Structural response surface optimization design of steering knuckle arms under multiple working conditions based on fuzzy evaluation
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摘要: 針對礦用自卸車轉向系統的轉向節臂在使用過程中的多工況受載情況,建立了受載數學模型,并求取了其中的危險受載工況.考慮到各工況之間的主次關系,以模糊評判法對各工況進行權重賦值,以響應面法對各工況目標及約束函數進行響應面模型化,從而得出了轉向節臂的多工況優化設計模型.應用Matlab編程求解,最終實現了轉向節臂的多工況優化設計,并且通過與單工況優化的對比分析,進一步證實了多工況優化實際應用的合理性及價值.Abstract: Aiming at the multiple working conditions of steering knuckle arms in mining dump truck steering systems during operation, this paper established a load mathematical model and obtained the dangerous load working conditions. In consideration with primary and secondary relations among these working conditions, an optimization design model of steering knuckle arms under multiple working conditions was elicited after the weight of each working condition was valued by fuzzy evaluation as well as the objective function and constraint function were response surface modeled by response surface method. Then Matlab software was used to program and solve the design model, and finally optimization design of steering knuckle arms under multiple working conditions was realized. The rationality of practical application and the value of optimization under multiple working conditions were further confirmed in comparison with the optimal results under a single working condition.
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