Tooth surface modifications are small, micron-level intentional deviations from perfect involute geometries of spur and helical gears. Such modifications are aimed at improving contact pressure distribution, while minimizing the motion transmission error to reduce noise excitations. In actual practice, optimal modification requirements vary with the operating torque level, misalignments, and manufacturing variance. However, most gear literature has been concerned with determining optimal flank form modifications at a single design point, represented by fixed, single load and misalignment values. A new approach to the design of tooth surface modifications is proposed to handle such conditions. The problem is formulated as a robust...
This paper presents an automatic procedure to optimize the loaded tooth contact pattern of face-mill...
Gear drives, like all mechanical devices, are subject to manufacturing errors and defects. Higher le...
Micro-geometry optimization has become an important phase of gear design that can remarkably enhanc...
Tooth surface modifications are small, micron-level intentional deviations from perfect involute ge...
Gear researchers and engineers have been seeking systematic approaches to optimize the microgeometry...
Although steel involute gears are the standard solution for gear transmissions, they tend to suffer ...
This paper presents an approach for obtaining an optimized geometry for the flank of a too...
Systematic optimization of the tooth contact pattern under load is an open problem in the design of ...
Mesh misalignment in mating the gear tooth surface is common and difficult to be determined accurate...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
This paper presents an automatic procedure to optimize the loaded tooth contact pattern of face-mill...
Gear microgeometry is important as it can change the tooth flank contact pattern effectively. In gea...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
This paper presents an automatic procedure to optimize the loaded tooth contact pattern of face-mill...
Gear drives, like all mechanical devices, are subject to manufacturing errors and defects. Higher le...
Micro-geometry optimization has become an important phase of gear design that can remarkably enhanc...
Tooth surface modifications are small, micron-level intentional deviations from perfect involute ge...
Gear researchers and engineers have been seeking systematic approaches to optimize the microgeometry...
Although steel involute gears are the standard solution for gear transmissions, they tend to suffer ...
This paper presents an approach for obtaining an optimized geometry for the flank of a too...
Systematic optimization of the tooth contact pattern under load is an open problem in the design of ...
Mesh misalignment in mating the gear tooth surface is common and difficult to be determined accurate...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
This paper presents an automatic procedure to optimize the loaded tooth contact pattern of face-mill...
Gear microgeometry is important as it can change the tooth flank contact pattern effectively. In gea...
Nowadays, the basic requirements of gear transmissions are not limited to resistance and reliability...
This paper presents an automatic procedure to optimize the loaded tooth contact pattern of face-mill...
Gear drives, like all mechanical devices, are subject to manufacturing errors and defects. Higher le...
Micro-geometry optimization has become an important phase of gear design that can remarkably enhanc...