Back to results
Cover image for book Stress Analysis of Fiber-Reinforced Composite Materials

Stress Analysis of Fiber-Reinforced Composite Materials

By:Michael Hyer
Publisher:DEStech Publications, Inc.
Print ISBN:9781932078862
eText ISBN:9781932078862
Edition:1
Copyright:2009
Format:Page Fidelity

eBook Features

Instant Access

Purchase and read your book immediately

Read Offline

Access your eTextbook anytime and anywhere

Study Tools

Built-in study tools like highlights and more

Read Aloud

Listen and follow along as Bookshelf reads to you

Mechanics of composites for all aspects of stress, deformation, loading. Special section on thermal stresses caused by curing. Dozens of key calculations, ready for computer programming in Fortran. Series of sample problems continued throughout the text. Updated and improved, Stress Analysis of Fiber-Reinforced Composite Materials, Hyer's work remains the definitive introduction to the use of mechanics to understand stresses in composites caused by deformations, loading, and temperature changes. In contrast to a materials science approach, Hyer emphasizes the micromechanics of stress and deformation for composite material analysis. The book provides invaluable analytic tools for students and engineers seeking to understand composite properties and failure limits. A key feature is a series of analytic problems continuing throughout the text, starting from relatively simple problems, which are built up step-by-step with accompanying calculations. The problem series uses the same material properties, so the impact of the elastic and thermal expansion properties for a single-layer of FR material on the stress, strains, elastic properties, thermal expansion and failure stress of cross-ply and angle-ply symmetric and unsymmetric laminates can be evaluated. The book shows how thermally induced stresses and strains due to curing, add to or subtract from those due to applied loads. Another important element, and one unique to this book, is an emphasis on the difference between specifying the applied loads, i.e., force and moment results, often the case in practice, versus specifying strains and curvatures and determining the subsequent stresses and force and moment results. This represents a fundamental distinction in solid mechanics.

CONTACT

UMass Lowell Bookstore
220 Pawtucket St
Lowell, MA 01854
(978) 934-2623
bookstore@uml.edu

HOURS

April Event Hours
Welcome Day April 11th - 10am-4pm
Ready, Set, Graduate April 13th - 830am-6pm
Junior Preview Day April 25th - 830am-2pm
Patriots Day April 20th - CLOSED

May Event Hours
May 1st - 830am-9pm
May 2nd - 10am-230pm

Summer 2026 Hours
Start Week of 5/17
Monday - Friday 830am-4pm
Saturday - Sunday CLOSED


Spring 2026 Hours (Begin Monday January 26th) :
Monday - Thursday : 830am-530pm
Friday : 830am-4pm
Saturday : 10am-2pm
Sunday : CLOSED

*Extended Hours - Start & End of Each Semester*
*Hours are Subject to change for Special Events*





Meet The Team -
Ada Ruiz - Operations Manager
Dante Hebert - Textbook Manager
Destinee Scott - Inventory Specialist
Megan Galloway - Regional Manager & Merchandise Manager

CONNECT WITH US ONLINE

Instagram logo

Quick Links

managers
2025 © UMass Lowell Bookstore. All Rights Reserved.
• 2025 © UMass Lowell Bookstore. All Rights Reserved.