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Measurements of Drag Torque, Lift-Off Journal Speed and Temperature in a Metal Mesh Foil Bearing

机译:金属网箔轴承中的扭矩,抬起轴颈速度和温度的测量

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Metal mesh foil bearings (MMFBs) are a promising low cost gas bearing technology for high performance oil-free micro-turbomachinery. Elimination of complex oil lubrication and sealing system by deploying MMFBs in rotorcraft gas turbine engines offer distinctive advantages such as reduced system overall weight, enhanced reliability at high rotational speeds and extreme temperatures, and extended maintenance intervals compared to conventional engines. MMFBs for oil-free rotorcraft engines must demonstrate adequate load capacity, reliable rotordynamic performance, and low frictional losses in a high temperature environment. The paper presents the measurements of MMFB break-away torque, rotor lift off and touchdown speeds, and temperature at increasing static load conditions. The tests, conducted in a test rig driven by an automotive turbocharger turbine, demonstrate the airborne operation (hydrodynamic gas film) of the floating test MMFB with little frictional loses at increasing loads. The measured drag torque peaks when the rotor starts and stops, and drops significantly once the bearing lifts off. The estimated rotor speed for lift-off increases linearly with the applied static load. During continuous operation, the MMFB temperature measured at the back surface of the top foil increases both with rotor speed and static load. Nonetheless, the temperature rise is mild ensuring reliable bearing performance. Application of a sacrificial layer of solid lubricant on the top foil surface aids to reduce the rotor break-away torque. The measurements give confidence on this simple bearing technology for ready application into oil-free turbomachinery.
机译:金属网箔轴承(MMFBs)是用于高性能无油微型涡轮机械的有前途的低成本气体轴承技术。与传统发动机相比,通过在旋翼飞机燃气涡轮发动机中部署MMFB来消除复杂的机油润滑和密封系统具有显着的优势,例如,系统总重量的减轻,在高转速和极端温度下的可靠性的提高以及维护间隔的延长。用于无油旋翼飞机发动机的MMFB必须表现出足够的负载能力,可靠的旋翼动力性能以及在高温环境下的低摩擦损失。本文介绍了在不断增加的静态负载条件下,MMFB分离扭矩,转子升起和着陆速度以及温度的测量结果。在由汽车涡轮增压器涡轮驱动的试验台上进行的试验表明,浮动试验MMFB在空气中的运行(流体动力气膜)在增加载荷时几乎没有摩擦损失。当转子启动和停止时,测得的阻力转矩达到峰值,一旦轴承抬起,则阻力会显着下降。估算的用于提升的转子速度会随着所施加的静态负载线性增加。在连续运行期间,在顶部箔片背面测得的MMFB温度随转子速度和静态负载而增加。尽管如此,温和的上升是温和的,以确保可靠的轴承性能。在顶部铝箔表面上施加一层固态润滑剂牺牲层有助于减少转子的脱离扭矩。测量结果使这种简单的轴承技术充满信心,可以立即应用于无油涡轮机械中。

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