NASA Technical Reports Server (NTRS) 19860015038: Containerless Processing Of Hypermonotectic And Glass Forming Alloys Using The Marshall Space Flight Center 100 Meter Drop Tube Facility - Info and Reading Options
By NASA Technical Reports Server (NTRS)
"NASA Technical Reports Server (NTRS) 19860015038: Containerless Processing Of Hypermonotectic And Glass Forming Alloys Using The Marshall Space Flight Center 100 Meter Drop Tube Facility" and the language of the book is English.
“NASA Technical Reports Server (NTRS) 19860015038: Containerless Processing Of Hypermonotectic And Glass Forming Alloys Using The Marshall Space Flight Center 100 Meter Drop Tube Facility” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19860015038: Containerless Processing Of Hypermonotectic And Glass Forming Alloys Using The Marshall Space Flight Center 100 Meter Drop Tube Facility
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19860015038
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"NASA Technical Reports Server (NTRS) 19860015038: Containerless Processing Of Hypermonotectic And Glass Forming Alloys Using The Marshall Space Flight Center 100 Meter Drop Tube Facility" Description:
The Internet Archive:
Two separate projects were carried out to study alloys whose solidification structures can be strongly influenced by the presence of a container during melting and solidifications. One project involved containerless solidification of hypermonotectic Au35Rh65 alloys. This alloy exhibits liquid immiscibility over a temperature range. It has been suggested that containerless melting might be one solution to the problem of sedimentation in the dispersions of immiscible liquid phases. However, surface tension driven flows could also lead to accumulation of the minority liquid phase at the external surface of a containerlessly melted alloy. The research underway is a first step in determining the influence of containerless, microgravity processing on immiscible alloys. Nickel-niobium alloys were studied using the drop tube facility. One alloy in this system, a Ni60Nb40 alloy, is a good candidate for the formation of a bulk metallic glass. Amorphous alloys of this composition were produced using thin film and mechanical alloying techniques. However, theory indicates that if heterogeneous nucleation can be avoided, it should be possible to produce an amorphous structure in this system using a moderate cooling rate from the melt. The containerless melting and solidification capabilities of the drop tube faciltiy provide ideal conditions for a study of this type. To date, several Ni60Nb40 samples have been levitated, melted and cooled during 4.6 seconds of free fall in the 100 meter drop tube. Structures obtained are discussed.
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