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Low-friction coatings for air bearings in fuel cell air compressors

机译:用于燃料电池空气压缩机中的空气轴承的低摩擦涂层

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In an effort to reduce fuel consumption and emissions, hybrid vehicles incorporating fuel cell systems are being developed by automotive manufacturers, their suppliers, federal agencies (specifically, the U.S. Department of Energy) and national laboratories. The fuel cell system will require an air management subsystem that includes a compressor/expander. Certain components in the compressor will require innovative lubrication technology in order to reduce parasitic energy losses and improve their reliability and durability. One such component is the air bearing for air turbocompressors designed and fabricated by Meruit, Inc. Argonne National Laboratory recently developed a carbon-based coating with low friction and wear attributes; this near-frictionless-carbon (NFC) coating is a potential candidate for use in turbocompressor air bearings. We presents here an evaluation of the Argonne coating for air compressor thrust bearings. With two parallel 440C stainless steel discs in unidirectional sliding contact, the NFC reduced the frictional force four times and the wear rate by more than two orders of magnitude. Wear mechanism on the uncoated surface involved oxidation and production of iron oxide debris. Wear occurred on the coated surfaces primarily by a polishing mechanism.
机译:为了降低燃料消耗和排放,包括燃料电池系统的混合动力车辆是由汽车制造商,供应商,联邦机构(特别是美国能源部)和国家实验室开发的。燃料电池系统需要一个包括压缩机/扩展器的空中管理子系统。压缩机中的某些组件将需要创新的润滑技术,以减少寄生能量损失并提高其可靠性和耐用性。一种这样的部件是由Meruit,Inc. Argonne National实验室设计和制造的空气涡轮压缩机的空气轴承最近开发了一种具有低摩擦和磨损属性的碳基涂层;这种近无摩擦 - 碳(NFC)涂层是用于涡轮机压力空气轴承的潜在候选者。我们展示了对空气压缩机推力轴承的氩气涂层的评价。通过两个平行的440℃不锈钢盘在单向滑动触点中,NFC将摩擦力降低四次,磨损率超过两个数量级。未涂层表面上的磨损机制涉及氧化氧化铁碎片的氧化和生产。主要通过抛光机构在涂层表面上发生磨损。

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