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Energy-Saving Design for Hydraulic Tube Bender
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作者 Jyh-Chyang Renn Chin-Yi Cheng Meng-HanLin 《Journal of Energy and Power Engineering》 2014年第3期414-422,共9页
Generally speaking, hydraulic control systems can be divided into two different driving concepts. The first one is the well-known hydraulic valve-controlled system and the second one is the pump-controlled system. The... Generally speaking, hydraulic control systems can be divided into two different driving concepts. The first one is the well-known hydraulic valve-controlled system and the second one is the pump-controlled system. The former possesses the feature of fast dynamic response. However, the poor energy-saving performance is its major fault. On the contrary, the hydraulic pump-controlled system has the significant advantage of energy-saving which meets the current demand in modem machine design. In this paper, the simulation analysis using MatLab/SimuLink and DSHplus software for a newly developed energy-saving hydraulic tube bender is conducted. Instead of the conventional fixed displacement hydraulic pump, the new hydraulic tube bender utilizes an internal gear pump with AC servomotor as its driving power source. In the new energy-saving hydraulic circuit, the use of conventional pressure relief valve and unloading valve are no longer necessary since the demanded flow-rate and pressure output can be precisely obtained by continuously changing the speed of the AC servomotor. In addition, two closed-loop control schemes using fuzzy sliding-mode controller are adopted and compared. To compare the energy-saving control systems, such as load-sensing control system, constant supply pressure control scheme and conventional hydraulic control scheme. Furthermore, the simulation results also show that the newly developed hydraulic tube bender can save up to 43% of energy consumption in a working cycle as compared to the conventional hydraulic tube bender. 展开更多
关键词 hydraulic energy-saving pump-controlled system fluid power tube bender.
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新型缠绕式液压弯管机的研制 被引量:2
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作者 田福祥 王珍 +1 位作者 王斌 董永民 《制造技术与机床》 CSCD 北大核心 2006年第10期53-56,共4页
论述了新研制的W27Y?63A型缠绕式液压弯管机的工作原理、液压系统和控制系统,阐述了该弯管机的性能特点。新型弯管机采用先进的液压系统和控制系统,机器的加工能力强、整体性能好、工艺范围广、生产效率和加工精度高,完全满足生产要求。
关键词 弯管机 液压系统 控制系统 集成块油路 可编程控制器
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液压弯管机的自动化研究 被引量:2
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作者 孙英达 韩承江 《机械制造与自动化》 2007年第4期136-137,共2页
主要介绍了将半自动液压弯管机改进为全自动液压弯管机的方法。
关键词 半自动液压弯管机 全自动液压弯管机 电气控制
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锅炉蛇形管弯管机用电液换向阀液动力影响因素仿真分析
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作者 胡旭明 刘昱杰 《机械制造与自动化》 2022年第6期132-135,共4页
针对液动力影响电液换向阀响应时间、换向精度等主要性能参数的问题,以锅炉蛇形管弯管机用电液换向阀为例,推导并建立考虑径向间隙电液换向阀的液动力方程,利用AMESim建立其仿真模型,仿真分析不同径向间隙、阀套直径、系统流量等参数对... 针对液动力影响电液换向阀响应时间、换向精度等主要性能参数的问题,以锅炉蛇形管弯管机用电液换向阀为例,推导并建立考虑径向间隙电液换向阀的液动力方程,利用AMESim建立其仿真模型,仿真分析不同径向间隙、阀套直径、系统流量等参数对阀液动力的影响。研究结果表明:随着主阀径向间隙增加,液动力逐渐增加;随着主阀阀套直径的降低,主阀液动力急剧增加;随着系统流量的增加,主阀液动力急剧增加。 展开更多
关键词 AMESIM 弯管机 电液换向阀 液动力 响应时间 径向间隙
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