Design a hard steel (screw and nut) lubricated power screw for raising and lowering a load of 25 kN using a square – thread with major diameter of 40 mm, pitch of 6 mm with triple threads and a plain bronze thrust collar of 60 mm (fc=0.08) (Assume maximum friction). (a) Find the torque for raising and lowering the load. Is the design self-locking? If not, please change the design accordingly (b) Find the largest axial and shear body stresses. Also find the bending stresses (c) With a safety factor of 2, a designer has chosen the DE approach to design the power screw with Sy = 260 MPa. Is this a suitable option?

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Design a hard steel (screw and nut) lubricated power screw for raising and lowering a load of 25 kN using a square – thread with
major diameter of 40 mm, pitch of 6 mm with triple threads and a plain bronze thrust collar of 60 mm (fc=0.08) (Assume maximum
friction).
(a) Find the torque for raising and lowering the load. Is the design self-locking? If not, please change the design accordingly
(b) Find the largest axial and shear body stresses. Also find the bending stresses
(c) With a safety factor of 2, a designer has chosen the DE approach to design the power screw with Sy = 260 MPa. Is this a
suitable option?
Transcribed Image Text:Design a hard steel (screw and nut) lubricated power screw for raising and lowering a load of 25 kN using a square – thread with major diameter of 40 mm, pitch of 6 mm with triple threads and a plain bronze thrust collar of 60 mm (fc=0.08) (Assume maximum friction). (a) Find the torque for raising and lowering the load. Is the design self-locking? If not, please change the design accordingly (b) Find the largest axial and shear body stresses. Also find the bending stresses (c) With a safety factor of 2, a designer has chosen the DE approach to design the power screw with Sy = 260 MPa. Is this a suitable option?
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