首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Investigating the effect of surface coatings on the wear behaviour of the friction contact in ultrasonic motors
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Investigating the effect of surface coatings on the wear behaviour of the friction contact in ultrasonic motors

机译:研究表面涂层对超声电机中摩擦触点的磨损行为的影响

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摘要

Nowadays, ultrasonic motors (USMs) are used widely in a large variety of applications such as camera auto-focus mechanisms, devices in automobiles, industrial servo control in precision positioning, intelligent robotics, ultra-precision measuring, and medical equipment. USM is driven by traction force at high-frequency oscillations (>40 kHz) and the characteristics and life of the motor are strongly related to the friction material-used in the tribological contact. In this study, two purposely built test rigs, including a USM and a high-frequency (up to 4000 r/min) reciprocating machine (HFRM), were developed. The reciprocating machine ran with a small amplitude and a high-frequency motion was used to examine the wear behaviour of the friction pairs. Different materials such as advanced surface coating (chromium titanium aluminium nitride, and diamond-like coating) on stainless steel substrates were used to investigate their combined tribological performance with the aim to be used in the USM context. A matrix screening test for material selection purpose were also carried out using the HFRM and the tribological performance of the chosen material pairs were subsequently investigated using the USM. The ranking results of the material pairs from the USM tests agreed with those from the HFRM tests. HFRM results could correlate well with the USM results by considering energy input into the wear system. Thus, HFRM can be used as a screening tool for selecting materials using in USMs.
机译:如今,超声波马达(USM)广泛用于各种应用中,例如相机自动对焦机制,汽车设备,精密定位中的工业伺服控制,智能机器人,超精密测量和医疗设备。 USM由高频振动(> 40 kHz)的牵引力驱动,电动机的特性和寿命与摩擦接触中使用的摩擦材料密切相关。在这项研究中,开发了两个专门建造的测试台,包括一台USM和一台高频(最高4000 r / min)往复机(HFRM)。往复机以小振幅运行,并使用高频运动检查摩擦副的磨损行为。为了在USM环境中使用这些材料,研究了其在不锈钢基材上的高级表面涂层(铬钛铝氮化物和类金刚石涂层)等不同材料的综合摩擦性能。还使用HFRM进行了针对材料选择目的的基质筛选测试,随后使用USM对所选材料对的摩擦学性能进行了研究。 USM测试中材料对的排名结果与HFRM测试中的结果一致。通过考虑将能量输入磨损系统,HFRM结果可以与USM结果很好地相关。因此,HFRM可用作在USM中选择材料的筛选工具。

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