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Thin boron nitride nanotubes with exceptionally high strength and toughness

机译:薄的氮化硼纳米管异常高强度和韧性

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Bending manipulation and direct force measurements of ultrathin boron nitride nanotubes (BNNTs) were performed inside a transmission electron microscope. Our results demonstrate an obvious transition in mechanics of BNNTs when the external diameters of nanotubes are in the range of 10 nm or less. During in situ transmission electron microscopy bending tests, characteristic "hollow" ripple-like structures formed in the bent ultrathin BNNTs with diameters of sub-10 nm. This peculiar buckling/ bending mode makes the ultrathin BNNTs hold very high post-buckling loads which significantly exceed their initial buckling forces. Exceptional compressive/bending strength as high as ~1210 MPa was observed. Moreover, the analysis of reversible bending force curves of such ultrathin nanotubes indicates that they may store/adsorb strain energy at a density of ~400 × 10~6 J m~(-3). Such nanotubes are thus very promising for strengthening and toughening of structural ceramics and may find potential applications as effective energy-absorbing materials like armor.
机译:弯曲操作和直接力测量超薄氮化硼纳米管(BNNTs)在透射电子执行显微镜。在BNNTs力学过渡外部直径的纳米管是范围10 nm或更少。电子显微镜弯曲测试,特点“空心”ripple-like结构形成的弯曲的超薄BNNTs直径不足海里。这种奇特的屈曲/弯曲模式使超薄BNNTs持有很高的后屈曲加载大大超过他们最初的屈曲的力量。强度高达观察~ 1210 MPa。此外,可逆的弯曲分析力曲线的超薄纳米管表明他们可能存储/吸附压力能量密度的~ 400×10 ~ 6 J m ~(3)。纳米管是因此非常有前途加强和增韧结构陶瓷和可能发现潜在的应用有效的能量吸收材料如盔甲。

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