Indexed by:Journal Article
Date of Publication:2008-07-01
Journal:COMBUSTION EXPLOSION AND SHOCK WAVES
Included Journals:EI、SCIE
Volume:44
Issue:4
Page Number:491-496
ISSN:0010-5082
Key Words:amorphous alloys; explosive welding; temperature field; collision point velocity
Abstract:The feasibility of bonding amorphous ribbons via explosive welding (EW) is demonstrated. With 20-120 layers of Fe78B13Si9 and Fe(40)Ni(40)P14B(6) amorphous ribbons 25 mu m thick and 10 cm wide, the plate samples are bonded by using two settups with a collision point velocity of 3900-4800 m/sec and a flyer plate velocity of 570900 m/sec. The largest area of the bonded sample is 30 cm(2). The microstructures of the samples are observed by optical microscopy and X-ray diffractometry. Based oil the formation characteristics of amorphous alloys and heat-exchange characteristics during the EW process, a square-wave model for the temperature distribution across the interface is proposed. It can be used to explain the reasons for the samples keeping the amorphous state across the interface after explosive welding. The calculated results are in good agreement with the experiments.
Researcher
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Academic Titles:Vice President, China Society of Explosives and Blasting
Other Post:中国爆破行业协会副会长
Gender:Male
Alma Mater:Dalian University of Technology
Degree:Doctoral Degree
School/Department:School of Mechanics and Aerospace Enginnering
Discipline:Engineering Mechanics. Applied and Experimental Mechanics. Biomechanics and Nanomechanics. Aerospace Mechanics and Engineering. Mechanical Engineering. Aerospace Science and Technology
Business Address:Room203,A126 Building
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