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Online since: November 2016
Authors: Lian Fa Yang, Qi Wen Zhao
Forming limit is one of the important indexes to evaluate the formability of materials.
Put in another way, materials are not completely uniform.
International Journal of Mechanical Science. 9 (1967) 609-620
Journal of Engineering Materials and Technology. 100 (1978) 164-169
Journal of Materials Processing Technology. 216 (2015) 472-483
Put in another way, materials are not completely uniform.
International Journal of Mechanical Science. 9 (1967) 609-620
Journal of Engineering Materials and Technology. 100 (1978) 164-169
Journal of Materials Processing Technology. 216 (2015) 472-483
Online since: March 2020
Authors: Qi Gao, Xiang Wu Meng, Dai Wei Luo, J.W.R. Whitehand
From the perspective of building materials and technology, this paper carries out literature research and fieldwork in order to comb and summarize the main construction of monastery buildings and common building materials.
The above thermal environment effect can be obtained only through materials and construction.
Journal of Qinghai normal university(philosophy and social sciences), 39(2017)83-86
Journal of Xi’an University of Architecture & Technology(Natural Science Edition). 50(2018) 78-84 [7] Meji Zhuo.
Journal of Tibet national institute (philosophy and social science). 31(2010)30-38
The above thermal environment effect can be obtained only through materials and construction.
Journal of Qinghai normal university(philosophy and social sciences), 39(2017)83-86
Journal of Xi’an University of Architecture & Technology(Natural Science Edition). 50(2018) 78-84 [7] Meji Zhuo.
Journal of Tibet national institute (philosophy and social science). 31(2010)30-38
Online since: May 2013
Authors: Shui Lin Zheng, Jun Mao, Yu Zhong Zhang, Yan Ping Bai, Yue Liu
Experimental
Materials.
Loaded Composite Phase Change Materials prepared.
Zhang: Energy Storage: Theory and Application (China science and technology university press, China1996, p.9~12) (In Chinese) [2] A.Y Chen, X.Z Cao, X.Y: Material Science, Vol. 17 (2003) No.5, p.42~44 (In Chinese) [3] Krupa I, Mikova G, Luyt A S: European Polymer Journal, (2007) No.43, p.4965~4705 [4] X.
(In Chinese) [12] L.X Wang, J.F Shu, L Ren: Polymer Material Science and Technology, Vol. 21 (2005), No.1, p.276~279.
Shu: Journal of Chinese Ceramics Society, Vol. 34 (2006) No.11, p.1382-1386 (In Chinese) [19] Y.Z Sun, G.X Xi, W.J Yang: New Chemical Materials, Vol. 38 (2010) No.4 p.46~48 (In Chinese)
Loaded Composite Phase Change Materials prepared.
Zhang: Energy Storage: Theory and Application (China science and technology university press, China1996, p.9~12) (In Chinese) [2] A.Y Chen, X.Z Cao, X.Y: Material Science, Vol. 17 (2003) No.5, p.42~44 (In Chinese) [3] Krupa I, Mikova G, Luyt A S: European Polymer Journal, (2007) No.43, p.4965~4705 [4] X.
(In Chinese) [12] L.X Wang, J.F Shu, L Ren: Polymer Material Science and Technology, Vol. 21 (2005), No.1, p.276~279.
Shu: Journal of Chinese Ceramics Society, Vol. 34 (2006) No.11, p.1382-1386 (In Chinese) [19] Y.Z Sun, G.X Xi, W.J Yang: New Chemical Materials, Vol. 38 (2010) No.4 p.46~48 (In Chinese)
Online since: January 2013
Authors: Song Lin Ding, John Mo, Milan Brandt, Shou Jin Sun, Andrew Mackie, Reza Hosseinnezhad, Richard Webb
Design of Exotic Materials Machining System
John P.T.
