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EFFECT OF SURFACE ROUGHNESS OF SUBSTRATE ON FATIGUE STRENGTH OF THERMALLY SPRAYED STEEL WITH SELF-FLUXING ALLOY

机译:基材表面粗糙度对自助合金耐热喷涂钢疲劳强度的影响

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In order to investigate the effects of the surface roughness of substrate on fatigue properties of a thermally sprayed specimen, three types of substrates with different surface roughness were prepared. After thermal spraying, two types of post heat treatments (fusing) were performed by an induction heating system for 200 seconds and a vacuum furnace for 0.5 hours. Then rotational bending fatigue tests were carried out. Two types of fatigue fracture mechanisms were observed; (a) A delamination between the coating layer and the substrate had occurred during the fatigue process and then the fatigue fractures started at the newly created surfaces of substrates at such boundary (interface delamination mode), (b) such a delamination had not occurred, but the fatigue fractures started at the surface of the coating (coating fracture mode). In the case of the interface delamination mode, substrate roughness strongly affected the fatigue strength of the sprayed specimen; the rougher the substrate surface, the higher the fatigue strength. This is because rougher substrate leads to higher adhesive strength between the coating and the substrate which is resulted from i) increase of the anchor strength and ii) increase of the physical adsorption strength. In the case of the coating fracture mode, however, the sprayed specimens showed very high fatigue strength irrespective of substrate roughness indicating that the surface roughness of the substrate had non effect on the fatigue strength of the sprayed specimen. On the other hand, the severe roughening of the substrate surface disturbed the improvement of fatigue strength. It is because excessive roughening of the substrate surface induces the micro void at interface between the coating and the substrate.
机译:为了研究基板表面粗糙度对热喷涂样品的疲劳性能的影响,制备了具有不同表面粗糙度的三种类型的基材。热喷涂后,通过感应加热系统进行两种类型的热处理(熔化)200秒,真空炉进行0.5小时。然后进行旋转弯曲疲劳试验。观察到两种疲劳骨折机制; (a)在疲劳过程中发生涂层和基材之间的分层,然后在这种边界(接口分层模式)的新产生的基板的疲劳裂缝(接口分层模式),(b)没有发生这种分层,但疲劳骨折开始于涂层表面(涂层骨折模式)。在界面分层模式的情况下,衬底粗糙度强烈影响喷涂标本的疲劳强度;衬底表面粗糙,疲劳强度越高。这是因为粗糙的基材导致涂层和基板之间的较高的粘合强度,这是由i)锚固强度的增加和II)的物理吸附强度的增加。然而,在涂层断裂模式的情况下,喷射的样品显示出非常高的疲劳强度,而不管基材粗糙度,表明基材的表面粗糙度对喷涂样品的疲劳强度没有影响。另一方面,衬底表面的严重粗糙化干扰了疲劳强度的提高。这是因为基板表面的过度粗糙化诱导涂层和基板之间的界面处的微空隙。

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