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等离子喷涂羟基磷灰石涂层中的声发射与疲劳损伤。

Acoustic emission and fatigue damage induced in plasma-sprayed hydroxyapatite coating layers.

机构信息

Department of Materials Science, Nagaoka University of Technology, Nagaoka, Niigata, 940-2188, Japan.

出版信息

J Mech Behav Biomed Mater. 2012 Apr;8:123-33. doi: 10.1016/j.jmbbm.2011.11.011. Epub 2011 Dec 3.

Abstract

In order to improve the adhesive strength of hydroxyapatite (HAp) coatings, grit blasting with Al(2)O(3) powder and then wet blasting with HAp/Ti mixed powders was carried out on a commercially pure Ti (cp-Ti) substrate. Subsequently, an HAp/Ti bond coat layer and HAp top coat layer were deposited by plasma spraying. Fatigue tests of the HAp-coated specimens were carried out under four-point bending. Acoustic emission (AE) signals during the entire fatigue test were monitored to investigate the fatigue cracking behavior of the HAp-coated specimens. The HAp-coated specimens could survive up to 10(7) cycles without spallation of the HAp coating layers at the stress amplitude of 120 MPa. The HAp-coated specimens without HAp/Ti bond coat layer showed shorter fatigue life and easy crack nucleation compared to the HAp-coated specimens with HAp/Ti bond coat layer. The delamination and spallation of the HAp top coat with HAp/Ti bond coat on cp-Ti was not observed until the crack propagated into the cp-Ti during the final fracture stage of the fatigue cycle. Therefore, the HAp/Ti bond coat layer was found to greatly improve the fatigue damage resistance of the HAp coating layer. Three stages of the fatigue failure behavior of the HAp top coat with HAp/Ti bond coat on a cp-Ti substrate can be clearly estimated by the AE monitoring technique. These stages are cracks nucleating and propagating in the coating layer, cracks propagating in the substrate, and cracks propagating unstably to final fracture.

摘要

为了提高羟基磷灰石(HAp)涂层的粘结强度,在商业纯钛(cp-Ti)基底上进行了氧化铝(Al2O3)粉末喷丸处理,然后进行了 HAp/Ti 混合粉末的湿法喷丸处理。随后,通过等离子喷涂沉积了 HAp/Ti 粘结涂层和 HAp 顶层涂层。对 HAp 涂层试样进行了四点弯曲疲劳试验。在整个疲劳试验过程中监测声发射(AE)信号,以研究 HAp 涂层试样的疲劳开裂行为。在 120 MPa 的应力幅下,HAp 涂层试样在没有剥落的情况下可承受高达 10(7)次循环。与具有 HAp/Ti 粘结涂层的 HAp 涂层试样相比,没有 HAp/Ti 粘结涂层的 HAp 涂层试样显示出较短的疲劳寿命和容易的裂纹萌生。在疲劳循环的最终断裂阶段,当裂纹扩展到 cp-Ti 中时,才观察到 cp-Ti 上具有 HAp/Ti 粘结涂层的 HAp 顶层涂层的分层和剥落。因此,发现 HAp/Ti 粘结涂层大大提高了 HAp 涂层的抗疲劳损伤性能。通过 AE 监测技术,可以清楚地估计 cp-Ti 基底上具有 HAp/Ti 粘结涂层的 HAp 顶层涂层的三个疲劳失效行为阶段。这些阶段是涂层中的裂纹萌生和扩展、基底中的裂纹扩展以及不稳定扩展到最终断裂的裂纹。

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