what is the scientific interpetation of all of what comes: 1- axial loading 2- Direct shear loading 3- Torsional loading 4. Bending load 4- Explain it in detail and how to use it to solve mechanical design Problems
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- Please solve all part's correctlyA part is loaded with a combination of bending, axial, and torsion such that the following stresses are created at a particular location: Bending - Completely reversed, with a maximum stress of 60 MPa Axial - Constant stress of 20 MPa Torsion - Repeated load, varying from 0 MPa to 50 MPa Assume the varying stresses are in phase with each other. The part contains a notch such that Kibending = 1.4, Kaxial = 1.1, and K. = 2.0. The material properties are Sy = 300 MPa and S, = 400 MPa. The completely adjusted endurance limit is found to be Se= 200 MPa. Find the factor of safety for fatigue based on infinite life. If the life is not infinite, estimate the number of cycles. Be sure to check for yielding. f,torsionHi, I have been given this pin-jointed frame analysis to solve (see pictures of the structure attached). Can you help me answer all the questions below? Especially the one about the bending moment and shear force. The Figure 2 attached is a simplified structure to undertake a structural analysis on a concept design for a low cost stroller/buggy for children. The buggy consists of a number of metal sections that are pin-jointed together. The buggy is designed to accommodate a child of mass no more than 20 kg, sat on the seat which is supported at four points (Fc) on the frame of the buggy. Assume that the weight of the child is equally distributed across all of the points indicated on Figure 2 as Fc. Assume that there are no additional forces applied to the handle of the buggy, that the buggy is static (stationary) and that the buggy, and the elements of the frame have no mass. At points A and G, there are roll supports. At Points B, F and D there are the pin supports. I am required…
- A part is loaded with a combination of bending, axial, and torsion such that the following stresses are created at a particular location:Bending: Completely reversed, with a maximum stress of 60 MPaAxial: Constant stress of 20 MPaTorsion: Repeated load, varying from 0 MPa to 70 MPaAssume the varying stresses are in phase with each other. The part contains a notch such that Kf,bending = 1.4, Kf,axial = 1.1, and Kf,torsion = 2.0. The material properties are Sy = 300 MPa and Su = 400 MPa. The completely adjusted endurance limit is found to be Se = 160 MPa. Find the factor of safety for fatigue based on infinite life, using the Goodman criteria. If the life is not infinite, estimate the number of cycles, using the Walker criterion to find the equivalent completely reversed stress. Be sure to check for yielding.please help solve and explain and include FBD pleaseI need answer in 10 minutes please quickly
- Show free body diagramA screw clamp shown in the figure has a handle with diameter 5 mm made of cold-drawn AISI 1006 steel (table E18 - page 1195). The overall length of the hand is 75 mm. The screw is M 12 coarse (table 8-1) and is 145 mm long, overall. Distance A is 50 mm. The clamp will accommodate parts up to 105 mm high.a) What is the value of screw torque that causes the handle to bend permanently?b) If the collar friction is neglected and if the thread friction is 0.075, what is the screw force value that causes the handle to bend permanently?c) What is the value of clamping force, which will cause the screw to buckle?d) Are there any other stresses or possible failures to be checked?e) If yes, calculate them.Explain Torsional Moment with example?
- DesignThe pin in the image shown must transfer an axial tension force of 12.7 kN. Calculate the minimum pin diameter. Use Shear Stress = 0.4*Yield strength. Assume material is 1020 hot-rolled steel.Write legibly, provide manual step by step solution, and diagram for below given problem. A 100 mm diameter 4-spline shaft ( d= 0.75D, w= 0.24D, h= 0.125D ) and to slide when not under load has a compressive force of 2100 lbs. Find the compressive stress if the hub length is 3 1/2 inches.