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AFM studies on fractured surfaces of...
~
Duque Rojas, Nairobi Bibiana.
AFM studies on fractured surfaces of AF1410 steel and AA7075-T6 aluminum alloy.
紀錄類型:
書目-電子資源 : 單行本
正題名/作者:
AFM studies on fractured surfaces of AF1410 steel and AA7075-T6 aluminum alloy./
作者:
Duque Rojas, Nairobi Bibiana.
面頁冊數:
89 p.
附註:
Source: Masters Abstracts International, Volume: 45-01, page: 0441.
Contained By:
Masters Abstracts International45-01.
標題:
Engineering, Materials Science. -
電子資源:
Download PDF (下載PDF全文)
ISBN:
9780542891212
AFM studies on fractured surfaces of AF1410 steel and AA7075-T6 aluminum alloy.
Duque Rojas, Nairobi Bibiana.
AFM studies on fractured surfaces of AF1410 steel and AA7075-T6 aluminum alloy.
- 89 p.
Source: Masters Abstracts International, Volume: 45-01, page: 0441.
Thesis (M.S.)--University of Puerto Rico, Mayaguez (Puerto Rico), 2006.
In the present research, atomic force microscopy (AFM) was used to characterize fracture surfaces of the AF1410, ultra high strength steel, and a high strength AA7075-T6 aluminum alloy. Both materials are used by the U.S. Navy in aircraft parts. The implementation of a reliable qualitative and quantitatively technique that could reveal three-dimensional characteristics of the material fracture topography and the study of roughness parameters was necessary to explain the fracture surfaces (nano-fractography). Compact tension specimens made of AF1410 steel and AA7075-T6 alloy were exposed to different conditions at fatigue and impact-fatigue testing respectively. The bottom half of the fractured fatigued samples in the AF1410 steel and both of the impact fatigued sample for the aluminum alloy were used for AFM observations. The surface roughness was a parameter that aided to quantify the surface texture of the steel sample. (Abstract shortened by UMI.)
ISBN: 9780542891212Subjects--Topical Terms:
1000005553
Engineering, Materials Science.
AFM studies on fractured surfaces of AF1410 steel and AA7075-T6 aluminum alloy.
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In the present research, atomic force microscopy (AFM) was used to characterize fracture surfaces of the AF1410, ultra high strength steel, and a high strength AA7075-T6 aluminum alloy. Both materials are used by the U.S. Navy in aircraft parts. The implementation of a reliable qualitative and quantitatively technique that could reveal three-dimensional characteristics of the material fracture topography and the study of roughness parameters was necessary to explain the fracture surfaces (nano-fractography). Compact tension specimens made of AF1410 steel and AA7075-T6 alloy were exposed to different conditions at fatigue and impact-fatigue testing respectively. The bottom half of the fractured fatigued samples in the AF1410 steel and both of the impact fatigued sample for the aluminum alloy were used for AFM observations. The surface roughness was a parameter that aided to quantify the surface texture of the steel sample. (Abstract shortened by UMI.)
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Download PDF (下載PDF全文)
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