Mechanics of Materials-Access
Mechanics of Materials-Access
9th Edition
ISBN: 9780133356120
Author: HIBBELER
Publisher: PEARSON
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Chapter 4, Problem 4.114RP

The assembly consists of two A992 steel bolts AB and EF and an 6061-T6 aluminum rod CD. When the temperature is at 30° C, the gap between the rod and rigid member AE is 0.1 mm Determine the normal stress developed in the bolts and the rod if the temperature rises to 130° C.

Assume BF is also rigid.

Chapter 4, Problem 4.114RP, The assembly consists of two A992 steel bolts AB and EF and an 6061-T6 aluminum rod CD. When the

R4–1/2

Expert Solution & Answer
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To determine

The normal stress developed in the bolts and rod.

Answer to Problem 4.114RP

The normal stress developed in the bolts and rod are 33.5MPa_ and 16.8MPa_

Explanation of Solution

Given information:

The two bolts AB and EF are made of A992 steel.

The rod CD is made of 6061-T6 aluminum.

The Young’s modulus of the steel is (Est) 200×103N/mm2

The Young’s modulus of the aluminum (Eal) is 68.9×103N/mm2

The coefficient of thermal expansion of the steel (αst) is 12×106m/m°C

The coefficient of thermal expansion of the aluminum (αal) is 24×106m/m°C

The initial temperature (T1) is 30°C

The finial temperature (T2) is 130°C

The gap between the rod and rigid member AE is 0.1mm

The diameter of the bolts AB and EF (db) is 25mm

The diameter of the rod CD (dr) is 50mm

The length of the bolts AB and EF (Lb)  is 400mm

The length of the rod CD (Lr) is 300mm

Calculation:

Calculate the area of the bolts AB and EF (Ab) using the formula:

Ab=π4db2 (1)

Substitute 25mm for db in Equation (1).

Ab=π4×252=490.874mm2

Calculate the area of the rod CD (Ar) using the formula:

Ar=π4dr2 (2)

Substitute 50mm for dr in Equation (2).

Ar=π4×502=1,963.495mm2

Calculate the difference of temperature (ΔT) using the formula:

ΔT=T2T1 (3)

Substitute 30°C for T1 and 130°C for T2 in Equation (3).

ΔT=13030=100°C

Show the free body diagram of the rigid cap as in Figure 1.

Mechanics of Materials-Access, Chapter 4, Problem 4.114RP , additional homework tip  1

Refer Figure 1.

Calculate the vertical forces by applying the equation of equilibrium:

Sum of vertical forces is equal to 0.

Fy=0Fb+FrFb=0Fr2Fb=0Fr=2Fb (4)

Here, Fb is force at the bolts AB and EF and Fr is force at the rod CD.

Show the initial and final position of the assembly as in Figure 2.

Mechanics of Materials-Access, Chapter 4, Problem 4.114RP , additional homework tip  2

Refer Figure 2.

Here (δT)r is deformation at rod due to temperature, (δT)b is deformation at bolts due to temperature, (δF)r is deformation at rod due to force, and (δF)b is deformation at bolts due to force.

The deformation is as follows:

(δT)r(δF)r0.1=(δT)b+(δF)bαalΔTLrFrLrArEal0.1=αstΔTLb+FbLbAbEst (5)

Substitute 24×106m/m°C for σal , 12×106m/m°C for αst , 100°C for ΔT , 300mm for Lr , 400mm for Lb , 1,963.495mm2 for Ar , 490.874mm2 for Ab , 68.9×103N/mm2 for Eal , and 200×103N/mm2 for Est in Equation (5).

[(24×106×100×300)Fr×3001,963.495×68.9×1030.1]=[(12×106×100×400)+Fb×400490.874×200×103]0.722.2175×106Fr0.1=0.48+4.0743×106Fb4.0743×106Fb+2.2175×106Fr=0.720.10.48

4.0743×106Fb+2.2175×106Fr=0.14Fb+0.5443Fr=34,361.73 (6)

Calculate the force at the bolts AB and EF (Fb)

Substitute 2Fb for Fr in Equation (6).

Fb+0.5443(2Fb)=34,361.732.0886Fb=34,361.73Fb=34,361.732.0886Fb=16,452N

Calculate the force at the rod CD (Fr)

Substitute 16,452N for Fb in Equation (4).

