nano-scale pore structure 纳米级孔隙结构
Results indicate that the micro - and nano-scale porous structure together with the grafted hydrophobic alkyl long chains endows the aluminum alloy surface with the superhydrophobic property.
结果表明:所制得的超疏水表面是由微-纳“多孔”结构和疏水烃基长链所共同赋予的。
The porous nano-structure is used as a bonding layer, and thermocompression bonding can be realized at lower temperature and pressure due to the nano-scale effect.
利用该多孔纳米结构作为键合层,由于纳米尺度效应,可以在较低的温度和压力下实现热压键合。
By comparison, the main trends of magnetic microwave absorbents were forward to nano-scale, composite structure and fibrous morphology.
通过对比发现,磁性吸波材料研究的主要趋势为尺度纳米化、结构复合化以及形貌纤维化。
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