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Effect of pickling process on adhesion strength of Ti oxide layer on titanium alloy substrate

机译:酸洗工艺对钛合金基体上氧化钛层粘附强度的影响

摘要

Titanium alloys are commonly used in biomedical application in hard tissues replacement especially for knee and hip implants. Surface modifications are required prior to diamond coating process for improving the tribological and wear properties of the titanium alloy. In this study, experiments were carried out to investigate the effects of different pickling times as well as temperature on the adhesion strength of oxide layer formed on the Titanium alloy after oxidation process. The aqueous acid solution of HF and HNO3 was used as a pickling solution. The chemical pretreatment was carried out at 4 levels by varying the pickling time as well as temperature. All treated samples were thermally oxidized in a fixed parameters at 900 °C for 25 hours. Surface morphology, oxide layer thickness and adhesion strength were measured after each step using FESEM and Blast Wear Tester (BWT). It was revealed that the thickness of oxide layer increases with pickling time but the adhesion strengths become weaker. It was also found that the adhesion strength of oxide layer formed on Ti substrate surface increases with the increase of temperature while the thickness of the oxide layer decreased within 40°C pickling temperature.
机译:钛合金通常用于生物医学应用中的硬组织置换,尤其是用于膝盖和臀部植入物。为了改善钛合金的摩擦学和磨损性能,在金刚石涂层工艺之前需要进行表面改性。在这项研究中,进行了实验以研究不同的酸洗时间和温度对氧化工艺后钛合金上形成的氧化层粘附强度的影响。 HF和HNO 3的酸性水溶液用作酸洗溶液。通过改变酸洗时间和温度在4个水平上进行化学预处理。将所有处理过的样品在900°C的固定参数下热氧化25小时。在每个步骤之后,使用FESEM和Blast Wear Tester(BWT)测量表面形态,氧化物层厚度和粘附强度。结果表明,氧化层厚度随酸洗时间的增加而增加,但结合强度却变弱。还发现在40℃的酸洗温度内,在Ti衬底表面上形成的氧化物层的粘附强度随温度的增加而增加,而氧化物层的厚度则减小。

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