By analyzing the communication principles of ControlNet and combining with the specific production process flow, the ControlNet control system has been designed. Meanwhile, the ControlNet network optimization scheme is proposed and has been applied in the actual production according to the existing ControlNet design problems. The application result shows that the network division and network key parameters setting are very effective optimization methods, which successfully solved the emerging ControlNet fault in the production process and met the control requirements. At the same time, they are worth to be consulted for ControlNet design and optimization.
A macromechanics constitutive model to describe the anisotropic creep behavior of
unidirectional composites under off-axis loading conditions is developed with a particular emphasis
on accurate prediction of temporal creep softening due to stress variation. A viscoplasticity model
that takes account of a combined isotropic and kinematic hardening is adopted as a base for this
formulation, and the evolution equation of the kinematic hardening variable is elaborated to
enhance the accuracy of prediction of the transient creep softening due to stress variation. Validity
of the modified kinematic-hardening viscoplasticity model is evaluated by comparing with the
experimental results on unidirectional T800H/3631 carbon/epoxy composites. It is demonstrated
that the proposed model can adequately describe the off-axis creep behavior of the unidirectional
CFRP laminate under constant and variable stress conditions.
Aiming at the existing problems in the process of product modeling and structure design such as of no visualized appearance, low efficiency and the easy interference of parts, a Pro/E-based product design method is proposed which, in the component pattern, conducts three-dimensional design by considering core component as reference and creates the rest parts according to modeling surface. This method effectively prevents the easy interference of parts during the process of product design, ensures the precise alignment among parts and avoids design repetition, thus greatly improves the design efficiency. Its application in the process of intelligent data acquisition terminal product design has proved the high efficiency and practicality of this design method.
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