TY - JOUR
T1 - A general framework for designing compliant deployable mechanisms via geometrically exact beam theory
AU - Chen, Rui
AU - Zhou, Luna
AU - Wu, Ke
AU - Liu, Lifu
AU - Liu, Yifan
AU - Li, Xin
AU - Chen, Guimin
AU - Zheng, Gang
AU - Luo, Jun
N1 - Publisher Copyright:
© 2024 Elsevier Ltd
PY - 2024/11
Y1 - 2024/11
N2 - Compliant deployable mechanisms (CDMs), as a novel and promising type of mechanisms, have been gradually used in medical industry, aerospace and other engineering fields that require high space utilization and compactness. Therefore, it is necessary to develop a general and efficient methodology to design and analyze CDMs. This paper proposes a general framework for designing and analyzing CDMs. The proposed framework has been verified by finite element method (FEM) first. Then, for practical validation, we design two types of compliant deployable mechanisms for different application scenarios within this framework, and experimental testing has been conducted to prove the feasibility of the proposed framework. Compared to the existing methods for designing CDMs, this framework demonstrates a more general scheme where different engineering scenarios can be taken into account to meet the design requirements, presenting several desired advantages over the existing methods, such as higher accuracy and less computational expense.
AB - Compliant deployable mechanisms (CDMs), as a novel and promising type of mechanisms, have been gradually used in medical industry, aerospace and other engineering fields that require high space utilization and compactness. Therefore, it is necessary to develop a general and efficient methodology to design and analyze CDMs. This paper proposes a general framework for designing and analyzing CDMs. The proposed framework has been verified by finite element method (FEM) first. Then, for practical validation, we design two types of compliant deployable mechanisms for different application scenarios within this framework, and experimental testing has been conducted to prove the feasibility of the proposed framework. Compared to the existing methods for designing CDMs, this framework demonstrates a more general scheme where different engineering scenarios can be taken into account to meet the design requirements, presenting several desired advantages over the existing methods, such as higher accuracy and less computational expense.
KW - Compliant deployable mechanisms
KW - Compliant mechanisms
KW - Deployable structures
KW - Euler–Bernoulli beam theory
UR - https://www.scopus.com/pages/publications/85202188042
U2 - 10.1016/j.mechmachtheory.2024.105778
DO - 10.1016/j.mechmachtheory.2024.105778
M3 - 文章
AN - SCOPUS:85202188042
SN - 0094-114X
VL - 202
JO - Mechanism and Machine Theory
JF - Mechanism and Machine Theory
M1 - 105778
ER -