摘要
为了提高振动送料设备包装的可靠性,提出基于ProE建模及受力分析的振动送料设备包装设计方法。构建振动送料设备包装构件的受力分析模型,结合误差敏感性调节方法进行振动送料设备包装过程中的受力特征信息分析,通过ProE建模方法构建振动送料设备包装受力分析模型,通过受力参数融合迭代和跟踪识别方法,进行振动送料设备包装传感信息处理,在执行机构中进行振动送料设备包装的位移参数分析和受力可靠性分析,建立振动送料设备包装构件力学信息辨识和优化融合模型,通过位移补偿和力学轨迹调节方法,实现振动送料设备包装过程的优化控制设计。仿真结果表明,采用该方法进行振动送料设备包装设计的建模可靠性的较好,包装过程控制能力较强,输出误差较低。
In order to improve the reliability of vibration feeding equipment packaging,a design method of vibration feeding equipment packaging based on ProE modeling and stress analysis was proposed.The stress analysis model of packaging components of vibration feeding equipment is constructed,and the stress characteristic information in the packaging process of vibration feeding equipment is analyzed by combining error sensitivity adjustment method.The force analysis model of vibration feeding equipment packaging stress is constructed by combining ProE modeling method,and the sensing information of vibration feeding equipment packaging is processed by integrating iteration and tracking identification methods of stress parameters.The displacement parameter analysis and stress reliability analysis of vibration feeding equipment packaging were carried out in the actuator,and the mechanical information identification and optimization fusion model of vibration feeding equipment packaging components was established.The optimal control design of vibration feeding equipment packaging process was realized by displacement compensation and mechanical trajectory adjustment method.The simulation results show that the modeling reliability of vibration feeding equipment packaging design by this method is good,and the packaging process control ability is strong.
作者
马永胜
MA Yongsheng(Guangzhou Vocational and Technical University of Science and Technology,Guangzhou Guangdong 510550,China)
出处
《自动化与仪器仪表》
2021年第1期197-200,共4页
Automation & Instrumentation
基金
全国轻工职业教育教学指导委员会2019年度课题《“1+X”证书制度下印刷工程专业人才培养改革创新与实践》(No.QGHZW2019021)
广东省高职教育化工类专业教学指导委员会教育教学改革项目《广东地区中高职衔接教育机制下学生学习质量评价研究》(No.HG201824)
广东省高等职业技术教育研究会一般课题《“1+X”证书制度下印刷媒体技术专业人才培养改革创新与实践》(No.GDGZ19Y075)。
关键词
ProE建模
受力分析
振动
送料设备
包装
过程控制
ProE modeling
force analysis
vibration
feeding equipment
packaging
process control