This would lead to poor machine performance and worse yet not fit for service. Both systems need to interact optimally with each other as many failed designs have the deisgner only focusing on the mechanical elements or focusing on the hydrualic desgin with only after thoughts of the interface. A machine can utilise a number of systems to reduce labour content such as electrical, hydraulic or pneumatics or a combination of all three.Ī machine comprising of a power system and control system. Hydraulic systems form part of some machine as a activating substructure or as the primary control system so it is advantageous to examine the relationship between the mechanical nature (what the machine needs to do) and the interfacing of the driving system of the hydraulics (what the system can do).Ī machine can be defined as a physical system whose primary objective is to transfer and convert energy into useful work. Requirements for this course: 4 hours of face to face training and download or have access to FluidSim 5 Software ( Festo offers a 30 day trial). I estimate if the course is completed as a face to face teaching it will allow an engineer to claim up to 4 hours of continual professional development (CPD) hours for the requirements of Institute of Engineers Australia. The target audience for this course is for a graduate (USQ) engineer to gain further insights into understanding how a hydraulic system is created and then simulated to estimate the results. At the end the reader should have a basic understanding of what is required in a hydraulic system and be able to ask relevant questions and be able to investigate further if more details are required. This course will give a practical foundation in analyzing a typical hydraulic system which should cover over 80% of everyday applications found in industry. The aim of this course is to be a face to face seminar where it gives us the students in some usable concepts, philosophies, practical formulas, learn a new software to be able to progress through a design project in the fluid power industry.
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