Fr=2(16,452)=32,904N

Calculate the normal stress developed in the bolts AB and EF (σb) using the formula:

σb=FbAb (7)

Substitute 16,452N for Fb and 490.874mm2 for Ab in Equation (7).

σb=16,452490.874=33.5N/mm2×1MPa1N/mm2=33.5MPa

Calculate the normal stress developed in the rod CD (σr) using the formula:

σr=FrAr (8)

Substitute 32,904N for Fb and 1,963.495mm2 for Ar in Equation (8).

σr=3,29041,963.495=16.8N/mm2×1MPa1N/mm2=16.8MPa

Hence, the normal stress developed in the bolts and rod are 33.5MPa_ and 16.8MPa_

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Chapter 4 Solutions

Mechanics of Materials-Access

Ch. 4.2 - The 20-mm-diameter 2014-T6 aluminum rod is...Ch. 4.2 - Prob. 4.1PCh. 4.2 - The copper shaft is subjected to the axial loads...Ch. 4.2 - The composite shaft, consisting of aluminum,...Ch. 4.2 - The composite shaft, consisting of aluminum,...Ch. 4.2 - 4-5. The assembly consists of a steel rod CB and...Ch. 4.2 - 4-6. The bar has a cross-sectional area of 3 in2,...Ch. 4.2 - 4–7. If P1 = 50 kip and P2 = 150 kip, determine...Ch. 4.2 - *4-8. If the vertical displacements of end A of...Ch. 4.2 - The assembly consists of two 10-mm diameter red...Ch. 4.2 - The assembly consists of two 10-mm diameter red...Ch. 4.2 - The load is supported by the four 304 stainless...Ch. 4.2 - The load is supported by the four 304 stainless...Ch. 4.2 - The rigid bar is supported by the pin-connected...Ch. 4.2 - Prob. 4.14PCh. 4.2 - Prob. 4.15PCh. 4.2 - *4-16. The hanger consists of three 2014-T6...Ch. 4.2 - 4-17. The hanger consists of three 2014-T6...Ch. 4.2 - Prob. 4.18PCh. 4.2 - Prob. 4.19PCh. 4.2 - The assembly consists of three titanium...Ch. 4.2 - Prob. 4.21PCh. 4.2 - Prob. 4.22PCh. 4.2 - Prob. 4.23PCh. 4.2 - Determine the relative displacement of one end of...Ch. 4.2 - Prob. 4.25PCh. 4.2 - Prob. 4.26PCh. 4.2 - 4-27. The circular bar has a variable radius of r...Ch. 4.2 - Prob. 4.28PCh. 4.2 - Prob. 4.29PCh. 4.2 - Prob. 4.30PCh. 4.5 - 4-31. The concrete column is reinforced using four...Ch. 4.5 - Prob. 4.32PCh. 4.5 - 4-33. The steel pipe is filled with concrete and...Ch. 4.5 - If column AB is made from high strength precast...Ch. 4.5 - If column AB is made from high strength precast...Ch. 4.5 - Determine the support reactions at the rigid...Ch. 4.5 - If the supports at A and C are flexible and have a...Ch. 4.5 - Prob. 4.38PCh. 4.5 - Prob. 4.39PCh. 4.5 - Prob. 4.40PCh. 4.5 - The 2014-T6 aluminum rod AC is reinforced with the...Ch. 4.5 - The 2014-T6 aluminum rod AC is reinforced with the...Ch. 4.5 - The assembly consists of two red brass C83400...Ch. 4.5 - *4-44. The assembly consists of two red brass...Ch. 4.5 - Prob. 4.45PCh. 4.5 - If the gap between C and the rigid wall at D is...Ch. 4.5 - The support consists of a solid red brass C83400...Ch. 4.5 - If there are n fibers, each having a...Ch. 4.5 - Prob. 4.49PCh. 4.5 - Prob. 4.50PCh. 4.5 - Prob. 4.51PCh. 4.5 - Prob. 4.52PCh. 4.5 - 4-53. Each of the three A-36 steel wires has the...Ch. 4.5 - 4-54. The 200-kg load is suspended from three A-36...Ch. 4.5 - The three suspender bars are made of A992 steel...Ch. 4.5 - Prob. 4.56PCh. 4.5 - 4-57. The rigid bar is originally horizontal and...Ch. 4.5 - Prob. 4.58PCh. 4.5 - 4-59. Two