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A numerical method to predict the break force of curved faced tablets is proposed.
The importance of the internal tablet structure is illustrated with respect to break force, failure mode, and friability: it is demonstrated that for a given average tablet density the break force and failure mode are not unique.
The influence of Nd YAG laser welding parameters on the microstructure and joint break force were also analyzed.
A modified Drucker Prager cap model together with a maximum principal stress based failure criteria was found sufficient to predict the break force of tablets under diametrical compression loading.
Compared with the data ranging between 4nN to 10 nN [13], the error ranges of our break force and penetration distance are acceptable based on the measurements of 200 or 510 force curves.
Moreover, the D-value (fd-fu) of the break force between the lower and upper layers is about 0.41 nN, which is almost equal to the break through forces of upper layer (fu: 0.38 ± 0.28 nN) of DSPC LB films.
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At 5-5 Federer made the final break, forcing Del Potro into a mistake with a splendid return.
However protein content was negatively correlated with breaking force.
The breaking force of the CM-CKFs was lower than that of cotton knitted fabrics, but the breaking force increased with the DS, so did the breaking elongation.
The breaking force of the strands was assessed by a three point bending test.
The tablets were evaluated for average weight, breaking force, and friability tests.
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