Institution
Chinese Culture University
Education•Taipei, Taiwan•
About: Chinese Culture University is a education organization based out in Taipei, Taiwan. It is known for research contribution in the topics: Population & Fuzzy logic. The organization has 2708 authors who have published 3980 publications receiving 74662 citations. The organization is also known as: CCU & Far East University.
Papers published on a yearly basis
Papers
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TL;DR: A new approach for the design of alloys is presented in this paper, where high-entropy alloys with multi-principal elements were synthesized using well-developed processing technologies.
Abstract: A new approach for the design of alloys is presented in this study. These high-entropy alloys with multi-principal elements were synthesized using well-developed processing technologies. Preliminary results demonstrate examples of the alloys with simple crystal structures, nanostructures, and promising mechanical properties. This approach may be opening a new era in materials science and engineering.
8,175 citations
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TL;DR: In this paper, a new approach for the design of alloy systems with multiprincipal elements was presented, and the Al x CoCrCuFeNi alloys with different aluminum contents (i.e., x values in molar ratio, x=0 to 3.0) were synthesized using a well-developed arc-melting and casting method.
Abstract: A new approach for the design of alloy systems with multiprincipal elements is presented in this research. The Al
x
CoCrCuFeNi alloys with different aluminum contents (i.e., x values in molar ratio, x=0 to 3.0) were synthesized using a well-developed arc-melting and casting method. These alloys possessed simple fcc/bcc structures, and their phase diagram was predicted by microstructure characterization and differential thermal analyses. With little aluminum addition, the alloys were composed of a simple fcc solid-solution structure. As the aluminum content reached x=0.8, a bcc structure appeared and constructed with mixed fcc and bcc eutectic phases. Spinodal decomposition occurred further on when the aluminum contents were higher than x=1.0, leading to the formation of modulated plate structures. A single ordered bcc structure was obtained for aluminum contents larger than x=2.8. The effects of high mixing entropy and sluggish cooperative diffusion enhance the formation of simple solid-solution phases and submicronic structures with nanoprecipitates in the alloys with multiprincipal elements rather than intermetallic compounds.
915 citations
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TL;DR: In this article, four alloys containing multiprincipal metallic elements (≥5 elements) were prepared by casting, splat quenching, and sputtering, and their microstructures and crystal structures were investigated.
Abstract: Crystalline solid solutions are typically formed in conventional alloys based on one or two host elements. Here, in this research, four alloys containing multiprincipal metallic elements (≥5 elements) were prepared by casting, splat quenching, and sputtering. Their microstructures and crystal structures were investigated. It was interestingly found that solid solutions with simple fcc or bcc crystal structure were also practically formed in these alloys with multiprincipal elements. All different atoms are regarded as solutes and expected to randomly distribute in the crystal lattices without any matrix element defined.
824 citations
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TL;DR: By applying AHP in obtaining criteria weight and TOPSIS in ranking, it is found the most concerned aspects of service quality are tangible and the least is empathy.
813 citations
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TL;DR: In this article, simulated dye wastewater, separately prepared with disperse, reactive, direct, acid and basic dyes, were decolorized with a hydrogen peroxide-ferrous ion system, known as Fenton's reagent.
668 citations
Authors
Showing all 2717 results
Name | H-index | Papers | Citations |
---|---|---|---|
Wen-Chang Chen | 70 | 596 | 18258 |
Jiann T. Lin | 58 | 190 | 10801 |
K. R. Justin Thomas | 47 | 165 | 7170 |
Kuang-Lieh Lu | 43 | 223 | 6580 |
Chieh-Fu Chen | 40 | 104 | 4328 |
Shih-Sheng Sun | 39 | 115 | 4945 |
Ming Chang Chiang | 36 | 61 | 6319 |
Chao-Ping Hsu | 35 | 108 | 9730 |
Yao-Haur Kuo | 34 | 204 | 3963 |
Han C. Shih | 33 | 173 | 4327 |
Pi-Guey Su | 32 | 87 | 3261 |
Sheng-Hshiung Tsaur | 31 | 87 | 3857 |
Wen-Min Lu | 31 | 116 | 3591 |
Chi-Fai Chau | 30 | 60 | 3214 |
Hsien-Hsin Chou | 29 | 43 | 2439 |