论文标题

直接观察钻石中的室温脱位可塑性

Direct Observation of Room-Temperature Dislocation Plasticity in Diamond

论文作者

Nie, Anmin, Bu, Yeqiang, Huang, Junquan, Shao, Yecheng, Zhang, Yizhi, Hu, Wentao, Liu, Jiabin, Wang, Yanbin, Xu, Bo, Liu, Zhongyuan, Wang, Hongtao, Yang, Wei, Tian, Yongjun

论文摘要

众所周知,钻石不会在室温下塑性变形,通常在灾难性的脆性断裂中失败。在这里,我们通过透射电子显微镜中的原位机械测试在亚微米大小的钻石柱中展示了室温脱位。我们用前所未有的细节记录了无限制压缩引入的位错的时空特征,包括脱位产生和传播。通过层状重构进行的原子分解观察明确表明,在非粘液包装的{001}平面在单轴压缩下,在<111>和<111>方向上的单轴压缩下,在非连接的{001}平面中激活了与1/2 <110>的汉堡矢量的混合型脱位。指示方向依赖性脱位可塑性。这些结果为钻石的机械行为提供了新的见解,并刺激了钻石中基本变形机制以及在低温下其他脆性共价晶体中的重新考虑。

It is well known that diamond does not deform plastically at room temperature and usually fails in catastrophic brittle fracture. Here we demonstrate room-temperature dislocation plasticity in sub-micrometer sized diamond pillars by in-situ mechanical testing in the transmission electron microscope. We document in unprecedented details of spatio-temporal features of the dislocations introduced by the confinement-free compression, including dislocation generation and propagation. Atom-resolved observations with tomographic reconstructions show unequivocally that mixed-type dislocations with Burgers vectors of 1/2<110> are activated in the non-close-packed {001} planes of diamond under uniaxial compression of <111> and <110> directions, respectively, while being activated in the {111} planes under the <100> directional loading, indicating orientation-dependent dislocation plasticity. These results provide new insights into the mechanical behavior of diamond and stimulate reconsideration of the basic deformation mechanism in diamond as well as in other brittle covalent crystals at low temperatures.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源