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Estimation of Power Consumption in the Circular Sawing of Stone Based on Tangential Force Distribution

机译:基于切向力分布的石材圆形锯切功耗估计

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摘要

Circular sawing is an important method for the processing of natural stone. The ability to predict sawing power is important in the optimisation, monitoring and control of the sawing process. In this paper, a predictive model (PFD) of sawing power, which is based on the tangential force distribution at the sawing contact zone, was proposed, experimentally validated and modified. With regard to the influence of sawing speed on tangential force distribution, the modified PFD (MPFD) performed with high predictive accuracy across a wide range of sawing parameters, including sawing speed. The mean maximum absolute error rate was within 6.78%, and the maximum absolute error rate was within 11.7%. The practicability of predicting sawing power by the MPFD with few initial experimental samples was proved in case studies. On the premise of high sample measurement accuracy, only two samples are required for a fixed sawing speed. The feasibility of applying the MPFD to optimise sawing parameters while lowering the energy consumption of the sawing system was validated. The case study shows that energy use was reduced 28% by optimising the sawing parameters. The MPFD model can be used to predict sawing power, optimise sawing parameters and control energy.
机译:圆锯是加工天然石材的重要方法。预测锯值的能力在锯切过程的优化,监测和控制方面是重要的。本文提出了一种基于锯切接触区的切向力分布的锯切力的预测模型(PFD),实验验证和修改。关于锯切速度对切向力分布的影响,改进的PFD(MPFD)在各种锯切参数上具有高预测精度,包括锯切速度。平均最大绝对错误率在6.78%以内,最大的绝对错误率在11.7%范围内。在案例研究中证明了在MPFD中预测锯切力的实用性。在高样本测量精度的前提下,固定锯切速度只需要两个样品。验证了应用MPFD以优化锯切参数的可行性,同时降低锯切系统的能量消耗。案例研究表明,通过优化锯切参数,能量使用减少了28%。 MPFD模型可用于预测锯切功率,优化锯切参数和控制能量。

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