Back to Search
ISBN 9781726810685 is currently unpriced. Please contact us for pricing.
Available options are listed below:

The Influence of Microstructure on the Tensile Behavior of an Aluminum Metal Matrix Composite

AUTHOR Nasa, National Aeronautics and Space Adm
PUBLISHER Independently Published (10/06/2018)
PRODUCT TYPE Paperback (Paperback)

Description
The relationship between tensile properties and microstructure of a powder metallurgy aluminum alloy, 2009 was examined. The alloy was investigated both unreinforced and reinforced with 15 v/o SiC whiskers or 15 v/o SiC particulate to form a discontinuous metal matrix composite (MMC). The materials were investigated in the as-fabricated condition and in three different hot-rolled sheet thicknesses of 6.35, 3.18, and 1.8 mm. Image analysis was used to characterize the morphology of the reinforcements and their distributions within the matrix alloy. Fractographic examinations revealed that failure was associated with the presence of microstructural inhomogeneities which were related to both the matrix alloy and to the reinforcement. The results from these observations together with the matrix tensile data were used to predict the strengths and moduli of the MMC's using relatively simple models. The whisker MMC could be modeled as a short fiber composite and an attempt was made to model the particulate MMC as a dispersion/dislocation hardened alloy. Birt, Michael J. and Johnson, W. Steven Langley Research Center RTOP 506-43-71-03...
Show More
Product Format
Product Details
ISBN-13: 9781726810685
ISBN-10: 1726810682
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
More Product Details
Page Count: 32
Carton Quantity: 128
Product Dimensions: 8.50 x 0.07 x 11.02 inches
Weight: 0.22 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Science | Space Science - General
Descriptions, Reviews, Etc.
publisher marketing
The relationship between tensile properties and microstructure of a powder metallurgy aluminum alloy, 2009 was examined. The alloy was investigated both unreinforced and reinforced with 15 v/o SiC whiskers or 15 v/o SiC particulate to form a discontinuous metal matrix composite (MMC). The materials were investigated in the as-fabricated condition and in three different hot-rolled sheet thicknesses of 6.35, 3.18, and 1.8 mm. Image analysis was used to characterize the morphology of the reinforcements and their distributions within the matrix alloy. Fractographic examinations revealed that failure was associated with the presence of microstructural inhomogeneities which were related to both the matrix alloy and to the reinforcement. The results from these observations together with the matrix tensile data were used to predict the strengths and moduli of the MMC's using relatively simple models. The whisker MMC could be modeled as a short fiber composite and an attempt was made to model the particulate MMC as a dispersion/dislocation hardened alloy. Birt, Michael J. and Johnson, W. Steven Langley Research Center RTOP 506-43-71-03...
Show More
Paperback