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1What is going on in magnesium alloys?显示文摘China has been developed into one of the most active regions in terms of both fundamental and applied research on magnesium(Mg) and its alloys in the world from a solid base laid by its prominent metallurgist and materials scientists over the past decades. Nowadays, a large number of young-generation researchers have been inspired by their predecessors and become the key participants in the fields of Mg alloys, which consequently led to the establishment of China Youth Scholar Society for Magnesium Alloys Research in 2015. Since then, the first two China Youth Scholars Symposiums on Mg Alloys Research had been held at Harbin(2015) and Chongqing(2016) China, respectively. A number of crucial research interests related to fundamental and applied Mg research were discussed at the conferences and summarized in this short perspective, aiming to boost far-reaching initiatives for development of new Mg-based materials to satisfy the requirements for a broad range of industrial employments. Herein, four main aspects are included as follows: i) Plastic deformation mechanism and strengthening strategy, ii) Design and development of new Mg-based materials, iii) Key service properties, and iv) New processing technologies.X.J. Wang D.K. Xu R.Z. Wu X.B. Chen Q.M. Peng L. Jin Y.C. Xin Z.Q. Zhang Y. Liu X.H. Chen G. Chen K.K. Deng H.Y. Wang 2018Journal of Materials Science & Technology2018,34,2:35
2Exergy analysis of R1234ze(Z) as high temperature heat pump working fluid with multi-stage compression显示文摘在这份报纸,模拟途径和多级式的压缩的 exergy 分析有 R1234ze (Z) 的高温度热泵(HTHP ) 系统工作液体被进行。两个都,单个阶段、多级式的压缩周期被分析把系统表演与密封的热水供应在浪费热恢复之上基于的 120C 作比较。为不同阶段压缩系统的每个部件的 exergy 破坏比率被比较。结果证明压缩机的 exergy 损失比率对单个阶段的压缩系统比蒸发器和 condenser 的大。多级式的压缩系统随压缩舞台的增加让更好的精力和 exergy 效率数。与单个阶段的压缩系统相比,性能(警察) 的系数二阶段、三阶段的压缩系统的改进分别地是 9.1% 和 14.6% 。当浪费热来源温度是 60C 时, exergy 效率分别地为二阶段、三阶段的压缩系统增加大约 6.9% 和 11.8% 。Bin HU Di WU L.W. WANG R.Z. WANG 2017Frontiers in Energy2017,11,4:6
3Preparation and thermal characterization of expanded graphite/paraffin composite phase change material显示文摘L. Xia P. Zhang R.Z. Wang 2010Carbon2010,,9:3
4Combined cooling, heating and power: A review显示文摘D.W. Wu R.Z. Wang 2006Progress in Energy and Combustion Science2006,,5:3
5Microstructures and mechanical properties of ultrafine grained 7075 Al alloy processed by ECAP and their evolutions during annealing显示文摘Y.H. Zhao X.Z. Liao Z. Jin R.Z. Valiev Y.T. Zhu 2004Acta Materialia2004,,15:3
6Energy efficiency and economic feasibility of CCHP driven by stirling engine显示文摘X.Q. Kong R.Z. Wang X.H. Huang 2003Energy Conversion and Management2003,,9:2
7The present and future of residential refrigeration, power generation and energy storage显示文摘R.Z. Wang X. Yu T.S. Ge T.X. Li 2012Applied Thermal Engineering2012,,:2
8A review of thermally activated cooling technologies for combined cooling, heating and power systems显示文摘J. Deng R.Z. Wang G.Y. Han 2010Progress in Energy and Combustion Science2010,,2:1
9Annealing behaviour of nanostructured carbon steel produced by severe plastic deformation显示文摘Yu. Ivanisenko R.K. Wunderlich R.Z. Valiev H.-J. Fecht 2003Scripta Materialia2003,,10:1
10Na+ Sensitivity of ROMK1 K+ Channel: Role of the Na+/H+ Antiporter显示文摘R.Z. Sabirov R.R. Azimov Y. Ando-Akatsuka T. Miyoshi Y. Okada 1999The Journal of Membrane Biology1999,,1:1
11An investigation of microstructural stability in an AlMg alloy with submicrometer grain size显示文摘J. Wang Y. Iwahashi Z. Horita M. Furukawa M. Nemoto R.Z. Valiev T.G. Langdon 1996Acta Materialia1996,,7:1
12Study on the heat transfer and sorption characteristics of a consolidated composite sorbent for solar-powered thermochemical cooling systems显示文摘T.X. Li R.Z. Wang L.W. Wang J.K. Kiplagat 2009Solar Energy2009,,9:1
13Microhardness measurements and the Hall-Petch relationship in an AlMg alloy with submicrometer grain size显示文摘M. Furukawa Z. Horita M. Nemoto R.Z. Valiev T.G. Langdon 1996Acta Materialia1996,,11:1
14Effect of interlayer composition on the microstructure and strength of diffusion bonded Mg/Al joint显示文摘L.M. Liu L.M. Zhao R.Z. Xu 2009Materials and Design2009,,:1
15Grain refinement and mechanical properties in ultrafine grained Pd and Pd–Ag alloys produced by HPT显示文摘L. Kurmanaeva Yu. Ivanisenko J. Markmann C. Kübel A. Chuvilin S. Doyle R.Z. Valiev H.-J. Fecht 2009Materials Science & Engineering A2009,,7:1
16The mechanism of formation of nanostructure and dissolution of cementite in a pearlitic steel during high pressure torsion显示文摘Yu. Ivanisenko W. Lojkowski R.Z. Valiev H.-J. Fecht 2003Acta Materialia2003,,18:1
17Performance of solid–gas reaction heat transformer system with gas valve control显示文摘C. Wang P. Zhang R.Z. Wang 2010Chemical Engineering Science2010,,10:1
18Approach to nanostructured solids through the studies of submicron grained polycrystals显示文摘R.Z. Valiev 1995Nanostructured Materials1995,,:1
19Influence of strain rate & temperature on the mechanical response of ultrafine-grained Cu, Ni, and Al-4Cu-0.5Zr显示文摘G.T. Gray T.C. Lowe C.M. Cady R.Z. Valiev I.V. Aleksandrov 1997Nanostructured Materials1997,,:1
20R & D OF CAST SUPERALLOYS AND PROCESSING FOR GAS TURBINE BLADES IN BIAM显示文摘R&DOFCASTSUPERALLOYSANDPROCESSINGFORGASTURBINEBLADESINBIAMY.F.HanandR.Z.Chen(InstituteofAeronauticalMaterials,Beijing100095,C...Y.F. Han and R.Z. Chen(Institute of Aeronautical Materials, Beijing 100095,China ) 1996Acta Metallurgica Sinica(English Letters)1996,9,6:1
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