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Experimental methodology to investigate the tension response of rubber-like materials at high strain rates is presented.
The monotonic stress strain responses under tension and compression and forward compression/reverse tension response along three perpendicular directions were determined in each billet.
In the present paper, a simplified biaxial tensile model gives the tension response for all warp and weft strains with very fast computations.
Experiments reveal that the adopted experimental technique is reasonable for testing the tension response of soft materials at high strain rates, and the tensile behavior of silicone rubber is greatly dependent on the strain rate.
A specific problem of cable motion due to support excitation is used to illustrate the asymmetry and sensitivity of the dynamic tension response associated with geometric non-linearity of large displacement cable motion.
Assuming that the system can be modeled as a linear system, a stochastic approach was used to analyze the motion response (heave, surge and pitch) characteristics of the fish cage and the load (tension) response in an anchor line to wave forcing.
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SuSy1 and Susy2 transcripts and corresponding proteins have been shown to be elevated in tissue contexts with enhanced cellulose biosynthesis such as secondary xylem development and tension stress response [ 31, 32].
In this paper, the motion and tension responses are compared.
Final discussion was made on the effect of passive heave compensator on the motion and tension responses.
A comparison indicates that the motion and tension responses obtained in the two codes are in good agreement.
Non-linear coupling between three- and two-dimensional motions, and non-linear cable tension responses are analyzed.
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