
Beams AB, BC, and CD have the cross section shown and are pin-connected at B and C. Knowing that the allowable normal stress is +110 MPa in tension and –150 MPa in compression, determine (a) the largest permissible value of w if beam BC is not to be overstressed, (b) the corresponding maximum distance a for which the cantilever beams AB and CD are not overstressed.
Fig. P5.89
(a)

The largest permissible value of w for the condition that the beam BC is not overstressed.
Answer to Problem 89P
The largest permissible value of w is
Explanation of Solution
Given information:
The allowable normal stress of the material in tension is
The allowable normal stress of the material in compression is
Calculation:
Show the free-body diagram of the section BC as in Figure 1.
Determine the vertical reaction at point C by taking moment about point B.
Determine the vertical reaction at point B by resolving the vertical component of forces.
Show the free-body diagram of the section AB as in Figure 2.
Determine the vertical reaction at point A by resolving the vertical component of forces.
Determine the moment at point A by taking moment about the point A.
Show the free-body diagram of the section CD as in Figure 3.
Determine the vertical reaction at point D by resolving the vertical component of forces.
Determine the moment at point D by taking moment about the point D.
Shear force:
Show the calculation of shear force as follows;
Show the calculated shear force values as in Table 1.
Location (x) m | Shear force (V) kN |
A | |
B | 3.6w |
C | –3.6w |
D |
Plot the shear force diagram as in Figure 4.
Location of the maximum bending moment:
The maximum bending moment occurs where the shear force changes sign.
Refer to Figure 4;
Use the similar triangle concept.
The maximum bending moment occurs at a distance of
Bending moment:
Show the calculation of the bending moment as follows;
Show the calculated bending moment values as in Table 2.
Location (x) m | Bending moment (M) kN-m |
A | |
B | 0 |
Max BM | 6.48w |
C | 0 |
D |
Plot the bending moment diagram as in Figure 5.
Show the free-body diagram of the T-section as in Figure 6.
Determine the centroid in y-axis
Here, the area of the section 1 is
Refer to Figure 4;
Substitute
Determine the moment of inertia (I) using the equation.
Here, the depth of the section 1 is
Substitute 12.5 mm for
Refer to Figure 4;
Tension at Points B and D:
Refer to Figure 5;
Determine the moment at points B and D using the relation.
Substitute 110 MPa for
Compression at Points B and C:
Refer to Figure 5;
Determine the moment at points B and D using the relation.
Substitute –150 MPa for
Tension at maximum bending moment:
Refer to Figure 5;
Determine the maximum moment using the relation.
Substitute 110 MPa for
Compression at maximum bending moment:
Refer to Figure 5;
Determine the maximum moment using the relation.
Substitute –150 MPa for
Refer to the calculated distribution loads; the smallest value controls the design.
Refer to Figure 5;
Equate the maximum bending moment calculated and the maximum bending moment in the tension side.
Therefore, the largest permissible value of w for the condition that the beam BC is not overstressed is
(b)

The maximum distance a for the condition that the beams AB and CD are not overstressed.
Answer to Problem 89P
The maximum distance a for the condition that the beams AB and CD are not overstressed is
Explanation of Solution
Refer to Part (a), Figure 4;
The maximum bending moment in the beams AB and CD occurs at the ends A and D.
The calculated maximum bending moment at the points A and D is as follows:
The maximum allowable compression moment at the points A and D is as follows:
Equate the values;
Refer to the answer of the part (a);
Substitute
Therefore, the maximum distance a for the condition that the beams AB and CD are not overstressed is
Want to see more full solutions like this?