identical rods AB and CD each have a...Ch. 4.5 - *4-60. The assembly consists of two posts AD and...Ch. 4.5 - Prob. 4.61PCh. 4.5 - Prob. 4.62PCh. 4.5 - Prob. 4.63PCh. 4.5 - Prob. 4.64PCh. 4.5 - 4-65. Initially the A-36 bolt shank fits snugly...Ch. 4.5 - Prob. 4.66PCh. 4.5 - Prob. 4.67PCh. 4.6 - The C83400-red-brass rod AB and 2014-T6- aluminum...Ch. 4.6 - The assembly has the diameters and material...Ch. 4.6 - The rod is made of A992 steel and has a diameter...Ch. 4.6 - Prob. 4.71PCh. 4.6 - Prob. 4.72PCh. 4.6 - The pipe is made of A992 steel and is connected to...Ch. 4.6 - The bronze C86100 pipe has an inner radius of 0.5...Ch. 4.6 - The 40-ft-long A-36 steel rails on a train track...Ch. 4.6 - The device is used to measure a change in...Ch. 4.6 - The bar has a cross-sectional area A, length L,...Ch. 4.6 - When the temperature is at 30C, the A-36 steel...Ch. 4.6 - When the temperature is at 30C, the A-36 steel...Ch. 4.6 - When the temperature is at 30C, the A-36 steel...Ch. 4.6 - The 50-mm-diameter cylinder is made from Am...Ch. 4.6 - The 50-mm-diameter cylinder is made from Am...Ch. 4.6 - The wires AB and AC are made of steel, and wire AD...Ch. 4.6 - The cylinder CD of the assembly is heated from T1...Ch. 4.6 - The cylinder CD of the assembly is heated from T1=...Ch. 4.6 - The metal strap has a thickness t and width w and...Ch. 4.9 - Determine the maximum normal stress developed in...Ch. 4.9 - If the allowable normal stress for the bar is...Ch. 4.9 - The steel bar has the dimensions shown. Determine...Ch. 4.9 - 4-90. Determine the maximum axial force P that can...Ch. 4.9 - Determine the maximum axial force P that can be...Ch. 4.9 - Determine the maximum normal stress developed in...Ch. 4.9 - Prob. 4.93PCh. 4.9 - 4-94. The resulting stress distribution along...Ch. 4.9 - Prob. 4.95PCh. 4.9 - *4-96. The 10-mm-diameter shank of the steel bolt...Ch. 4.9 - The weight is suspended from steel and aluminum...Ch. 4.9 - The bar has a cross-sectional area of 0.5 in2 and...Ch. 4.9 - Prob. 4.99PCh. 4.9 - *4-100. The rigid beam is supported by a pin at A...Ch. 4.9 - The rigid lever arm is supported by two A-36 steel...Ch. 4.9 - The rigid lever arm is supported by two A-36 steel...Ch. 4.9 - Prob. 4.103PCh. 4.9 - The rigid beam is supported by three 25-mm...Ch. 4.9 - The rigid beam is supported by three 25-mm...Ch. 4.9 - Prob. 4.106PCh. 4.9 - Prob. 4.107PCh. 4.9 - The rigid beam is supported by the three posts A,...Ch. 4.9 - The rigid beam is supported by the three posts A,...Ch. 4.9 - Prob. 4.110PCh. 4.9 - The bar having a diameter of 2 in. is fixed...Ch. 4.9 - Determine the elongation of the bar in Prob.4108...Ch. 4.9 - Prob. 4.113PCh. 4 - The assembly consists of two A992 steel bolts AB...Ch. 4 - The assembly shown consists of two A992 steel...Ch. 4 - The rods each have the same 25-mm diameter and...Ch. 4 - Two A992 steel pipes, each having a...Ch. 4 - The force P is applied to the bar, which is made...Ch. 4 - The 2014-T6 aluminum rod has a diameter of 0.5 in....Ch. 4 - The 2014-T6 aluminum rod has a diameter of 0.5 in....Ch. 4 - The rigid link is supported by a pin at A and two...Ch. 4 - The joint is made from three A992 steel plates...

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