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A Case Study for Automotive Door Closing Effort Uncertainty Analysis based on Monte Carlo Simulation Method

机译:基于蒙特卡罗仿真方法的汽车门关闭努力案例研究

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Quality in the automotive industry means development and manufacturing of vehicles whose specifications meet customer requirements. Among many other quality issues, door closing effort is a vehicle characteristic that strongly affects the customer first opinion about vehicle design. The door closing effort is affected by uncertainties in materials and manufacturing processes. The present paper presents a reliability-based method to evaluate the uncertainties associated with door closing effort due to manufacturing processes. A formulation is proposed to calculate that energy based on three components: energy used to compress air into the vehicle, energy used to compress the sealing and energy used to lock the door. In order to quantify the probability that the door closing effort is greater than a target value, reliability analysis concepts are used based on the uncertainties associated to latch position. The Monte Carlo simulation is used to define door closing effort variability due to variation of the side door latch position. That analysis allows defining maximum allowable latch and striker position variability in order to keep door closing effort below a target value. The latch position uncertainty is modeled by a probability distribution defined based on data collected from the assembly process. The probability of having a door closing effort magnitude lower than a target value is then calculated. Simulated distribution is compared to experimentally door effort analysis showing very good agreement between them. The simulation based model is used to evaluate the feasibility of manufacturing processes changes to reduce door closing effort.
机译:汽车行业的质量意味着制造和制造规范满足客户要求的车辆。在许多其他品质问题中,门关闭努力是一种强烈影响客户关于车辆设计的意见的车辆特征。门关闭努力受到材料和制造过程中的不确定性的影响。本文提出了一种基于可靠性的方法,以评估由于制造过程引起的门关闭努力相关的不确定性。提出了一种基于三个部件的能量来计算出的化合物:用于压缩空气进入车辆的能量,用于压缩用于锁定门的密封和能量的能量。为了量化门关闭努力大于目标值的概率,基于与锁存位置相关联的不确定性来使用可靠性分析概念。由于侧门闩锁位置的变化,蒙特卡罗模拟用于限定门关闭努力变化。该分析允许定义最大允许的闩锁和撞击器位置可变性,以便将门关闭努力低于目标值。锁存位置不确定性由基于从组装过程中收集的数据定义的概率分布来建模。然后计算具有低于目标值的门关闭级别幅度的概率。将模拟分布与实验门努力分析进行比较,显示它们之间非常良好的协议。基于仿真的模型用于评估制造过程变化的可行性,以减少门关闭努力。

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