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Use to Matlab to optimize the feed rate by considering milling forces. Make necessary changes in the milling force simulation code given in Moodle. Consider
Use to Matlab to optimize the feed rate by considering milling forces. Make necessary changes in the milling force simulation code given in Moodle. Consider maximum allowable resultant force of 25 N as a constraint. Try different radial depth of cut values and calculate corresponding feed rates and machining times? Use cutting and edge force coefficients in the milling force model as below: kte 15.88 2544.2 35.53 968.34 Other process constraints you should consider are given as: N_lower-1000 rpm, N_upper-20000 rpm f _lower-0.015 mm/tooth, f upper-0.05 mm/tooth. Use to Matlab to optimize the feed rate by considering milling forces. Make necessary changes in the milling force simulation code given in Moodle. Consider maximum allowable resultant force of 25 N as a constraint. Try different radial depth of cut values and calculate corresponding feed rates and machining times? Use cutting and edge force coefficients in the milling force model as below: kte 15.88 2544.2 35.53 968.34 Other process constraints you should consider are given as: N_lower-1000 rpm, N_upper-20000 rpm f _lower-0.015 mm/tooth, f upper-0.05 mm/tooth
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