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3D printed Mg-NiTi interpenetrating-phase composites with high strength, damping capacity, and energy absorption efficiency

机译:3D印刷MG-NITI互穿相相复合材料,具有高强度,阻尼能力和能量吸收效率

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It is of significance, but still remains a key challenge, to simultaneously enhance the strength and damping capacities in metals, as these two properties are often mutually exclusive. Here, we provide a multidesign strategy for defeating such a conflict by developing a Mg-NiTi composite with a bicontinuous interpenetrating-phase architecture through infiltration of magnesium melt into three-dimensionally printed Nitinol scaffold. The composite exhibits a unique combination of mechanical properties with improved strengths at ambient to elevated temperatures, remarkable damage tolerance, good damping capacities at differing amplitudes, and exceptional energy absorption efficiency, which is unprecedented for magnesium materials. The shape and strength after deformation can even be largely recovered by heat treatment. This study offers a new perspective for the structural and biomedical applications of magnesium.
机译:它具有重要意义,但仍然仍然是一个关键挑战,同时增强金属的强度和阻尼能力,因为这两个性质通常是相互排斥的。在这里,我们通过在三维印刷的镍钛合金支架中通过渗透到三维印刷的硝基戊烯醇支架,通过在三维印刷的镍钛烯醇支架中通过渗透到三维印刷的镍钛合浆支架,提供一种多层策略来击败这种冲突。该复合材料表现出具有改进的强度的机械性能的独特组合,以升高的温度,显着的损坏容差,不同幅度的良好阻尼能力,以及镁材料前所未有的能量吸收效率。变形后的形状和强度甚至可以通过热处理来大量回收。本研究为镁的结构和生物医学应用提供了一种新的视角。

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