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Online since: September 2013
Authors: Feng Cheng, Yu Hua Yao, Chun Ling Zeng, Jing Gao, Lu Wang
Journal of Materials Science, 8029-8034(2007)
Journal of Biomedical Materials Research.
Materials Letters, 493-497(2004)
Advanced Materials, 1929-1932(2003)
Journal of Biomedical Materials Research part A, 9999A
Journal of Biomedical Materials Research.
Materials Letters, 493-497(2004)
Advanced Materials, 1929-1932(2003)
Journal of Biomedical Materials Research part A, 9999A
Online since: April 2014
Authors: Y. Al-Douri
Development of morphology controlled synthesis methodologies is of great interest in materials chemistry [2].
Materials Letters, 57 (19), 2936-2939
Materials Chemistry and Physics, 68 (1–3), 22-30
Journal of Materials Science: Materials in Electronics, 9 (4), 261-265
Materials Science in Semiconductor Processing, 10 (4–5), 185-193.
Materials Letters, 57 (19), 2936-2939
Materials Chemistry and Physics, 68 (1–3), 22-30
Journal of Materials Science: Materials in Electronics, 9 (4), 261-265
Materials Science in Semiconductor Processing, 10 (4–5), 185-193.
Online since: January 2020
Authors: Dmitri Pronichev, Aleksey Serov, Oleg V. Slautin
Materials and Methods
The materials for research were explosion-welded and rolled bimetal specimens of copper M1 (0.5-0.6 mm) + titanium VT1-0 (5 mm).
Abboud, Laser surface alloying of titanium with aluminium, Journal of materials science letters, 9 (1990) 308-310
Franconetti, Materials Science Forum, 299-304 (2012) [11] J.J.
Golovin, Advanced Materials Research, 1040, 784-789 (2014) [16] O.G.
Chuchkova, IOP Conference Series: Materials Science and Engineering, 156, Art. 0120212016 (2016) [17] Information on: https://www.scientific.net/KEM.743
Abboud, Laser surface alloying of titanium with aluminium, Journal of materials science letters, 9 (1990) 308-310
Franconetti, Materials Science Forum, 299-304 (2012) [11] J.J.
Golovin, Advanced Materials Research, 1040, 784-789 (2014) [16] O.G.
Chuchkova, IOP Conference Series: Materials Science and Engineering, 156, Art. 0120212016 (2016) [17] Information on: https://www.scientific.net/KEM.743
Online since: June 2013
Authors: Hui Lin Wang, Qiao Ying Li, Ping Kuan Zhang
Journal of Tool Engineering,Vol.44 No.7 (2010) 40-42
[2] Kim J, Dornfeld DA.
Development of an analytical model for drilling burr formation in ductile materials.
Transactions of the ASME, Journal of Engineering Materials and Technology 124(2002) 192-198 [3] Chamanfar A, Mahumudi R.
Material Science and Engineering A397(2005) 153-156
Journal of Mechanical Engineering, 1(1999) 42-43
Development of an analytical model for drilling burr formation in ductile materials.
Transactions of the ASME, Journal of Engineering Materials and Technology 124(2002) 192-198 [3] Chamanfar A, Mahumudi R.
Material Science and Engineering A397(2005) 153-156
Journal of Mechanical Engineering, 1(1999) 42-43
Online since: August 2013
Authors: Shi Bo Zhang
material theoretical calculation.
Journal of Shenyang Jianzhu University(Natural Science), 16(4): 254-255. (2000).
China Journal of Highway and Transport, 16(1): 56-60. (2003).
Journal of Chang'an University (Natural Science Edition), 24(1): 56-60. (2004).
Journal of University of Science and Technology Beijing, 29(10): 980-984. (2007).
Journal of Shenyang Jianzhu University(Natural Science), 16(4): 254-255. (2000).
China Journal of Highway and Transport, 16(1): 56-60. (2003).
Journal of Chang'an University (Natural Science Edition), 24(1): 56-60. (2004).
