锻压技术2025,Vol.50Issue(1) :193-200.DOI:10.13330/j.issn.1000-3940.2025.01.024

1600 kN伺服曲柄压力机驱动控制系统设计与应用

Design and application on drive control system for 1600 kN servo crank press

袁全 程慧杰 张传锦 张博 郭爽爽 赵璨 王岩 李琦 吕言
锻压技术2025,Vol.50Issue(1) :193-200.DOI:10.13330/j.issn.1000-3940.2025.01.024

1600 kN伺服曲柄压力机驱动控制系统设计与应用

Design and application on drive control system for 1600 kN servo crank press

袁全 1程慧杰 1张传锦 1张博 1郭爽爽 1赵璨 1王岩 1李琦 2吕言1
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作者信息

  • 1. 济宁科力光电产业有限责任公司,山东 济宁 272073
  • 2. 山东锐易电动科技有限公司,山东 济宁 272073
  • 折叠

摘要

针对当前制造业对高智能、高精度和高效率锻压设备的需求,深入研究并设计了1600 k N伺服曲柄压力机的驱动控制系统.对传统曲柄压力机与伺服曲柄压力机的组成结构和工作原理进行了详细分析,并对比了两者的优劣,总结了其在国内的发展现状与需求,明确了伺服曲柄压力机在智能化、精度控制方面的优势.对伺服压力机传动系统进行分析,为系统设计和优化提供理论依据.通过设计先进的驱动控制系统,实现了对伺服曲柄压力机的高稳定性、高精度控制,显著提升了设备的整体性能.实验过程中,对系统的各项功能进行了全面测试,结果表明,此系统能够有效满足预期要求,验证了其可行性和有效性.

Abstract

For the current demand for high intelligence,high precision and high efficiency forging equipment in the manufacturing indus-try,a drive control system for a 1600 k N servo crank press was deeply researched and designed,and the composition structure and work-ing principles of both traditional crank press and servo crank press were analyzed in detail to compare their advantages and disadvantages.Then,their development status and requirements in China were summarized,and the advantages of servo crank press in intelligence and precision control were clarified.Furthermore,the transmission system of the servo press was analyzed to provide a theoretical basis for sys-tem design and optimization,and by designing an advanced drive control system,high stability and precision control of the servo crank press were achieved,significantly enhancing the overall performance of the equipment.Finally,during the experimental process,compre-hensive testing was conducted on various functions of system.The results show that the system can effectively meet the expected require-ments,verifying its feasibility and effectiveness.

关键词

传统曲柄压力机/伺服曲柄压力机/驱动控制系统/高精度控制/整体性能

Key words

traditional crank press/servo crank press/drive control system/high-precision control/overall performance

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出版年

2025
锻压技术
北京机电研究所 中国机械工程学会塑性工程学会

锻压技术

CSCD北大核心
影响因子:0.954
ISSN:1000-3940
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