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Experimental verification of parameters in automobile crankshaft modelling for vibration analysis

机译:汽车曲轴建模参数振动分析的实验验证

摘要

In the interest of utilized more stable automobile components at high speed for reduction the vibration of mechanical system, dynamic characteristics analysis plays a vital role in complex mechanical parts. This paper introduces a clarified approach on statistical investigation and modal analysis methodology to study, predict and accurate crankshaft natural frequencies by using design of experiment (DOE). In this research, first, simulation had been done with MSC Nastran/ Patran to find out the natural frequencies in each mode shape of crankshaft as well as the verification with experiment was carried out. In order to less inaccuracy, numerous simplified crankshaft models were created by using these as input and DOE was established to acquire precise parameters of optimized crankshaft design as the second phase. This method can be further used for the optimizing the structural parameters and would provide some value basis to qualitative measure of parameters and determination of optimized structure. In Conclusion, modal verification accuracy between experimental and simulation has improved.
机译:为了高速使用更稳定的汽车零部件以减少机械系统的振动,动态特性分析在复杂的机械零件中起着至关重要的作用。本文介绍了一种澄清的统计调查和模态分析方法,通过使用实验设计(DOE)研究,预测和准确地分析曲轴的固有频率。在这项研究中,首先,使用MSC Nastran / Patran进行了仿真,以找出曲轴每种模式形状的固有频率,并进行了实验验证。为了减少误差,通过使用许多简化的曲轴模型作为输入并创建了DOE,以获取优化曲轴设计的精确参数作为第二阶段。该方法可进一步用于结构参数的优化,为定性测量参数和确定优化结构提供一定的价值基础。总之,实验和仿真之间的模态验证准确性得到了提高。

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