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A new kind of material cast polyurethane elastomers (CPUE) is introduced to take the place of rubber on load-bearing wheel for the first time. Based on load-bearing wheel dimensions, material properties and operat-ing conditions, the structure of wheel flange is optimized by zero-order finite element method. A detailed three-di-mensional finite element model of flange of load-bearing wheel is developed and utilized to optimize structure of wheel flange. Its service life, which is affected by flange structure parameter, is analyzed by comparing the opti-mization results with those of prototype of wheel. The results of optimization are presented and the stress field of loar-bearing wheel in optimal dimension obtained by using finite element analysis method is demonstrated. The fi-nite element analysis and optimization results show that the CPUE load-bearing wheel is feasible and suitable for the tracked vehicle and has a guiding value in practice of the weighting design of the whole tracked vehicle. 相似文献
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电动装甲车方波电机制动过程泵升电压抑制新方法 总被引:1,自引:0,他引:1
为了抑制电动装甲车在制动过程中产生的对系统工作不利的高泵升电压,通过对制动过程泵升电压产生机理的分析,得出了泵升电压同PWM占空比之间的函数关系,提出了通过控制PWM占空比来有效抑制泵升电压的数字控制新方法. 该方法可以有效地减小电容值,在一定程度上减小了控制器的体积,提高了控制器的性能价格比. 计算机仿真和实验结果证明了这种数字控制方法的正确性和可行性. 相似文献
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本文描述了在振动信号处理时,对功率谱和传递函数进行数学运算的方法,利用该方法,成功地消除了轮胎侧偏动力学实验中轮辋和测量仪器惯性力及其它噪声信号的影响. 相似文献
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