机车冷却钢结构静强度分析及设计探索者优化

Meng Zhao
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引用次数: 0

摘要

随着内燃机车的全面发展和运行速度的提高,机车冷却系统的设计越来越受到重视,其基础是保证结构的强度,以保证机车的运行安全可靠。本文采用参数化方法建立了冷却钢结构有限元模型,得到了结构在不同工况下的静强度结果。为了使结构满足强度标准,缩短设计周期,将设计参数和等效应力提取命令放入Hyper Mesh导出文件中,利用Workbench design Explorer模块结合实验设计方法,基于蒙特卡罗方法模拟采样点,拟合设计参数与目标参数之间的响应面。设置结构的优化算法,然后程序自动计算候选设计点。确定设计点后,需要重新计算钢结构在机车运行中是否满足强度准则的设计要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Static Strength Analysis on Steel Structure of Locomotive Cooling and Design Explorer Optimization
With the comprehensive development of diesel locomotive and the improvement of running speed, the design of locomotive cooling system get more attention, the basic is to ensure that the strength of the structure in order to make locomotive's operation safe and reliable. This paper establish cooling steel structure finite element model with parametric method, and gets static strength results of the structure under different conditions. In order to make the structure satisfy the standard of intensity and shorten the design cycle, putting the design parameters and the extract command of equivalent stress into the export file of Hyper Mesh, using Workbench Design Explorer modules with experimental design method, based on Monte-Carlo method simulating sampling points, and fitting for response surface between the Design parameters and target parameters. Setting structure’s optimization algorithm and then the program automatically calculates the candidate de-sign points. After those design points are determined, it needs to calculate again, steel structure meets the design requirements of strength criteria in locomotive running.
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来源期刊
Biomedical engineering advances
Biomedical engineering advances Bioengineering, Biomedical Engineering
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