Results 101 to 108 of about 198 (108)
Some of the next articles are maybe not open access.
Volume 13: Acoustics, Vibration, and Wave Propagation, 2016
Recent experimental investigations demonstrate that the level of noise generated by double helical synchronous belt (DHSB) is lower than that by straight-toothed synchronous belt (STSB). The present study is to theoretically elucidate the mechanisms whereby DHSB produces lower noise.
Jianhua Guo +5 more
openaire +1 more source
Recent experimental investigations demonstrate that the level of noise generated by double helical synchronous belt (DHSB) is lower than that by straight-toothed synchronous belt (STSB). The present study is to theoretically elucidate the mechanisms whereby DHSB produces lower noise.
Jianhua Guo +5 more
openaire +1 more source
Volume 6: ASME Power Transmission and Gearing Conference; 3rd International Conference on Micro- and Nanosystems; 11th International Conference on Advanced Vehicle and Tire Technologies, 2009
Helical synchronous belt drives are effective for reducing the noise and transmission error per single pitch of a pulley in comparison with conventional synchronous belt drives. However, the helix angle of the tooth trace causes axial belt movement. When the belt comes into contact with the pulley flange or the belt moves away from the pulley flange ...
Masanori Kagotani, Hiroyuki Ueda
openaire +1 more source
Helical synchronous belt drives are effective for reducing the noise and transmission error per single pitch of a pulley in comparison with conventional synchronous belt drives. However, the helix angle of the tooth trace causes axial belt movement. When the belt comes into contact with the pulley flange or the belt moves away from the pulley flange ...
Masanori Kagotani, Hiroyuki Ueda
openaire +1 more source
Volume 4: 9th International Power Transmission and Gearing Conference, Parts A and B, 2003
When helical synchronous belt drives operate under a torque, the belt experiences side tracking, which results in an offset between the position of the belt on the driving pulley and that on the driven pulley. Side tracking causes the belt from running off the pulley.
Hiroyuki Ueda +2 more
openaire +1 more source
When helical synchronous belt drives operate under a torque, the belt experiences side tracking, which results in an offset between the position of the belt on the driving pulley and that on the driven pulley. Side tracking causes the belt from running off the pulley.
Hiroyuki Ueda +2 more
openaire +1 more source
1215 Influence of Error in Belt Side Face on Transmission Error in Helical Synchronous Belt Drives
The Proceedings of Conference of Kansai Branch, 2007Satoru UE +3 more
openaire +1 more source
BCD-19 REDUCTION OF EXTENSIONAL STRENGTH OF SYNCHRONOUS BELT CORDS(BELT AND CHAIN DRIVES)
The Proceedings of the JSME International Conference on Motion and Power Transmissions, 2001exaly
F-0301 Bending Fatigue of Steel Cord for Synchronous Belt
The Proceedings of the JSME Annual Meeting, 2001exaly

