Mechanical Vibration Practice With Basic Theory

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Mechanical Vibration Practice With Basic Theory

by: V. Ramamurti


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Topics include: standard eigen value problem, vibration practice, overhanging shaft, dynamic magnifier, torsional critical speeds, lateral critical speed, eigen pairs, simultaneous iteration method, single plane balancing, type exciters, spare wheel carrier, cork pads, vibration pick, torsional natural frequency, rubber isolators, fundamental natural frequency, steam turbine rotor, structural dynamic problems, multicylinder engines, two natural frequencies, lowest natural frequency, exciting frequency, stepped shaft, geared system, lateral oscillation

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Students who have taken courses in vibration often get the impression that the course is too mathematical in nature and generally beyond their reach comprehension. Mechanical Vibration Practice with Basic Theory erases that impression. The book adopts an unconventional approach. It presents only those mathematical tools that are most appropriate for solving practical problems, and it emphasizes figures of significance in mechanical vibration. The material is confined to problems endemic in the mechanical engineering industry, and it includes computer programs that are used to solve complicated problems.

Highlights the relevance of studying vibration theory to solve field problems, presenting an unconventional method that may be better appreciated by students who have difficulty seeing the relevance of studying theory to solve field problems, mainly to do with mechanical engineering.

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