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Development and Assessment of a New Flow-Through Test Instrument to Study Wear and Erosion Effects of Nanofluids

机译:研究纳米流体的磨损和侵蚀影响的新型流通测试仪器的开发和评估

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摘要

Nanofluids, the suspensions of nano-size powders in ordinary fluids, are of technical interest for their enhanced cooling properties, but their possible erosion-corrosion effects on cooling-system materials are mostly unknown. This paper discusses the rationale for designing and developing a new test-rig with flow-through parallel to the tested surfaces. The instrument conduct-chamber accommodates multiple specimens for simultaneous testing, and controlled fluid speed and temperature. This study shows that the new rig yields measurable surface-modifications from nanofluid action in reasonable test-times. Results are presented for a nanofluid (of 2%-alumina-nanopowder in water) that is recirculated in parallel-flow contact with polished aluminum and copper. Surface modifications are assessed by roughness, weighing of removed-material, and optical-microscopy, and results indicate that nanopowders can lead to patterns of wear, erosion and corrosion that are substantially different than those typically obtained from the base-fluids.
机译:纳米流体,即纳米尺寸粉末在普通流体中的悬浮液,因其增强的冷却性能而受到技术关注,但是它们对冷却系统材料可能产生的腐蚀腐蚀作用却鲜为人知。本文讨论了设计和开发一种新的测试平台的原理,该测试平台具有平行于被测表面的流通量。仪器的传导腔可容纳多个样本以进行同时测试,并控制流体的速度和温度。这项研究表明,新钻机在合理的测试时间内可通过纳米流体作用产生可测量的表面改性。给出了纳米流体(水中2%氧化铝-纳米粉)的结果,该纳米流体与抛光的铝和铜以平行流接触的方式再循环。表面改性通过粗糙度,去除材料的重量和光学显微镜进行评估,结果表明,纳米粉会导致磨损,腐蚀和腐蚀的方式与通常从基础流体中获得的方式大不相同。

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