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Direct gear design method is one of the most effective gear design approaches, which provides the high performance gears without concern for any predefined tooling parameters.
In many cases the manufacturing tolerances are not fully considered in gear design.
It is observed that the proposed algorithms offer better gear design solutions.
A general strategy for gear design is outlined in the final section.
The concept of constant mesh stiffness gear design is also introduced.
During gear design, the tooth geometry is optimized towards the required running behavior.
Furthermore, the gear transmission characteristics were analyzed and the face gear design system was developed.
Variability of the associated critical modes depends on tolerances affected to gear design parameters.
For customized gear pairs, the direct gear design approach is more advantageous over conventional design.
The obtained curves also find applications in gear design and fillet modeling.
Temperature rise in the contact zone of meshing gears is a serious problem in gear design.
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