Selective Laser Sintering Method Using Titanium Powder Sheet Toward Fabrication of Porous Bone Substitutes

T. Hayashi, K. Maekawa, M. Tamura, K. Hanyu
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引用次数: 26

Abstract

The present paper investigates the laser sintering of titanium sheets toward the fabrication of porous artificial bones. The novelty lies in the use of a titanium powder sheet mixed with an organic binder and the application of selective laser sintering to the fabrication of a laminated porous structure. Alternating irradiation of Nd: YAG pulses with short scanning paths results in the suppression of distortion of the sintered part as well as enhanced mechanical properties. Under the appropriate conditions identified in the experiment, a bending strength of 63MPa and a Young’s modulus of 1.5GPa are attained when the load is applied parallel to the lamination direction, whereas load vertical to the lamination direction yields 79MPa and 1.8GPa, respectively. The size of pores varies from 200 to 300µm, and the porosity is approximately 65%. These values, other than Young’s modulus, are almost equivalent to those of human bones.
钛粉片选择性激光烧结制备多孔骨替代物
本文研究了激光烧结钛片制备多孔人工骨的方法。新颖之处在于使用钛粉片与有机粘合剂混合,并应用选择性激光烧结来制造层压多孔结构。短扫描路径Nd: YAG脉冲的交替辐照抑制了烧结件的变形,提高了烧结件的力学性能。在实验确定的适当条件下,平行于层合方向的荷载可获得63MPa的抗弯强度和1.5GPa的杨氏模量,垂直于层合方向的荷载可获得79MPa和1.8GPa的抗弯强度和杨氏模量。孔隙大小为200 ~ 300µm,孔隙率约为65%。这些数值,除了杨氏模量外,几乎与人类骨骼的模量相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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