这个过程还可以让纳米管分子自动地沿着棉纤维的轴向排列,这种排列方式可以让电路更加畅通。
The process also encouraged the nanotubes to arrange themselves along the axis of the cotton fibres, which increased electrical connectivity.
在此处理过程中,分子键能沿纤维轴向定向排列。
When this process occurs, molecular chains can Orient in the fiber direction.
采用分子动力学方法,模拟了(10,10)碳、氮化硼纳米管及纳米豆荚的轴向拉伸与压缩。
By using molecular dynamics(MD) method, the axial tension and compression of the (10,10) carbon, BN nanotubes and nanopeapods were simulated.
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