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Research on the working mechanism and virtual design for a brush shape cleaning element of a sugarcane harvester

机译:甘蔗收割机刷形清洁元件的工作机理及虚拟设计研究

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摘要

The paper elaborates the working mechanism of a brush shape cleaning element of a sugarcane harvester, and analyzes the state of the cleaning procedure and the reacting force to which the cleaning element is subjected. Combined with earlier stage experiments and research, it was found that the factors which affect the cleaning efficiency and fatigue life of the cleaning element are numerous, and also complex and random. Thus it was difficult to analyze and design a cleaning element in theory. Moreover, if the design parameters were to be obtained from the experiment it would be time consuming, laborious, and costly. The method of a numerical value simulation orthogonal experiment is used to analyze the reacting force by means of establishing a finite element analysis model for the cleaning element on ANSYS. According to the orthogonal experiment principle, different parameter groups were made for finite element calculation, and then orthogonal experiment analysis and regression analysis were conducted to determine the effect on the calculated result that was caused by the changes of different parameter groups, and thus obtain the optimal design parameters of the cleaning element. In summary, this virtual design method is a quick and efficient way in innovative mechanical product design.
机译:本文阐述了甘蔗收割机的刷状清洁元件的工作机理,并分析了清洁程序的状态以及清洁元件所承受的反作用力。结合早期的实验和研究,发现影响清洁元件​​清洁效率和疲劳寿命的因素很多,而且复杂而随机。因此,理论上很难分析和设计清洁元件。而且,如果要从实验中获得设计参数,那将是费时,费力和昂贵的。通过在ANSYS上建立清洗元件的有限元分析模型,采用数值模拟正交试验的方法对反作用力进行分析。根据正交实验原理,将不同的参数组进行有限元计算,然后进行正交实验分析和回归分析,确定不同参数组的变化对计算结果的影响,从而得出清洁元件的最佳设计参数。总而言之,这种虚拟设计方法是创新机械产品设计中的一种快速有效的方法。

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