Block I logo
University of Illinois Urbana-Champaign
  • Apply
  • Calendar
  • My.MechSE
The Grainger College of Engineering
Mechanical Science & Engineering
Search
  • About

    About

    • Community, Opportunity, and Engagement
    • MechSE CARES
    • MechSE Department Facts
    • Employment
    • Services
    • MechSE Creative Resources
    • Sidney Lu Mechanical Engineering Building
      • See Building Floor Plans
      • Support the Sidney Lu MEB
      • Lu MEB Photo Galleries
      • Learn About Sidney Lu
    • WELL Resources
      • Air
      • Community
      • Light
      • Materials
      • Mind
      • Movement
      • Nutrition
      • Sound
      • Thermal Comfort
      • Water
      • WELL Innovations
  • Undergraduate

    Ready to Apply to MechSE Undergraduate Programs?

    Apply Now

    Undergraduate

    • Prospective and Admitted Students
    • BS in Engineering Mechanics
    • BS in Mechanical Engineering
    • Pre-Med Track
    • Advising Resources
    • Undergraduate Course Offerings
    • Course Planner
    • Undergraduate News and More
    • Student Groups and Opportunities
    • Scholarships and Awards
    • Senior Capstone Design Program
      • Current Corporate Sponsors
      • Facilities and Resources
      • Initiate a Project
      • Project Examples
    • MechSE MakerWorks
      • Jackson Innovation Studio
      • Wood Maker Studio
      • Metal Maker Studio
      • MechSE MakerWorks Club
      • FAQ
    • Study Abroad
      • Study at Zhejiang University in China
    • Submit your feedback to the Undergraduate Office
  • Graduate

    Ready to Apply to MechSE Graduate Programs?

    Apply Now

    Graduate

    • MS Programs
      • MS in Mechanical Engineering
      • MS in Theoretical and Applied Mechanics
    • PhD Programs
      • PhD in Mechanical Engineering
      • PhD in Theoretical and Applied Mechanics
        • TAM Core and Breadth Courses
    • MS/PhD Admissions
    • MS/PhD Requirements and Process
    • MS/PhD Admissions FAQs
    • MS/PhD Funding
    • RAs + TAs + Fellowships
    • Graduate Course Offerings
    • Seminar Requirement
    • Graduate Student Forms
    • MechSE Graduate Programs Facts
    • Graduate Student Life
    • Graduate News and More
    • Graduate Blog
    • Master of Engineering in Mechanical Engineering
      • Apply to the M.Eng.ME Program
      • Tracks of Study
        • Biomechanics Track
        • Controls & Robotics Track
        • Design & Mechanics Track
        • Energy Track
        • Fluid & Thermal Sciences Track
        • Manufacturing Track
      • Academic Requirements
      • Career Impact
      • Frequently Asked Questions
      • Tuition and Fees
    • Graduate Programs Staff
  • Research

    In MechSE, we have more than 60 full-time faculty who are engaged in multidisciplinary centers.

    Learn more

    Research

    • MechSE Research Centers
    • Research News and More
    • MechSE Laboratories
    • Find Faculty by Research Area
    • Seminars
    • Entrepreneurship in MechSE
    • Fundamental Areas
      • Applied Physics
      • Chemistry
      • Computation and Applied Math
      • Dynamics and Controls
      • Fluid Mechanics
      • Solid Mechanics and Materials
      • Thermo and Heat Transfer
    • Societal Impact
      • Energy
      • Environment
      • Health and Bio
      • Manufacturing
      • Security and Defense
      • Transportation
  • News

    Our COVID-19 Heroes

    News

    • Blogs
    • Stories
    • Multimedia
    • Calendar
    • COVID-19 Heroes
    • MechSE Brochures
    • MechSE Magazines
    • Awards Banquet Program, Spring 2025
  • People

    In MechSE, we have more than 30 faculty with named appointments.

    Learn more

    People

    • Faculty
      • Adjuncts and Affiliates
      • Emeritus
      • ZJUI
      • All Faculty
    • Staff
    • Directory of Offices
    • Named Appointments
    • Graduate Students
    • Postdocs
  • Alumni & Corporate

    Share your updates with us.
    (2 minutes)

    Update now

    Alumni & Corporate

    • Alumni Blog
    • Alumni News and More
    • Alumni Awards
    • Sophomore Seminar ME 290
    • MechSE Alumni Board
    • Industry Allies
    • Corporate Relations
    • Student Organizations
  • Giving

