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Self-healing method for fractured SiC single crystal nanowires

机译:裂缝SiC单晶纳米线的自愈方法

摘要

A self-healing method for fractured single crystal SiC nanowires. A hair in a Chinese brush pen of yellow weasel's hair moves and transfers nanowires, which are placed on an in-situ TEM mechanical microtest apparatus. An in-situ nanomechanical tension test is realized. The nanowires are loaded. Displacement is 0-200 nm. Fracture strength of the single crystal nanowires is 12-15 GPa. After the nanowires are fractured, unloading causes slight contact between the fractured end surfaces, electron beam is shut off, and self-healing of the nanowires is conducted in a vacuum chamber. Partial recrystallization is found at a fracture after self-healing through in-situ TEM representation. A fracture strength test is conducted again after self-healing. A fractured position after healing is the same as the position before healing. The fracture strength of the single crystal nanowires after self-healing is 1-2.5 GPa. The recovery ratio of the fracture strength is 10-20%.
机译:裂缝单晶SiC纳米线的自愈合方法。黄色黄鼠狼的毛发的毛笔中的头发和转移纳米线,纳米线放置在原位TEM机械微型设备上。实现了原位纳米机械张力测试。纳米线装满。位移是0-200nm。单晶纳米线的断裂强度为12-15GPa。在纳米线被破裂之后,卸载导致裂缝端面之间的轻微接触,关闭电子束,纳米线的自愈合在真空室中进行。通过原位TEM表示在自我愈合后的裂缝中发现部分重结晶。自我愈合后再次进行断裂强度试验。愈合后的裂缝位置与愈合前的位置相同。自愈合后单晶纳米线的断裂强度为1-2.5GPa。断裂强度的回收率为10-20%。

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