According to the results, the algorithm successfully finds the optimal combination of ball
size and quantity to be used in the ball swaging process. The optimizing result shows that if we
use two swage balls and three swage balls with the suitable combinations, we can obtain higher
retention torque value than when only one swage ball is used. In addition, the results of all cases
illustrate that the 0.001 inch difference from the last swage ball has a tendency to get the high
retention torque. Besides, the deformation of the base plate has the tendency to increase, when we
increase the number of the swage ball used in the ball swaging process. For future study, a more
effective way to measure deformation may be explored in order to achieve a more accurate result.
According to the results, the algorithm successfully finds the optimal combination of ballsize and quantity to be used in the ball swaging process. The optimizing result shows that if weuse two swage balls and three swage balls with the suitable combinations, we can obtain higherretention torque value than when only one swage ball is used. In addition, the results of all casesillustrate that the 0.001 inch difference from the last swage ball has a tendency to get the highretention torque. Besides, the deformation of the base plate has the tendency to increase, when weincrease the number of the swage ball used in the ball swaging process. For future study, a moreeffective way to measure deformation may be explored in order to achieve a more accurate result.
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