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Open pore titanium foams via metal injection molding of metal powder with a space holder

机译:通过金属注射成型用空间持有者的金属注射成型开放孔隙泡沫

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摘要

Powder methods are highly applicable for the processing of more challenging metals and forms. Examples of materials that encompass both of these are metallic foams, which are advanced materials that consist of a network of interconnected or randomly spaced macropores separated by dense or microporous cell walls. These macropores can be either open or closed, or mix of those two, depending on the manufacturing process. One popular metal foam that has received a huge amount of interest in the last decade is Ti foam, due to it offering a unique combination of properties, such as high strength to weight ratio and high permeability combined with excellent biocompatibility. In this study the use of metal injection molding of titanium powder in combination with a space holder (to create large pore spaces) is examined for the production of open pore Ti foams for biomedical applications. Potassium chloride with two different particle shapes (spherical and cubic) was used as a space holder. It was found that feedstocks prepared with spherical KCl particles had a lower viscosity and better flowability compared to those made using cubic particles. Ti foams with a total porosity of 61.25% ± 0.29 were successfully produced. The structure of the foams produced was characterized using SEM and X-ray micro-computed tomography.
机译:粉末方法非常适用于加工更具挑战性的金属和形式。包括这两种材料的材料实例是金属泡沫,它们是高级材料,由相互连接或随机间隔的大孔网络组成,这些孔被致密或微孔的细胞壁隔开。这些大孔可​​以是开放的也可以是封闭的,也可以是这两种的混合,这取决于制造工艺。在过去的十年中,Ti泡沫是一种备受关注的流行金属泡沫,因为它具有独特的性能组合,例如高强度重量比和高渗透性以及出色的生物相容性。在这项研究中,研究了钛粉的金属注射成型与空间保持器(以产生大的孔隙空间)结合使用,以生产用于生物医学应用的开孔Ti泡沫。具有两种不同颗粒形状(球形和立方形)的氯化钾用作空间保持器。发现使用球形KCl颗粒制备的原料与使用立方颗粒制备的原料相比具有更低的粘度和更好的流动性。成功生产出总孔隙率为61.25%±0.29的Ti泡沫。所产生的泡沫的结构使用SEM和X射线显微计算机断层扫描来表征。

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