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Online since: April 2014
Authors: Ben Wei Zhu, An Lin, Fu Xin Gan
Experimental
Raw Materials:Vinyl ester resins came from HuaChang Polymer Corporation Ltd.
Toughener(BVT),provided by Beijing Jindao Qishi Materials Corporation Ltd.
Gawdzik,T.Matynia:Journal of Applied Polymer Science, Vol.81,(2001),p2062 [2]E.M,Peter:Epoxy Adhesive Formulations(The McGraw-Hill Companies, Inc.
,USA,2006) [3]S.H.Goodman:Handbook of Thermoset Plastics,2nd(Willam Andrew Publish,USA,1998) [4]CaoWeixiao,WangXinyi and FengXinde:Acta Polymerica Sinica.Vol.25(1981),No.6,p.437(in Chinese) [5]Nimisha Agarwal,Indra K.Varma,Veena Choudhary:Journal of Applied Polymer Science, Vol.99,(2005),p2412 [6]R.Yang,A.H.Pan and S.Q.Zhao:Polymer Materials Science and Technology,Vol.20,No.1, (2004), p108 (in Chinese) [7]P.
Drake:the Journal of Adhesion,Vol( 49), 1995, p245 [8]L.Li,X.D.Sun,and L.James Lee:Polymer Engineer and Science,Vol.39,No.4, (1999), p646
Toughener(BVT),provided by Beijing Jindao Qishi Materials Corporation Ltd.
Gawdzik,T.Matynia:Journal of Applied Polymer Science, Vol.81,(2001),p2062 [2]E.M,Peter:Epoxy Adhesive Formulations(The McGraw-Hill Companies, Inc.
,USA,2006) [3]S.H.Goodman:Handbook of Thermoset Plastics,2nd(Willam Andrew Publish,USA,1998) [4]CaoWeixiao,WangXinyi and FengXinde:Acta Polymerica Sinica.Vol.25(1981),No.6,p.437(in Chinese) [5]Nimisha Agarwal,Indra K.Varma,Veena Choudhary:Journal of Applied Polymer Science, Vol.99,(2005),p2412 [6]R.Yang,A.H.Pan and S.Q.Zhao:Polymer Materials Science and Technology,Vol.20,No.1, (2004), p108 (in Chinese) [7]P.
Drake:the Journal of Adhesion,Vol( 49), 1995, p245 [8]L.Li,X.D.Sun,and L.James Lee:Polymer Engineer and Science,Vol.39,No.4, (1999), p646
Online since: September 2012
Authors: Kah Chuan Shaw, Rong Ming Lin, Jeong Hoon Ko, Sha Wei Tan
Neo: Journal of Materials Processing Technology Vol. 209 (2009) , p. 4459
[5] E.
Altitntas: Journal of Manufacturing Science and Engineering Vol. 129 (2007) p. 32 [12] J.H.
Shaw: IMSEC - International Conference on Manufacturing Science and Engineering, (2009) p. 333-341
Kapoor: Journal of Manufacturing Science and Engineering, Vol. 128 (2006) p. 474 [17] H.Li, X.
Cho : Transactions of the ASME, Journal of Manufacturing Science and Engineering Vol. 127, (2005), p. 1 [20] J.H.
Altitntas: Journal of Manufacturing Science and Engineering Vol. 129 (2007) p. 32 [12] J.H.
Shaw: IMSEC - International Conference on Manufacturing Science and Engineering, (2009) p. 333-341
Kapoor: Journal of Manufacturing Science and Engineering, Vol. 128 (2006) p. 474 [17] H.Li, X.
Cho : Transactions of the ASME, Journal of Manufacturing Science and Engineering Vol. 127, (2005), p. 1 [20] J.H.
Online since: January 2017
Authors: Alexey G. Tkachev, Irina V. Romantsova, Alexandr E. Burakov, Alexandr V. Babkin, Elena A. Neskoromnaya
In recent years, much attention has been paid to studies on nanocrystalline dioxide materials with unique properties, including the material considered herein [1, 2].
About 20% of the obtained material is consumed for making composites from plastics and materials on their basis (furniture, car parts, machinery, etc.).
Materials and methods 1.
The MO adsorption capacity of the materials was determined every 30 min.
