The following assembly section is provided with critical nominal dimensions shown (not to scale) [mm]: 200 20 20 208 Det
Posted: Tue Apr 26, 2022 4:06 pm
Please help me. Will rate.
The following assembly section is provided with critical nominal dimensions shown (not to scale) [mm]: 200 20 20 208 Detail drawing of bearing and retainer ring -1.75 23 All the parts for this assembly are being purchased except of the outer case which you are designing. You asked for statistical manufacturing data from potential suppliers: -0.0136 Width of shaft from groove to collar AH = 200.00+0.06 Bearing_/CE and FH; 2 required) = 23.00+0.00 -0.12 ; isc, = 1.5 Bearing sleeve (DE and FG; Z required) = 20.00 +0.02 ; is C =1.5 Retainer ring (AB) = 1.75 +0.00 -0.06 ; is C=1 a) You decide to manufacture the outer case with overall dimension 200.00 -0.10. Your process capability is -1. Assuming all variables are normally distributed determine: i) The percentage of assemblies that will have GAP BC between 30 mm and.55 mm? ii) The percentage of assemblies that will have GAP BC between 35 mm and 50 mm2
The following assembly section is provided with critical nominal dimensions shown (not to scale) [mm]: 200 20 20 208 Detail drawing of bearing and retainer ring -1.75 23 All the parts for this assembly are being purchased except of the outer case which you are designing. You asked for statistical manufacturing data from potential suppliers: -0.0136 Width of shaft from groove to collar AH = 200.00+0.06 Bearing_/CE and FH; 2 required) = 23.00+0.00 -0.12 ; isc, = 1.5 Bearing sleeve (DE and FG; Z required) = 20.00 +0.02 ; is C =1.5 Retainer ring (AB) = 1.75 +0.00 -0.06 ; is C=1 a) You decide to manufacture the outer case with overall dimension 200.00 -0.10. Your process capability is -1. Assuming all variables are normally distributed determine: i) The percentage of assemblies that will have GAP BC between 30 mm and.55 mm? ii) The percentage of assemblies that will have GAP BC between 35 mm and 50 mm2