The cross section of the rod in the picture is a circle and the elastic modulus of the material is 200 GPa (material S235JRG2). The rod is pulled with a force of F = 5250 N. Determine the minimum value of the rod diameter d when the rod length is L = 5250 mm and a length change of ΔL = 4.0 mm is allowed for the rod. Also determine the safety with respect to the rod. Use units in calculations [N, mm] Enter the answer to one decimal place. Do not round the invoices in the intermediate stages, but only the final answer!
The cross section of the rod in the picture is a circle and the elastic modulus of the material is 200 GPa (material S235JRG2). The rod is pulled with a force of F = 5250 N. Determine the minimum value of the rod diameter d when the rod length is L = 5250 mm and a length change of ΔL = 4.0 mm is allowed for the rod. Also determine the safety with respect to the rod. Use units in calculations [N, mm] Enter the answer to one decimal place. Do not round the invoices in the intermediate stages, but only the final answer!
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter1: Introduction To Statics
Section: Chapter Questions
Problem 1.8P: In some applications dealing with very high speeds, the velocity is measured in mm/s. Convert 8mm/s...
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The cross section of the rod in the picture is a circle and the elastic modulus of the material is 200 GPa (material S235JRG2). The rod is pulled with a force of F = 5250 N. Determine the minimum value of the rod diameter d when the rod length is L = 5250 mm and a length change of ΔL = 4.0 mm is allowed for the rod. Also determine the safety with respect to the rod.
Use units in calculations [N, mm]
Enter the answer to one decimal place. Do not round the invoices in the intermediate stages, but only the final answer!
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