MECHANICS OF MTRLS(LL)-W/ACCESS>CUSTOM<
MECHANICS OF MTRLS(LL)-W/ACCESS>CUSTOM<
7th Edition
ISBN: 9781259713156
Author: BEER
Publisher: MCG CUSTOM
bartleby

Concept explainers

bartleby

Videos

Textbook Question
Book Icon
Chapter 10, Problem 117RP

Determine (a) the critical load for the steel strut, (b) the dimension d for which the aluminum strut will have the same critical load. (c) Express the weight of the aluminum strut as a percent of the weight of the steel strut.

Fig. P10.117

Chapter 10, Problem 117RP, Determine (a) the critical load for the steel strut, (b) the dimension d for which the aluminum

(a)

Expert Solution
Check Mark
To determine

Find the critical load for the steel strut.

Answer to Problem 117RP

The critical load of the steel strut is 647lb_.

Explanation of Solution

The modulus of elasticity of the steel strut is Est=29×106psi.

The size of the steel strut is ast=12in..

The length of the steel strut is Lst=4ft.

Determine the moment of inertia of the steel strut (Ist) using the relation.

Ist=(ast)412

Here, the size of the steel strut is ast.

Substitute 12in. for ast.

Ist=(12)412=5.2083×103in.4

The effective length (Le) of the column is equal to the length of the column.

Le=Lst=4ft

Determine the critical load (Pcr,st) of the steel strut using the equation.

Pcr,st=π2EstIst(Le)2

Here, the modulus of elasticity of the steel strut is Est and the effective length of the steel strut is Le.

Substitute 29×103psi for Est, 5.2083×103in.4 for Ist, and 4 ft for Le.

Pcr,st=π2×29×106×5.2083×103(4ft×12in.1ft)2=647lb

Therefore, the critical load of the steel strut is 647lb_.

(b)

Expert Solution
Check Mark
To determine

Find the dimension d for the condition that the critical load is same for steel strut and aluminum strut.

Answer to Problem 117RP

The dimension d of the aluminum strut for the given condition is 0.651in._.

Explanation of Solution

The modulus of elasticity of the aluminium strut is Eal=10.1×106psi.

The length of the aluminium strut is Lst=4ft.

The critical load of the steel strut and the aluminum strut is equal.

Pcr,st=Pcr,al=647lb.

The effective length (Le) of the column is equal to the length of the column.

Le=Lal=4ft

Determine the moment of inertia of the aluminium strut (Ial) using the equation.

Pcr,al=π2EalIal(Le)2

Here, the critical load in the aluminium strut is Pcr,al, the modulus of elasticity of the aluminium strut is Eal, and the effective length of the aluminium strut is Le.

Substitute 647 lb for Pcr,al, 10.1×106psi for Eal, and 4 ft for Le.

647=π2×10.1×106×Ial(4ft×12in.1ft)2Ial=149.543×104in.4

Determine the dimension of the aluminum strut (d) using the relation.

Ial=d412

Substitute 149.543×104in.4 for Ial.

149.543×104=d412d=0.651in.

Therefore, the dimension d of the aluminum strut for the given condition is 0.651in._.

(c)

Expert Solution
Check Mark
To determine

Find the percentage weight of aluminum strut to the steel strut.

Answer to Problem 117RP

The percentage weight of aluminum strut to the steel strut is 58.8%_.

Explanation of Solution

The weight density of the aluminium strut is γal=170lb/ft3.

The weight density of the steel strut is γst=490lb/ft3.

The length of the steel strut is Lst=4ft.

The length of the aluminium strut is Lal=4ft.

The dimension of the aluminium strut is d=0.651in..

The size of the steel strut is ast=12in..

In general,

The weight density (γ) of a material is defined as follows;

γ=WV=WALW=γAL

Here, the weight of the material is W, the volume of the material is V, the cross sectional area of the material is A, and the length of the material is L.

Write the expression as percentage weight of aluminium strut (Wal) to the steel strut (Wst) as follows;

WalWst×100%=γalAalLalγstAstLst×100%=γald2Lalγst(ast)2Lst×100%

Substitute 170lb/ft3 for γal, 0.651 in. for d, 4 ft for Lal, 490lb/ft3 for γst, 12in. for ast, 4 ft for Lst.

