![]() ![]() View chapter Purchase book Read full chapter URL: Injection Molding L.J. Injection Molding Open Source Full Chapter URL There is also evidence that all-electric machine movements can be resolved with a higher degree of precision and repeatability than hydraulic systems. The elimination of hydraulic oil makes the all-electric machine inherently cleaner, so these machines are attractive for sterile or clean room use. The capital cost of all-electric machines is higher than that of conventional machines but the energy consumption in production is much lower. These use new brushless servo motor technology to power the various machine movements. In recent years, the supremacy of the hydraulic machine has been challenged by all-electric machines. ![]() Hybrid machines, in which the screw is driven by electric motor while the linear movements remain hydraulically powered, are not uncommon. High and low pressure linear movements are performed by hydraulic cylinders, and rotary movements for screw drive and other purposes are achieved by hydraulic motors. Put at its simplest, the injection molding machine contains a reservoir of hydraulic oil which is pumped by an electrically-driven pump at high pressure, typically at up to 2000 psi, to actuating cylinders and motors. Oil hydraulics has become firmly established as the drive system for the vast majority of injection molding machines and until recently was almost unchallenged as the power source. In this respect, injection molding machines have undergone the same metamorphosis as machine tools. The modern injection molding machine is virtually always a self-contained unit incorporating its own power source.Įarly machine frequency ran from a centralized source serving an entire shop or factory. Plasticizing involves high torque and low rotational speed, while injection requires high force and medium speed. Mold opening is a low-force high-speed movement, and mold closing a high-force low-speed movement. Injection Molding Open Source Download As PDF.Injection Molding Open Source Full Chapter URL. ![]()
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