首页> 外文期刊>International Journal of Pattern Recognition and Artificial Intelligence >Intelligent Optimization Design of the Cutting Unit's Transmission System of a Shearer Based on Robustness
【24h】

Intelligent Optimization Design of the Cutting Unit's Transmission System of a Shearer Based on Robustness

机译:基于鲁棒性的采煤机切割单元传动系统的智能优化设计

获取原文
获取原文并翻译 | 示例
       

摘要

To improve the robustness of the shearer cutting part and reduce the manufacturing cost, in this study, the gear transmission system of a shearer's cutting unit can be divided into three basic components: single-gear-on-one-shaft form, the planetary reduction form, and double-gears-on-one-shaft form. The dynamic differential equations of each structure are established in this study, and the volume functions of the three basic components are obtained. The characteristics of the internal excitation of the gear transmission system are analyzed, and a scheme for solving the motion parameters of each component is formulated based on the harmonic balance method. Based on the parameters, such as tooth width, tooth number, and modulus, as optimized variables, a robust optimization method minimizing the multi-parameter evaluation function, which is weighted linearly by dimensionless vibration and volume of the gear transmission system, is presented. The gear transmission system of a sample shearer's cutting unit is optimized using the proposed method. The results show that the transmission system's size decreases by 5.4%, the drum's maximum torsional acceleration decreases by 17.8%, and the first gear's maximum torsional acceleration decreases by 9.6%. Thus, we conclude that the optimum design method decreases a shearer's manufacturing cost and decreases the cutting unit's failure rate.
机译:为了提高剪切器切割部分的稳健性并降低制造成本,在本研究中,采煤机的切割单元的齿轮传动系统可分为三个基本部件:单齿轮一轴形状,行星减小形式,双齿轮一轴形式。在该研究中建立了每个结构的动态微分方程,并且获得了三个基本部件的体积功能。分析了齿轮传动系统的内部激励的特性,基于谐波平衡方法配制了用于解决每个部件的运动参数的方案。基于诸如齿宽,齿数和模量的参数,作为优化变量,呈现了一种稳健的优化方法,最小化多参数评估功能,其通过无量纲振动和齿轮传动系统的体积线性地加权。使用该方法优化样品采煤机切割单元的齿轮传动系统。结果表明,传动系统的尺寸减小了5.4%,滚筒的最大扭转加速度降低了17.8%,第一档的最大扭转加速度降低了9.6%。因此,我们得出结论,最佳设计方法降低了采煤机的制造成本并降低了切割单元的故障率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号