Evaluation of the Power Generation Effect Obtained by Inserting a Piezoelectric Film in the Backlash of a Circular Arc Helical Gear

2019 ◽  
Vol 2019.29 (0) ◽  
pp. 2205
Author(s):  
Barenten SUCIU ◽  
Yuya NAKAMOTO
Author(s):  
Z. Chen ◽  
B. Lei ◽  
Q. Zhao

Based on space curve meshing theory, in this paper, we present a novel geometric design of a circular arc helical gear mechanism for parallel transmission with convex-concave circular arc profiles. The parameter equations describing the contact curves for both the driving gear and the driven gear were deduced from the space curve meshing equations, and parameter equations for calculating the convex-concave circular arc profiles were established both for internal meshing and external meshing. Furthermore, a formula for the contact ratio was deduced, and the impact factors influencing the contact ratio are discussed. Using the deduced equations, several numerical examples were considered to validate the contact ratio equation. The circular arc helical gear mechanism investigated in this study showed a high gear transmission performance when considering practical applications, such as a pure rolling process, a high contact ratio, and a large comprehensive strength.


2021 ◽  
Vol 2021 ◽  
pp. 1-7
Author(s):  
Xiaochao Tian ◽  
Jinzhi Zhu ◽  
Zhicong Wang ◽  
Hu Wang ◽  
Yuze Sun ◽  
...  

With the popularization of integrated circuits, MEMS, and portable electronic devices, chemical batteries have many disadvantages as the main energy supply method, such as large size, high quality, and limited energy supply life, requiring regular replacement, resulting in waste of materials, environmental pollution, and other issues. From the above reasons, energy harvesting technology plays an important role in improving the efficiency and life of electronic equipment. In order to explore the influence of the bimorph piezoelectric vibrator’s structural parameters on the power generation capacity, this paper establishes a cantilever beam rectangular bimorph piezoelectric vibrator power generation model, derives the mathematical expression of the bimorph piezoelectric vibrator power generation, and determines the parameter factors that affect the power generation effect. Using MATLAB simulation analysis to obtain the influence relationship curve of system output voltage and structural parameters, the experiment tests the influence law of output voltage and thickness ratio, width-to-length ratio, and Young’s modulus ratio; the test results are consistent with the theoretical analysis, verifying the theory and the correctness of the analysis. The results show that when the thickness ratio is 0.58 and the width-to-length ratio is 1, the power generation effect of the piezoelectric vibrator is the best to reach 14.5V; the power generation capacity of the transducer is inversely proportional to Young’s modulus ratio. This research provides a new idea for the popularization of integrated circuits, MEMS, and portable electronic devices.


2010 ◽  
Vol 132 (3) ◽  
Author(s):  
Wei-Shiang Wang ◽  
Zhang-Hua Fong

This paper proposes a new type of double-crowned helical gear that can be continuously cut on a modern Cartesian-type hypoid generator with two face-hobbing head cutters and circular-arc cutter blades. The gear tooth flank is double crowned with a cycloidal curve in the longitudinal direction and a circular arc in the profile direction. To gauge the sensitivity of the transmission errors and contact patterns resulting from various assembly errors, this paper applies a tooth contact analysis technique and presents several numerical examples that show the benefit of the proposed double-crowned helical gear set. In contrast to a conventional helical involute gear, the tooth bearing and transmission error of the proposed gear set are both controllable and insensitive to gear-set assembly error.


Author(s):  
M. A. Yussof ◽  
◽  
N. I. Ismail ◽  
M. J. Aiman ◽  
M.F. Abdullah ◽  
...  

Impact ◽  
2021 ◽  
Vol 2021 (1) ◽  
pp. 36-38
Author(s):  
Kenji Ishida

In the field of chemistry and physics, an electrical dipole of molecule arises from differences of electronegativity of atoms constituting molecules and is quantified by its dipole moment, which is the distance between atoms multiplied by the partial charge. Dipoles hold an enormous amount of promise for a range of different applications in various fields, including sensor technology, semiconductors, nanotechnology and healthcare. Professor Kenji Ishida, who is leading a team based within the Material Physical Chemistry Laboratory at Kobe University in Japan, is focused on working on piezoelectric power generation using the movement of body tissue. Their findings could usher in the next generation of sensors that help patients with a broad range of different conditions.


2013 ◽  
Vol 2013 (0) ◽  
pp. _1002-01_-_1002-04_
Author(s):  
Katsuhiro KOYANAGI ◽  
Hidechito HAYASHI ◽  
Tetsuya OKUMURA ◽  
Morihiro IRIE ◽  
Shintaro ZAITSU ◽  
...  

2014 ◽  
Vol 28 (8) ◽  
pp. 3137-3146 ◽  
Author(s):  
Xiao-Shun Xie ◽  
Hsueh-Cheng Yang

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