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This paper focuses on the development of a design method for tooth modifications considering manufacturing related bias errors in order to optimize the operational behavior of cylindrical gears.
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In dry gear hobbing as the most productive and common manufacturing technology for the soft machining of cylindrical gears sometimes surface defects are noticed.
Mathematical models for the geometrical definition of cylindrical gears with involute toothing, data evaluation, and assessment of the task-related uncertainty, were formulated, and measuring strategies for CMMs were designed and implemented.
The Gauge Block Gear provides, therefore, for direct traceability of the chordal tooth thickness and allows the definition of the task-specific uncertainty of pitch and tooth thickness measurements of cylindrical gears as basis for the assessment of the metrological capability of measuring machines.
Yu et al. [18] employed a dynamic model of cylindrical geared rotor system to investigate the dynamic coupling behavior of transverse and rotational motions of gears subjected to gear eccentricities.
Mattar and Velex [7, 8] presented an analytical model for calculating mesh stiffness of cylindrical gear using length of contact line, and developed a dynamic contact model to investigate the effects of shape deviations on quasi-static and dynamic behaviors of narrow-faced helical gears.
Solid modeling of cylindrical gear is constructed by taking advantage of Pro/E4.0 software as higher accuracy, feature modeling and parameter-driving (Jin et al. 2012).
In this paper, the dynamic behavior of cylindrical open top ground-supported water tanks is investigated.
This study aims to investigate the effect of circular cutouts on inelastic buckling and post-buckling behavior of cylindrical shells.
They found that the outer functionally graded material layers have significant effect on the vibration behavior of cylindrical panels.
In other words, single cutouts do not noticeably change the pre- and post-buckling behavior of cylindrical shells.
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