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2019 Vol. 40, No. 5
Published: 28 October 2019
381
Dynamic design and performance study of in-plane piezoelectric vibration energy harvesting
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.020
2019 Vol. 40 (5): 381-389 [
Abstract
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258
)
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225
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390
The Difference on Steady State Responses of a Strongly Nonlinear System via Harmonic Balance Method and Complexification-averaging Technique
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.030
2019 Vol. 40 (5): 390-402 [
Abstract
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695
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(1 KB)
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239
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403
Theoretical modelling and analysis of piezoelectric vibration energy harvester based on stepped variable thicknesses cantilever beam with magnetic force
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.028
2019 Vol. 40 (5): 403-416 [
Abstract
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183
)
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(1 KB)
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221
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417
Experimental Research on Piezoelectric Energy Harvester for Tip mass with Different Section Shapes in Low Water Flow Velocity
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.029
2019 Vol. 40 (5): 417-426 [
Abstract
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227
)
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(1 KB)
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212
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427
A new hybrid energy harvester for human motion power generation
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.022
2019 Vol. 40 (5): 427-440 [
Abstract
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232
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(1 KB)
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234
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441
Research on Piezoelectric Energy Harvesting of Variable Triangular Cross-sections Based on Equivalent Circuit Method
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.019
2019 Vol. 40 (5): 441-450 [
Abstract
] (
205
)
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(1 KB)
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209
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451
Modeling and validation of a clip spring structure applied in ultra-low frequency vibration energy harvesters
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.017
2019 Vol. 40 (5): 451-457 [
Abstract
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187
)
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(1 KB)
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227
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458
Modeling and Experimental Investigation of Radial Electromagnetic Energy Harvesting for Self-powered Bearing Condition Monitoring
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.024
2019 Vol. 40 (5): 458-466 [
Abstract
] (
207
)
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(1 KB)
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227
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467
Design and experimental verification of dynamic multi-stable piezoelectric wind energy harvester
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.031
2019 Vol. 40 (5): 467-477 [
Abstract
] (
205
)
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(1 KB)
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(0 KB) (
241
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478
A MEMS Piezoelectric Energy Harvesting System Based on Impact Frequency Up-conversion Mechanism
DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.021
2019 Vol. 40 (5): 478-487 [
Abstract
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412
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216
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