Journal of University of Science and Technology Beijing, 29(10): 980-984. (2007).
Online since: January 2013
Authors: Bambang Sunendar Purwasasmita, H. Hernawan, Haji Aripin, Seitaro Mitsudo, Endangsusilowati S. Prima, Inyoman Nyoman Sudiana, Katsuhide Sako, Yutaka Fujii, Teruo Saito, Toshitaka Idehara, Saboru Sano, Sliven Sabchevski
The obtained results are important for optimization of the parameters of the technological processes for production of nanocrystalline silica glass ceramics used as a host matrix for luminescence materials, each of which requires a specific porosity and structure.
Introduction In recent years, optoelectronic materials for luminescent planar optical waveguides are becoming increasingly important for many applications, e.g. for development of light emitting devices, laser systems and high-temperature spectrometers.
DSC indicated phase changes, such as evaporation of water, combustion of organic materials, and crystallization.
Azad, Fabrication of transparent alumina (Al2O3) nanofibers by electrospinning, Material Science and Engineering A 435 – 436 (2006) 468 – 473
Lunar And Planetary Science Xxix, 29th Annual Lunar and Planetary Science Conference, March 16-20, 1998, Houston, TX, abstract No. 1471
Introduction In recent years, optoelectronic materials for luminescent planar optical waveguides are becoming increasingly important for many applications, e.g. for development of light emitting devices, laser systems and high-temperature spectrometers.
DSC indicated phase changes, such as evaporation of water, combustion of organic materials, and crystallization.
Azad, Fabrication of transparent alumina (Al2O3) nanofibers by electrospinning, Material Science and Engineering A 435 – 436 (2006) 468 – 473
Lunar And Planetary Science Xxix, 29th Annual Lunar and Planetary Science Conference, March 16-20, 1998, Houston, TX, abstract No. 1471
Online since: January 2026
Authors: Takayoshi Nakano, Aira Matsugaki, Takeshi Nagase, Mitsuharu Todai, Nagi Takahashi, Neiro Tanaka, Daisuke Tanaka
Microstructure and Young's Modulus of (TiZr)2-x(NbTaMo)x Bio-High Entropy Alloys
Mitsuharu Todai1,a*, Nagi Takahashi1,b , Neiro Tanaka1,c, Daisuke Tanaka2,d, Takeshi Nagase3,e, Aira Matsugaki4,f, Takayoshi Nakano4,g
1Department of Environmental Materials Engineering, National Institute of Technology,
Niihama College, 7-1 Yagumo-cho Niihama, Ehime 792-8580, Japan
2Graduate School of Information Sciences, Tohoku University, Sendai 6-3 Aramaki Aza-Aoba, Aoba-ku, Sendai, Miyagi 980-8579, Japan
3Department of Materials and Synchrotron Radiation Engineering, Graduate School of Engineering, University of Hyogo, Himeji 671-2280, Japan
4Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan
am.todai@niihama-nct.ac.jp, bngi98824@icloud.com, cqcsx2den9pcibg50nwn1@docomo.ne.jp, ddaisuke.tanaka.b7@tohoku.ac.jp, et-nagase@eng.u-hyogo.ac.jp, fmatsugaki@mat.eng.osaka-u.ac.jp, gnakano@mat.eng.osaka-u.ac.jp
Keywords: High entropy alloys (HEAs), Bio metallic materials, microstructure, Young’s modulus Abstract.
Introduction High entropy alloys (HEAs) are defined by their mixing entropy, DSmix, and have recently attracted significant attention as a group of materials distinct from conventional metallic materials [1-4].
They exhibit particularly high strengths and are expected to be used as new refractory materials [5].
In general, metallic materials with a high yield strength tend to have a high Young's modulus, and it is considered that high-strength materials, such as TiZrNbTaMo bio-HEAs, also have a high Young's modulus.
Keywords: High entropy alloys (HEAs), Bio metallic materials, microstructure, Young’s modulus Abstract.
