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The interaction between the impactor and the composite plate is considered in the impact analysis.
Contact force between the impactor and the beam is obtained with the aid of the conventional Hertz law.
A modified Hertz model is utilized to describe the contact force between the impactor and the plate.
The interaction between the impactor and the plate is modeled with the help of two degrees-of-freedom system, consisting of springs-masses.
The interaction between the impactor and the plate also modeled with a system having two-degrees-of-freedom, consisting of springs-masses.
The analytic force function developed on the basis of SM model, can be used for the contact force between the impactor and the plate.
Similar(41)
Results have been presented to depict the influence of important parameters like, twist angle, size and location of delamination, velocity and mass of the impactors and the time-delay between the impactors on the multiple impact response of delaminated composite conical shells in hygrothermal environment.
The contact force between the panel and the impactor is simulated by the Hertz law.
Sveklo's contact theory for orthotropic materials has been used to describe the interaction between the plate and the impactor.
In this model at the first stage of penetration (cratering), the resistance force is a linear function of the distance between the nose of the impactor and the front surface of the shield, while at the second stage (tunneling), the resistance force is proportional to a squared instantaneous velocity of the impactor and the linear term vanishes.
It was also reported that the communication link between the flyby and the impactor was functioning as expected.
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