TY - GEN
T1 - Design-in of reliability through axiomatic design
AU - Yang, Dezhen
AU - Ren, Yi
AU - Wang, Zili
AU - Xiao, Jing
PY - 2013
Y1 - 2013
N2 - In this paper, to completely meet the requirements of reliability design in the product designing, an axiom-based reliability design approach is proposed. In light of the axiomatic design principles, products are designed preliminarily to establish their functional requirements, so that according to these, functions preserving requirements are augmented, which constitute a functional requirement preserving domain that is included in functional domain, and derives the parameterized solution for reliability design systematically. Subsequently, the design parameters are augmented and optimized to achieve the functions preserving requirements. Mapping model of the augmented functional domain and the physical domain is established. And a solutions evaluation approach based on independence axiom is proposed. Ultimately, via identifying the potential failure modes from the perspective of the disappearance or reduction of functions preserving capability, a control process is elaborated to mitigate the failure modes based on independence axiom and logic decision in order to satisfy the reliability requirements. Taking the design of a temperature sensor as an example, the present study demonstrates that all approaches are feasible, efficient, and can be applied in real engineering scenarios.
AB - In this paper, to completely meet the requirements of reliability design in the product designing, an axiom-based reliability design approach is proposed. In light of the axiomatic design principles, products are designed preliminarily to establish their functional requirements, so that according to these, functions preserving requirements are augmented, which constitute a functional requirement preserving domain that is included in functional domain, and derives the parameterized solution for reliability design systematically. Subsequently, the design parameters are augmented and optimized to achieve the functions preserving requirements. Mapping model of the augmented functional domain and the physical domain is established. And a solutions evaluation approach based on independence axiom is proposed. Ultimately, via identifying the potential failure modes from the perspective of the disappearance or reduction of functions preserving capability, a control process is elaborated to mitigate the failure modes based on independence axiom and logic decision in order to satisfy the reliability requirements. Taking the design of a temperature sensor as an example, the present study demonstrates that all approaches are feasible, efficient, and can be applied in real engineering scenarios.
KW - axiomatic design
KW - failure modes mitigation
KW - functional requirement preserving domain
KW - independence axiom
KW - reliability
KW - temperature sensor
UR - https://www.scopus.com/pages/publications/84890101080
U2 - 10.1109/QR2MSE.2013.6625620
DO - 10.1109/QR2MSE.2013.6625620
M3 - 会议稿件
AN - SCOPUS:84890101080
SN - 9781479910144
T3 - QR2MSE 2013 - Proceedings of 2013 International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering
SP - 441
EP - 448
BT - QR2MSE 2013 - Proceedings of 2013 International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering
T2 - 2013 International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering, QR2MSE 2013
Y2 - 15 July 2013 through 18 July 2013
ER -