Results 251 to 260 of about 116,969 (285)
Solidification of SNEDDS Using Mesoporous Carriers (2020-2025): A Review of Design, Biopharmaceutical Enhancement, and Therapeutic Impact. [PDF]
Priani SE +4 more
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Effect of Laser Energy Density During LPBF on the Structure and Mechanical Properties of Al-15Sn-5Pb Alloy. [PDF]
Rusin NM +5 more
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The Role of Silicon During Solidification Process of Cast Al-Si-Mg Alloys. [PDF]
Patarić A +4 more
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On the rapid cooling cast solidification microstructures of Mg-Ca-Zn alloys. [PDF]
Xie Y +5 more
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Solidification structure of monotectic alloys
Materials Science and Engineering: A, 1991The formation manner of the monotectic structure is shown from the observation of the evolution of crystallization and growth of CuPb and some aluminium-based monotectic alloys solidified in a free direction and unidirectionally. The morphological change of the monotectic composite structure is discussed in relation to the solid-liquid interfacial ...
Akihiko Kamio +2 more
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Dynamics of banded structure formation in rapid solidification
Physical Review Letters, 1992Motivated by widespread experimental observations of the ``banded structure'' in rapidly solidified alloys, we have studied numerically by Green's-function method the dynamics of the planar interface under rapid directional solidification condition. We find that the formation of this structure can be explained and partially characterized quantitatively
, Karma, , Sarkissian
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Solidification Structures of Titanium Alloys
2004Abstract This article describes the development of heat-resistant titanium-base alloys and their classification into several microstructure categories based on their strengthening mechanisms. It explains the phase transformation in titanium-aluminum-base alloys and two peritectic reactions that take place in the titanium-aluminum system.
Doru M. Stefanescu, Roxana Ruxanda
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Solidification Structures of Aluminum Alloys
2004Abstract The most common aluminum alloy systems are aluminum-silicon, aluminum-copper, and aluminum-magnesium. This article focuses on the grain structure, eutectic microstructure, and dendritic microstructure of these systems. It provides information on microsegregation and its problems in casting of alloys. The article also illustrates
Doru M. Stefanescu, Roxana Ruxanda
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Solidification structure of undercooled Ni54.6Pd45.4 alloy
Materials Science and Engineering: A, 2007Abstract Ni 54.6 Pd 45.4 , a solid solution alloy without crystallization temperature range, has been undercooled by glass flux method up to the hypercooling limit. It was found that it solidified as pure metals. As undercooling increases, the secondary dendrite arm spacing decreases monotonously until a undercooling of 135 K, above which the ...
S.Y. Lu, J.F. Li, Y.H. Zhou
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