    Giving

    • Make an Online Donation
    • MechSE Current Endowments
  • Apply
  • Calendar
  • My.MechSE
  • Home
  • Graduate
  • Graduate Course Offerings
In This Section
  • Graduate Overview
  • MS Programs
    • MS in Mechanical Engineering
    • MS in Theoretical and Applied Mechanics
  • PhD Programs
    • PhD in Mechanical Engineering
    • PhD in Theoretical and Applied Mechanics
      • TAM Core and Breadth Courses
  • MS/PhD Admissions
  • MS/PhD Requirements and Process
  • MS/PhD Admissions FAQs
  • MS/PhD Funding
  • RAs + TAs + Fellowships
  • Graduate Course Offerings
  • Seminar Requirement
  • Graduate Student Forms
  • MechSE Graduate Programs Facts
  • Graduate Student Life
  • Graduate News and More
  • Graduate Blog
  • Master of Engineering in Mechanical Engineering
    • Apply to the M.Eng.ME Program
    • Tracks of Study
      • Biomechanics Track
      • Controls & Robotics Track
      • Design & Mechanics Track
      • Energy Track
      • Fluid & Thermal Sciences Track
      • Manufacturing Track
    • Academic Requirements
    • Career Impact
    • Frequently Asked Questions
    • Tuition and Fees
  • Graduate Programs Staff

TAM 551

TAM 551 - Solid Mechanics I

Fall 2024

TitleRubricSectionCRNTypeHoursTimesDaysLocationInstructor
Solid Mechanics ITAM551E30969LCD41000 - 1150 T R  3100 Sidney Lu Mech Engr Bldg Petros Sofronis
Kshitij Vijayvargia

See full schedule from Course Explorer

Official Description

Mechanics of elastic deformable bodies, based on the fundamental concepts of modern continuum mechanics: kinematics, balance laws, constitutive equations; classical small-deformation theory; formulation of initial boundary-value problems of linear elastodynamics and boundary-value problems of linear elastostatics; variational formulations, minimum principles; applications of theory to engineering problems. Course Information: Prerequisite: MATH 285 OR MATH 286 OR MATH 441.

Detailed Course Description

Mechanics of elastic deformable bodies, based on the fundamental concepts of modern continuum mechanics: kinematics, balance laws, constitutive equations; classical small-deformation theory; formulation of initial boundary-value problems of linear elastodynamics and boundary-value problems of linear elastostatics; variational formulations, minimum principles; applications of theory to engineering problems. Prerequisite: TAM 251; MATH 380; MATH 385, MATH 386, or MATH 441. 4 graduate hours.

Textbook:

Recommended: Robert J. Asaro and Vlado A. Lubarda, Mechanics of Solids and Materials, Cambridge

P. Chadwick, Continuum Mechanics, Dover Publications

Topics:

Mathematical preliminaries (8 hr)
Indicial notation, vector and Cartesian tensors

Kinematics (10 hr)
Motions of a continuum, finite deformation, rigid-body motion and deformation, polar decomposition, homogenous and nonhomogeneous deformation, infinitesimal deformation, small-strain tensor, compatibility, transport and localization theorems

Balance laws (8 hr)
Conservation of mass, Cauchy's stress principle and Euler's laws, stress measures, Piola-Kirchhoff stress tensors, Cauchy's stress equations of motion, principle of virtual work, average theorem, applications, energy balance

Constitutive relationships (10 hr)
Invariance under superposed rigid-body motion, material symmetry, hyperelasticity, hypoelasticity, general anisotropic linear elasticity, incompressible elasticity, Cauchy relation, linearization of the finite elasticity equations, residual stresses, isotropic linear elasticity

Linear elastostatics (16 hr)
Fundamental field equations, elastic state, work and energy, the reciprocal theorem, boundary-value problems, uniqueness, the mixed problem in terms of displacements, the traction problem in terms of stress, variational formulation (minimum potential energy, minimum complementary energy); methods of Ritz, Galerkin, Kantorovich; the finite-element method

Linear elastodynamics (6 hr)
Fundamental field equations, elastic processes, boundary-initial-value problem, uniqueness

Midterm exam (2 hr)
TOTAL HOURS: 60

Last updated

9/20/2018

Mechanical Science & Engineering

  • Twitter
  • Instagram
  • Facebook
  • LinkedIn
  • YouTube
  • Bluesky

Sidney Lu Mechanical Engineering Building

1206 W. Green St. MC 244

Urbana, IL 61801

Phone: (217) 333-1176

Fax:

Email:

The Grainger College of Engineering

Contact us

Learn More

  • About Us
  • Directory of Offices
  • Directory of People
  • Careers
  • Sign up for MechSE alumni communications
  • Visit The Grainger College of Engineering

Around Campus

  • Campus Map
  • University Admissions
  • Careers at Illinois
  • University News
  • Giving at Illinois
  • University Alumni
  • Athletics
  • University Library

Universitywide Resources

  • Emergency Services
  • University Calendars
  • University Directory
  • Student Assistance Center
  • Health and Wellness
  • Parents and Families
  • University COVID-19 Information

About Illinois

  • VC of Diversity, Equity and Inclusion
  • Land Acknowledgement
  • University Research and Innovation
  • Technology Services
  • Illinois International
  • University Strategic Plan
  • University of Illinois System
  • Privacy Policy
  • Copyright © 2025
  • Accessibility
  • Webmaster
  • Login