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Online since: September 2009
Authors: Shi Ming Ji, Li Zhang, Qiao Ling Yuan, Ming Sheng Jin, Guo Da Chen, Xian Zhang
Kawashima: Journal of Materials Processing Technology, Vols.
143-144 (2003) No.1, pp.682-686
Khatri: Journal of Materials Processing Technology, Vol. 190 (2007) No.1-6, pp.282-290
Yamamoto: Journal of Materials Processing Technology, Vol. 201 (2008) No.1-3, pp.536-541
Ramírez: Journal of Colloid and Interface Science, Vol. 316 (2007) No.2, pp.867-876
Yeo: Materials Science and Engineering, Vol. 333 (2002) No.1-2, pp.368-376.
Khatri: Journal of Materials Processing Technology, Vol. 190 (2007) No.1-6, pp.282-290
Yamamoto: Journal of Materials Processing Technology, Vol. 201 (2008) No.1-3, pp.536-541
Ramírez: Journal of Colloid and Interface Science, Vol. 316 (2007) No.2, pp.867-876
Yeo: Materials Science and Engineering, Vol. 333 (2002) No.1-2, pp.368-376.
Online since: February 2019
Authors: Hocine Bendjama, Noureddine Guersi, Ouzine Boussaid, Walid Ghennai
The Coulomb friction coefficient depends on the contact surfaces of materials.
Tyne, Predicting instability at die radii in advanced high strength steels, Journal of Material Processing Technology, 210 (2010) 741–750
Materials and Product Technology, Vol 21, Num 1/2/3 (2004) 89-105
Nass, Optimization of the blank holder force, journal of Achievements in Materials and Manufacturing Engineering, Vol 18 (2006) 1-2
Wierzbicki, Prediction of shear-induced fracture in sheet metal forming, Journal of Materials Processing Technology, Vol 210 (2010) 1858–1869.
Tyne, Predicting instability at die radii in advanced high strength steels, Journal of Material Processing Technology, 210 (2010) 741–750
Materials and Product Technology, Vol 21, Num 1/2/3 (2004) 89-105
Nass, Optimization of the blank holder force, journal of Achievements in Materials and Manufacturing Engineering, Vol 18 (2006) 1-2
Wierzbicki, Prediction of shear-induced fracture in sheet metal forming, Journal of Materials Processing Technology, Vol 210 (2010) 1858–1869.
Online since: May 2011
Authors: Qing Lu Li, Shi Rong Li
Systems of governing differential equations
ceramic
metal
Consider a beam made from functionally graded material, with initial length and rectangular cross-section of width and height , the FGM is composed with two materials, such as ceramic and metal.
Materials in top surface and in bottom surface of the beam are ceramic and metal, respectively as shown in Fig.1.
Journal of Sound and Vibration, 304 (2007), p. 969-973
Journal of Sound and Vibration, (1978) p. 459-460
Functionally Gradient Materials,34.p.3-10(1993)
Materials in top surface and in bottom surface of the beam are ceramic and metal, respectively as shown in Fig.1.
Journal of Sound and Vibration, 304 (2007), p. 969-973
Journal of Sound and Vibration, (1978) p. 459-460
Functionally Gradient Materials,34.p.3-10(1993)
Online since: October 2014
Authors: Vera Murgul, Nikolay Vatin, Rustam Usmanov
Journal of Applied Engineering Science, Vol. 12 (1) (2014), pp 1-10
[13] V.
Journal of Applied Engineering Science, Vol. 12 (2) (2014), pp 121-128 [14] D.
Applied Mechanics and Materials.
Applied Mechanics and Materials.
Advanced Materials Research.
Journal of Applied Engineering Science, Vol. 12 (2) (2014), pp 121-128 [14] D.
Applied Mechanics and Materials.
Applied Mechanics and Materials.
Advanced Materials Research.
Online since: December 2013
Authors: Hong Bing Yu, Heng Dong, Xiao Yan Wu
Wen: submitted to Journal of Materials Science & Technology (2010)
[6] Y.
Wen: submitted to Materials Science and Engineering B (2010) [7] S.M.
Kuang: submitted to Journal of Materials Science & Technology (2010) [10] Y.
Wen: submitted to Materials Chemistry and Physics (2012) [11] J.S.
Kamble: submitted to Materials Research Bulletin (2008) [13] C.H.
Wen: submitted to Materials Science and Engineering B (2010) [7] S.M.
Kuang: submitted to Journal of Materials Science & Technology (2010) [10] Y.
Wen: submitted to Materials Chemistry and Physics (2012) [11] J.S.
Kamble: submitted to Materials Research Bulletin (2008) [13] C.H.
Online since: May 2011
Authors: Xiao Yu Liu, Jin Hui Yang
From Fig.1, we take the equivalent materials, studs and steel plate to research.
Then, the bolts could also be used instead of studs which connect the steel and equivalent materials.
References [1] Chang Su Shim:KSCE Journal of Civil Engineering.
Beijing: Science Press.
[9] Nie Jianguo, Zhao Jie: Journal of Tsinghua University.No.12.
