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MEASURING FORCES IN A REFINER PLATE GAP

机译:炼油厂板间隙中的测量力

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In order to gain more understanding regarding the processes active in a refiner plate gap during refining, it is of interest to k8181now how the total energy input to the refiner is distributed over the refiner plates. This distribution can easily be calculated provided the distribution of tangential forces is known. In this study is presented a force sensor by which it is possible to measure, in a sustainable way, the forces in the plate gap of a single disc refiner. The sensor is in the form of an instrumented, hollow radial bar where the instrumentation consists of strain gauges mounted pair-wise in eight radial positions on the inside of the bar. In this way, the strain gauges are protected from the harsh environment in the plate gap. Now, knowing the stiffness properties of the bar, it is possible to calculate the tangential forces from the difference (i.e. subtracted signal) of the measured strains in each position. Moreover, for reasons other than calculating the energy distribution, it might be of interest to know the normal forces on the sensor and these can be calculated from the summed strain values together with relevant stiffness properties. The sensor, the theory behind and the calibration procedure is presented and discussed.
机译:为了在精炼过程中有关于活性板间隙中有效的过程的更多理解,它感兴趣于K8181Now如何在炼油厂分布到炼油厂的总能量。可以容易地计算该分布,所以提供切向力的分布是已知的。在该研究中,提出了一种力传感器,通过该传感器可以以可持续的方式测量单个盘炼油器的板间隙中的力。传感器采用仪表化的中空径向杆的形式,其中仪器由在杆内部的八个径向位置安装成对的应变仪表。以这种方式,应变仪受到板间隙中的苛刻环境的保护。现在,知道杆的刚度特性,可以计算每个位置中测量菌株的差异(即减去信号)的切向力。此外,由于计算能量分布以外的原因,可能有兴趣了解传感器上的正常力,并且这些可以与相关的刚度性能一起计算。传感器,背后的理论和校准程序介绍并讨论。

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