WalWst×100%=170×0.6512×4490×(12)2×4×100%=58.8%

Therefore, the percentage weight of aluminum strut to the steel strut is 58.8%_.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
A load P is supported as shown by a steel pin that has been inserted in a short wooden member hanging from the ceiling. The ultimate strength of the wood used is 60 MPa in tension and 7.5 MPa in shear,while the ultimate strength of the steel is 145 MPa in shear. Knowing that b = 40 mm, c = 55 mm, and d = 12 mm, determine the load P if an overall factor of safety of 3.2 is desired.
Determine the critical load of a pin-ended wooden stick that is 3 ft long and has a 3/16 × 1 1/4-in. rectangular cross section. Use E = 1.6 × 106 psi. (Round the final answer to two decimal places.)
The length of the 332332 -in.-diameter steel wire CD has been adjusted so that with no load applied, a gap of 116116 in. exists between the end B of the rigid beam ACB and contact point E. Knowing that E = 29 × 106 psi, determine where a 57-lb (w) block should be placed on the beam in order to cause contact between B and E. For contact, x <  in.

Chapter 10 Solutions

MECHANICS OF MTRLS(LL)-W/ACCESS>CUSTOM<

Ch. 10.1 - A column of effective length L can be made by...Ch. 10.1 - A compression member of 1.5-m effective length...Ch. 10.1 - Determine the radius of the round strut so that...Ch. 10.1 - Determine (a) the critical load for the square...Ch. 10.1 - A column with the cross section shown has a...Ch. 10.1 - A column is made from half of a W360 216...Ch. 10.1 - A column of 22-ft effective length is made by...Ch. 10.1 - A single compression member of 8.2-m effective...Ch. 10.1 - Knowing that P = 5.2 kN, determine the factor of...Ch. 10.1 - Members AB and CD are 30-mm-diameter steel rods,...Ch. 10.1 - The uniform brass bar AB has a rectangular cross...Ch. 10.1 - A 1-in.-square aluminum strut is maintained in the...Ch. 10.1 - A 1-in.-square aluminum strut is maintained in the...Ch. 10.1 - Column ABC has a uniform rectangular cross section...Ch. 10.1 - Column ABC has a uniform rectangular cross section...Ch. 10.1 - Column AB carries a centric load P of magnitude 15...Ch. 10.1 - Each of the five struts shown consists of a solid...Ch. 10.1 - A rigid block of mass m can be supported in each...Ch. 10.2 - An axial load P = 15 kN is applied at point D that...Ch. 10.2 - An axial load P is applied to the 32-mm-diameter...Ch. 10.2 - The line of action of the 310-kN axial load is...Ch. 10.2 - Prob. 32PCh. 10.2 - An axial load P is applied to the 32-mm-square...Ch. 10.2 - Prob. 34PCh. 10.2 - Prob. 35PCh. 10.2 - Prob. 36PCh. 10.2 - Solve Prob. 10.36, assuming that the axial load P...Ch. 10.2 - The line of action of the axial load P is parallel...Ch. 10.2 - Prob. 39PCh. 10.2 - Prob. 40PCh. 10.2 - The steel bar AB has a 3838-in. square cross...Ch. 10.2 - For the bar of Prob. 10.41, determine the required...Ch. 10.2 - A 3.5-m-long steel tube having the cross section...Ch. 10.2 - Prob. 44PCh. 10.2 - An axial load P is applied to the W8 28...Ch. 10.2 - Prob. 46PCh. 10.2 - A 100-kN axial load P is applied to the W150 18...Ch. 10.2 - A 26-kip axial load P is applied to a W6 12...Ch. 10.2 - Prob. 49PCh. 10.2 - Axial loads of magnitude P = 84 kN are applied...Ch. 10.2 - An axial load of magnitude P = 220 kN is applied...Ch. 10.2 - Prob. 52PCh. 10.2 - Prob. 53PCh. 10.2 - Prob. 54PCh. 10.2 - Axial loads of magnitude P = 175 kN are applied...Ch. 10.2 - Prob. 56PCh. 10.3 - Using allowable stress design, determine the...Ch. 10.3 - Prob. 58PCh. 10.3 - Prob. 59PCh. 10.3 - A