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Online since: August 2012
Authors: Hong Xin Guan, Zeng Jie Luo, Hao Liu
Journal of Chang an University :Natural Science Edition, 2009,29(6):28-31
Journal of Chang an University:Natural Science Edition, 2006, 26(6):19-22
Journal of Wuhan University of Technology:Transportation Science & Engineering, 2006,30(6):969-972
Applied Mechanics and Materials, 2011,71-78:278-283
Advanced Materials Research, 2011,225-226:1171-1176.
Online since: September 2011
Authors: Wen Yi Zhang, Fang Yuan Tan, Ting Ting Zhao, Li Qiao Lu, Ning Han
Materials and Methods A.
Combining with Figure 1, the results indicated that ammonification occurred mainly in the logarithmic growth phase of strains; this period was the most productive period of cell growth and the energy and materials required for cell synthesis was consumed during this period.
* This work is supported by the natural science fund of Jiangsu province (BK200930405, BE201077311) and the natural science fund social development project of Changzhou city (CS20100015, WS201003).
[9] Xiuzhu Dong, Identification Manual of Common Bacterial Systems, Science Press, Beijing, 2001
[11] Hongyu Wang, Fang Ma, and Junfeng Su, “Identification and characterization of a bacterial strain C3 capable of aerobic denitrification”, Journal, Environmental Science, China, vol. 28, pp. 1549-1552, July 2007
Online since: May 2014
Authors: Wen Chen Xu, De Bin Shan, X.Z. Han
Xuc School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, P.R.China ashandb@hit.edu.cn, bxiuzhuhan@gmail.com, cxuwc76@hit.edu.cn Key words: Mg-10Gd-2Y-0.5Zn-0.3Zr, isothermal forging process, secondary phases, mechanical properties Abstract.
[3] Jun Wang, Jian Meng, Deping Zhang: Materials Science and Engineering A, 456(2007), 78–84
C, Si CH: Journal of Materials Processing Technology, 187-188(2007), 480-485
Schmidt: Journal of Materials Processing Technology, 187–188(2007), 761–765
Guo: Materials Science and Engineering A, 454–455(2007), 274–280.
Online since: July 2011
Authors: Ming Yue Sun, Meng Ting Fan, Dian Zhong Li
Effect of Microstructural Evolution on Mechanical Properties of 55NiCrMoV7 Steel Mengting Fana, Mingyue Sun﹡b and Dianzhong Lic Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China amtfan@imr.ac.cn, bmysun@imr.ac.cn, cdzli@imr.ac.cn Keywords: 55NiCrMoV7 Steel, Martensite, Bainite, Mechanical Properties.
Bernhart: Materials Science and Engineering A. 380(2004), p. 222-230 [4] S.
Zebarjad: Journal of Materials Processing Technology. 189(2007), p. 107-103 [5] C.
Ekrami: Materials Science and Engineering A. 525(2009), p. 159-165 [7] Z.
Bernhart: Transaction of Materials and Heat Treatment. 2007, 28(2), p. 73-76 [8] C.
Online since: July 2011
Authors: Meng Ling Zhao
Beijing: Science press,1998
Journal of hydraulic,2003(03)
Hydrogeology Journal, 1999,7(2)
Beijing: Science press,1998
Beijing: Science press,1999
Online since: July 2011
Authors: Meng Ling Zhao
Beijing: Science Press,1998
Journal of Hydraulic,2003(03)
Hydrogeology Journal, 1999,7(2)
Beijing: Science Press,1998
Beijing: Science Press,1999
Online since: December 2012
Authors: Kalyan Kumar Ray
Simpler Estimation of Fracture Toughness During Material Development, Process Optimization and Quality Control of Structural Materials K.
Ayaso, “Anisotropic fracture behaviour of cold drawn steel: a materials science approach”, Mater.
A, 30A, (1999), 1193. [25] American Society for Testing of Materials, “Standard test methods for tension testing of metallic materials”, E8M-00, ASTM International, Philadelphia, USA, (2003). [26] A.
Ray, “Influence of sub-zero treatments on fracture toughness of AISI D2 steel”, Materials Science and Engineering A, 528, (2010) , 589–603
Ray, “Structure–property correlation of sub-zero treated AISI D2 steel”, Materials Science and Engineering A, 541, (2012), 45–60. [31] G.T.
Online since: August 2012
Authors: Renan Schroeder, Antônio I. Ramos Filho, Cristiano Binder, Aloisio N. Klein
The successful manufacturing of two material parts by powder metallurgy depends on some variables related to materials and processing.
The results of two material parts were very successful in terms of resistance, if compared with single materials.
Allibert: Journal of Materials Processing Technology Vol. 209 (2009), p. 1254
Firouzdor: Materials Science and Engineering A Vol. 472 (2008), p. 338
German: Journal of Material Science Vol. 38 (2003), p. 4869
Online since: August 2019
Authors: Bheemappa Suresha, S.M. Darshan
Shah, Developing plant fiber composites for structural applications by optimising composite parameters: a critical review, Journal of Material Science. 48 (2013) 6083–107
Materials & Design. 31 (2010) 1833-1841
Akonda, Impact property of PLA/Flax nonwoven biocomposite, Conference Papers in Materials Science. 13 (2013) 1-6
Mishra, Processing and properties of natural fiber-reinforced polymer composite, Journal of Materials. 8 (2013) 1-6
Ansell, Straw-reinforced polyester composites, Journal of Materials Science. 18 (1983) 1549-1556
Online since: May 2007
Authors: Xiao Dong He, Yao Li, Xiao Li, Yue Sun
Preparation of High Silicon Steel by EB-PVD X.Li a , X.D.He b, Y.Li c, Y.Sun d Center for Composite Materials, Harbin Institute of Technology, Harbin 150001, China a. lixiaobruce@163.com, b.
No study about EB-PVD preparation of high silicon steel was reponted except some research about preparation of FeSi/Cu nano-multilayer magnetic materials [ iv], FeSi/FeSi-ZrO2 multilayer [ v] and FeSi-ZrO2 granular film [ vi ] by EB-PVD.
Iron ingot (100 mm (diameter) ×200 mm (length)) and silicon ingot (70 mm (diameter) ×100 mm (length)) were used as source materials.
Acknowledgements This work was supported by the Program for New Century Excellent Talents in University 2004 and the National Natural Science Foundation of China (No.50304007).
References [1]R.Li, Q.Shen et al:Journal of Magnetism and Magnetic Materials Vol.281(2004), p.135 [2] Y.Takada, M.Abe, S.Masuda, and J.Inagaki:J.Appl.Phys Vol. 64(1988), p.5367 [3] H.Haiji, K.Okada, T.Hiratani et al: Journal of Magnetism and Magnetic Materials Vol.160 (1996), p.109 [4] H.B.Xu, X.S.Jin, et al: Thin Solid Film Vol.375(2000), p.296 [5] X.F.Bi, W.H.Lan, et al: Journal of Magnetism and Magnetic Materials Vol.261(2003), p.166 [6] X.F.Bi, J.J.Wang, et al: Journal of Magnetism and Magnetic Materials Vol.281(2004), p.290 [7] B.A.Movchan and A.V.
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