In this project, an industrial electrical mixer is designed in order to mix different materials to...
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In this project, an industrial electrical mixer is designed in order to mix different materials to produce an adhesive. Figure 1 shows the details of the design of this mixer. There is an electrical motor, 2 pulleys, 1 pulley belt, 4 bearings, 2 gears, and 2 shafts used in the design. The impeller is attached to the end of shaft 1. The power required to rotate the impeller is 2.6 HP (Horse-Power) at a rotational speed of 150 rpm. The diameters of the Gear 1 and Gear 2 are 210 mm and 52.2 mm, respectively. Similarly, the diameters for Pulley 1 and Pulley 2 are 342.9 mm and 137.2 mm, respectively. The gear ratio between Gear 1 and Gear 2 is The ratio between the pulleys is The tangential force component between gears (W) is 1193.125 N, and the pressure angle is 20°. See Fig. 2 for the definition of the pressure angle. Also, distances between bearings and shafts can be seen in Fig. 1. You are asked to complete the following: a) Draw the free body diagram (FBD) of shaft 1 and shaft 2. 50 mm 200 mm Bearing 1 Bearing 3 F Shaft 1 124mm 50 mm 1₂ Pulley 1 Shaft 2 1 Bearing 2 200 mm Impeller 50 mm Bearing 4 Pulley Belt Pulley 2 11 235 2 Electrical Motor A. 13 E. 124mm 0:0 Impeller Figure 1: Industrial Electrical Mover Figure 2: a) Gears bi Pulleys Figure 3: Schematic of Shall 2 Figure 4: Schemanic of Shaft 1 O 4 $10 In this project, an industrial electrical mixer is designed in order to mix different materials to produce an adhesive. Figure 1 shows the details of the design of this mixer. There is an electrical motor, 2 pulleys, 1 pulley belt, 4 bearings, 2 gears, and 2 shafts used in the design. The impeller is attached to the end of shaft 1. The power required to rotate the impeller is 2.6 HP (Horse-Power) at a rotational speed of 150 rpm. The diameters of the Gear 1 and Gear 2 are 210 mm and 52.2 mm, respectively. Similarly, the diameters for Pulley 1 and Pulley 2 are 342.9 mm and 137.2 mm, respectively. The gear ratio between Gear 1 and Gear 2 is The ratio between the pulleys is The tangential force component between gears (W) is 1193.125 N, and the pressure angle is 20°. See Fig. 2 for the definition of the pressure angle. Also, distances between bearings and shafts can be seen in Fig. 1. You are asked to complete the following: a) Draw the free body diagram (FBD) of shaft 1 and shaft 2. 50 mm 200 mm Bearing 1 Bearing 3 F Shaft 1 124mm 50 mm 1₂ Pulley 1 Shaft 2 1 Bearing 2 200 mm Impeller 50 mm Bearing 4 Pulley Belt Pulley 2 11 235 2 Electrical Motor A. 13 E. 124mm 0:0 Impeller Figure 1: Industrial Electrical Mover Figure 2: a) Gears bi Pulleys Figure 3: Schematic of Shall 2 Figure 4: Schemanic of Shaft 1 O 4 $10
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Given that PowerP26HP 19396W Rotational Speed N 150 rpm Torque T 60P2 N 26295Nm The force components ... View the full answer
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Financial Accounting Information For Decisions
ISBN: 9781260705584
10th Edition
Authors: John J. Wild
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