El-Hajje Aouni, Kolos Elizabeth C, Wang Jun Kit, Maleksaeedi Saeed, He Zeming, Wiria Florencia Edith, Choong Cleo, Ruys Andrew J
Biomedical Engineering, School of AMME, J07, University of Sydney, Sydney, NSW, 2006, Australia.
J Mater Sci Mater Med. 2014 Nov;25(11):2471-80. doi: 10.1007/s10856-014-5277-2. Epub 2014 Jul 23.
The elastic modulus of metallic orthopaedic implants is typically 6-12 times greater than cortical bone, causing stress shielding: over time, bone atrophies through decreased mechanical strain, which can lead to fracture at the implantation site. Introducing pores into an implant will lower the modulus significantly. Three dimensional printing (3DP) is capable of producing parts with dual porosity features: micropores by process (residual pores from binder burnout) and macropores by design via a computer aided design model. Titanium was chosen due to its excellent biocompatibility, superior corrosion resistance, durability, osteointegration capability, relatively low elastic modulus, and high strength to weight ratio. The mechanical and physical properties of 3DP titanium were studied and compared to the properties of bone. The mechanical and physical properties were tailored by varying the binder (polyvinyl alcohol) content and the sintering temperature of the titanium samples. The fabricated titanium samples had a porosity of 32.2-53.4% and a compressive modulus of 0.86-2.48 GPa, within the range of cancellous bone modulus. Other physical and mechanical properties were investigated including fracture strength, density, fracture toughness, hardness and surface roughness. The correlation between the porous 3DP titanium-bulk modulus ratio and porosity was also quantified.
金属骨科植入物的弹性模量通常比皮质骨大6至12倍,会导致应力屏蔽:随着时间的推移,骨骼会因机械应变降低而萎缩,这可能导致植入部位骨折。在植入物中引入孔隙会显著降低模量。三维打印(3DP)能够生产具有双重孔隙特征的部件:通过工艺产生的微孔(粘结剂烧尽后的残留孔隙)和通过计算机辅助设计模型设计的大孔。选择钛是因为其具有出色的生物相容性、卓越的耐腐蚀性、耐久性、骨整合能力、相对较低的弹性模量以及高强度重量比。研究了3DP钛的力学和物理性能,并与骨的性能进行了比较。通过改变粘结剂(聚乙烯醇)含量和钛样品的烧结温度来调整力学和物理性能。制造的钛样品孔隙率为32.2 - 53.4%,压缩模量为0.86 - 2.48 GPa,在松质骨模量范围内。还研究了其他物理和力学性能,包括断裂强度、密度、断裂韧性、硬度和表面粗糙度。还对多孔3DP钛与整体模量比和孔隙率之间的相关性进行了量化。