汽车发动机排气后处理系统安装带接头的部件故障分析

Amulya Gupta, Kishor Deshmukh, Chandraprakash S Sarpate, Kiran A. Kadam, Sunil Kumar Gupta
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引用次数: 0

摘要

由于易于安装,废气处理器(EGP)或废气后处理系统(EATS)通常借助安装带安装在汽车底盘或发动机机身上。任何行业在进入市场之前,都必须制造经过优化设计的连接带,并对其进行适当的测试。目前还没有标准的方法供工业界在早期阶段对连接带进行验证。大多数连接带的设计和测试都是基于 MAST 测试(在后期阶段完成)或经验。因此,为了在早期阶段测试连接带,有必要设计一种组件级连接带验证方法,目的是评估连接带的耐久性,因为在带支架的后处理组件中,连接带容易因振动过度放大而发生疲劳故障,同时能够检测出任何设计缺陷,消除或减少潜在的测试诱发故障。这项工作的目的是定义和记录用于安装后处理系统组件的组件级带接头验证方法的系统方法。由于几何的复杂性和材料的性质,分析中考虑了几何非线性和材料非线性。此外,为了获得最真实的结果,还考虑了接触非线性。最后,在所研究的各种方法中,我们推荐了一种能够以更精确的方式复制故障的方法,该方法可与装配级测试相媲美,可作为组件级表带验证方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Component Level Failure Analysis of Mounting Strap Joint Fitted on Vehicle Engine Exhaust After-Treatment System
Exhaust Gas Processors (EGP) or Exhaust After Treatment Systems (EATS) are usually mounted on vehicle chassis or engine body with the help of mounting straps due to its ease of installation. It is prescribed for any industry to manufacture an optimized design of strap joint and duly test it before making an entry to the market. There is no standard method available to be followed by the industry for strap validation at an earlier stage. Most of the strap joint designed and tested based either on MAST test (done in the later stages) or on the experience. So, to test the strap joint at an earlier stage there is a need to design a component level strap joint validation method with a goal to assess the durability of strap joint vulnerable to fatigue failures due to vibration over-amplification in a bracketed after-treatment assembly while able of detecting any design flaws and eliminating or reducing numbers of potential test induced failures. The objective of this work is to define and document a systematic approach for component level strap joint validation method used to mount after treatment system components. Due to geometrical complexity and nature of material, geometrical nonlinearity and material nonlinearity were considered in the analysis. Also, for getting the most realistic results contact nonlinearity was also considered. And finally, out of various approaches investigated, an approach which was able to replicate failures in a more exact manner comparable to assembly level test was recommended as the component level strap validation method.
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