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Online since: December 2015
Authors: Muhamad Iqram Ibrahim, Tuan Anis Nadia Tuan Mohd Saipudin, Abdul Hamid Salleh, Siti Rafedah Abd Karim
Material and Methods
Raw Materials.
ISCA Journal of Biological Science.
Journal of Tropical Forest Science, Vol.21(3) (2009), 246-251
Journal Tropical Agriculture Science, Vol.24(2) (2001), 151-157
Journal of Tropical Resource and Sustainable Science 2 (2014), 16-22
ISCA Journal of Biological Science.
Journal of Tropical Forest Science, Vol.21(3) (2009), 246-251
Journal Tropical Agriculture Science, Vol.24(2) (2001), 151-157
Journal of Tropical Resource and Sustainable Science 2 (2014), 16-22
Online since: November 2016
Authors: Lian Fa Yang, Yong Pei Fu
At present, scholars have put forward a lot of strength models about metal materials at high strain rate.
For a lot of metal materials, the description of deformation is quite accurate with J-C strength model.
International Journal of Plasticity. 26 (2010) 1746-1771
Journal of Applied physical. 64 (1998) 3901-3910
Mechanics of Materials.17 (1994)195-201.
For a lot of metal materials, the description of deformation is quite accurate with J-C strength model.
International Journal of Plasticity. 26 (2010) 1746-1771
Journal of Applied physical. 64 (1998) 3901-3910
Mechanics of Materials.17 (1994)195-201.
Online since: October 2011
Authors: Jian Neng Wang, Jaw Luen Tang, Wei Te Wu, Der Cheng Chen, Chien Hsing Chen, Ching Ying Luo
Fig. 6: Plot of transmission loss values versus time for different materials.
Fig. 7: Plot of average transmission loss values versus time for different materials.
Fig. 8: Plot of average chloride ion values versus time for different materials.
Wang: Smart Materials and Structures, Vol. 16 (2007), p. 665 [9] J.L.
Kim: AIChE Journal, Vol. 47 (2001), p. 1250 [12] C.H.
Fig. 7: Plot of average transmission loss values versus time for different materials.
Fig. 8: Plot of average chloride ion values versus time for different materials.
Wang: Smart Materials and Structures, Vol. 16 (2007), p. 665 [9] J.L.
Kim: AIChE Journal, Vol. 47 (2001), p. 1250 [12] C.H.
Online since: October 2007
Authors: V. Kumar, Ramana G. Reddy
Singh (Eds.), Materials Science and
Technology, Ohio, (2006) p. 435-443.
10.
Reddy: Advanced Engineering Materials, Vol. 5, (2003) p.167-172. 11.
Greil: Journal of Material Science, Vol. 26, (1991) p.669-677. 14.
Anyalebechi: Materials Science and Technology, Vol. 4, (1988) p.1-4. 17.
Zhang: Journal of Materials Science, Vol. 30, (1995) p.4309-4315. 20.
Reddy: Advanced Engineering Materials, Vol. 5, (2003) p.167-172. 11.
Greil: Journal of Material Science, Vol. 26, (1991) p.669-677. 14.
Anyalebechi: Materials Science and Technology, Vol. 4, (1988) p.1-4. 17.
Zhang: Journal of Materials Science, Vol. 30, (1995) p.4309-4315. 20.
Online since: March 2011
Authors: Gokhan Celik, Bilgin Kaftanoğlu, Celalettin Karadogan
Kuzman, Journal of Achievements in Materials and Manufacturing Engineering, 20(2007), 375-378
F., Journal of Materials Processing Technology, 179(2006), 56-60
S., Journal of Materials Processing Technology, 141(2003), 101-108
Barata da, Journal of Materials Processing Technology, 142(2003), 714-724
[19] Atkinson M., International Journal of Material Science, 39(1997), 761-769
F., Journal of Materials Processing Technology, 179(2006), 56-60
S., Journal of Materials Processing Technology, 141(2003), 101-108
Barata da, Journal of Materials Processing Technology, 142(2003), 714-724
[19] Atkinson M., International Journal of Material Science, 39(1997), 761-769
Online since: July 2012
Authors: Ze Kun Feng, Li Hua Yu, Jing Yao, Ai Ping Huang
Hexagonal system ferrite materials are widely used in ceramic permanent magnetic materials, high-frequency magnetic head materials, and high-frequency soft magnetic materials due to their excellent electromagnetic properties.
References [1] Han Zhiquan, in: Developments of Ultrahigh Frequency Soft HexagonalFerrite and Composite Ferrite Materials, Journal of Magnetic Materials and Devices (No. 3,2010 )
[2] Tang Yingming, Jia Lijun, Zhang Huaiwu, Yin Shuiming and Li Tao, in: Application and Research Status of Z-type Hexaferrites Used in UHF Band, Journal of Magnetic Materials and Devices (No. 6, 2010)
[3] Feng Zekun, Huang Aiping, Xu Dandan, Sheng Jinping, in: Ferroxplana Co_2Z Hexagonal Ferrites Materials for Applications at Quasi-microwave Band, Journal of Magnetic Materials and Devices, (No. 6, 2008)
[4] Hao Sikun, Li Wei, Meng Weimin, Bai Jianmin, Yang Zheng and Wei Fulin, “Magnetic properties of Co_2Z type ferrite thin films, Journal of Magnetic Materials and Devices,(No. 3, 2011)
References [1] Han Zhiquan, in: Developments of Ultrahigh Frequency Soft HexagonalFerrite and Composite Ferrite Materials, Journal of Magnetic Materials and Devices (No. 3,2010 )
[2] Tang Yingming, Jia Lijun, Zhang Huaiwu, Yin Shuiming and Li Tao, in: Application and Research Status of Z-type Hexaferrites Used in UHF Band, Journal of Magnetic Materials and Devices (No. 6, 2010)
[3] Feng Zekun, Huang Aiping, Xu Dandan, Sheng Jinping, in: Ferroxplana Co_2Z Hexagonal Ferrites Materials for Applications at Quasi-microwave Band, Journal of Magnetic Materials and Devices, (No. 6, 2008)
[4] Hao Sikun, Li Wei, Meng Weimin, Bai Jianmin, Yang Zheng and Wei Fulin, “Magnetic properties of Co_2Z type ferrite thin films, Journal of Magnetic Materials and Devices,(No. 3, 2011)
Online since: January 2012
Authors: Chan Li, Xiao Chao Cui, Wen Bin Zhao, Xue Xia Zhang
Introduction
Fiber composites are an emerging class of structural materials widely used in many critical applications such as national defense and space technology.
