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Fatigue Properties of a Ck45 Steel Coated with a Post-Heat Treated Ni-Cu-P Electroless Deposit

机译:涂有后热处理的Ni-Cu-P无电镀矿床的CK45钢的疲劳性能

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The Fatigue tests under rotating bending conditions have been conducted on samples of a quenched and tempered Ck45 steel in two different conditions: (a) uncoated, (b) coated with an electroless Ni-Cu-P deposit, followed by a post-heat treatment (PHT) at 673 K for 1 h. Such a deposit had a thickness of approximately 10μm, with Cu and P contents of 6wt.% and 13.7wt.% respectively. The results indicate that plating the base steel with this kind of deposit leads to a reduction of the fatigue life of the material. The reduction in fatigue life has been quantified in terms of the Basquin parameters of the materials tested under different conditions. The microscopic observation of the fracture surfaces of the samples indicates that the reduction in fatigue life is associated with the nucleation of fatigue cracks on the coating-substrate interface and the deposit remains well adhered to substrate during fatigue testing since interfacial cracks have been very rarely observed. It is therefore concluded that, in the present case, the interface acts as a surface crack source or surface notch, which decreases the fatigue life of the coated material by reducing the crack nucleation stage.
机译:旋转弯曲条件下的疲劳试验已经在两种不同的条件下淬火和回火CK45钢的样品进行:(a)未涂覆的,(b)涂有电镀Ni-Cu-p沉积物,然后进行热处理(PHT)在673 k持续1小时。这种沉积厚度约为10μm,Cu和P含量为6wt%,分别为13.7wt%。结果表明,用这种沉积物电镀基础钢导致材料的疲劳寿命减少。在不同条件下测试的材料的基质参数方面已经量化了疲劳寿命的降低。样品的断裂表面的显微镜观察表明,疲劳寿命的降低与涂层衬底界面上的疲劳裂缝的成核相关,并且在疲劳测试期间沉积物保持良好地粘附到衬底上,因​​为界面裂缝已经非常易于观察到。因此,在当前情况下,界面用作表面裂纹源或表面凹口,通过减少裂纹成核阶段降低涂覆材料的疲劳寿命。

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