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ULTRA-HIGH TEMPERATURE COMPLIANT FOIL BEARINGS - THE JOURNEY TO 870°C AND APPLICATION IN GAS TURBINE ENGINES: EXPERIMENT

机译:超高温柔和的箔轴承 - 870°C的旅程和燃气轮机的应用:实验

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In this paper, the authors present the results of recent developments demonstrating that ultra-high temperature compliant foil bearings are suitable for application in a wide range of high temperature turbomachinery including gas turbine engines, supercritical CO_2 power turbines and automotive turbochargers as supported by test data showing operation of foil bearings at temperatures to 870°C (1600°F). This work represents the culmination of efforts begun in 1987, when the U.S. Air Force established and led the government and industry collaborative Integrated High Performance Turbine Engine Technology (IHPTET) program. The stated goal of IHPTET was to deliver twice the propulsion capability of turbine engines in existence at that time. Following IHPTET, the Versatile Affordable Advanced Turbine Engines (VAATE) program further expanded on the original goals by including both versatility and affordability as key elements in advancing turbine engine technology. Achieving the stated performance goals would require significantly more extreme operating conditions including higher temperatures, pressures and speeds, which in turn would require bearings capable of sustaining temperatures in excess of 815°C (1500°F). Similarly, demands for more efficient automotive engines and power plants are subjecting the bearings in turbochargers and turbogenerators to more severe environments. Through the IHPTET and VAATE programs, the U.S. has made considerable research investments to advancing bearing technology, including active magnetic bearings, solid and vapor phase lubricated rolling element bearings, ceramic/hybrid ceramic bearings, powder lubricated bearings and compliant foil gas bearings. Thirty years after the IHPTET component goal of developing a bearing capable of sustained operation at temperatures above 540°C and potentially as high as 815°C (1500°F) recent testing has demonstrated achievement of this goal with an advanced, ultra-high temperature compliant foil gas bearing. Achieving this goal required a combination of high temperature foil material, a unique elastic-tribo-thermal barrier coating (KOROLON 2250) and a self-adapting compliant configuration. The authors describe the experimental hardware designs and design considerations of the two differently sized test rigs used to demonstrate foil bearings operating above 815 °C (1500°F). Finally, the authors present and discuss the results of testing at temperatures to 870°C (1600°F).
机译:在本文中,作者展示了最近的发展结果,证明了超高温柔和的箔轴承适用于各种高温涡轮机应用,包括燃气轮机发动机,超临界CO_2动力涡轮机和汽车涡轮增压器,如测试数据所支持的显示温度至870°C(1600°F)的箔轴承的操作。这项工作代表了1987年开始的努力的高潮,当时的美国空军建立并领导了政府和行业协作集成高性能涡轮发动机技术(IHPTET)计划。 Ihptet的规定目标是在当时提供两倍的涡轮发动机的推进能力。在iHPTET之后,通过包括推进涡轮发动机技术的关键要素,通过包括推进涡轮发动机技术的关键要素,通过包括涡轮发动机技术的关键要素,进一步扩展了多功能实惠的高级涡轮发动机(Vaate)计划。实现所说的性能目标将需要更高的极端操作条件,包括更高的温度,压力和速度,从而需要能够维持超过815°C(1500°F)的温度的轴承。同样,对更高效的汽车发动机和发电厂的要求正在使涡轮增压器和涡轮机构中的轴承进行更严重的环境。通过iHPTET和VAATE计划,美国对推进轴承技术进行了相当大的研究投资,包括主动磁轴承,固体和气相润滑滚动元件轴承,陶瓷/混合陶瓷轴承,粉末润滑轴承和柔顺的箔燃气轴承。在540°C高于540°C的温度下开发能够持续运转的轴承的IHPTET部件目标,并且可能高达815°C(1500°F)最近的测试,并通过先进的超高温来实现这一目标的实现。柔顺箔煤气轴承。实现该目标需要高温箔材料,独特的弹性摩擦热阻挡涂层(Korolon 2250)和自适应兼容配置的组合。作者描述了两个不同大小的试验室的实验硬件设计和设计考虑,用于展示在815°C(1500°F)以上工作的箔轴承。最后,作者呈现并讨论在温度下测试的结果至870°C(1600°F)。

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