11-10. Draw the shear and moment diagrams for the shaft. The bearings at A and D exert only vertical reactions on the shaft. A 14 in. 20 in. 15 in.-12 in. BH 80 lb 110 lb E D 35 lb
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- 4. Draw the shear and moment diagrams for the shaft. The bearings at A and D exert only vertical reaction on the shaft. The loading is applied to the pulleys at B and C and E. -14 in.- 80 lb 20 in.- -15 in.-12 in. 110 lb D E 35 lbDetermine the internal resisting forces and moment trans- mitted by section aa in 500 Ib 10 in- -5 in- 45 B 7 in. 8 in.DRAW THE DIAGRAM OF EVERY ANALYZED PART AND LABEL THE VALUE OF SHEAR AND MOMENT. B 3m 10 kN C 3m D 2m THET A hinge at D 6m E 20 kN/m 4m
- The shaft is supported by a smooth thrust bearing at A and smooth journal bearing at B. Draw the shear and moment diagrams for the shaft.11-1. Draw the shear and moment diagrams for the shaft. The bearings at A and Bexert only vertical reactions an the shaft. -N0 mm- 250 mim 24 kNThe axle of the freight train is subjected to loadings as shown below. The diameter of the axle is 137.5 mm. If it is supported by two journal bearings at C and D, determine the maximum bending Stress. Include a FBD, SFD and BMD using either the section or graphical method. Draw a cross-section of the shaft and indicate the points of maximum tension and compression.
- For the 80-mm shaft subjected to two concentrated forces shown, the journal bearings at A and B only support vertical forces. Address the following: (a) Construct a shear and moment diagrams for the shaft using the graphical method. (b) Determine the absolute maximum bending stress (highlight the location of maximum normal stress). 12 kN -0.5 m -0.4 m 20 kN 0.6 mDraw the shear and moment diagrams, then anwer the questions. The distancexis measured from point A to the right. Assume w = 300 Ib/ft, a = 2.6 ft, b = 2.7 ft. B Questions: Atx = 1.5 ft, V = Ib, M= Ib-ft Atx = 4.0 ft, V = i Ib, M= Ib-ftC8-49 A 500-lb load is supported by a roller on a beam as shown in Fig. Show that the maximum bending moment in the beam occurs at the roller. -25 ft- A B 500 lb
- Draw the shear and moment diagrams, then anwer the questions. The distance x is measured from point A to the right. Assume w = 520 lb/ft, a = 3.1 ft, b = 2.6 ft. B Questions: Atx = 1.4 ft, V= i Ib, M= i Ib-ft Atx = 4.5 ft, V= i Ib, M= i Ib-ftThe shaft is supported by a journal bearing at A and a thrust bearing at B. Determine the normal force, shear force and moment at a section passing through (a) point C, which is just to right of bearing at A, and (b) point D, which is just to the left of the Force F2. Given: F1 = = 2.5 kip F2 = 3 kip lb W = 75 ft - b = 12 ft c = 2 ft a = 6 ft F2 D a bUse the graphical method to construct the bending-moment diagram and identify the magnitude of the largest moment (consider both positive and negative). The ground reactions and the shear-force diagram are provided. M= 12 kN-m Ay = 3.37 kN Dy = 32.63 kN | 15 kN M 7 kN/m В C D E 4 m 4 m 4 m 3 m 21 Ay Ay A, A,-15 A,-15 O 23.3 kN-m O 26.1 kN-m O 19.7 kN-m O 31.56 kN-m 29.6 kN-m Units: kN