2015
DOI: 10.1115/1.4029582
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Nonlinear Dynamic Analysis of a New Antibacklash Gear Mechanism Design for Reducing Dynamic Transmission Error

Abstract: In this study, a new antibacklash gear mechanism design comprising three pinions and a rack is introduced. This mechanism offers several advantages compared to conventional antibacklash mechanisms, such as lower transmission error as well as lower required preload. Nonlinear dynamic modeling of this mechanism is developed to acquire insight into its dynamic behavior. It is observed that the amount of preload required to diminish the backlash depends on the applied input torque and nature of periodic mesh stiff… Show more

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Cited by 6 publications
(3 citation statements)
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References 5 publications
(6 reference statements)
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“…Nhóm thứ II bao gồm một số phương pháp như: PSI (Preference Selection Index) [9], PEG (Pareto-Edgeworth Grierson) [10]. Khi sử dụng những phương pháp thuộc nhóm này, người ra quyết định vẫn cần thiết phải thực hiện việc chuẩn hóa số liệu, do đó những sai lầm trong việc xếp hạng các phương án vẫn có thể xảy ra [8].…”
Section: Giới Thiệuunclassified
“…Nhóm thứ II bao gồm một số phương pháp như: PSI (Preference Selection Index) [9], PEG (Pareto-Edgeworth Grierson) [10]. Khi sử dụng những phương pháp thuộc nhóm này, người ra quyết định vẫn cần thiết phải thực hiện việc chuẩn hóa số liệu, do đó những sai lầm trong việc xếp hạng các phương án vẫn có thể xảy ra [8].…”
Section: Giới Thiệuunclassified
“…Astoul et al [23] proposed an optimization design method based on loaded tooth contact analysis to reduce the transmission error of spiral bevel gears. Besharati et al [24] developed a new design of a backlash elimination gear mechanism to reduce dynamic transmission error. The results show that when all teeth are rigid and the static transmission error can be ignored, the dynamic transmission error is zero for each input torque.…”
Section: Introductionmentioning
confidence: 99%
“…Depending on the type of drilling, length and diameter of the trunk, the drilling rig consists of the following components: rig, control cabin, the working platform, the platform base, drilling winch, hoist, rotary mechanism, internal combustion engines, generating sets, electric motors, pump compressor, tank, piping, control system rigs, control and measuring system. In the study of the dynamics of vibration isolation systems we need to use non-linear mathematical models [1][2][3][4][5]. Their study is a more complex problem than the study of linear systems.…”
Section: Introductionmentioning
confidence: 99%