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ENROLLED STUDENTS & INTERESTED VISITORS
If you are recently enrolled for the UW- Stout Web version of this course, you should have received or should soon be receiving a confirmation letter from Continuing Education. If you think you are enrolled, but have not received any confirming letter, please contact me by phone or email (See address in next section.)
INTRODUCTION:
To participate in an effective way in this course, the student should have access to
computer with an internet browser, such as Netscape, or Microsoft's
Internet Explorer (I am currently using Internet Explorer); an email program, and a minimum Internet connection speed
of 14,440 bps (if connecting by modem). Access to a fax is useful, but not necessary.
Normally instructor/student communication will be done several different ways:
The communications methods used may vary from student to student. The instructor and student will arrange the best combination of methods of communication in each individual case, depending on the students resources and computer experience and background. Continue below for additional course information
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CONTENT: Fundamental Theory of Strength of Materials, including, Static Equilibrium, Stress, Strain, Analysis of Structures (trusses and frames), Thermal Deformation, Shear Force and Bending Moment Diagrams for Beams, Axial & Shear Stress in Beams, Beam Selection, Torsion, Rivets and Welds, Pressure Vessels, Combined Stresses and Statically Indeterminate Structures.
TEXT: STATICS AND APPLIED STRENGTH OF MATERIALS by Neathery
FORMAT: For each topic area the students will:
Basically, the student should start at the first topic; work step by step through the index of activities; and when complete (and fairly confident about the material) request a test. Please do not hesitate to contact instructor if you have any questions or problems.
ASSIGNMENTS: Student will work assignments to see if they can obtain correct answer, and then submit assignments to instructor to check correctness. Some of the problems are "required", which means the students should work these problems. Other problems are listed as supplementary, which means the students may want to work these problems for practice or to confirm their understanding of the materials.
TESTING: At a
time agreed upon by student and instructor, a topic examination will be posted
to the student's web page. A period of time will be given to complete the
examination - usually 1 &1/2 to 2
hours. At the end of that time, the student will submit their answers by
means of a submission box on the web page. The work for the examination is
then faxed or sent by mail to the instructor for grading. Re-Testing on an
examination may be possible in a manner to be explained by the instructor.
A link to a sample test for topic 1 is shown below:
Test sample-topic 1
GRADING: Each examination will contribute equally to the student's final grade. Student problem assignment results may also be used in the final grade.
General Topic Areas
Additional Topics available if time allows:
Strength of Materials students are expected to complete and test on Topics: Statics I / Statics II ; Stress & Strain ; Beams 1; Beams 2; Torsion, Rivets & Welds .
[If time allows students will be encouraged to
study: Columns &
Thin-Wall pressure Vessels, Special Topics,
particularly Principle Stresses & Mohr's
circle
].
The Minimum/Normal Course Schedule (for a 16 week
semester) for Strength of Materials is shown below. Web students
should generally try to follow this schedule. [Summer students would have to
cover the same material in about about 10-12 weeks.] Following the first course
schedule is a second compress schedule is the student would like to complete
some of the additional topics.
Return to Strength Home Page
Schedule I, Minimum Required Material: This is the normal,expected course schedule.
| Weeks | Objectives/Topics | Readings/Material | Problem Assignment | Comments |
| 1-2 | Review of basic trigonometry,& review of vectors& vector addition. Begin translational equilbrium, & free body diagrams |
Web Topic Statics I, & corresponding textbook sections | Try
some of these problems: Trig Review, Vectors, Coplanar, Torque, Beams |
Work enough of the problems to ensure that you have a mastery. Try sample test, then request an Exam |
| 3 - 4 | Translational and Rotational equilibrium conditions, Free Body Diagrams, Static Method, Simple Structures and Frame problems | Web Topic 2. + Corresponding Material in textbook. | Web Problems, Topic 2 Frame Problems |
Students may want to try additional Frame problems. |
| 5 | Translational and Rotational equilibrium conditions, Free Body Diagrams, Static Methods, Truss Problems | Web Topic 2. + Corresponding Material in textbook. | Web Problems, Topic 2 Truss Problems |
Student should try the sample test, then request an Exam on Frames / Trusses. |
| 6 | Axial and Shear Stress and Strain, with both statically determinate and statically indeterminate structures | Web Topic 3 + Corresponding Material in textbook. | Web Problems: Topic 3 Statically determinate problems | |
| 7 | Axial and Shear Stress and Strain, with both statically determinate and statically indeterminate structures | Web Topic 3 + Corresponding Material in textbook. | Web Problems: Topic 3 Statically indeterminate problems | Student should try the sample test, then request an Exam on Stress. |
| 8-9 | Thermal Stress/Stain and Deformation, Mixed Mechanical and Thermal Effects | Web Topic 3 + Corresponding Material in textbook. | Web Problems: Topic 3 Thermal Stress, Strain, and deformation. | Student should try some sample tests on Thermal Stress & request an Exam |
| 10 | Beams I: Shear Force and Bending Moment Diagrams and Expressions in simply supported beams. | Web Topic 4 + Corresponding Material in textbook. | Web Problems:
Topic 4 Shear Force & Bending Moment Problems |
Students may want to try additional Shear / Bending problems. |
| 11 | Beams I: Shear Force and Bending Moment Digrams and Expressions in cantelvered beams. | Web Topic 4 + Corresponding Material in textbook. | Web Problems:
Topic 4 Shear Force & Bending Moment Problems |
Student should try some sample tests on Shear / Moment Diagrams & request an Exam |
| 12 | Beams 2: Bending Stress and Shear Stress, Deflection, Beam Safety | Web Topic 4 + Corresponding Material in textbook. | Web Problems:
Topic 4 Bending & Shear Stress |
Students may want to try additional beam stress problems. |
| 13 | Beams 2: Beam Design / Selection in simply supported and cantilevered beams | Web Topic 4 + Corresponding Material in textbook. | Web Problems:
Topic 4 Shear Force & Bending Moment Problems |
Student should try some sample tests on Beam Stress/ Beam Selection ,& request an Exam |
| 14 | Torsion, Transverse Shear Stress, Angle of Twist, Power Transmission | Web Topic 5 + Corresponding Material in textbook. | Web Problems: Topic 5 Torsion Problems | Students may want to try additional torsion problems. |
| 15-16 | Riveted, & Bolted, Joint Strength, Efficiency, and Joint Design / Selection | Web Topic 5 + Corresponding Material in textbook. | Web Problems: Topic 5 Rivet/Weld Problems | Student should try a sample test & request a Unit Exam |
A more compressed Course Schedule (for a 16 week semester) for Strength of
Materials is shown below-for students who wish to cover some of the additional
topics [Summer students would have to cover the same material in
about about 10 weeks.]