Nakaruk, Using of TiO2 -coated mesoporous particles for organic dye removal, International Journal of Environmental Science and Development, 7 (7) (2016) 507-510
About 20% of the obtained material is consumed for making composites from plastics and materials on their basis (furniture, car parts, machinery, etc.).
Materials and methods 1.
The MO adsorption capacity of the materials was determined every 30 min.
Nakaruk, Using of TiO2 -coated mesoporous particles for organic dye removal, International Journal of Environmental Science and Development, 7 (7) (2016) 507-510
Online since: December 2013
Authors: Waluyo Adi Siswanto, Agus Dwi Anggono
Two different materials of aluminum AA5042 and AKDQ steel were selected for comparison.
Section 2 describes the details of drawing and ironing models used in this work, materials and tooling specifications.
Blank materials selected in this work are Aluminum AA 5042 thickness t=0.208 mm and AKDQ Steel thickness t=0.229 mm.
Dick, Earing predictions for strongly textured aluminum sheets, International journal of mechanical sciences, Springer, 2010, Vol. 52, pp. 1563-1578
Jeong, FEM simulation of surface smoothing in ironing process, Journal of material processing technology, Elsevier, 2001, Vol. 113, pp. 705-709.
Section 2 describes the details of drawing and ironing models used in this work, materials and tooling specifications.
Blank materials selected in this work are Aluminum AA 5042 thickness t=0.208 mm and AKDQ Steel thickness t=0.229 mm.
Dick, Earing predictions for strongly textured aluminum sheets, International journal of mechanical sciences, Springer, 2010, Vol. 52, pp. 1563-1578
Jeong, FEM simulation of surface smoothing in ironing process, Journal of material processing technology, Elsevier, 2001, Vol. 113, pp. 705-709.
Online since: November 2018
Authors: Xian Bin Zhang, Ning Kang Deng, Wen Jie Wu, Xu Yan Wei, Guan Qi Wang
Computational Materials Science, 2010, 47(3): 685-692
Theoretical Study on Lattice Vibration Spectrum of Novel Functional Materials[M].
Journal of Suzhou University of Science & Technology, 2010, 26(5): 615-620
Ab initio simulation of the properties of ferroelectric materials[J].
Modelling & Simulation in Materials Science & Engineering, 2003, 11(4):R69
Theoretical Study on Lattice Vibration Spectrum of Novel Functional Materials[M].
Journal of Suzhou University of Science & Technology, 2010, 26(5): 615-620
Ab initio simulation of the properties of ferroelectric materials[J].
Modelling & Simulation in Materials Science & Engineering, 2003, 11(4):R69
Online since: June 2014
Authors: Hong Mei Chen, Hong Xia Guo, Yue Ma, Zhen Ping Qin, Guo Li Xie
Experimental
Materials
Polyacrylonitrile (PAN, MW=150,000 Da) was purchased from Sepro Membranes, Inc.
Journal of Hazardous Materials. 2010, 180(1–3): 309-315
Journal of Membrane Science. 2008, 323(1): 125-133
Journal of Membrane Science. 2008, 323(1): 125-133
Journal of Membrane Science. 2003, 211(1): 51-58.
Journal of Hazardous Materials. 2010, 180(1–3): 309-315
Journal of Membrane Science. 2008, 323(1): 125-133
Journal of Membrane Science. 2008, 323(1): 125-133
Journal of Membrane Science. 2003, 211(1): 51-58.
Online since: March 2014
Authors: Masao Sakane, Takamoto Itoh, Hideyuki Kanayama, Masahiro Sakabe, Shu Li Liu, Takahiro Morishita, Norio Takeda
Kuwabara, Journal of the Society of Materials Science, Japan, Vol.36, No.403 (1987), pp.376-382
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology, Vol.113, No.1 (1991), pp.23-30
Ameyama, Journal of the Society of Materials Science, Japan, Vol.41, No.468 (1992), pp.1361-1367
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology; Vol.117, No.7 (1995), pp.285-292
Ozaki, Journal of the Society of Materials Science, Japan, Vol. 60, No. 2, (2011), pp. 88-93
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology, Vol.113, No.1 (1991), pp.23-30
Ameyama, Journal of the Society of Materials Science, Japan, Vol.41, No.468 (1992), pp.1361-1367
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology; Vol.117, No.7 (1995), pp.285-292
Ozaki, Journal of the Society of Materials Science, Japan, Vol. 60, No. 2, (2011), pp. 88-93
Online since: December 2014
- hydrogen degradation of materials
From 2006: professor in the field of material science, chief of department of hydrogen resistance of materials at the Karpenko Physico-Mechanical Institute, National Academy of Sciences of Ukraine.
