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Online since: September 2003
Authors: Lian Meng Zhang, Dong Ming Zhang, Chun Zhi Hu
In fact, some of the materials have been solidified by SPS, for example, Fe-16Cr-4Ni-3Cu alloy and Ti-Si-C composites as well as Fe-M-B softmagnetic materials.
[2] Y.Tanaka, Y.Takada, M.Abe and S.Masuda: Journal of Magnetism and Magnetic Materials, Vol. 83 (1990), p. 375
[3] T.Yamaji, M.Abe, Y.Takada, K.Okada and T.Hiratani: Journal of Magnetism and Magnetic Materials, Vol. 133 (1994), p. 187
Tokita: Materials Science Forum, Vol. 308-311 (1999), p. 83
Hirai: Materials Research Bulletin, Vol. 35 (2000), p. 619
Online since: September 2024
Authors: Zi Hao Qiu, Rui Meng, Ojiyed Tegus, Aorigele Bohnuud, Gerile Naren
Tegus1,2,e 1College of Physics and Electronic Information, Inner Mongolia Normal University, Hohhot 010022, China 2Inner Mongolia Key Laboratory for Physics and Chemistry of Functional Materials, Inner Mongolia Normal University, Hohhot 010022, China 3Inner Mongolia Engineering Research Center for Rare Earth Functional and New Energy Storage Materials, Hohhot 010022, China aargl0622@163.com, b*naren0501@163.com, c2550082678@qq.com, dmengrui000903@163.com, etegusph@imnu.edu.cn Keywords: octanoyl amino acid ligand; gadolinium complex; absorption Abstract.
Amino acid lanthanide complexes are a promising class of environmentally friendly and non-toxic optical organic materials that find extensive applications in biomedicine, molecular probes, and optical devices.
The strong optical absorption of the gadolinium complexes suggests potential applications in the field of light-absorbing matrix materials.
Highly Stretchable and Fast Self-Healing Luminescent Materials [J].
Advanced Science, 06(2019) 1802040
Online since: March 2015
Authors: Yu Ying Zhu, Qiang Li, Yun Hua He
Progress in Materials Science 52 (2007) 540–596 [5] F.
Journal of Refractory Metals and Hard Materials 38 (2013) 81–86 [11] W.H.
Materials Science and Engineering R, 44 (2004) 45–89 [12] Xi dong Hui, Guo liang Chen.
Materials Science and Engineering A 304–306 (2001) 151–158 [14] C.
Progress in Materials Science 46 (2001) 1-184 [15] Yuying Zhu, Qiang Li,Yunhua He, et. al.
Online since: August 2016
Authors: Hélio Lucena Lira, Gelmires Araújo Neves, L.N.L. Santana, V.J. Silva, Paula Simone Soares de Medeiros
Table1: Chemical composition, in percentage, of raw materials.
Table 2: Particle size distribution of raw materials.
Zegardlo: Construction and Building Materials Vol. 48 (2013), p. 295
Segadães: Journal Applied Clay Science Vol. 69 (2012), p. 50
Wang: Journal Applied Clay Science Vol. 70 (2012), p. 67
Online since: June 2014
Authors: Najibah Abd. Latif, Mohd Imran Ghazali, Anika Zafiah M. Rus, Shaiqah Mohd Rus
Applied Mechanics and Materials.
Applied Mechanics and Materials.
Advanced Materials Research.
Part 2; Thermal Degradation And Materials Properties, Prog React Kinet Mech, vol 34, pp 1-43 2009. 1468-6783@2009 Science Reviews 2000 Ltd [10] White, S.
Proceeding of the Institution of mechanical Engineers, Part L; Journal of Material Design and Applications. 224(2), 63-70
Online since: November 2012
Authors: Badrinath Veluri, Henrik Myhre Jensen
Multilayered electronic components, typically of heterogeneous materials, delaminate under thermal and mechanical loading.
G., 1989, "An Experimental Study of the Fracture Resistance of Bimaterial Interfaces", Mechanics of Materials, 7(4) pp. 295-304
R., 1988, "Elastic Fracture Mechanics Concepts for Interfacial Cracks", Journal of Applied Mechanics, 55(1) pp. 98-103
[5] Dundurs, J., 1969, "Edge Bonded Dissimilar Orthogonal Elastic Wedges", Journal of Applied Mechanics, 36(2) pp. 650-652
M., 1969, "Steady-state Propagation of Interface Corner Crack", Submitted to International Journal of Solids and Structures.
Online since: February 2019
Authors: Hasnah Mohd Zaid, Hanan Fakhruldi, Foo Yoong Yow, Norzafirah Razali, Yaleeni Kanan Dasan
Nano-crystalline titanium dioxide materials are a subject of great interest for their improved physical and chemical properties in comparison with its bulk.
The sol-gel process successfully prepared uniform distribution of nanoparticles anatase TiO2 materials at 400˚C calcination temperature.
Materials. 10 (2017) 1208
Murugesan, Sol–gel preparation and characterization of nanosize TiO2: Its photocatalytic performance, Materials Chemistry and Physics. 104 (2007) 454–459
Tooley, Physical characterization of titanium dioxide nanoparticles, International Journal of Cosmetic Science. (2014) 1–12.
Online since: August 2011
Authors: Lei Chen
With the development of the computer science and FEM theory, numerical simulation of springback is performed.
The factors affecting stress field are materials model, constitute equation, yield criterion, element type, element size and contact algorithm [4].
The material parameters are shown in Table1.
Acknowledgement The financial support for this work is from Natural Science Foundation of Jiangxi Bluesky University (No.
Vol. 44 (2002), p.103 [4] M.Samuel: Journal of Materials Processing Technology Vol. 105 (2000), p. 382 [5] M.Phadke, Quality engineering using robust design, Prentice Hall, London, 1989 [6] L.
Online since: September 2021
Authors: Zainab Naser Jameel, Halah H. Rashed
It has ability to deposit different materials and different substrates[16].
Co-precipitation Technique” Material Science Research India, Vol. 14, No.1(2017) 5-8
Chandramohan,“ Structural, optical and magnetic properties of Ni-doped CdS thin films prepared by CBD”, Journal of Materials Science: Materials in Electronics, Vol. 26, Issue 4(2015) 2059–2065
Mahalingam and Luis Ixtlilco,” Studies on Electrodeposited NiS Thin Films”, Journal of New Materials for Electrochemical Systems, Vol. 17(2014) 167-171
Balu,“Effect of doping concentration on the structural, morphological, optical and electrical properties of Mn-doped CdO thin films Materials”, Science-Poland,Vol. 33, No.4(2015) 774-781
Online since: October 2011
Authors: Yi Han Sun, Jin Jun Zhong, Ji Qing Zhu, Shao Peng Wu
Investigations [3-5] suggest that recycled aggregate is a feasible way to recycle these waste materials.
Materials and Method Materials.
Li: Journal of Sichuan University (Engineering Science Edition) Vol. 41 (2009), p. 188 [3] Z.W.
Wu: Journal of Huazhong University of Science and Technology Vol. 29 (2001), p. 83 [6] Q.Y.
Zhu: Materials Science and Technology Vol. 15 (2007), p. 480 [7] Y.
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