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Moreover, the experiment provides information on the evolution of dynamic friction stress during forward as well as reverse slip.
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Fig. 3. Dynamic parameter distributions of static and dynamic friction coefficients, and initial stress ratio (top), and slip-weakening distance (bottom).
Strength (peak stress) and dynamic friction can be estimated when σ V (=ρgz) is added to the fault normal stress, and the resultant normal stress is multiplied by static and dynamic frictional coefficients.
We define the yield stress, where is the static friction coefficient and is the effective normal stress, and the dynamic stress, where is the dynamic friction coefficient.
In such a case, the dynamic parameters consist of the initial stress ratio μ0, static and dynamic friction coefficients μ p, μ r, and the slip-weakening distance D C. The stress ratio is defined by dividing the initial shear traction by the normal stress.
In this study, a displacement-softening nonlinear elastoplastic constitutive model is established to describe the dynamic friction behavior of GM-GCL interface under various normal stress conditions and is validated against experimental results of cyclic shear tests and shaking table tests.
Takahashi (2007) defined two kinds of debris flows in a wider sense: one is the quasi-static-debris flow, in which Coulomb friction stress dominates, and the other is the dynamic debris flow.
In technical terms, its dynamic friction must be lower than its static friction.
The traditional style of cross-country skiing works on the same principle — the downward kick stroke requires high static friction, while the glide is possible thanks to low dynamic friction.
This friction begins to change at low pressure gradient because dynamic friction is smaller than static friction.
Constant dealing with dynamic friction and throttling (bar).
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