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Fabrication of Open-Pored Titanium Foam for Biomedical Implants

机译:用于生物医学植入物的开放式钛泡沫的制作

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Open-pored metal foams have been partly used for orthopedic or dental applications because of their good bone ingrowth behavior and low elastic modulus. In this paper, we report a method that can produce open-pored Ti foams using a technique that combines the powder injection molding process and feedstocks containing expandable polystyrene beads as a space holder. The expandable beads in the feedstocks undergo swelling during the foaming process, which causes the spaces occupied by the expandable beads to directly contact each other and become interconnected. This behavior results in the formation of open-pored Ti foams with high porosity (equivalently, low Young's modulus) and large faces (greater than 140 urn). Compared to metallic foams prepared by conventional methods, Ti foams produced in this study have significantly larger face sizes (140-170 urn) and lower Young's modulus (~17 GPa). These characteristics of the developed foam materials can promote fast bone growth into open-pored porous structures and permit improved fixture installation stability. This paper discusses the mechanism for the formation of the open-pored porous structure, and analyzes the effect of various processing conditions on the face size, porosity, and Young's modulus of Ti foams.
机译:由于其良好的骨头发热行为和低弹性模量,开放式金属泡沫部分已被部分用于整形外科或牙科应用。在本文中,我们报告了一种方法,该方法可以使用将粉末注射成型工艺和含有可膨胀聚苯乙烯珠子的原料结合为空间支架的技术产生开孔Ti泡沫。原料中的可膨胀珠粒在发泡过程中经历膨胀,这导致可膨胀珠子占据的空间直接接触彼此并变得相互连接。这种行为导致形成具有高孔隙率(等效,低杨氏模量)和大面(大于140瓮)的开孔TI泡沫。与通过常规方法制备的金属泡沫相比,本研究中生产的Ti泡沫具有显着更大的面部尺寸(140-170瓮)和较低的杨氏模量(〜17 gpa)。发达的泡沫材料的这些特性可以促进快速骨骼生长到开孔多孔结构中,并允许改善的夹具安装稳定性。本文讨论了形成开孔多孔结构的机制,并分析了各种加工条件对Ti泡沫的脸部大小,孔隙度和杨氏模量的影响。

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