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Adhesive and cohesive properties by indentation method of plasma-sprayed hydroxyapatite coatings

机译:等离子喷涂羟基磷灰石涂层压痕方法的粘合和内聚性能

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Adhesive and cohesive properties of the plasma-sprayed hydroxyapatite (HA) coatings, deposited on Ti-6Al-4V substrates by varying the plasma power level and spray distance (SD), were evaluated by an indentation method. The crystallinity and the porosity decreased with increasing both of these two parameters. The microhardness value, Young's modulus (E) and coating fracture toughness (K_C) were found to increase with a combinational increase in spray power and SD. The Knoop and Vickers indentation methods were used to estimate E and K_C, respectively. The critical point at which no crack appears at the interface was determined by the interface indentation test. This was used to define the apparent interfacial toughness (K_(Ca)) which is representative of the crack initiation resistance of the interface. It was found that K_(Ca) reaches to a maximum at a medium increase in both spray power and SD, while other mechanical properties of the coatings reaches to the highest value with further increase in these two plasma parameters. The tensile adhesion strength of the coatings, measure by the standard adhesion test, ISO 13779-4, was shown to alter in the same manner with K_(Ca) results. It was deduced that a combinational increase in spray power and SD which leads to a higher mechanical properties in the coatings, does not necessarily tends to a better mechanical properties at the interface.
机译:通过压痕法评估了通过改变等离子体功率水平和喷涂距离(SD)沉积在Ti-6Al-4V基底上的等离子喷涂羟基磷灰石(HA)涂层的粘合和内聚性能。结晶度和孔隙率随着这两个参数的增加而降低。发现显微硬度值,杨氏模量(E)和涂层断裂韧性(K_C)随着喷涂力和SD的组合增加而增加。努氏和维氏压痕法分别用于估计E和K_C。通过界面压痕测试确定在界面处没有裂纹出现的临界点。这用于定义表观界面韧性(K_(Ca)),该值代表界面的抗开裂性。发现在喷雾功率和SD均中等增加时,K_(Ca)达到最大值,而随着这两个等离子体参数的进一步增加,涂层的其他机械性能达到最大值。通过标准附着力测试ISO 13779-4测得的涂层拉伸附着力显示出与K_(Ca)结果相同的变化。可以推断,喷涂力和SD的组合增加导致涂层的机械性能更高,并不一定会导致界面处的机械性能更好。

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