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Experimental rigs for testing components of advanced industrial applications

机译:用于测试先进工业应用组件的试验台

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This paper presents experimental rigs of the Research Centre for the Mechanics of Turbomachinery of the Department of Civil and Industrial Engineering of the University of Pisa. Most of them were designed and constructed to allow investigations of real machine components and to furnish more realistic results than basic tribological test rigs. Tilting pad journal bearings, as well as gears and complete gearboxes for advanced industrial applications, can be tested using the rigs described in the paper. A novel test rig with a power rating of approximately 1 MW allows investigations of the static and dynamic characteristics of high-performance tilting pad journal bearings for turbomachinery. A twin disc machine and closed loop gear test rig are used to investigate the different kinds of wear mechanisms occurring in gears. Functional and durability tests on planetary gearboxes for new turbo-fan engines could be performed using another novel large test rig. A circulating power configuration was adopted for most of the rigs so that only the power needed to cover the friction losses has to be supplied, while the circulating power can be more than 20 times higher. All the test rigs include very complex load applications and lubrication plants, as well as dedicated control and data acquisition systems. The rigs and related plants were designed and constructed through strong and fruitful collaborations between the university and some large and small–medium companies. Despite some limitations in the publication of the results as a result of the industrial sensitivity of the data, the synergy among these different actors was stimulating and fundamental for the realization of new advanced industrial applications.
机译:本文介绍了比萨大学土木与工业工程系涡轮机械力学研究中心的实验装置。它们中的大多数被设计和构造成允许研究实际的机器部件,并提供比基本的摩擦学试验台更真实的结果。倾斜垫轴颈轴承,以及用于高级工业应用的齿轮和完整的变速箱,可以使用本文所述的钻机进行测试。新型额定功率约为1 MW的试验台架可以研究用于涡轮机械的高性能可倾瓦垫轴颈轴承的静态和动态特性。双碟机和闭环齿轮试验台用于研究齿轮中发生的各种磨损机制。可以使用另一台新型大型试验台对新型涡轮风扇发动机的行星齿轮箱进行功能和耐用性测试。大多数钻机都采用循环动力配置,因此仅需提供弥补摩擦损失所需的动力,而循环动力则可以高出20倍以上。所有测试台架都包括非常复杂的负载应用和润滑设备,以及专用的控制和数据采集系统。这些钻机和相关工厂是通过大学与一些大小型公司之间的强有力和富有成果的合作而设计和建造的。尽管由于数据的工业敏感性而导致结果的公布存在某些局限性,但这些不同参与者之间的协同作用仍在激发,并为实现新的先进工业应用奠定了基础。

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