Chapter 5 Solutions
Mechanics of Materials, 7th Edition
- 40.00 30.00 100.00- 100.00 P = 1000 N A=167 d=140.00 100.00- -b 20.00 200.00 Weld Strength P = 273 N/mm^2 Electrod E60 Safety factor S₁ = 3 Force P = 1000 N Using by SOLIDWORKSarrow_forwardWhat are the reaction forces in A and B?arrow_forwardPearson eText Study Area Access Pearson mylabmastering.pearson.com P Pearson MyLab and Mastering Problem 15.6 P Course Home b Answered: HW_02.pdf EE 213-01 > Assignments HW_#... 3 of 8 ■ Review Document Sharing User Settings The jet plane has a mass of 250 Mg and a horizontal velocity of 100 m/s when t = 0. Part A If both engines provide a horizontal thrust which varies as shown in the graph in (Figure 1), determine the plane's velocity in 5 s. Neglect air resistance and the loss of fuel during the motion. Express your answer to three significant figures and include the appropriate units. Figure 1 of 1 > ☐ μÅ ? v = Value Units Submit Request Answer Provide Feedback Next >arrow_forward
- Access Pearson mylabmastering.pearson.com P Pearson MyLab and Mastering Problem 15.43 P Course Home b Answered: HW_02.pdf EE 213-01 > Assignments HW_#... Pearson eText Study Area Document Sharing User Settings The 20-g bullet is travelling at 400 m/s when it becomes embedded in the 2-kg stationary block. The coefficient of kinetic friction between the block and the plane is μk = 0.2. (Figure 1) Part A Determine the distance the block will slide before it stops. Express your answer to three significant figures and include the appropriate units. Figure 1 of 1 με S = Value Units Submit Request Answer Provide Feedback ? 4 of 8 Review Next >arrow_forwardAccess Pearson mylabmastering.pearson.com P Pearson MyLab and Mastering Problem 15.64 P Course Home b Answered: HW_02.pdf EE 213-01 > Assignments HW_#... 5 of 8 Pearson eText Study Area Document Sharing User Settings Ball A has a mass of 3 kg and is moving with a velocity of (VA)1 = 8 m/s when it makes a direct collision with ball B, which has a mass of 2.5 kg and is moving with a velocity of (VB) 1 = 4 m/s. Suppose that e = 0.7. Neglect the size of the balls. (Figure 1) Part A Determine the velocity of A just after the collision. ■Review Express your answer to three significant figures and include the appropriate units. Assume the positive direction is to the right. Figure 1 of 1 ◎ на ? (VA)2= Value Units Submit Request Answer Part B Determine the velocity of B just after the collision. Express your answer to three significant figures and include the appropriate units. Assume the positive direction is to the right. μÅ ? (VB)2= = Value Units Submit Request Answer Provide Feedback Next…arrow_forwardI only need help with number 3, actually just the theta dot portion. Thanks! I have Vr = 10.39 ft/sarrow_forward
- Only 100% sure experts solve it correct complete solutions okk don't use guidelines or ai answers okk will dislike okkk. Only human experts solved itarrow_forwardAirplanes A and B, flying at constant velocity and at the same altitude, are tracking the eye of hurricane C. The relative velocity of C with respect to A is 300 kph 65.0° South of West, and the relative velocity of C with respect to B is 375 kph 50.0° South of East. A 120.0 km B 1N 1. Determine the relative velocity of B with respect to A. A ground-based radar indicates that hurricane C is moving at a speed of 40.0 kph due north. 2. Determine the velocity of airplane A. 3. Determine the velocity of airplane B. Consider that at the start of the tracking expedition, the distance between the planes is 120.0 km and their initial positions are horizontally collinear. 4. Given the velocities obtained in items 2 and 3, should the pilots of planes A and B be concerned whether the planes will collide at any given time? Prove using pertinent calculations. (Hint: x = x + vt) 0arrow_forwardOnly 100% sure experts solve it correct complete solutions okk don't use guidelines or ai answers okk will dislike okkk.arrow_forward
- Solve this probem and show all of the workarrow_forwardThe differential equation of a cruise control system is provided by the following equation: WRITE OUT SOLUTION DO NOT USE A COPIED SOLUTION Find the closed loop transfer function with respect to the reference velocity (vr) . a. Find the poles of the closed loop transfer function for different values of K. How does the poles move as you change K? b. Find the step response for different values of K and plot in MATLAB. What can you observe?arrow_forwardSolve this problem and show all of the workarrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY





