Single-plate clutch and spring design of Automotive. Engine Specifications: Power 17.5 KW, Speed is 1000 rpm. Shaft Specifications: Shear stress is 40 Mpa. Clutch specifications (uniform-wear theory): Number of frietion surfaces is 2. The coefficient of friction is 0.3. Mean radius to the face width is 5. Pressure exerted on the plate clutch is 0.08 Mpa. Spring Specifications: Number of springs is 8 of type helical compression (Plain and Ground). The spring index is 6. Number of active coils is 8. The Spring exposed to an overload of 35%. The shear modulus is (G- 81370 N/mm2). shear stress is 0.420 Gpa. Young Modulus is 200 Gpa. The permissible shear stress is 45% of the ultimate tensile strength. The ultimate tensile strength is 1.770 Gpa. Shaft Diameter * 30 cm 0.35 m 0.035 m 0.35 cm O 27.7 cm O 27.7 mm 0.027 m O 29 mm
Single-plate clutch and spring design of Automotive. Engine Specifications: Power 17.5 KW, Speed is 1000 rpm. Shaft Specifications: Shear stress is 40 Mpa. Clutch specifications (uniform-wear theory): Number of frietion surfaces is 2. The coefficient of friction is 0.3. Mean radius to the face width is 5. Pressure exerted on the plate clutch is 0.08 Mpa. Spring Specifications: Number of springs is 8 of type helical compression (Plain and Ground). The spring index is 6. Number of active coils is 8. The Spring exposed to an overload of 35%. The shear modulus is (G- 81370 N/mm2). shear stress is 0.420 Gpa. Young Modulus is 200 Gpa. The permissible shear stress is 45% of the ultimate tensile strength. The ultimate tensile strength is 1.770 Gpa. Shaft Diameter * 30 cm 0.35 m 0.035 m 0.35 cm O 27.7 cm O 27.7 mm 0.027 m O 29 mm
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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