英语翻译本系统参考国内外对注塑机液压系统的最新研究成果,采用流量不同的两个泵并联供油的开式系统,来满足各阶段对速度的不同要求,快速时双泵合流,慢速时大泵卸载,小泵供油.为了保
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英语翻译本系统参考国内外对注塑机液压系统的最新研究成果,采用流量不同的两个泵并联供油的开式系统,来满足各阶段对速度的不同要求,快速时双泵合流,慢速时大泵卸载,小泵供油.为了保
英语翻译
本系统参考国内外对注塑机液压系统的最新研究成果,采用流量不同的两个泵并联供油的开式系统,来满足各阶段对速度的不同要求,快速时双泵合流,慢速时大泵卸载,小泵供油.为了保证足够的合模力,采用液压——机械增力合模机构,增大合模油缸的推力.系统所需的多级压力,由并联的远程调压阀控制.本系统除了采用时间继电器控制保压和冷却动作外,其余都采用行程开关控制各油缸依次动作和进行速度换接.由于注塑机空间的复杂性,很难通过二维图表达清楚注塑机液压系统的管道铺设.本文使用UG/Routing管路设计模块对注塑机液压系统进行管道铺设,先通过关键点生成路径,再设置参数生成管道.基于UG平台的三维敷管技术也将成为未来的发展趋势.
英语翻译本系统参考国内外对注塑机液压系统的最新研究成果,采用流量不同的两个泵并联供油的开式系统,来满足各阶段对速度的不同要求,快速时双泵合流,慢速时大泵卸载,小泵供油.为了保
本系统参考国内外对注塑机液压系统的最新研究成果,采用流量不同的两个泵并联供油的开式系统,来满足各阶段对速度的不同要求,快速时双泵合流,慢速时大泵卸载,小泵供油.
Referring to domestic and foreign newest research result on the injection machine hydraulic circuit,this system takes an open type including two parallel connected pumps with different rates to satisfy the various requirements for the speed at each stage.To be specific,double pumps concourse during fast speed whereas large pump unloads and small one supplies oil.
为了保证足够的合模力,采用液压——机械增力合模机构,增大合模油缸的推力.系统所需的多级压力,由并联的远程调压阀控制.
In order to ensure sufficient mold clamping force,the system uses hydraulic pressure--mechanical reinforcement matched molds mechanism to increase the thrust of its hydrocylinder.The multi-level pressure required by the system is under the control of the parallel connected remote pressure regulator valves.
本系统除了采用时间继电器控制保压和冷却动作外,其余都采用行程开关控制各油缸依次动作和进行速度换接.由于注塑机空间的复杂性,很难通过二维图表达清楚注塑机液压系统的管道铺设.
Except the use of time relay to control the pressure maintaining and cooling,the rest all takes a route switch to control the ordinal operation and speed changes for each hydrocylinder.Because of the complexity of the injection machine space,it is difficult to use a 2D graph to clearly express the channel construction of the injection machine hydraulic circuit.
本文使用UG/Routing管路设计模块对注塑机液压系统进行管道铺设,先通过关键点生成路径,再设置参数生成管道.基于UG平台的三维敷管技术也将成为未来的发展趋势.
This paper emploies the UG/Routing channel design modules to construct the channels for the injection machine hydraulic circuit by first generating a path and then setting parameters to generate the channel.It is also the future development trend for the 3D tubine technique which is based on the UG platform.
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Reference to the system of hydraulic injection molding machine at home and abroad on the latest research results, using two different pump flow parallel supply of open-system, to meet the various stag...
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Reference to the system of hydraulic injection molding machine at home and abroad on the latest research results, using two different pump flow parallel supply of open-system, to meet the various stages of the different requirements of speed, fast convergence when the double-pump, at slow unloading large pump, small pump oil. In order to ensure sufficient power mode, the use of hydraulic - mechanical mold body by force, increasing the thrust cylinder mold. System of multi-level pressure, by the parallel调压阀remote control. In addition to using the system time relay control pressure and cooling action, the remaining switches are used to control the itinerary followed by the fuel tank and the speed of action for access. Injection molding machine due to the complexity of space, it is difficult to express a clear map through the two-dimensional injection molding machine hydraulic system of the laying of the pipeline. In this paper, the use of UG / Routing module piping design system for injection molding machine hydraulic pipeline, the first generation of the path through the key points, and then set the parameters to generate pipeline. UG-based platform for three-dimensional enough pipe technology will become the development trend of the future.
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