Steel Design (Activate Learning with these NEW titles from Engineering!)
Steel Design (Activate Learning with these NEW titles from Engineering!)
6th Edition
ISBN: 9781337094740
Author: Segui, William T.
Publisher: Cengage Learning
Question
Book Icon
Chapter 4, Problem 4.3.1P
To determine

(a)

Nominal compressive strength of column

Expert Solution
Check Mark

Answer to Problem 4.3.1P

1267.1kips

Explanation of Solution

Calculation:

Obtain the effective length factor for the support condition

Leff=L

Calculate the effective slenderness ratio using the formula as follows

Slenderness ratio =KLrConsider the properties of the steel from the AISC stell table Substitute 1 for k,(10×12)in for L,and 2.65 for ry.Slenderness ratio=KLr                           =1(10×12)2.65                             =45.2

Calculate the buckling stress by using the formula as follows:

Fe=π2E(KL/r)2

substitute 29000 for E,and 45.2 for KL/r.

Fe=π2E(KL/r)2

    =π2E(KL/r)2   =π2(29000)45.22   =140.1ksi

Check for slenderness ratio by using the relation as follows:

Slenderness ratio=4.71EFyFy is the yield strength.Substitute 50ksi for Fy,and 29000 for E.Slenderness ratio=4.712900050                           =113.4Since the value 45.28 is less than 113.4, so caluculate critical buckling stress using the formula.Fcr=0.658(FyFe)Fy     =0.658(50140.1)(50)     =43.1ksi

Calculate the nominal compressive strength of column by using the formula as follows:

Pn=FcrAgSubstitute 29.40 for Ag,and 43.03 for FcrPn=FcrAg    =43.1(29.40)    =1267.1kips

Conclusion:

Therefore, the nominal compressive strength of column 1267.1kips.

To determine

(b)

Nominal compressive strength of column

Expert Solution
Check Mark

Answer to Problem 4.3.1P

400kips

Explanation of Solution

Calculation:

Calculate the effective slenderness ratio using the formula as follows

Slenderness ratio =KLrConsider the properties of the steel from the AISC steel table Substitute 1 for k,(30×12)in for L,and 2.65 for ry.Slenderness ratio=KLr                           =1(30×12)2.65                             =135.84

Calculate the buckling stress by using the formula as follows:

Fe=π2E(KL/r)2

substitute 29000 for E,and 135.84 for KL/r.

Fe=π2E(KL/r)2

    =π2E(KL/r)2   =π2(29000)135.842   =15.50ksi

Check for slenderness ratio by using the relation as follows:

Slenderness ratio=4.71EFyFy is the yield strength.Substitute 50ksi for Fy,and 29000 for E.Slenderness ratio=4.712900050                           =113.4Since the value 135.84 is greater than 113.4, so caluculate critical buckling stress using the formula.Fcr=0.877Fe     =0.877(15.50)     =13.60ksi

Calculate the nominal compressive strength of column by using the formula as follows:

Pn=FerAgSubstitute 29.40 for Ag,and 13.60 for FcrPn=FcrAg    =13.60(29.40)    =400kips

Conclusion:

Therefore, the nominal compressive strength of column 400kips.

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
Use AISC Equation E3-2 or E3-3 and determine the axial compressive strength oP for the following cases: a. L = 15 ft 233.1 kips 159 kips 26.65 kips O 259 kips L W10 x 33 A992 steel
Tow square bars are welded together and loaded axially as shown: Determine The normal stress between A&B The normal stress between B&C The normal stress between C&D The total change in length of the bar Assume : w1 =40 mm, w2 = 50 mm, P1 = 130 kN, P2= 65 kN, and P3 =260 kN.  E = 200,000 Mpa original lengths LAB = 100 mm, LBC = 120 mm, and LCD = 130 mm,
The compound bar carries axial loads as shown. Determine the maximum allowable value of P if the change in length of the entire bar is limited to 0.08 inch and the working stresses listed in the table are not to be exceeded. Steel 2 ft Bronze 4 ft Aluminum 3 ft 2P 3P 4P A (in.?) E (psi) a. (psi) Steel 0.75 30 x 10 20000 12 x 10 10 x 10 Bronze 1.00 18000 Aluminum 0.50 12000
Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Structural Analysis
Civil Engineering
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:Cengage,
Text book image
Structural Analysis (10th Edition)
Civil Engineering
ISBN:9780134610672
Author:Russell C. Hibbeler
Publisher:PEARSON
Text book image
Principles of Foundation Engineering (MindTap Cou...
Civil Engineering
ISBN:9781337705028
Author:Braja M. Das, Nagaratnam Sivakugan
Publisher:Cengage Learning
Text book image
Fundamentals of Structural Analysis
Civil Engineering
ISBN:9780073398006
Author:Kenneth M. Leet Emeritus, Chia-Ming Uang, Joel Lanning
Publisher:McGraw-Hill Education
Text book image
Sustainable Energy
Civil Engineering
ISBN:9781337551663
Author:DUNLAP, Richard A.
Publisher:Cengage,
Text book image
Traffic and Highway Engineering
Civil Engineering
ISBN:9781305156241
Author:Garber, Nicholas J.
Publisher:Cengage Learning