2019
DOI: 10.1016/j.mechmachtheory.2019.103588
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An energy-based approach for kinetostatic modeling of general compliant mechanisms

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Cited by 28 publications
(24 citation statements)
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“…Ueda [25]- [27] introduced the two-port concept in the Castigliano's modeling process to simplify the modeling procedures, which is well-suited for the nested multistage amplifier. Wu et al [28] integrated the screw theory with the energy method to formulate a general kinetostatic model of compliant mechanisms, which regulates the form of the derived formulas and brings conciseness. Even though, Castigliano's second method is not a mainstream approach of FDAMs' modeling due to its inherent drawback.…”
Section: Linear Modelmentioning
confidence: 99%
“…Ueda [25]- [27] introduced the two-port concept in the Castigliano's modeling process to simplify the modeling procedures, which is well-suited for the nested multistage amplifier. Wu et al [28] integrated the screw theory with the energy method to formulate a general kinetostatic model of compliant mechanisms, which regulates the form of the derived formulas and brings conciseness. Even though, Castigliano's second method is not a mainstream approach of FDAMs' modeling due to its inherent drawback.…”
Section: Linear Modelmentioning
confidence: 99%
“…Although an extensive amount of research has already been done in the area of compliance or stiffness analysis [3,4,[14][15][16][17], most of these study deal with the case of planar mechanisms or in applications involving planar motions. There is not much work available for spatial mechanisms having multiple degree-of-freedom (DOF).…”
Section: Introductionmentioning
confidence: 99%
“…Beam mechanism and beam theory have been widely used in many engineering fields such as compliant mechanisms [1][2][3][4][5][6][7], flexible hinges [8][9][10][11][12][13][14][15], soft robots [16][17][18][19][20][21], piezoelectric beam-based energy harvesters [22][23][24][25], and leaf springs [26][27]. Compliant mechanisms exploit the deflection of the beams to transfer or transform the smooth and precise force and motion.…”
Section: Introductionmentioning
confidence: 99%