首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >DESCRIPTION OF TEST SETUP AND APPROACH TO MEASURE THERMAL PROPERTIES OF NATURAL AND SYNTHETIC SPIDER SILKS AT CRYOGENIC TEMPERATURES
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DESCRIPTION OF TEST SETUP AND APPROACH TO MEASURE THERMAL PROPERTIES OF NATURAL AND SYNTHETIC SPIDER SILKS AT CRYOGENIC TEMPERATURES

机译:测试设置和方法测量高温温度下天然合成蜘蛛丝网热特性的方法

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Spider silk is well-known for its exceptional mechanical properties, such as strength, elasticity and flexibility. Recently, it has been reported that dragline silk from a Nephila clavipes also has an exceptionally high thermal conductivity, comparable to copper when the fiber is stretched. Synthetic spider silks have been spun from spider silk proteins produced in transgenic sources, and their production process has the optimization potential to have properties similar to or better than the natural spider silk. There is interest to measure the thermal properties of natural and synthetic silk at cryogenic temperatures for use of spider silk fibers as heat conduits in systems where component weight is an issue, such as in spacecraft. This low temperature measurement is also of particular interest because of the conformational changes in protein structures, which affect material properties, that occurs at lower temperatures for some proteins. A measurement system has been designed and is being tested to characterize the thermal properties of natural and synthetic spider silks by means of a transient electrothermal method.
机译:蜘蛛丝以其特殊的机械性能而闻名,如强度,弹性和柔韧性。最近,据报道,来自Nephila Clavipes的拖拉线丝也具有出色的热导电性,当纤维拉伸时与铜相当。合成蜘蛛丝网从转基因来源中产生的蜘蛛丝蛋白旋转,它们的生产过程具有与天然蜘蛛丝相似或更好的性质的优化潜力。有兴趣测量在低温温度下测量天然和合成丝的热特性,以使用蜘蛛丝纤维作为组件重量是一个问题的热导管,例如在航天器中。这种低温测量也特别感兴趣,因为蛋白质结构的构象变化,影响材料特性,其在一些蛋白质的较低温度下发生。设计了一种测量系统,并正在测试并通过瞬态电热方法表征天然和合成蜘蛛丝网的热性质。

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