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- W2186003312 abstract "he design and analysis of most engineered systems involves many diverse technical disciplines. In the case of hydraulic systems, which are discussed in this paper, the actual input is some kind of prime mover such as an internal combustion engine or an electrical motor. The speed and torque of the prime mover is converted to the hydraulic power parameters at the pump, the directional control of the hydraulic power is provided by a valve, while the output can be the force and velocity of a reciprocating cylinder which may actually connect to the load through linkages and gears. The input to the valves can be electronic, hydraulic, or maybe manual. In addition, the output of the hydraulic system may be used in a feedback circuit which will normally encompass instrumentation, logic elements, and controllers. It is imperative that the design engineer be able in perform some kind of analysis to insure the proper function of diverse systems such as hydraulic systems. Such an analysis can be performed in the laboratory through the use of prototype systems, or it can be performed through computerized simulation. In order to evaluate the total performance, from input to output, of a hydraulic system analytically, a software program must be utilized which can integrate the interactions of the diverse components involved. This paper will discuss the computerized design analysis of hydraulic systems using a computer program, called HyPneu, which is capable of integrating hydraulic, pneumatic, electronic, and mechanical components thus permitting the design analysis of complete hydraulic systems. The aspects involved in computerized design analysis will be discussed, followed by the illustration of the concepts through the use of example systems. These example systems will be simulated and the output information will be presented." @default.
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- W2186003312 date "1998-01-01" @default.
- W2186003312 modified "2023-09-24" @default.
- W2186003312 title "Computerized Design Analysis Design Analysis of Machine Tool of Machine Tool Hydraulic System Hydraulic System Dynamics" @default.
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