StJohn, The influence of process parameters during machining of Ti6Al4V alloy, Materials Science Forum. 561-565 (2007) 159-162
Tsai, Micro-hole machining of carbide by electric discharge machining, Journal of Materials Processing Technology. 87(1–3) (1999) 139–145
Pandey, Some investigations into the electric discharge machining of hardened tool steel using different electrode materials, Journal of Materials Processing Technology. 149(1–3) (2004) 272–277
Hu, Electrical Discharge Grinding of Polycrystalline Diamond, Materials Science Forum. 471-472 (2004) 457-461
StJohn, The influence of process parameters during machining of Ti6Al4V alloy, Materials Science Forum. 561-565 (2007) 159-162
Tsai, Micro-hole machining of carbide by electric discharge machining, Journal of Materials Processing Technology. 87(1–3) (1999) 139–145
Pandey, Some investigations into the electric discharge machining of hardened tool steel using different electrode materials, Journal of Materials Processing Technology. 149(1–3) (2004) 272–277
Hu, Electrical Discharge Grinding of Polycrystalline Diamond, Materials Science Forum. 471-472 (2004) 457-461
Online since: January 2011
Authors: Chun Ping Ouyang, Chang Jun Hu, Zhen Yu Liu, Yang Li
A semantic connection between materials science data and engineering data should be setup as well.
There exist some studies on materials science ontology in the last few years.
Data Science Journal, Vol. 5 (2006): p. 52-63
Data Science Journal, Vol. 7 (2010): p. 54-61
Data Science Journal, Vol. 8 (2009): p. 52-61.
There exist some studies on materials science ontology in the last few years.
Data Science Journal, Vol. 5 (2006): p. 52-63
Data Science Journal, Vol. 7 (2010): p. 54-61
Data Science Journal, Vol. 8 (2009): p. 52-61.
Online since: May 2014
Authors: Joseph W. Newkirk, F. Frank Liou
High Performance Materials by Laser Deposition
Joseph W.
Bishop Ave., Missouri University of Science and Technology, Rolla, MO, U.S.A: 65409- 0330 2292B Toomey Hall, 400 W. 13th St., Missouri University of Science & Technology, Rolla, MO 65409-0050 ajnewkirk@mst.edu, bliou@mst.edu Keywords: Advanced materials, Rapid solidification, Additive manufacturing, Laser deposition.
Hofmann, Journal of Materials, vol. 2013, Article ID 517904, 2013
Chinese Journal of lasers 2005,32(4):567-570
Bhaduri, Progress in Materials Science, Vol 57 Part 5, pp. 911-946, 2012
Bishop Ave., Missouri University of Science and Technology, Rolla, MO, U.S.A: 65409- 0330 2292B Toomey Hall, 400 W. 13th St., Missouri University of Science & Technology, Rolla, MO 65409-0050 ajnewkirk@mst.edu, bliou@mst.edu Keywords: Advanced materials, Rapid solidification, Additive manufacturing, Laser deposition.
Hofmann, Journal of Materials, vol. 2013, Article ID 517904, 2013
Chinese Journal of lasers 2005,32(4):567-570
Bhaduri, Progress in Materials Science, Vol 57 Part 5, pp. 911-946, 2012
Online since: February 2022
Authors: Aleksei A. Orlov, Svetlana V. Skvortsova, Alyona V. Neiman, Dmitriy O. Sopelnik
Narayan, Biomedical materials: Springer, 2009
Davis, Handbook of materials for medical devices: ASM international, 2003
Gogia, "Ti based biomaterials, the ultimate choice for orthopaedic implants–A review," Progress in Materials Science, vol. 54, pp. 397-425, 2009
Rack, "Titanium alloys in total joint replacement—a materials science perspective," Biomaterials, vol. 19, pp. 1621-1639, 1998
Key Engineering Materials Vol. 887, pp 358-363, 2021
Davis, Handbook of materials for medical devices: ASM international, 2003
Gogia, "Ti based biomaterials, the ultimate choice for orthopaedic implants–A review," Progress in Materials Science, vol. 54, pp. 397-425, 2009
Rack, "Titanium alloys in total joint replacement—a materials science perspective," Biomaterials, vol. 19, pp. 1621-1639, 1998
Key Engineering Materials Vol. 887, pp 358-363, 2021
Online since: July 2014
Authors: Ke Gao Liu, Dong Xiang, Zhi Gang Wang
Promoting Scientific Research in Materials Professional with Material Properties and Production for Strengthening the Graduation Design
Dong Xianga, ZhiGang Wang b and KeGao Liu c
School of Material Science and Engineering, Shandong Jianzhu University, Jinan 250101, China
a xiang@sdjzu.edu.cn, b wangzhigang@sdjzu.edu.cn, c liukg163@163.com
Keywords: Graduation design; Materials professional; Theory and practice; Scientific research with production; Material property
Abstract.
