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An experimental program has been carried out to investigate the influences of cube size and placement direction on the compressive strength of self-consolidating concrete (SCC).
This could be effective in cases for which the laser beam is much smaller than the beam cube size.
Decreasing the cube size could preserve lost text colors, but would also increase the number of final colors, which is unacceptable.
These data were then examined in separate 3 (cube size)×15 (trial) repeated measures ANOVAs.
Varying the cube size of the subvolume did not affect the results.
The choice of cube size would affect the sharpness of the resulted heterogeneity parametric images.
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For evaluation purposes this model was applied to drying experiments in a range of air temperatures between 30°C and 90°C and cube sizes between 8 and 15 cm.
However, given that the results of the real-soldered cases with cube sizes of 2 mm and 1 mm are in agreement with the simulated measurements, we assume that results would be consistent in the case for smaller cube sizes.
In a, different soldered cube sizes (2 mm, 1 mm and 0.3 mm sides) soldered with different soldering alloy diameter sizes (760 μm, 400 μm and 300 μm).
Crystal cube sizes with variations of soldering bumps Crystal size FS 0.3 mm cube side FS 1 mm cube side FS 2 mm cube side Soldering preform size 300 μm diameter 2 bumps. 1 × side 2 bumps. 1 × side 4 bumps.
In the study, we could simulate and solder components down to 300 μm cube sizes, without strongly affecting the laser emission and with bonding strengths that comply with theoretical values.
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