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Structural, Mechanical and Tribological Properties of Spark Plasma Sintered Ti6Al4V Alloy

机译:等离子烧结Ti6Al4V合金的结构,力学和摩擦学性能

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The influence of spark plasma sintering parameters on the structural, mechanical and tribological characteristics of the Ti6Al4V alloy, which is used as implant material in biomedical engineering, was investigated. The experimental data confirm that full density and attractive mechanical properties can be obtained using the spark plasma sintering method. Tribological tests, performed in dry conditions, allowed the authors to indicate the most suitable sintering parameters. The material characterized by the highest wear resistance was selected for further tribological testing in articulation with UHMWPE in simulated body fluids. Although the weight of the polymeric material articulating against the sintered Ti6Al4V was slightly higher compared to the UHMWPE articulating against the reference material (Ti6Al4V rod), the friction coefficient was lower.
机译:研究了火花等离子体烧结参数对在生物医学工程中用作植入材料的Ti6Al4V合金的结构,力学和摩擦学特性的影响。实验数据证实,使用火花等离子体烧结方法可以获得完全的密度和有吸引力的机械性能。在干燥条件下进行的摩擦学测试使作者能够指出最合适的烧结参数。选择了具有最高耐磨性的材料,以便在模拟体液中与UHMWPE进行铰接时进行进一步的摩擦学测试。尽管与接合参考材料(Ti6Al4V棒)的UHMWPE相比,接合烧结的Ti6Al4V的聚合物材料的重量稍高,但摩擦系数较低。

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