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High-performance methodology for residual stress measurement in railway wheels

机译:铁路轮毂残余应力测量的高性能方法

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Considering monoblock railway wheels for freight applications, a compressional state is required in order to guarantee the structural integrity during service. Unfortunately, adverse thermo-mechanical stresses, caused by hard braking, can reverse the beneficial compressive hoop stress to a tensile one, easing the triggering of fatigue phenomena. For this reason, periodical in-service stress measurements are required. The present paper, carried out in the frame of the EMATWHEEL Italian project co-funded by Regione Lombardia and MIUR, aims to define qualitatively and quantitatively, through non-contact ultrasonic EMAT transducers, the residual stress of railway wheels. In particular, it is here derived via the acoustical birefringence effect and elaborated by a more refined approach, with respect to the usual one. Tests are firstly performed onto specimens, cut from railway wheels and subjected to a known biaxial stress state, and then to wheels coming from production and made of ER7 and ER8 steels.
机译:考虑到货运应用的单块铁路车轮,需要一种压缩状态,以保证在服务期间的结构完整性。不幸的是,由硬制动引起的不利的热机械应力可以逆转有益的压缩箍应力对拉伸旋转,缓解疲劳现象的触发。因此,需要定期的在职压力测量。本文在由地区Lombardia和Miur共同资助的EmatWheel意大利项目的框架中进行的,旨在通过非接触超声波EMAT传感器,铁路车轮的残余应力定义和定量地定义定性和定量。特别地,在这里通过声学双折射效果来源,并通过更精细的方法来阐述相对于通常的方法。首先进行测试,在试样上,从铁路车轮切割并进行已知的双轴应力状态,然后从生产和由ER7和ER8钢制成的轮子。

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