26713
Accession Number
25548
Author
Mecklenburg, Marion F.
Editor
Vandiver, Pamela B.; Druzik, James; Wheeler, George Segan
Author Affiliation
Smithsonian Institution. Conservation Analytical Laboratory
Title Of Article Chaper
Applied mechanics of materials in conservation research
Title Of Journal Book
Materials Issues in Art and Archaeology II: Symposium held April 17-21, 1990, San Francisco, California, U.S.A
Volume
185
Pages
105-122
Collation
9 diagrams, 1 photo.
Reference Bibliography
Includes 34 bibliog. refs.
Publisher
Materials Research Society
Publisher City
Pittsburgh
ISBN
1-55899-074-7
Language Of Text
English
Language Of Summary
English
Literature Type
Monograph : Proceedings
Literature Level
Analytic
Meeting
Materials Issues in Art and Archaeology (2nd : 1990 : San Francisco, California)
Meeting City
San Francisco
Meeting Country
United States
Abstract
Much of the damage found in cultural and artistic objects is not chemical in nature but results from mechanical responses to stimuli such as changes in temperature, relative humidity, impact, and vibration. Analytical tools of engineering mechanics are available that allow us both to diagnose existing problems as well as to predict the effects of future potential hazardous conditions for many objects. A systematic approach of applying engineering principles to cultural objects requires two fundamental steps: 1, determining the mechanical properties of the constitutive material found in objects, and 2, developing analytical procedures that determine the overall effect of the individual material responses to various stimuli on the object as a whole. The individual material properties are typically defined as the yeild and ultimate strengths, the elastic modulud, and the strains to yield and failure. For the vast proportion of cultural objects, the materials are organic, and their mechanical properties are dramatically altered by environmental factors such as changes in temperature andrelative humidity. One of the most successful analytical techniques is Finite Element Analysis (FEA) using the digital computer. This method will allow one to numerically model an object, to mathematically induce environmental changes as well as determine the mechanical effects of these changes on the object modelled.
Keywords
mechanic;material;conservation;research -- CAL
pub_id
26713
Meeting Date
19900417-19900421