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Qiang Chen

Researcher at Southwest Wisconsin Technical College

Publications -  17
Citations -  453

Qiang Chen is an academic researcher from Southwest Wisconsin Technical College. The author has contributed to research in topics: Microstructure & Ultimate tensile strength. The author has an hindex of 11, co-authored 17 publications receiving 364 citations.

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Microstructure, texture and mechanical properties of coarse-grained Mg–Gd–Y–Nd–Zr alloy processed by multidirectional forging

TL;DR: In this paper, multidirectional forging was applied to severely deform the homogenized coarse-grained Mg-Gd-Y-Nd-Zr alloy under decreasing temperature condition, and the microstructure, texture and tensile properties of the MDFed alloy were investigated.
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Effect of accumulative plastic deformation on generation of spheroidal structure, thixoformability and mechanical properties of large-size AM60 magnesium alloy

TL;DR: In this article, the tensile mechanical properties of AM60 alloy at room temperatures were determined and the microstructure evolution during semi-solid remelting was investigated, and it was shown that large AM60 slugs with fine and homogeneous microstructures can be produced by employing cumulative plastic deformation (APD) in the recrystallization and partial melting (RAP) route.
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Hot deformation behavior of extruded Mg–Zn–Y–Zr alloy

TL;DR: In this paper, a constitutive equation and processing map were developed to describe the flow characteristics of extruded Mg-Zn-Y-Zr alloy, and isothermal forging tests were conducted to verify the optimal deformation parameters.
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Microstructure evolution of SiCp/ZM6 (Mg–Nd–Zn) magnesium matrix composite in the semi-solid state

TL;DR: In this article, the microstructure evolution of SiCp/ZM6 composites during semi-solid remelting was examined under the same conditions and the coarsening mechanisms of SSTT and RAP composites were discussed.
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Ultrasonic assisted squeeze casting of a wrought aluminum alloy

TL;DR: In this paper, an ultrasonic assisted squeeze casting method is proposed for processing wrought aluminum alloys, and a frame-shaped part is fabricated to verify the feasibility of ultrasonic-assisted squeeze casting technology.