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首页> 外文期刊>Key Engineering Materials >Electrophoretic deposition as a novel near net shaping technique for functionally graded biomaterials
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Electrophoretic deposition as a novel near net shaping technique for functionally graded biomaterials

机译:电泳沉积作为功能梯度生物材料的一种新型近净成形技术

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摘要

Due to their excellent properties of high strength, biocompatibility and stability in physiological environments, ceramics are investigated as bone substitute materials. In this way ceramic components have been used for total hip replacement components since the early 1970s. Alumina and zirconia monoliths are mainly used for these components. However, zirconia can undergo low temperature degradation in aqueous environment and alumina is brittle. To increase the strength, functionally graded Al_2O_3/ZrO_2 ball-heads and acetabular cup inserts were made in this work by electrophoretic deposition (EPD). A composition gradient in alumina and zirconia was engineered to obtain a pure alumina surface region and a homogeneous alumina/zirconia core with intermediate continuously graded regions to generate thermal residual stresses at the surface after sintering. Experimental work revealed that a sequence of counter-electrodes was necessary to EPD complex shaped functionally graded material (FGM) components. To obtain deposits with a shape different from the deposition electrode, the deposit was grown up to the counter-electrode and the design of the counter-electrodes was supported by electrical field calculations to generate a constant electric field at the surface of the deposition electrode
机译:由于它们在生理环境中具有高强度,生物相容性和稳定性的优异性能,因此研究了陶瓷作为骨替代材料。这样,自1970年代初以来,陶瓷组件已被用于全髋关节置换组件。氧化铝和氧化锆整料主要用于这些组分。然而,氧化锆在水性环境中会经历低温降解,并且氧化铝是脆性的。为了提高强度,在这项工作中通过电泳沉积(EPD)制成了功能分级的Al_2O_3 / ZrO_2球头和髋臼杯嵌件。工程设计了氧化铝和氧化锆中的成分梯度,以获得纯氧化铝表面区域和均匀的氧化铝/氧化锆核,中间连续分级区域,从而在烧结后在表面产生热残余应力。实验工作表明,对于EPD复杂形状的功能梯度材料(FGM)组件,必须使用一系列反电极。为了获得形状与沉积电极不同的沉积物,将沉积物生长到对电极,并通过电场计算来支持对电极的设计,从而在沉积电极的表面产生恒定的电场

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