwave radiation can enhance many of the mechanical properties of Bombyx mori silkworm cocoon silk, as measured in constant strain rate tensile tests to failure and in stress relaxation tests. The consequences of microwave radiation will affect decisions about the use of silk in settings subjected to significant microwave exposure - for example, as a reinforcing fiber in an epoxy matrix composite that may be microwave cured, or as a component in aircraft radomes. There are two possible mechanisms by which microwave radiation may affect a material [2]: (i) the radiation may enable chemical and/or microstructural changes - and therefore property changes - in the same way that conventional heating would, or (ii) the high heating rates that are achievable by microwaving may selectively favor changes that would be masked under conventional conditions, where heating rates are low enough to give preference to changes that have a lower activation energy. Here we explore the former possibility for silk. We characterized several mechanical properties of degummed and subsequently annealed B. mori silk, and compared them to the corresponding properties of degummed B mori silk that was not annealed. The annealing treatment was carried out at 140°C for 7 hours (conditions that optimally increased crystal size in an unrelated study of B. mori silk [3]), and then the fibers were allowed to cool gradually to room temperature over the course of an hour. Comparison of mechanical properties revealed no differences between the materials that we tested. Thus, for annealed silk, we do not observe the enhancements that can be achieved by microwaving. We conclude that in cases where microwaving affects the properties of silk, those changes are not a simple consequence of annealing by the microwaves.
机译:已经报道了[1]微波辐射可以增强Bombyx Mori蚕茧丝的许多机械性能,如恒定应变速率拉伸试验到失效和应力松弛测试的测量。微波辐射的后果将影响关于在经过显着微波暴露的环境中使用丝的决定 - 例如,作为环氧基质复合材料中的加强纤维,其可以是微波固化的,或作为飞机放射线中的组分。微波辐射可能影响材料的两种可能的机制[2]:(i)辐射可以实现化学和/或微结构的变化 - 因此属性变化 - 以相同的方式 - 传统加热将或(ii)通过微波来实现的高加热速率可以选择性地有利于在常规条件下掩盖的变化,其中加热速率足够低,以优选具有较低激活能量的变化。在这里,我们探索丝绸的前可能性。我们表征了脱胶和随后退火的B. Mori丝的几种机械性能,并将它们与未退火的脱胶B Mori丝的相应性质进行了比较。退火处理在140℃下进行7小时(在B. Mori丝[3]的无关研究中最佳地增加晶体尺寸的条件[3]),然后将纤维逐渐冷却至室温一小时。机械性能的比较揭示了我们测试的材料之间的差异。因此,对于退火的丝绸,我们不观察到通过微波来实现的增强功能。我们得出结论,在微波影响丝绸的性能的情况下,这些变化不是通过微波退火的简单后果。

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