Because low-density, high specific strength, high specific stiffness and the characteristics of to design properties by controlling bonding and materials processing technology of the fiber and matrix, the composite materials in engineering is very promising.
Actually, the distribution of material within the micro-structure is variety, and the periodic micro-structure is the extreme of the material from completely disordered to a strict ordered of the internal structure, also the natural composite material contains many period or similar period of the micro-structure, as the development of material manufacturing technology, a number of reinforcement periodic-accurate distribution of new materials will emerge.
Hu Haichang in Chinese) Science Press, Beijing (1963) [10] Weiyang Yang, Jinlin Li, Xuexia Zhang, in: Method of a Complex Variable for Fracture in Composite Materials.
Advanced Materials Research 2011, 243-249: 5989-5993 [12] Wenshuai Wang, Xing Li.
Because low-density, high specific strength, high specific stiffness and the characteristics of to design properties by controlling bonding and materials processing technology of the fiber and matrix, the composite materials in engineering is very promising.
Actually, the distribution of material within the micro-structure is variety, and the periodic micro-structure is the extreme of the material from completely disordered to a strict ordered of the internal structure, also the natural composite material contains many period or similar period of the micro-structure, as the development of material manufacturing technology, a number of reinforcement periodic-accurate distribution of new materials will emerge.
Hu Haichang in Chinese) Science Press, Beijing (1963) [10] Weiyang Yang, Jinlin Li, Xuexia Zhang, in: Method of a Complex Variable for Fracture in Composite Materials.
Advanced Materials Research 2011, 243-249: 5989-5993 [12] Wenshuai Wang, Xing Li.
Online since: June 2021
Authors: Jian Min Yu, Zhi Min Zhang, Guo Qin Wu, Lei Chen Jia, Wen Long Xu, Yong Gang Tian
[2] Yu, H., et al, Die angle dependency of microstructural inhomogeneity in an indirect-extruded AZ31 magnesium alloy (Article) [J].Journal of Materials Processing Technology.2015:181-188
MATERIALS & DESIGN.2014:256-263
Materials Science and Engineering: A.2014:232-237
Materials Science and Engineering A.2015:137-141
Journal of Materials Science, 2011
MATERIALS & DESIGN.2014:256-263
Materials Science and Engineering: A.2014:232-237
Materials Science and Engineering A.2015:137-141
Journal of Materials Science, 2011
Online since: September 2011
Authors: Yi Qiang Wang, Bing Bing Yan, Hai Bo Zhou, Gui Lian Wang
According to the experience of polishing worker, great polishing pressure is used to remove more materials at rough finish, and small polishing pressure is used to remove material at fine finish.
Acknowledgement This research was sponsored by Talent Training Plan of Jiamusi University (RC2010-026), Youth Academic Talent Program of Heilongjiang Province (1251G061), Ningbo Science and Technology Key Program (2010B10001) and Zhejiang Provincial Natural Science Foundation of China (Y1110708).
Cho: Journal of Materials Processing Technology, Vol. 130-131 (2002), pp. 339-344
Huang: Journal of Materials Processing Technology, Vol. 166 (2005), pp. 230-236
Ikoku: Journal of Materials Processing Technology, Vol. 187-188 (2007), pp. 81-84
Acknowledgement This research was sponsored by Talent Training Plan of Jiamusi University (RC2010-026), Youth Academic Talent Program of Heilongjiang Province (1251G061), Ningbo Science and Technology Key Program (2010B10001) and Zhejiang Provincial Natural Science Foundation of China (Y1110708).
Cho: Journal of Materials Processing Technology, Vol. 130-131 (2002), pp. 339-344
Huang: Journal of Materials Processing Technology, Vol. 166 (2005), pp. 230-236
Ikoku: Journal of Materials Processing Technology, Vol. 187-188 (2007), pp. 81-84
Online since: September 2014
Authors: Luboš Náhlík, Pavel Hutař, Bohuslav Máša
Estimation of the crack behaviour in the compressive layer of the alumina-zirconia ceramic laminate
Luboš Náhlík1,2,a *, Bohuslav Máša1,2,b and Pavel Hutař2,c
1Institute of Physics of Materials, Academy of Sciences of the Czech Republic, Dep.
This causes higher apparent fracture toughness of the layered ceramic composite in comparison to the basic materials.
Dlouhý: Journal of the European Ceramic Society, Vol. 32 (2012), p. 2057
Cihlar: Journal of the European Ceramic Society, Vol. 33 (2013), p. 2305
Hutař: Computational Materials Science, Vol. 46 (2009), p. 614
This causes higher apparent fracture toughness of the layered ceramic composite in comparison to the basic materials.
Dlouhý: Journal of the European Ceramic Society, Vol. 32 (2012), p. 2057
Cihlar: Journal of the European Ceramic Society, Vol. 33 (2013), p. 2305
Hutař: Computational Materials Science, Vol. 46 (2009), p. 614