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Reliability-based design optimization of shank chisel plough using optimum safety factor strategy

机译:基于最优安全系数策略的刀凿犁的可靠性设计优化

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Reliability integration into tillage machine design process is a new strategy to overcome the drawbacks of classical design approaches and to achieve designs with a required reliability level. Furthermore, design optimization of soil tillage equipments under uncertainty seeks to design structures which should be both economic and reliable. The originality of this research is to develop an efficient methodology that controls the reliability levels for complex statistical distribution cases of random tillage forces. This developed strategy is based on design sensitivity concepts in order to determine the influence of each random parameter. The application of this method consists in taking into account the uncertainties on the soil tillage forces. The tillage forces are calculated in accordance with analytical model of McKyes and Ali with some modifications to include the effect of both soil-metal adhesion and tool speed. The different developments and applications show the importance of the developed method to improve the performance of the soil tillage equipments considering both random geometry and loading parameters. The developed method so-called OSF (Optimum Safety Factor) can satisfy a required reliability level without additional computing time relative to the deterministic design optimization study. Since the agricultural equipment parameters are extremely nonlinear, we extended the OSF approach to several nonlinear probabilistic distributions such as lognormal, uniform, Weibull and Gumbel probabilistic distribution laws. (C) 2014 Elsevier B.V. All rights reserved.
机译:将可靠性集成到耕作机设计过程中是一种新策略,可以克服传统设计方法的缺点,并实现具有所需可靠性级别的设计。此外,不确定性条件下土壤耕作设备的设计优化寻求结构既经济又可靠的设计。这项研究的独创性是开发一种有效的方法来控制随机耕种力的复杂统计分布情况的可靠性水平。此开发的策略基于设计敏感性概念,以确定每个随机参数的影响。该方法的应用在于考虑土壤耕作力的不确定性。耕作力根据McKyes和Ali的分析模型进行了计算,并进行了一些修改,以包括土壤-金属附着力和工具速度的影响。不同的发展和应用表明,考虑到随机几何形状和加载参数,所开发方法对于提高土壤耕作设备性能的重要性。相对于确定性设计优化研究,所谓的OSF(最佳安全系数)的开发方法可以满足所需的可靠性级别,而无需额外的计算时间。由于农业设备参数是极非线性的,因此我们将OSF方法扩展到了几种非线性概率分布,例如对数正态分布,均匀分布,Weibull和Gumbel概率分布定律。 (C)2014 Elsevier B.V.保留所有权利。

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