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Two types of flexure-based compliant proportion mechanisms based on the novel analytical model are designed and optimized based on these proposed equations.
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This paper proposes a novel analytical model for flexure-based proportion compliant mechanisms.
This proposed novel analytical model gives a new viewpoint on the design of flexure-based proportion compliant mechanisms.
Corner-filleted and circular flexure hinges that are utilized as connectors in proportion compliant mechanisms in this paper.
Finite element analysis results show that these design equations are reliable and easier to be used in the design of such proportion compliant mechanisms.
Combining the new proposed design equation and the existed stiffness equation, a new proportion compliant mechanism with corner-filleted flexure hinges is designed by means of the least squares optimization.
Since strict quota sampling compliant with standardized proportion of age and gender is nearly impossible in pragmatic operation, the sample may not appropriately represent the general old population.
Therefore, an interval of 16 35 days between the first and second injections was considered to be compliant A greater proportion of Group 2 infants received their appropriate dose-interval injections than Group 1 (75.7 % vs. 71.9%%, p = 0.003).
A significantly higher proportion of compliant subjects had a NICU stay at birth compared to non-compliant subjects (88.2% vs. 85.9%; p = 0.028).
The primary objective of the study was to estimate the proportion of compliant tests.
The result is then to be multiplied with the proportion of compliant subjects among the total study population C+/ΣS.
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