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The state of loading for most components and structures is multiaxial resulting from multidirectional loading or stress concentrations.
Therefore, it is very important to understand the mechanical behavior of the collagen molecule which is subjected to multi-axial state of loading.
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There are two kinds of components according to their state of load effect: compression or tension.
In Table 3 a comparison between the experimental and the finite element results for different states of loading are shown.
A number of researchers have conducted fatigue tests on unidirectional composite under different states of loading (Hashin and Rotem 1973Tang et al.2000Abdelal et al.2002Epaarachchi and Clausen 2005).
Elastic perfectly-plastic asymptotic plane stress crack tip fields have been constructed by assembling elastic, constant stress and fan sectors under a complete range of mixed mode I/II states of loading.
This chapter focuses on the current state of fatigue loading.
Parametric studies in terms of governing factors, such as state of charge, loading speed, and deformation displacement, are conducted and discussed.
However, it is not clear whether the fatigue behaviour and the CFRP strengthening efficiency is the same when the cracked-steel elements exhibit a state of complex loading.
As mentioned before, the purpose of the simulation is to estimate two parameters: the point of changing the blank holder force from the minimum mode to maximum, and the maximum blank holder force value in the state of transition loading.
The purpose of the simulation is to estimate two parameters: the point of changing the blank holder force from the minimum mode to maximum, and the maximum blank holder force value in the state of transition loading.
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