column having a 3.5-m effective length is made...Ch. 10.3 - Prob. 61PCh. 10.3 - Bar AB is free at its end A and fixed at its base...Ch. 10.3 - Prob. 63PCh. 10.3 - Prob. 64PCh. 10.3 - A compression member of 8.2-ft effective length is...Ch. 10.3 - A compression member of 9-m effective length is...Ch. 10.3 - A column of 6.4-m effective length is obtained by...Ch. 10.3 - A column of 21-ft effective length is obtained by...Ch. 10.3 - Prob. 69PCh. 10.3 - Prob. 70PCh. 10.3 - Prob. 71PCh. 10.3 - Prob. 72PCh. 10.3 - Prob. 73PCh. 10.3 - For a rod made of aluminum alloy 2014-T6, select...Ch. 10.3 - Prob. 75PCh. 10.3 - Prob. 76PCh. 10.3 - A column of 4.6-m effective length must carry a...Ch. 10.3 - A column of 22.5-ft effective length must carry a...Ch. 10.3 - Prob. 79PCh. 10.3 - A centric load P must be supported by the steel...Ch. 10.3 - A square steel tube having the cross section shown...Ch. 10.3 - Prob. 82PCh. 10.3 - Prob. 83PCh. 10.3 - Two 89 64-mm angles are bolted together as shown...Ch. 10.3 - Prob. 85PCh. 10.3 - Prob. 86PCh. 10.3 - Prob. 87PCh. 10.3 - Prob. 88PCh. 10.4 - An eccentric load is applied at a point 22 mm from...Ch. 10.4 - Prob. 90PCh. 10.4 - Prob. 91PCh. 10.4 - Solve Prob. 10.91 using the interaction method and...Ch. 10.4 - A column of 5.5-m effective length is made of the...Ch. 10.4 - Prob. 94PCh. 10.4 - A steel compression member of 9-ft effective...Ch. 10.4 - Prob. 96PCh. 10.4 - Two L4 3 38-in. steel angles are welded together...Ch. 10.4 - Solve Prob. 10.97 using the interaction method...Ch. 10.4 - A rectangular column is made of a grade of sawn...Ch. 10.4 - Prob. 100PCh. 10.4 - Prob. 101PCh. 10.4 - Prob. 102PCh. 10.4 - Prob. 103PCh. 10.4 - Prob. 104PCh. 10.4 - A steel tube of 80-mm outer diameter is to carry a...Ch. 10.4 - Prob. 106PCh. 10.4 - Prob. 107PCh. 10.4 - Prob. 108PCh. 10.4 - Prob. 109PCh. 10.4 - Prob. 110PCh. 10.4 - Prob. 111PCh. 10.4 - Prob. 112PCh. 10.4 - Prob. 113PCh. 10.4 - Prob. 114PCh. 10.4 - Prob. 115PCh. 10.4 - A steel column of 7.2-m effective length is to...Ch. 10 - Determine (a) the critical load for the steel...Ch. 10 - Prob. 118RPCh. 10 - Prob. 119RPCh. 10 - (a) Considering only buckling in the plane of the...Ch. 10 - Member AB consists of a single C130 3 10.4 steel...Ch. 10 - The line of action of the 75-kip axial load is...Ch. 10 - Prob. 123RPCh. 10 - Prob. 124RPCh. 10 - A rectangular column with a 4.4-m effective length...Ch. 10 - Prob. 126RPCh. 10 - Prob. 127RPCh. 10 - Prob. 128RP
Knowledge Booster
Background pattern image
Mechanical Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Elements Of Electromagnetics
Mechanical Engineering
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Oxford University Press
Text book image
Mechanics of Materials (10th Edition)
Mechanical Engineering
ISBN:9780134319650
Author:Russell C. Hibbeler
Publisher:PEARSON
Text book image
Thermodynamics: An Engineering Approach
Mechanical Engineering
ISBN:9781259822674
Author:Yunus A. Cengel Dr., Michael A. Boles
Publisher:McGraw-Hill Education
Text book image
Control Systems Engineering
Mechanical Engineering
ISBN:9781118170519
Author:Norman S. Nise
Publisher:WILEY
Text book image
Mechanics of Materials (MindTap Course List)
Mechanical Engineering
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Cengage Learning
Text book image
Engineering Mechanics: Statics
Mechanical Engineering
ISBN:9781118807330
Author:James L. Meriam, L. G. Kraige, J. N. Bolton
Publisher:WILEY
Column buckling; Author: Amber Book;https://www.youtube.com/watch?v=AvvaCi_Nn94;License: Standard Youtube License