Academic literature on the topic 'Sun gear orbit'

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Journal articles on the topic "Sun gear orbit"

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Xuejun, Li, Jiang Lingli, Hua Dengrong, Yin Daoxuan, and Yang Dalian. "An Analysis of the Gear Meshing Characteristics of the Main Planetary Gear Trains of Helicopters Undergoing Shafting Position Changes." International Journal of Aerospace Engineering 2021 (July 30, 2021): 1–12. http://dx.doi.org/10.1155/2021/9965818.

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The complex three-shaft three-reducer structural designs of helicopter transmission systems are prone to changes in the relative positions of shafting under the conditions of main rotor and tail rotor loads. These changes will affect the transmission characteristics of the entire transmission system. In this study, the planetary gear trains of helicopters were examined. Due to the fact that these structures are considered to be the most representative structures of the main reducers of helicopters, they were selected as the study objects for the purpose of examining the meshing characteristics
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Kurganskaya, L. V. "CONCERNING THE SPACE EXPERIMENT WITH SCIENTIFIC GEAR MRT ON SPACECRAFT ”FOTON-M” № 4." Vestnik of Samara University. Natural Science Series 20, no. 10 (2017): 140–52. http://dx.doi.org/10.18287/2541-7525-2014-20-10-140-152.

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The short description of scientific equipment of МРТ (multichannel recorder of temperatures) is resulted and experimental results about current temperatures in local zones of containers of the scientific equipment, received in 42 daily flight of a space vehicle ”FOTON-M” № 4 are presented. It is shown, that the most essential factors defining a thermal mode in containers of scientific equipment, their position on the external surface of the spacecraft, focused almost during all flight by panels of solar batteries on the Sun and conditions on coils or, that’s the same, current deviation of a normal t
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YOSHINO, Masanobu, and Shigeo YANABE. "Self-Centering Path and Abnormal Vibration Orbit of Floating Sun Gear in Star-Type Planetary Gear Train." Transactions of the Japan Society of Mechanical Engineers Series C 65, no. 635 (1999): 2609–16. http://dx.doi.org/10.1299/kikaic.65.2609.

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YOSHINO, Masanobu, and Shigeo YANABE. "Self-centering Path and Abnormal Vibration Orbit of Floating Sun Gear in Star-Type Planetary Gear Train. Numerical Simulation Considering Effects of Friction Force Acting on Contact Teeth." Transactions of the Japan Society of Mechanical Engineers Series C 66, no. 649 (2000): 2948–53. http://dx.doi.org/10.1299/kikaic.66.2948.

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Sheng, Dong-ping, Ru-peng Zhu, Guang-hu Jin, Feng-xia Lu, and He-yun Bao. "Dynamic load sharing characteristics and sun gear radial orbits of double-row planetary gear train." Journal of Central South University 22, no. 10 (2015): 3806–16. http://dx.doi.org/10.1007/s11771-015-2925-8.

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Boguski, B., A. Kahraman, and T. Nishino. "A New Method to Measure Planet Load Sharing and Sun Gear Radial Orbit of Planetary Gear Sets." Journal of Mechanical Design 134, no. 7 (2012). http://dx.doi.org/10.1115/1.4006827.

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A new method of measuring planet load sharing of planetary gear sets is proposed in this paper. The method uses strain gauges mounted directly on the planet pins to measure continuously the loads carried by the planets assembled in a fixed carrier. Example 4-planet gear sets of different planet phasing conditions are procured and tested with a family of planet carriers having various levels and combinations of planet pinhole position errors to demonstrate the measurement method. As the radial floating capability of the central members is critical to planet-to-planet load sharing, a companion p
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Ryali, Lokaditya, Abhishek Verma, Isaac Hong, David Talbot, and Farong Zhu. "Experimental and Theoretical Investigation of Quasi-Static System Level Behavior of Planetary Gear Sets." Journal of Mechanical Design 143, no. 10 (2021). http://dx.doi.org/10.1115/1.4050302.

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Abstract This study presents a unique experimental methodology that synchronously measures various quasi-static responses of a simple four-planet planetary gear set, namely, planet load sharing, overall transmission error (OTE), and floating sun gear orbits. Strain gauges mounted directly on the planet pins were used to monitor the load shared among the planets, which is a crucial design criterion for durability and performance. High-precision optical encoders were used to measure the OTE of the gear set to explore its diagnostic value in identifying system errors. Radial motions of the floati
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Dissertations / Theses on the topic "Sun gear orbit"

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Banerjee, Anindo. "A Model to Predict Sun Gear Radial Orbit of a Planetary Gear Set having Manufacturing Errors." The Ohio State University, 2012. http://rave.ohiolink.edu/etdc/view?acc_num=osu1344872497.

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Boguski, Brian C. "An Experimental Investigation of the System-Level Behavior of Planetary Gear Sets." The Ohio State University, 2010. http://rave.ohiolink.edu/etdc/view?acc_num=osu1291009879.

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Conference papers on the topic "Sun gear orbit"

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Boguski, B., A. Kahraman, and T. Nishino. "A New Method to Measure Planet Load Sharing and Sun Gear Radial Orbit of Planetary Gear Sets." In ASME 2011 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. ASMEDC, 2011. http://dx.doi.org/10.1115/detc2011-47196.

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A new method of measuring planet load sharing of planetary gear sets is proposed in this paper. The method uses strain gauges mounted directly on the planet pins to measure continuously the loads carried by the planets assembled in a fixed carrier. Example 4-planet gear sets of different planet phasing conditions are procured and tested with a family of planet carriers having various levels and combinations of planet pinhole position errors to demonstrate the measurement method. As the radial floating capability of the central members is critical to planet-to-planet load sharing, a companion p
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