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VIBRATION ANALYSIS OF LARGE TUMBLING MILLS

机译:大摆锤振动分析

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摘要

In order to maintain higher grinding efficiency in tumbling mills the mill interior and dynamics must be known. For this purpose, several different types of non-intrusive methods have been proposed and are being tried in the industry. We have made an effort to develop a diagnostic tool based on vibration signal. Here we discus results of our experiments pertaining to ball as well as SAG mill. In each case, a triaxial accelerometer was used to capture mechanical vibration generated due to the tumbling action of the charge. The vibration signal was transmitted to a remotely placed computer and the signals were analyzed by standard signal processing technique. In case of a ball mill (5m diameter), qualitative mill information could be obtained by correlating the vibration signal to feed rate and mill filling. An effort was also made to identify different motion characteristic of the charge by analyzing its vibration signal. In case of the SAG mill (10m diameter), liner wear was estimated by comparing the vibration signal emitting out of a freshly lined mill with that of a worn out mill.
机译:为了在翻滚磨机中保持更高的磨削效率,必须知道磨机的内部和动力学。为此,已经提出了几种不同类型的非侵入性方法,并且正在工业中进行尝试。我们已努力开发基于振动信号的诊断工具。在这里,我们讨论与球磨以及SAG磨有关的实验结果。在每种情况下,都使用三轴加速度计来捕获由于装料的翻滚作用而产生的机械振动。振动信号被传输到远程计算机,并通过标准信号处理技术对其进行分析。如果是球磨机(直径5m),则可以通过将振动信号与进给速度和磨机填充量相关联来获得定性的磨机信息。还通过分析电荷的振动信号来确定电荷的不同运动特性。对于SAG磨机(直径10m),通过将刚磨好的磨机发出的振动信号与磨损的磨机发出的振动信号进行比较,可以估算衬板磨损。

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