Educational activities: courses at the surface engineering, material science, chemical heat treatment, bases of fracture mechanics, cold working treatment, ageing of materials for nuclear, hydrogen and forcible energetic, medical material science and biocompatible electronics
2002-2007: Professor at the Technical University of Szczecin, Institute of Materials Engineering
Reviewer of various associations and international publications in on-line, open access journal in the fields of fracture and solid mechanics and in structural and material engineering, as the International Journal of Fracture, Engineering Fracture Mechanics, Materials Science, Welding Technology Review, Maintenance Problems, Mechanical Fatigue of Metals, Tribology International, Materials Chemistry and Physics, Advances in Mechanical Engineering.
From 2006: professor in the field of material science, chief of department of hydrogen resistance of materials at the Karpenko Physico-Mechanical Institute, National Academy of Sciences of Ukraine.
Educational activities: courses at the surface engineering, material science, chemical heat treatment, bases of fracture mechanics, cold working treatment, ageing of materials for nuclear, hydrogen and forcible energetic, medical material science and biocompatible electronics
2002-2007: Professor at the Technical University of Szczecin, Institute of Materials Engineering
Reviewer of various associations and international publications in on-line, open access journal in the fields of fracture and solid mechanics and in structural and material engineering, as the International Journal of Fracture, Engineering Fracture Mechanics, Materials Science, Welding Technology Review, Maintenance Problems, Mechanical Fatigue of Metals, Tribology International, Materials Chemistry and Physics, Advances in Mechanical Engineering.
Online since: December 2012
Authors: Wei Min Gan, Bo Xu, Zhi Fang Zhao
The results showed that the study of NC electrochemical mechanical drilling difficult-to-machine materials was very meaningful.
Introduction How to efficiently drill good-quality holes in difficult-to-machine materials is a kind of challenge in mechanical machining field.
However, how to improve the cylindricity precision of deep holes in difficult-to-machine materials electrolytic mechanical composite drilling machining is still an important topic worth studying.
Journal of Materials Processing Technology, 2001, 113: 301-305 [3]Zhu.D,Rajurkar.K.P,Modeling and verification of interelectrode gap in electrochemicalmachining with passivating electrolyte,Manufacturing Science and Engineering,The ASME International Mechanical Engineering Congress and Exhibition,Nashville,USA,1999,v 10:589-597 [4]MASUZAWA T, TAKAWASHI T.
Mechanical science and technology, 2006 (6) : 712-715 [7]Xu Jia-wen, Yun Nai-zhang, Wang Jian-ye etc.
Introduction How to efficiently drill good-quality holes in difficult-to-machine materials is a kind of challenge in mechanical machining field.
However, how to improve the cylindricity precision of deep holes in difficult-to-machine materials electrolytic mechanical composite drilling machining is still an important topic worth studying.
Journal of Materials Processing Technology, 2001, 113: 301-305 [3]Zhu.D,Rajurkar.K.P,Modeling and verification of interelectrode gap in electrochemicalmachining with passivating electrolyte,Manufacturing Science and Engineering,The ASME International Mechanical Engineering Congress and Exhibition,Nashville,USA,1999,v 10:589-597 [4]MASUZAWA T, TAKAWASHI T.
Mechanical science and technology, 2006 (6) : 712-715 [7]Xu Jia-wen, Yun Nai-zhang, Wang Jian-ye etc.
Online since: April 2016
Authors: Adam Lipski
Lipski A., Boroński D., Use of Thermography for the Analysis of Strength Properties of Mini-Specimens, Materials Science Forum, 726, 2012, 156-161
Key Engineering Materials, 598, 2014, 231-236
Key Engineering Materials, 598, 2014, 243-248
Mechanics of Materials, 28 (1), 1998, 155–163
Materials Science and Engineering A, 527 (6), 2010, 1555–1559
Key Engineering Materials, 598, 2014, 231-236
Key Engineering Materials, 598, 2014, 243-248
Mechanics of Materials, 28 (1), 1998, 155–163
Materials Science and Engineering A, 527 (6), 2010, 1555–1559