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Featured researches published by Yu-Liang Chen.


Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science | 1978

An investigation of transformation strengthening in precipitation-hardened Fe-Ni austenite

S. Jin; J. W. Morris; Yu-Liang Chen; G. Thomas; R. I. Jaffee

Ausaged Fe-33Ni-3Ti and Fe-34Ni-3Ti-0.5Al austenitic alloys were transformation strengthened through sequential martensite (α′ → γ) and reverse martensitic transfor-mations. An increase in yield strength of 20 to 30 ksi (130 to 210 MPa) was obtained, leading to alloy yield strengths near 180 ksi (1250 MPa) in the ausaged and transforma-tion strengthened condition. The presence of the γ′ precipitates formed on ausaging did not radically change the nature of the shear transformation nor the morphology and sub-structure of the transformation product. The presence of the γ′ precipitates did, how-ever, have the beneficial consequence that the α′→ γ reversion could be accomplished with slow heating rates without loss of transformation strengthening. The yield strength actually increased when a slow heating rate was used, a result attributed to the success-ful pinning of transformation induced defects by the γ′ precipitates and to the occurrence of additional precipitation during heating. The efficient pinning of transformation induced defects had the further consequence that the alloys could be annealed for long periods after reversion to austenite without significant loss of strength.


Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science | 2005

Microstructure characterization of AlxCoCrCuFeNi high-entropy alloy system with multiprincipal elements

Chung-Jin Tong; Yu-Liang Chen; Jien-Wei Yeh; Su-Jien Lin; Swe-Kai Chen; Tao-Tsung Shun; Chun-Huei Tsau; Shou-Yi Chang


Journal of Alloys and Compounds | 2009

Deformation and annealing behaviors of high-entropy alloy Al0.5CoCrCuFeNi

Che-Wei Tsai; Yu-Liang Chen; Ming-Hung Tsai; Jien-Wei Yeh; Tao-Tsung Shun; Swe-Kai Chen


Journal of Alloys and Compounds | 2009

Competition between elements during mechanical alloying in an octonary multi-principal-element alloy system

Yu-Liang Chen; Ya-Huei Hu; Cheng-An Hsieh; Jien-Wei Yeh; Swe-Kai Chen


Journal of Alloys and Compounds | 2009

Alloying behavior of binary to octonary alloys based on Cu―Ni―Al―Co―Cr―Fe―Ti―Mo during mechanical alloying

Yu-Liang Chen; Ya-Huei Hu; Che-Wei Tsai; Cheng-An Hsieh; Su-Wen Kao; Jien-Wei Yeh; Tsung-Shune Chin; Swe-Kai Chen


Journal of Alloys and Compounds | 2010

Amorphization of equimolar alloys with HCP elements during mechanical alloying

Yu-Liang Chen; Che-Wei Tsai; Chien-Chang Juan; Ming-Hao Chuang; Jien-Wei Yeh; Tsung-Shune Chin; Swe-Kai Chen


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2007

On mechanical properties and superplasticity of Mg–15Al–1Zn alloys processed by reciprocating extrusion

Shih-Wei Lee; Yu-Liang Chen; Hsiao-Yun Wang; Chih-Fu Yang; Jien-Wei Yeh


Advanced Engineering Materials | 2004

An Mg‐Al‐Zn Alloy with Verry High Specific Strength and Superior High‐strain‐rate Superplasticity Processed by Reciprocating Extrusion

Shih-Wei Lee; Hsiao-Yun Wang; Yu-Liang Chen; Jien-Wei Yeh; Chih-Fu Yang


Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science | 2005

A novel process for fabricating electrical contact SnO2/Ag composites by reciprocating extrusion

Yu-Liang Chen; Shih-Wei Lee; Jien-Wei Yeh; Chih-Fu Yang; Shui-Shu Hung


Materials Chemistry and Physics | 2009

Structural evolution during mechanical milling and subsequent annealing of Cu–Ni–Al–Co–Cr–Fe–Ti alloys

Yu-Liang Chen; Ya-Huei Hu; Che-Wei Tsai; Jien-Wei Yeh; Swe-Kai Chen; Shou-Yi Chang

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Jien-Wei Yeh

National Tsing Hua University

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Swe-Kai Chen

National Tsing Hua University

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Che-Wei Tsai

National Tsing Hua University

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Shih-Wei Lee

National Tsing Hua University

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Ya-Huei Hu

National Tsing Hua University

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Hsiao-Yun Wang

National Tsing Hua University

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Shou-Yi Chang

National Chung Hsing University

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Su-Wen Kao

National Tsing Hua University

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Tao-Tsung Shun

Industrial Technology Research Institute

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