In accordance with the requirements of materials science and engineering course, the undergraduate graduation design of the materials professional is implemented.
Combining with the discipline expertise of materials professional graduates of School of Material Science and Engineering in Shandong Jianzhu University, the methods of research with production are obtained to guide undergraduate graduation design.
Because these materials are mostly industry-specific materials which usually contact less and universal apply, it can cause the interests of students and inspire them thirst for knowledge strongly.
Li: Journal of Anhui Agricultural University (social science edition) Vol 16(2007), p.113 [2] Z.
In accordance with the requirements of materials science and engineering course, the undergraduate graduation design of the materials professional is implemented.
Combining with the discipline expertise of materials professional graduates of School of Material Science and Engineering in Shandong Jianzhu University, the methods of research with production are obtained to guide undergraduate graduation design.
Because these materials are mostly industry-specific materials which usually contact less and universal apply, it can cause the interests of students and inspire them thirst for knowledge strongly.
Li: Journal of Anhui Agricultural University (social science edition) Vol 16(2007), p.113 [2] Z.
Online since: August 2023
Authors: Vladimir Lebedev, Tetyana Tykhomyrova, Anna Cherkashina, Katerina Lebedeva
Alvarez, J.G Hardy., M.F Desimone, Stimuli-responsive materials for tissue engineering and drug delivery, International Journal of Molecular Sciences. 21 (2020) 4724
Detsch, Biofabrication of vessel-like structures with alginate di-aldehyde-gelatin (ADA-GEL) bioink, Journal of Materials Science: Materials in Medicine. 30 (2019) 8
Boccaccini, A review of hydrogel-based composites for biomedical applications: Enhancement of hydrogel properties by addition of rigid inorganic fillers, Journal of Materials Science. 51 (2016) 271–310
Saimbetova, Design and Research of Eco-Friendly Polymer Composites, Materials Science Forum. 1006 (2020) 259–266
Lytvynenko, Sorption Resistance Studying of Environmentally Friendly Polymeric Materials in Different Liquid Mediums, Materials Science Forum. 1038 (2021) 168–174
Detsch, Biofabrication of vessel-like structures with alginate di-aldehyde-gelatin (ADA-GEL) bioink, Journal of Materials Science: Materials in Medicine. 30 (2019) 8
Boccaccini, A review of hydrogel-based composites for biomedical applications: Enhancement of hydrogel properties by addition of rigid inorganic fillers, Journal of Materials Science. 51 (2016) 271–310
Saimbetova, Design and Research of Eco-Friendly Polymer Composites, Materials Science Forum. 1006 (2020) 259–266
Lytvynenko, Sorption Resistance Studying of Environmentally Friendly Polymeric Materials in Different Liquid Mediums, Materials Science Forum. 1038 (2021) 168–174
Online since: June 2014
Authors: Dan Yong Wang, Jun Cong Liu, Yi Wei Chen, Shu Hu Li, Hua Zhen Wei
The core materials are epoxy.
(3) The self-healing materials, including core materials and shell materials, sometimes, can be manufactured by several methods.
Journal of Microencapsulation, 2003(20), pp.719–730
Journal of Applied Polymer Science, 2009(113), pp.1501–1506
Materials Science, 2012, 59(78),pp.172-231
(3) The self-healing materials, including core materials and shell materials, sometimes, can be manufactured by several methods.
Journal of Microencapsulation, 2003(20), pp.719–730
Journal of Applied Polymer Science, 2009(113), pp.1501–1506
Materials Science, 2012, 59(78),pp.172-231