on Determine the reactions in C member ACD as shown in figure? B 800 KN 5 m 4 m 6 m A D 8 m E 600 KN 3 m
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- Solve the preceding problem for the following data: b = 8.0 in., k = 16 lb/in., a = 45°, and P = 10 lb.Repeat Problem 2.4-8, but assume that the bar is made of aluminum alloy and that BC is prismatic. Assume that P = 20 kim. L = 3 ft.t = 314 in., b1 2m.b 2.Sin.andElO.400ksi.Using the direct stiffness method for the spring assemblage in Figure 2, determine the following:a) Nodal displacementsb) The forces in each elementc) The reactions
- There is a gap of δ = 0.05cm between the steel and copper bars seen in the figure. i) When the ambient temperature rises to 200oC, will there be a reaction force in the bearings? ii) If there is a reaction force, calculate the reaction forces RA and RB at points A and B. The cross-sectional area of both bars is equal and 5cm ^ 2. Materials;Modules of Elasticity: E Steel = 210 GPa E Copper = 120 GPa Expansion Coefficients: α Steel = 12.10-6 1 / 0C α Copper = 16.10-6 1 / 0CA motor (located at C) provides 50kW of power which is then used by pulleys A and B. When the motor is running, the transmission shaft (which is made of Cr-Ni steel and has a diameter of 5cm) starts rotating at a speed of 200 rpm. 1) Find the moment of force at pulleys A, B and C. 2) Find the torque in each section (between the pulleys). 3) What is the safety factor of the driveshaft on the ultimate limit?Free-Body Diagram Involving Internal Reactions
- A cylindrical rod of Ni 200 alloy has the followingproperties: E = 204 GPa, v = 0.31. It is loaded elastically incompression at 12.5 kN. If the original rod length anddiameter are 20 mm and 15 mm, respectively, determinethe rod length and diameter under load.Draw FBD (Free Body Diagram) of the structure shown in the figure below. What type ofstructure is it? Justify. Find reaction at point A.Figure Q1 shows a composite rod ABC attached in between two rigid walls. Part AB is a solid rod made from Aluminium (E = 70 GPa), while part BC is a hollow cylindrical rod made from steel (E = 200 GPa).The diameter of part AB and the internal and external diameters of part BC are as shown in figure. A 40 kN force is applied at B in the direction as shown. If the compound rod is unstressed before theapplication of load,(a) determine the reaction at A and C.(b) determine the horizontal displacement of point B.
- Using this equation FL/AE The assembly consists of two rods (AB and CD) and a rigid bar (AC). A force of 6 kips is applied as shown in the figure. Let AAB = 1.5 in2, ACD = 1.1 in2, LA = 6 ft, LC = 4 ft, a = 1 ft, b = 2 ft and E= 17400 ksi. Determine the deformation in bar CD? Determine the deformation in bar AB? Determine the angle of rotation in rigid bar AC?– The weight is suspended from structural A–36 steel alloy and 2014-T6 aluminum alloy wires, eachhaving the same initial length of 10 ft and cross-sectional area of 7×10–3 in2 (Figure Q1). If the weight is increasedgradually, determine which wire yields first? Explain which material model and yield criterion you will use? Justifyyour choicesExample 2.29.Two smooth spheres each of radius 100mm and weight 100N rest in a horizontal chamnel having vertical walls the distance between which is 360mm.Find the reactions at the points of contacts A B C and D show if Fig. 2.44 ).