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Characterisation Of Case-hardened Gear Steel By Multiparameter Barkhausen Noise Measurements

机译:表面硬化齿轮钢的多参数巴克豪森噪声测量

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摘要

Renewable energy sources have become nowadays very popular. Wind energy is one of the most promising renewable energy sources of the future. Due to the booming energy markets and increasing production of wind turbines, the requirement for long-lasting and reliably working windmills has emerged. The Barkhausen noise (BN) method is a world-leading technique in the quality control of industrial grinding processes, for example in windmill gear production. The main goal for this study is to create a profound approach to the multiparameter Barkhausen noise measured and to compare the measured values to the absolute values obtained with other research methods such as residual stress measurements by X-ray diffraction, hardness measurements and microstructural studies. A test bar series was made from a case-hardened steel used in wind turbine gears. Different tempering parameters were used to vary the surface hardness of the test bars. A stepwise loading was done simultaneously with the BN measurements to obtain relevant multiparameter BN data and to investigate the effect of applied stress on the BN signal. The results indicate clearly that the response of the studied material is mainly consistent with the known BN relations, but there exist some unequal BN stress correlations in the tempered test bars.
机译:如今,可再生能源变得非常流行。风能是未来最有希望的可再生能源之一。由于能源市场的蓬勃发展和风力涡轮机产量的增加,对持久耐用且可靠运行的风车的需求已经出现。巴克豪森噪声(BN)方法是工业磨削过程(例如风车齿轮生产)质量控制中的世界领先技术。这项研究的主要目的是为测量多参数巴克豪森噪声创造一个深刻的方法,并将测量值与通过其他研究方法获得的绝对值进行比较,例如通过X射线衍射测量残余应力,硬度测量和微观结构研究。测试棒系列由风力涡轮机齿轮中使用的表面硬化钢制成。使用不同的回火参数来改变测试棒的表面硬度。与BN测量同时进行逐步加载,以获得相关的多参数BN数据并研究施加应力对BN信号的影响。结果清楚地表明,所研究材料的响应主要与已知的BN关系一致,但是在回火的测试棒中存在一些不相等的BN应力相关性。

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