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锻造液压机的新型阀控系统

New valve control system for forging hydraulic press
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摘要 应对气候变化,事关中华民族永续发展,事关人类前途命运,我国将应对气候变化摆在国家治理更加突出的位置,不断消减碳排放量,不断强化自主贡献目标,将碳达峰、碳中和纳入生态文明建设整体布局,坚定不移地走生态优先、绿色低碳的高质量发展道路。要加快发展新一代信息技术,高端装备、航空航天、海洋装备等战略性新兴产业,提高产业链供应链现代化水平。伴随产业升级,环保与节能理念在制造行业的深入,液压系统的传统设计显露出耗能多、震动大、效率低、噪声大等问题。鉴于以上传统液压系统的问题,本公司基于锻造液压机液压系统的特殊性,开发了新型阀控系统。新型阀控系统,大大提升了液压系统的可靠性、平稳性,提高了设备产出效率和效益,促使高端装备产业升级。 To address climate change,is a matter of sustainable development of the Chinese nation,is a matter of human fate,in response to climate change in the national governance more prominent position,constantly improve the carbon intensity reduction amplitude,unceasingly strengthens own contribution to the goal,will reach the peak of carbon,carbon neutral into the overall layout of ecological civilization construction,ecological priority,unswervingly take the high quality of the green,low carbon development path.We will accelerate the development of next-generation information technology,strategic emerging industries such as high-end equipment,aerospace and Marine equipment,and modernize industrial and supply chains.With the industrial upgrading and the deepening of the concept of environmental protection and energy saving in the manufacturing industry,the traditional design of hydraulic system has exposed the problems of high energy consumption,large vibration,low efficiency,loud noise and so on.In view of the above problems of traditional hydraulic system,tianforge Press Co.,Ltd.,developed a new valve control system based on the particularity of hydraulic system of forging hydraulic press.The new valve control system greatly improves the reliability and stability of the hydraulic system,improves the output efficiency and benefit of the equipment,and promotes the upgrading of high-end equipment industry.
作者 褚祥利 管亚彬 CHU Xiangli;GUAN Yabin(Tianjin Tianduan Press Co.,Ltd.,Tianjin 300142)
出处 《机械设计》 CSCD 北大核心 2023年第S01期168-172,共5页 Journal of Machine Design
关键词 锻造液压机 比例插装阀 阀控 可靠性 平稳性 forging hydraulic press valve control reliability stationarity
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参考文献5

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共引文献24

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