Then, the bolts could also be used instead of studs which connect the steel and equivalent materials.
References [1] Chang Su Shim:KSCE Journal of Civil Engineering.
Beijing: Science Press.
[9] Nie Jianguo, Zhao Jie: Journal of Tsinghua University.No.12.
Online since: February 2014
Authors: Hong Sen Luo
We focus on the following elements: the emissions of gases to the atmosphere; all types of material poured into water; land pollution; consumption of raw material; consumption natural resources and other environmental problems such as noise, chemicals management.
Chongqing University of Arts and Science has 36 emergency or preparedness.
Jiamusi education college journals.(2010)
Shanghai Environmental Sciences.(2004)
China Journal of Health Psychology.(2008)
Chongqing University of Arts and Science has 36 emergency or preparedness.
Jiamusi education college journals.(2010)
Shanghai Environmental Sciences.(2004)
China Journal of Health Psychology.(2008)
Online since: June 2022
Authors: Elena V. Lavrova, Dmitry Il'yashchenko, Maksim Kuznetsov, Elena Verkhoturova, Nikolay Pavlov
Journal of Materials Research and Technology. 1(1), 42-54. https://doi.org/10.1016/S2238-7854(12)70009-1
Materials Science and Engineering A-Structural Materials Properties Microstructure and Processing. 651, 18-26.
Journal of Materials Processing Technology. 214(4) 962-968.
Journal of Materials Processing Technology. 227, 153-160. https://doi.org/10.1016/j.jmatprotec.2015.08.021
Computational Materials Science. 50(12) 3315-3322. https://doi.org/10.1016/j.commatsci.2011.06.023
Materials Science and Engineering A-Structural Materials Properties Microstructure and Processing. 651, 18-26.
Journal of Materials Processing Technology. 214(4) 962-968.
Journal of Materials Processing Technology. 227, 153-160. https://doi.org/10.1016/j.jmatprotec.2015.08.021
Computational Materials Science. 50(12) 3315-3322. https://doi.org/10.1016/j.commatsci.2011.06.023
Online since: June 2015
Authors: Hardev Singh Virk, K. Praveena, Sadhana Katlakunta
Virk3,c
1Materials Research Centre, Indian Institute of Science, Bangalore -560012, India.
2Department of Physics, University College of Science, Osmania University, Saifabad, Hyderabad – 500 004, India
Professor Emeritus, Eternal University, Baru Sahib, Himachal Pradesh, India
apraveenaou@gmail.com (*corresponding author), bsadhanaphysics@gmail.com, chardevsingh.virk@gmail.com
Keywords: Ferromagnetic Materials, Soft Magnetic Materials, Mn-Zn Ferrites, Microstructure, Complex Permeability, M-H Loops.
Magnetic materials with low coercivity of the order of 12.5 Oe are termed as soft and those with coercivity above 12.5 Oe are called hard magnetic materials.
This is more beneficial for the formation of uniform colloidal materials.
Varma, Ferroelectric and optical properties of Ba5Li2Ti2Nb8O30 ceramics potential for memory applications Journal of Materials Science: Materials in Electronics 25, (2014) 3103–3108
Willis, Synthesis and Magnetic Properties of Nanostructured Maghemite, Journal of Materials Research 12 (1997)2175-2182
Magnetic materials with low coercivity of the order of 12.5 Oe are termed as soft and those with coercivity above 12.5 Oe are called hard magnetic materials.
This is more beneficial for the formation of uniform colloidal materials.
Varma, Ferroelectric and optical properties of Ba5Li2Ti2Nb8O30 ceramics potential for memory applications Journal of Materials Science: Materials in Electronics 25, (2014) 3103–3108
Willis, Synthesis and Magnetic Properties of Nanostructured Maghemite, Journal of Materials Research 12 (1997)2175-2182
Online since: July 2015
Authors: Zu Yuan Yu, Jian Zhong Li, Xue Li, Mei Li Wang
Introduction
Ceramic materials with high intensity, high hardness, corrosion resistance, high temperature resistance and other properties, make it have incomparable advantages over other materials in harsh environments [1, 2].
Many scholars have done a lot of work of processing micro structures of ceramic materials using special processing technology.
Zhang, Ceramic MEMS:New Materials, Innovative Processing and Future Applications, American Ceramic Society Bulletin. 80 (2001) 25-30
Scheller, Conventional machining of green aluminum/aluminum nitride ceramics, The Ohio Journal of Science. 94 (1994) 151–154
Ngoi, Dry machining: Machining of the future, Journal of Materials Processing Technology. 101 (2000) 287-291.
Many scholars have done a lot of work of processing micro structures of ceramic materials using special processing technology.
Zhang, Ceramic MEMS:New Materials, Innovative Processing and Future Applications, American Ceramic Society Bulletin. 80 (2001) 25-30
Scheller, Conventional machining of green aluminum/aluminum nitride ceramics, The Ohio Journal of Science. 94 (1994) 151–154
Ngoi, Dry machining: Machining of the future, Journal of Materials Processing Technology. 101 (2000) 287-291.