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Optimization of investment casting of Ti6Al4V HIP prostheses by numerical and experimental methods

机译:数值和实验方法优化Ti6Al4V髋关节假体的投资铸造

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Hip prosthesis presents a cylindrical shape with high length to diameter ratio. This medical device has to withstand many years of cyclical loading equal to at least 3 to 5 times the body weight. This intensive use requires that the product must have very good performance [1]. Ti6Al4V is a biocompatible alloy that is widely applied for manufacturing hard-tissue replacement systems such as total hip prostheses. Investment casting as a near net shape forming method is a costless and good way to produce this type of orthopaedic implants. Nonetheless, this casting process is not a straight forward task and it will easily cause centre line shrinkage. Also, Ti6Al4V is a highly reactive alloy in molten state, which will react with the ceramic shells used in investment casting. Casting defects like shrinkage and residual stress may lead to the premature fatigue failure of the prosthesis as this device is subjected to approximately one million of cyclic loads per year. Thus, during the investment casting of Ti6Al4V it is crucial to develop methodologies for eliminate or minimize the surface oxidization and central line shrinkage [2]. The face coat material has a significant effect on the surface property of this kind alloy. Moreover, the wrap technique influences the solidification sequence of the alloy. In this study, an optimization method for the investment casting of hip prostheses was explored. Different face coat materials of shell were also investigated throughout this work. Furthermore, the solidification sequence of this long cylinder shaped part was studied. Herein, experimental and numerical methods were applied. The experimental results matched well with the outcomes of the simulation runs, which validates and corroborates the proposed optimization methodology.
机译:髋关节假体呈现出具有高长度的圆柱形状。该医疗装置必须承受多年的循环载荷等于体重至少3〜5倍。这种密集使用要求产品必须具有很好的性能[1]。 Ti6Al4V是一种生物相容性合金,广泛应用于制造诸如总髋关节假体的硬组织替代系统。作为近净形状成形方法的投资铸造是生产这种类型的整形外科植入物的成本和良好的方法。尽管如此,这种铸造过程不是一项直线任务,它将容易地引起中心线收缩。而且,Ti6Al4V是熔融状态的高反应性合金,其将与用于投资铸造的陶瓷壳反应。铸造缺陷等收缩和残余应力可能导致假体的过早疲劳失效,因为该装置每年进行约一百万百万的循环载荷。因此,在Ti6Al4V的投资铸造期间,开发消除或最小化表面氧化和中央线收缩的方法至关重要[2]。面罩材料对该种类合金的表面性质具有显着影响。此外,包装技术影响合金的凝固序列。在这项研究中,探讨了髋关节假体投资铸造的优化方法。在整个工作过程中也调查了不同的面罩材料。此外,研究了该长圆柱形部分的凝固序列。在此,施加实验和数值方法。实验结果与模拟运行的结果相匹配,其验证和证实了所提出的优化方法。

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