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Research on Design Theory and Experimental Validation of Dry Friction Automotive Clutch Based on Failure mechanism

机译:基于故障机制的干摩擦汽车离合器设计理论与实验验证研究

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摘要

As a key component of vehicle, automotive clutch remained high failure rate, meanwhile, with the development of engine and vehicle technology, functional characteristics of automotive clutch such as comfort, durability and reliability demanded much higher. Objective of the study is to establish the correspondence relationship between failures and design theory and experimental methods, reduce failure rate and improve product reliability. In order to create a system approach of problem-solving, we collected clutch failure information and classified according to clutch functional requirements and mechanical design principles. Then we used RCA (root cause analysis) and quality management tools to analyze the cause of failures, used QFD (quality function development) and DFMEA (design failure mode effects analysis) method to protocol the corresponding control measures to improve the existing design theory and experimental methods. The study also can be applied to more complex systems such as dry dual clutch module and dual-mass flywheel damper.
机译:作为车辆的关键部件,汽车离合器仍然很高,同时随着发动机和车辆技术的发展,汽车离合器的功能特性,如舒适,耐用性和可靠性要求更高。该研究的目的是建立故障与设计理论与实验方法之间的函件关系,降低故障率,提高产品可靠性。为了创建一个问题解决的系统方法,我们根据离合器功能要求和机械设计原理进行了离合器故障信息并进行分类。然后我们使用RCA(根本原因分析)和质量管理工具来分析故障原因,使用QFD(质量功能开发)和DFMEA(设计失败模式效果分析)方法来协议相应的控制措施,提高现有的设计理论和实验方法。该研究还可以应用于更复杂的系统,例如干双离合器模块和双质量飞轮阻尼器。

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