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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Fabrication of porous NiTi shape memory alloy structures using laser engineered net shaping.
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Fabrication of porous NiTi shape memory alloy structures using laser engineered net shaping.

机译:采用激光工程网整形制备多孔氮效形状记忆合金结构。

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摘要

Porous NiTi alloy samples were fabricated with 12-36% porosity from equiatomic NiTi alloy powder using laser engineered net shaping (LENS). The effects of processing parameters on density and properties of laser-processed NiTi alloy samples were investigated. It was found that the density increased rapidly with increasing the specific energy input up to 50 J/mm(3). Further increase in the energy input had small effect on density. High cooling rates associated with LENS processing resulted in higher amount of cubic B2 phase, and increased the reverse transformation temperatures of porous NiTi samples due to thermally induced stresses and defects. Transformation temperatures were found to be independent of pore volume, though higher pore volume in the samples decreased the maximum recoverable strain from 6% to 4%. Porous NiTi alloy samples with 12-36% porosity exhibited low Young's modulus between 2 and 18 GPa as well as high compressive strength and recoverable strain. Because of high open pore volume between 36% and 62% of total volume fraction porosity, these porous NiTi alloy samples can potentially accelerate the healing process and improve biological fixation when implanted in vivo. Thus porous NiTi is a promising biomaterial for hard tissue replacements.
机译:采用激光工程净塑造(镜片),用12-36%的曲折的镍合金粉末制造多孔NITI合金样品。研究了加工参数对激光加工的NITI合金样品密度和性能的影响。发现密度随着高达50 J / mm(3)的特定能量输入而迅速增加。能量输入的进一步增加对密度效果很小。与透镜处理相关的高冷却速率导致较高量的立方B2相,并且由于热引起的应力和缺陷增加了多孔NITI样品的反向变换温度。发现转化温度与孔体积无关,尽管样品中的更高孔体积降低了6%至4%的最大可回收菌株。具有12-36%孔隙率的多孔NITI合金样品在2至18GPa之间表现出低杨氏模量,以及高压压强度和可回收的菌株。由于高开孔体积的36%至62%的总体积分数孔隙率之间,这些多孔NITI合金样品可能会加速愈合过程,并在植入体内时改善生物固定。因此,多孔NITI是硬组织替代的有希望的生物材料。

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