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The shear resistance decreases and the rate of softening increases with increasing specimen size.
The dynamic compressive strength increases with increasing specimen size under impact loading, which is opposite to the size effect under static loading.
Unidirectional specimens showed a decreasing tensile strength with increasing specimen size, with a reduction of 14% over a factor of 8 change in linear dimension.
When the ratio of diameter to thickness increased, the extent of reduction of the hoop stress and the confining effect of the steel tube influenced by the increasing specimen size increased.
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Increasing the specimen size and exposure temperature decreased the compressive strength and stiffness.
It has experimentally been observed that the finite-life fatigue strength of metallic materials in the high-cycle regime decreases with increasing the specimen size.
Succinylated gelatin (SG) is an inexpensive colloid that may combine ease of use with the advantages of a colloid to potentially increase EMR specimen size, leading to a higher rate of en bloc resection.
Finite element model simulations showed that stress at the crack tip increased as the specimen size increased, which led to larger plastic deformation and more energy being consumed when the specimen fractured.
For example, a country with coastal, mountainous, and tropical regions may have different influenza activity in each region and may thus require more surveillance sites and increased specimen collection than neighbors or similarly sized countries.
The value a c /D decreases with the increase in specimen size whereas CTODc increases with the increase in specimen size.
Experimental results indicate that despite the increase of specimen size, no explosive spalling occurred in any of the specimens during the high temperature exposure.
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