Influence of Laser Shock Peening without Coating on Surface, Mechanical, Corrosion, and Tribological Characteristics of AA7075/h-BN Nanocomposites. [PDF]
Beyanagari SR +4 more
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Shear Band-Induced Internal Surface Structures in a Vitreloy Bulk Metallic Glass Deformed by High-Pressure Torsion. [PDF]
Kovács Z +4 more
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Effect of Pre-Strain Induced Microstructure Evolution on Hydrogen Embrittlement Resistance of a CoCrNi Medium-Entropy Alloy. [PDF]
Wang Z, Jing S, Yan Y.
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Tension-compression asymmetry of gradient nanograined high-entropy alloys. [PDF]
Yang X, Yin F.
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Severe plastic deformation of Al strips through equal multi and single channel angular pressing. [PDF]
Gadallah EA, Abd El Aal MI.
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Microstructure and Mechanical Properties of Fe-Rich Thixotropic Deep-Cavity Al-1.2Si-1.1Fe-0.8Zn Cylindrical Components with Inconsistent Wall Thickness. [PDF]
Kong L +5 more
europepmc +1 more source
Research Progress on the Microstructure Evolution Mechanisms of Al-Mg Alloys by Severe Plastic Deformation. [PDF]
Song CR +13 more
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Severe plastic deformation (SPD) of titanium at near-ambient temperature
Acta Materialia, 2006Severe plastic deformation of titanium at near-ambient temperature has been realized using large-strain machining. The material that received the highest levels of strain, the chip, is found to have a nanocrystalline structure with ∼100 nm sized grains. This microstructure is finer than that observed in titanium following equal channel angular pressing
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Severe plastic deformation (SPD) processes for metals
CIRP Annals - Manufacturing Technology, 2008Abstract Processes of severe plastic deformation (SPD) are defined as metal forming processes in which a very large plastic strain is imposed on a bulk process in order to make an ultra-fine grained metal. The objective of the SPD processes for creating ultra-fine grained metal is to produce lightweight parts by using high strength metal for the ...
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Due to the limitation of huge forming load, inhomogeneity of plastic deformation, and small volume of deformation region, it is difficult to prepare bulk ultra-fine grains material (UFGM) with industry size by the existing severe plastic deformation (SPD) methods. In this study, a novel SPD method, namely 3D-SPD, was proposed.
Yuhua Pang, Pengcheng Lin
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