Introduction High entropy alloys (HEAs) are defined by their mixing entropy, DSmix, and have recently attracted significant attention as a group of materials distinct from conventional metallic materials [1-4].
They exhibit particularly high strengths and are expected to be used as new refractory materials [5].
In general, metallic materials with a high yield strength tend to have a high Young's modulus, and it is considered that high-strength materials, such as TiZrNbTaMo bio-HEAs, also have a high Young's modulus.
Online since: April 2015
Authors: N. Alan Heckert, Jeffrey T. Fong, James J. Filliben, Pedro V. Marcal, Stephen W. Freiman
Materials Sci., 12 (1977) 1426-1430
Materials Sci., 18 (1983) 2765-2770
Tucker, Advanced Statistical Concepts of Fracture in Brittle Materials, Engineered Materials Handbook, Vol. 4, Ceramics and Glasses, S.
Kromp, The validity of Weibull estimators – experimental verification, Journal of Materials Science, 32 (1997) 1903-1907
Juszczyk, Analysis of strength data using two- and three-parameter Weibull models, Journal of Materials Science, 33 (1998) 1151-1157
Materials Sci., 18 (1983) 2765-2770
Tucker, Advanced Statistical Concepts of Fracture in Brittle Materials, Engineered Materials Handbook, Vol. 4, Ceramics and Glasses, S.
Kromp, The validity of Weibull estimators – experimental verification, Journal of Materials Science, 32 (1997) 1903-1907
Juszczyk, Analysis of strength data using two- and three-parameter Weibull models, Journal of Materials Science, 33 (1998) 1151-1157
Online since: May 2014
Authors: Hong Fang Shen, You Jun Lu, Jie Dong, Guo Li Fang, Yan Min Wang
Since nano materials have the fundamental characteristics of small-size effect, surface effect, quantum size effect and quantum tunneling effect et al, which cause that nano particles and nano bulk materials exhibit many unique physical and chemical properties followed with some abnormal phenomenon.
Among nano materials, perovskite compound oxide is one kind of very important materials because of its unique crystal structure, which decides that it exhibits many special physiochemical properties, can be widely used as superconducting material, ferroelectrics, piezoelectrics, thermistance and oxygen electrode et al, and occupies a high place in the area of material science and catalysis [2].
All the raw materials are analytically pure, obtained from Aladdin Industrial Corporation (Shanghai, China) and direct-used without further treated.
Materials Resarch Bulletin, 2007 (42): 203-212 [9] ZOU Wen-jing, HAN Hui, et al.
Materials Research Bulletin, 42 (2007): 203-212 [18] Jun Geng, Liping Jiang, et al.
Among nano materials, perovskite compound oxide is one kind of very important materials because of its unique crystal structure, which decides that it exhibits many special physiochemical properties, can be widely used as superconducting material, ferroelectrics, piezoelectrics, thermistance and oxygen electrode et al, and occupies a high place in the area of material science and catalysis [2].
All the raw materials are analytically pure, obtained from Aladdin Industrial Corporation (Shanghai, China) and direct-used without further treated.
Materials Resarch Bulletin, 2007 (42): 203-212 [9] ZOU Wen-jing, HAN Hui, et al.
Materials Research Bulletin, 42 (2007): 203-212 [18] Jun Geng, Liping Jiang, et al.
Online since: July 2014
Authors: Virupaxi Auradi, S.A. Kori, S.L. Biradar
Journal of Material Science 2011, 46(08), 2805-2813
Materials Science and Engineering A, 1994, 185: 165–171
Materials Science and Engineering A, 1992, 153: 691–698
Materials Science and Engineering A, 2000, 289: 246–254
Materials Science and Engineering A, 2008, 497: 25-30
Materials Science and Engineering A, 1994, 185: 165–171
Materials Science and Engineering A, 1992, 153: 691–698
Materials Science and Engineering A, 2000, 289: 246–254
Materials Science and Engineering A, 2008, 497: 25-30