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首页> 外文期刊>Dental Materials Journal >Fabrication of porous titanium implants by three-dimensional printing and sintering at different temperatures
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Fabrication of porous titanium implants by three-dimensional printing and sintering at different temperatures

机译:在不同温度下通过三维印刷和烧结制备多孔钛植入物

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This study evaluated the feasibility of using three-dimensional printing (3DP) to fabricate porous titanium implants. Titanium powder was blended with a water-soluble binder material. Green, porous, titanium implants fabricated by 3DP were sintered under protective argon atmosphere at 1,200, 1,300, or 1,400°C. Sintered implant prototypes had uniform shrinkage and no obvious shape distortion after sintering. Evaluation of their mechanical properties revealed that titanium prototypes sintered at different temperatures had elastic modulus of 5.9-34.8 GPa, porosity of 41.06-65.01%, hardness of 115.2-182.8 VHN, and compressive strength of 81.3-218.6 MPa. There were significant differences in each type of these data among the different sintering temperatures (p <0.01). Results of this study confirmed the feasibility of fabricating porous titanium implants by 3DP: pore size and pore interconnectivity were conducive to bone cell ingrowth for implant stabilization, and the mechanical properties matched well with those of the human bone.
机译:这项研究评估了使用三维印刷(3DP)制造多孔钛植入物的可行性。将钛粉与水溶性粘合剂材料混合。在保护性氩气气氛下,在1,200、1,300或1,400°C下烧结3DP制造的绿色多孔钛植入物。烧结后的植入物原型具有均匀的收缩率,烧结后没有明显的形状变形。对其机械性能的评估表明,在不同温度下烧结的钛原型的弹性模量为5.9-34.8 GPa,孔隙率为41.06-65.01%,硬度为115.2-182.8 VHN,抗压强度为81.3-218.6 MPa。这些数据的每种类型在不同的烧结温度之间存在显着差异(p <0.01)。这项研究的结果证实了通过3DP制造多孔钛植入物的可行性:孔径和孔的互连性有利于骨细胞向内生长,从而实现了植入物的稳定性,并且其机械性能与人的骨骼非常匹配。

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