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首页> 外文期刊>Journal of Thermal Spray Technology >HVOF-Deposited WCCoCr as Replacement for Hard Cr in Landing Gear Actuators
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HVOF-Deposited WCCoCr as Replacement for Hard Cr in Landing Gear Actuators

机译:HVOF沉积的WCCoCr代替起落架执行器中的硬铬

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摘要

WCCoCr coatings deposited by HVOF can replace hard Cr on landing gear components. Powders with two different WC particle sizes (micro and nano-) and geometries have been employed to study the effects on the coating’s properties. Moreover, coatings produced employing two sets of parameters resulting in high and low flame temperatures have been evaluated. Minor differences in microstructure and morphology were observed for the two powders employing the same spraying parameters, but the nano-sized powder exhibited a higher spraying efficiency. However, more significant microstructural changes result when the low- and high-energy spray parameters are used. Moreover, results of various tests which include adhesion, wear, salt fog corrosion resistance, liquid immersion, and axial fatigue strength, indicate that the coatings produced with high-energy flame are similar in behavior. On the other hand, the nanostructured low-energy flame coating exhibited a significantly lower salt fog corrosion resistance.
机译:HVOF沉积的WCCoCr涂层可以代替起落架部件上的硬Cr。具有两种不同WC粒度(微米和纳米)和几何形状的粉末已用于研究对涂层性能的影响。而且,已经评估了采用两组参数导致高和低火焰温度生产的涂层。对于使用相同喷涂参数的两种粉末,观察到微观结构和形态上的微小差异,但是纳米级粉末表现出更高的喷涂效率。但是,当使用低能量和高能量喷雾参数时,会导致更显着的微观结构变化。此外,包括附着力,磨损,耐盐雾腐蚀,液体浸入和轴向疲劳强度在内的各种测试结果表明,用高能火焰生产的涂层的行为相似。另一方面,纳米结构的低能火焰涂层表现出明显更低的耐盐雾腐蚀性能。

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