Return to Strength Home Page
Schedule II, Additional Material Included
| Objectives/Topics | Readings/Material | Problem Assignment | Comments | |
| 1 | Review of basic trigonometry,& review of vectors& vector addition. Begin translational equilbrium, & free body diagrams |
Web Topic Statics I, & corresponding textbook sections | Try
some of these problems: Trig Review, Vectors, Coplanar, Torque, Beams |
Most of this should be review. Work enough of the problems to ensure that you have a mastery. |
| 2 | Translational and Rotational equilibrium conditions, Free Body Diagrams, Static Method, Simple Structures and Frame problems | Web Topic 2. + Corresponding Material in textbook. | Web Problems, Topic 2 Frame Problems |
This is a lot of material and may take longer than a week. |
| 3 | Translational and Rotational equilibrium conditions, Free Body Diagrams, Static Methods, Truss Problems | Web Topic 2. + Corresponding Material in textbook. | Web Problems, Topic 2 Truss Problems |
Student should try the sample test, then request an Exam on Frames/Trusses. |
| 4 | Axial and Shear Stress and Strain, with both statically determinate and statically indeterminate structures | Web Topic 3 + Corresponding Material in textbook. | Web Problems: Topic 3 Statically determinate problems | |
| 5 | Axial and Shear Stress and Strain, with both statically determinate and statically indeterminate structures | Web Topic 3 + Corresponding Material in textbook. | Web Problems: Topic 3 Statically indeterminate problems | Student should try the sample test, then request an Exam on Frames/Trusses. |
| 6 | Thermal Stress/Stain and Deformation, Mixed Mechanical and Thermal Effects | Web Topic 3 + Corresponding Material in textbook. | Web Problems: Topic 3 Thermal Stress, Strain, and deformation. | Student should try some sample tests on Thermal Stress & request an Exam |
| 7 | Beams: Shear Force and Bending Moment Diagrams and Expressions in simply supported beams. | Web Topic 4 + Corresponding Material in textbook. | Web Problems:
Topic 4 Shear Force & Bending Moment Problems |
|
| 8 | Beams: Shear Force and Bending Moment Digrams and Expressions in cantelvered beams. | Web Topic 4 + Corresponding Material in textbook. | Web Problems:
Topic 4 Shear Force & Bending Moment Problems |
Student should try some sample tests on Shear / Moment Diagrams & request an Exam |
| 9 | Beams: Bending Stress and Shear Stress, Deflection,Beam Safety | Web Topic 5 + Corresponding Material in textbook. | Web Problems:
Topic 5 Bending & Shear Stress |
|
| 10 | Beams: Beam Design / Selection in simply supported and cantilevered beams | Web Topic 5 + Corresponding Material in textbook. | Web Problems:
Topic 5 Shear Force & Bending Moment Problems |
Student should try some sample tests on Beam Stress Beam Selection ,& request an Exam |
| 11 | Torsion, Transverse Shear Stress, Angle of Twist, Power Transmission | Web Topic 6 + Corresponding Material in textbook. | Web Problems: Topic 6 Torsion Problems | |
| 12 | Riveted, & Bolted, Joint Strength, Efficiency, and Joint Design / Selection | Web Topic 6 + Corresponding Material in textbook. | Web Problems: Topic 6 Rivet/Weld Problems | Student should try a sample test & request an Exam |
| 13 | Columns & Thin walled Pressure Vessels | Web Topic 7 + Corresponding Material in textbook. | Web Problems: Web Topic 7 Columns | Columns can be somewhat difficult |
| 14 | Columns & Thin walled Pressure Vessels | Web Topic 7 + Corresponding Material in textbook. | Web Problems: Web Topic 7 Columns/ Pressure Vessels | Student should try sample test & request an Exam |
| 15-16 | Special Topics: Combined Stresses, Stress on Planes, Principle Stresses, Mohr's Circle | Web Topic 8 + Corresponding Material in textbook. | Web Problems: Web Topic 8 | Student should try some sample test & request an Exam |
Finally, I'm sure there may be many overlooked typo's and/or errors in the materials. I welcome corrections and suggestions concerning improving these materials. I would like to hear all comments, so please do not hesitate to contact me: foleyr@uwstout.edu
Associate Professor Robert J. Foley