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Taguchi design for optimization of structural and mechanical properties of hydroxyapatite-alumina-titanium nanocomposite

机译:羟基磷灰石 - 氧化铝 - 钛纳米复合材料结构和力学性能优化Taguchi设计

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摘要

The Taguchi methodology was utilized to determine the influence of three factors, namely nanostructured alumina (A) and micro-structured titanium (B) weight percents and sintering temperature (C) on the phase stability, mechanical and structural properties of hydroxyapatite (HA) composites. HA nanosized powder was synthesized via wet precipitation method. According to L9 orthogonal array, different combinations of powder mixtures were cold isostatically pressed and pressure-less sintered in a reducing atmosphere. XRD analysis confirmed the presence of HA phase and metallic Ti after sintering. Analyze of Variance (ANOVA) method was used to specify the percentage contributions of three factors. Addition of 5-10 wt% titanium contributed to increasing the decomposition of HA and the amount of open porosity by 43.07% and 55.40%, respectively and caused a decrease in the strength by 44.67%. Alumina nanoparticles consistently inhibited the grain growth but showed a negligible effect on the decomposition of HA. It also caused enhancements in the strength and toughness by 14.61 and 23.70% contributions. According to ANOVA, sintering temperature illustrated considerable effects on the properties of HA composites. It exhibited more than 56% contribution to the grain growth and decomposition of HA. Structural investigations led to a total optimum condition with a combination of 7 wt % alumina/3 wt % titanium/1150 degrees C.
机译:使用TAGUCHI方法来确定三种因素,即纳米结构氧化铝(A)和微结构化钛(B)重量和烧结温度(C)对羟基磷灰石(HA)复合材料的相位稳定性,机械和结构性能的影响。通过湿沉淀法合成HA纳米粉末。根据L9正交阵列,在还原气氛中,粉末混合物的不同组合是冷的等静脉上压和压力烧结。 XRD分析证实烧结后HA相和金属Ti的存在。方差(ANOVA)方法的分析用于指定三个因素的百分比贡献。加入5-10wt%钛有助于将HA的分解和开放孔隙率的量分别增加43.07%和55.40%,并导致强度降低44.67%。氧化铝纳米粒子始终抑制晶粒生长,但对HA的分解效果可忽略不计。它还造成了14.61和23.70%的优势和韧性的增强。根据ANOVA,烧结温度显示对HA复合材料的性质的相当大的影响。它对HA的晶粒生长和分解表现出超过56%的贡献。结构研究导致了总优化条件,其组合为7wt%氧化铝/ 3wt%钛/ 1150℃。

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