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Application of Reliability Technique for Developing a Test Methodology to Validate the Engine Mounted Components for Off-Road Applications under Vibration

机译:可靠性技术在开发测试方法中的应用验证振动下越野应用的发动机安装部件

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Vibrational fatigue is a metal fatigue caused by the forced vibrations which are purely random in nature. The phenomenon is predominantly important for the components/systems which are subjected to extreme vibration during its operation. In a vehicle, an engine is the main source of vibration. The vibrational fatigue, therefore, plays a key role in the deterioration of engine mounted components. Multiple test standards and methodologies are available for validating engine mounted parts of an automobile. These might not be appropriate in the case of an off- road vehicle as the vibrational exposure of engine mounted components of an off-road vehicle is entirely different. In the case of an off-road vehicle, the engine mounted components are subjected to a comparatively higher level of vibration for a longer duration of time as compared to the passenger cars. In this paper, an attempt has been made to establish a methodology for validating the Exhaust Gas Recirculation system, an engine mounted component of an off- road vehicle using reliability as a tool. The derived methodology has been used for the lab test which is then compared with the field.
机译:振动疲劳是引起的受迫振动,其在本质上是纯粹随机的金属疲劳。这种现象是指,被其操作过程中经受极端振动组件/系统主要重要。在车辆中,发动机是振动的主要来源。振动疲劳,因此,起着发动机的恶化中起关键作用安装部件。多种测试标准和方法可用于验证安装在发动机上的汽车零件。作为发动机的振动曝光安装在越野车的部件是完全不同的,这些可能不是在越野车辆的情况下合适的。在一越野车辆的情况下,发动机安装部件受到振动的时间更长的持续时间的相对较高的电平相比于乘用车。在本文中,一个已尝试建立一种方法,用于验证的废气再循环系统,发动机使用可靠性作为工具安装在越野车辆的组件。所导出的方法已被用于实验室试验,然后用该领域进行比较。

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