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Vehicle Design for Robust Driveline NVH Due to Imbalance and Runout Using a Monte Carlo Process

机译:由于使用蒙特卡罗工艺,因此由于不平衡和跳动而导致的车辆设计

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Variation in vehicle noise, vibration and harshness (NVH) response can be caused by variability in design (e.g. tolerance), material, manufacturing, or other sources of variation. Such variation in the vehicle response causes a higher percentage of produced vehicles with higher levels (out of specifications) of NVH leading to higher number of warranty claims and loss of customer satisfaction, which are proven costly. Measures must be taken to ensure less warranty claims and higher levels of customer satisfaction. As a result, original equipment manufacturers have implemented design for variation in the design process to secure an acceptable (or within specification) response. This paper focuses on aspects of design variations that should be considered in the design process of drivelines. Variations due to imbalance and runout in rotating components can be unavoidable or costly to control. Some of the major components in the vehicle that are known to have imbalance and traditionally cause NVH issues and concerns include the crankshaft, the drivetrain components (transmission, driveline, half shafts, etc.), and wheels. The purpose of this paper is to assess NVH as a result of driveline imbalance and runout variations and the methods that can be used to help design a more robust system to such variations.
机译:车辆噪声,振动和刺痛(NVH)响应的变化可能是由设计的可变性(例如容差),材料,制造或其他变化来源引起的。车辆响应的这种变化导致NVH高级别(规格)的生产车辆更高百分比,导致更高数量的保修声明和客户满意度损失,这是昂贵的。必须采取措施确保保修较少的索赔和更高层次的客户满意度。因此,原始设备制造商已经实施了设计过程中的变化设计,以确保可接受的(或在规范中)响应。本文重点介绍了在Drivelines设计过程中应考虑的设计变化的方面。由于不平衡和旋转部件跳动而导致的变化可能是不可避免的或昂贵的控制。已知具有不平衡和传统上的车辆中的一些主要部件和传统上的问题和担忧包括曲轴,传动系统部件(传输,传动系,半轴等)和轮子。本文的目的是由于传动系统不平衡和跳动变化以及可用于帮助设计更强大的系统的方法,评估NVH。

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