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首页> 外文期刊>Metals and Materials International >A comparative study of Cr?X?N (X=Zr, Si) coatings for the improvement of the low-speed torque efficiency of a hydraulic piston pump
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A comparative study of Cr?X?N (X=Zr, Si) coatings for the improvement of the low-speed torque efficiency of a hydraulic piston pump

机译:Cr?X?N(X = Zr,Si)涂层改善液压活塞泵低速扭矩效率的比较研究

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摘要

The internal parts of hydraulic pumps operating at variable speed should be protected from insufficient lubrication. The axial piston type pumps employ a steel-base cylinder barrel rotating on a soft bronze valves plate with a slide contact, where the insufficient lubrication of these components can cause rapid wear of the valve plate and increase the friction loss. In this study, the cylinder barrel surface was deposited with CrZrN coatings, which were expected to improve the tribological contact with a valve plate under low-speed mixed lubrication conditions. Its effect on the improvement of the low-speed torque efficiency of a hydraulic piston pump was investigated and compared with that from the CrSiN coating. The coated cylinder barrels showed much lower friction coefficients and wear rates of the valve plates than the uncoated plasma-nitride one. In particular, the CrZrN coatings revealed better performance than the CrSiN coatings. By representing the improvement in the torque efficiency of the whole pump based upon the degree of the friction coefficient reduction, the CrZrN coatings exhibited approximately a 0.35% higher improvement at 300 bar and 100 rpm than CrSiN coatings. The possible failure modes of the coatings coated on the barrel were sugested and the microstructures of the coatings seemed to have a strong effect on the film failure mode.
机译:应保护变速泵的内部零件免于润滑不足。轴向柱塞泵采用钢制气缸筒,在带有滑动接触的软青铜阀板上旋转,这些部件的润滑不足会导致阀板快速磨损并增加摩擦损失。在这项研究中,缸筒表面沉积有CrZrN涂层,有望在低速混合润滑条件下改善与阀板的摩擦接触。研究了其对液压活塞泵低速扭矩效率的改善效果,并与CrSiN涂层的效果进行了比较。带涂层的气缸筒显示的阀板的摩擦系数和磨损率比未带涂层的等离子氮化物的低得多。特别是,CrZrN涂层比CrSiN涂层具有更好的性能。通过表示基于摩擦系数降低程度的整个泵的扭矩效率的提高,CrZrN涂层在300 bar和100 rpm的转速下比CrSiN涂层提高了约0.35%。桶上涂层的可能失效模式被认为是正确的,并且涂层的微观结构似乎对薄膜失效模式有很大影响。

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