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Effect of Inter layer Thickness on Fatigue Behavior in A5052 Aluminum Alloy with Diamond-Like Carbon/Anodic-Oxide Hybrid Coating

机译:中间层厚度对类金刚石碳/阳极氧化物混合涂层A5052铝合金疲劳行为的影响

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摘要

Anodic oxide layer was formed on A5052 aluminum alloy, and subsequently diamond-like carbon (DLC) was deposited to fabricate DLC/anodic-oxide hybrid coating. Plane bending fatigue testes have been performed using the hybrid-coated specimens with different thicknesses of anodic-oxide interlayer. The interlayer thicknesses were 10 and 50 mu M, where the thickness of DLC film was fixed as 3 mu m. The specimens without coating, with DLC single layer and with anodic-oxide single layer were also used for comparison. The fatigue strengths of the specimens with anodic-oxide single layer were lower than those of the substrate without coating because the corner edge cracking or pin-hole defects could be fatigue crack initiation sites. However, when DLC was deposited on the anodic-oxide layer, fatigue strengths were improved. The hybrid-coated specimens with the interlayer thickness of 10 mu m had higher fatigue limit than the substrate and specimens with the interlayer thickness of 50 mu m. Thin DLC layer with the thickness of 3 mu m could have suppressed the cracking in interlayer, and led to the improvement of fatigue strengths than the substrate. When the interlayer became relatively thicker compared with the DLC film, such as 50 mu m, DLC film could not suppress the cracking from the corner edge defects, resulting in the lower fatigue strengths in spite of the presence of hybrid coating.
机译:在A5052铝合金上形成阳极氧化层,然后沉积类金刚石碳(DLC)以制造DLC /阳极氧化物混合涂层。使用具有不同厚度的阳极氧化物中间层的混合涂层试样进行了平面弯曲疲劳试验。层间厚度为10和50μM,其中DLC膜的厚度固定为3μm。没有涂层的样品,具有DLC单层和阳极氧化物单层的样品也用于比较。具有阳极氧化物单层的试样的疲劳强度低于没有涂层的基底的疲劳强度,因为拐角边缘开裂或针孔缺陷可能是疲劳开裂的起始点。然而,当DLC沉积在阳极氧化物层上时,疲劳强度得到改善。夹层厚度为10μm的杂化涂层样品的疲劳极限高于基材和夹层厚度为50μm的样品。厚度为3μm的薄DLC层可以抑制中间层的开裂,并导致疲劳强度比基材高。当中间层与DLC膜相比变得相对较厚时,例如50μm,DLC膜不能抑制由于拐角边缘缺陷而产生的龟裂,尽管存在混合涂层,但疲劳强度较低。

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