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The stresses produced by the moisture content changes are often much larger than the applied mechanical loads.
Increasing additives reduced the sensitivity of volume change to the moisture content changes, and adding sand reduced its shrinking to a certain extent.
It is assumed that the anisotropic hygroexpansion of the fibres leads to large stresses at the fibre bonds when the moisture content changes.
It is assumed that this is an effect of transient stresses produced during moisture content changes in combination with non-linear creep behaviour of the fibres.
It is assumed that the anisotropic hygroexpansion of the fibres leads to large stresses at the fibre fibre bonds when the moisture content changes.
Systems and methods are described for monitoring temporal and spatial moisture content changes in clay embankments using electrical resistivity tomography (ERT) imaging.
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It is usually induced by a moisture content change.
Moisture content changed substantially over time; being lower over summer than in spring.
It is concluded that moisture content changed with the increase of migration time in both migration models.
This kind of moisture content change occurs in copying machines and in the printing process, for example.
The model is used to show the importance of the through-thickness moisture gradient on the cockling phenomenon during a cyclic moisture content change.
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