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Online since: May 2012
Authors: Yue Chun Zhao, Lu Liu, Ming Hua Li, Jun Qin Wu, Biao Fan
Woolson, Science (New York, N.Y.), 173(3998), 748-749, 1971
[14] De Percin, Journal of Hazardous Materials, 40(2), pp. 203-209, 1995
Burhan, Remediation Journal, vol. 16, pp. 23-42, 2006
Shen, Environmental Science, vol. 1, pp. 104-108, 2008.
Zheng, Journal of Agro-environmental Science, vol. 1, pp. 167-169, 2004.
[14] De Percin, Journal of Hazardous Materials, 40(2), pp. 203-209, 1995
Burhan, Remediation Journal, vol. 16, pp. 23-42, 2006
Shen, Environmental Science, vol. 1, pp. 104-108, 2008.
Zheng, Journal of Agro-environmental Science, vol. 1, pp. 167-169, 2004.
Online since: November 2012
Authors: Tian Shu Song, Zhi Yong Zhang, Yang He
Journal of Harbin Engineering University, 2006, 27(4), pp. 492~500 (in Chinese)
[3] Liangbi Li, Zili Wang.
Journal of East China Shipbuilding Institute (Natural Science Edition), 2004, 18(3), pp. 15~20 (in Chinese) [4] L.
International Journal of Fatigue, 2000, 22(1), pp. 41~52 [5] Genki Yagawa, Shinobu Yoshimura.
International Journal of Pressure Vessels and Piping, 1997, 73(1), pp. 97~107 [6] G.
Wuhan: Huazhong University of Science and Technology Press, 2004.
Journal of East China Shipbuilding Institute (Natural Science Edition), 2004, 18(3), pp. 15~20 (in Chinese) [4] L.
International Journal of Fatigue, 2000, 22(1), pp. 41~52 [5] Genki Yagawa, Shinobu Yoshimura.
International Journal of Pressure Vessels and Piping, 1997, 73(1), pp. 97~107 [6] G.
Wuhan: Huazhong University of Science and Technology Press, 2004.
Online since: March 2012
Authors: Ke Zhu, K. Ramanathan, M. Balasubramanian
Some materials such as 8090 Al-Li alloy undergo extensive tensile plastic deformation prior to failure under a specific temperature and particular strain-rate.
Fortunately, the superplastic behaviors of materials are characterized by the dependency of the flow stress upon the strain rate, which allows the material to be described as rigid viscoplastic [1].
Theory and Experiments”, Int.J.mech.Science, Vol10, 1968, pp 403-427
Y.M.Hwang,H.S.Lay, “Study on superplastic blow-forming in a rectangular closed-die”, Journal of Materials Processing Technology,140, 2003, pp426-431
“Theoretical prediction and FEM analysis of superplastic forming of AA7475 aluminum alloy in a hemispherical die”,Journals of Materials Process Technology, 173,(2006),247-251
Fortunately, the superplastic behaviors of materials are characterized by the dependency of the flow stress upon the strain rate, which allows the material to be described as rigid viscoplastic [1].
Theory and Experiments”, Int.J.mech.Science, Vol10, 1968, pp 403-427
Y.M.Hwang,H.S.Lay, “Study on superplastic blow-forming in a rectangular closed-die”, Journal of Materials Processing Technology,140, 2003, pp426-431
“Theoretical prediction and FEM analysis of superplastic forming of AA7475 aluminum alloy in a hemispherical die”,Journals of Materials Process Technology, 173,(2006),247-251
Online since: August 2015
Authors: M. Kalayarasan, V. Prabhu Raja, V. Nithin, S. Vivinkumar, M. Vishwaanth
Synthetic materials are becoming more popular.
Fig.1 Human hip anatomy Materials and processing Substrate and Powder preparation.
Fig.2 Comparison of hardness for different combination of materials.
Fouad, RabehElleithy, High density polyethylene/graphite nano-composites for total hip joint replacements: Processing and in vitro characterization, Journal of the mechanical behavior of biomedical materials. 4 (2011) 1376-1383
Kurtz, SeviKocagoz, Christina Arnholt, Roland Huet, Advances in zirconia toughned alumina biomaterials for total joint replacement, Journal of the mechanical behavior of biomedical materials. 3 (2014) 107-116
Fig.1 Human hip anatomy Materials and processing Substrate and Powder preparation.
Fig.2 Comparison of hardness for different combination of materials.
Fouad, RabehElleithy, High density polyethylene/graphite nano-composites for total hip joint replacements: Processing and in vitro characterization, Journal of the mechanical behavior of biomedical materials. 4 (2011) 1376-1383
Kurtz, SeviKocagoz, Christina Arnholt, Roland Huet, Advances in zirconia toughned alumina biomaterials for total joint replacement, Journal of the mechanical behavior of biomedical materials. 3 (2014) 107-116
Online since: July 2012
Authors: Zu Sheng Hang, Hui Ya Wang, San Jiu Ying
The strongest peak at 27.41° for g-C3N4 is a characteristic interlayer stacking peak of aromatic systems, indexed as the (002) peak for graphitic materials.
N1s peak at 399.2 eV is indicative of C-NB2 groups as demonstrated in graphite-like BCN materials[9].
Demazeau, Materials Science and Engineering R Reports, 58(6), 195 (2008)
Antonietti, Nature Materials, 8(1), 76 (2008)
[21]Hu R Z, Shi Q Z, Thermal Analysis Kinetics, Science Press, Beijing (2001)
N1s peak at 399.2 eV is indicative of C-NB2 groups as demonstrated in graphite-like BCN materials[9].
Demazeau, Materials Science and Engineering R Reports, 58(6), 195 (2008)
Antonietti, Nature Materials, 8(1), 76 (2008)
[21]Hu R Z, Shi Q Z, Thermal Analysis Kinetics, Science Press, Beijing (2001)
Online since: March 2020
Authors: Wei Qian, Xin Li, Rui Xu, Li Hong Chang, Max Schubert
The materials of other parts of the column are dense and do not affect normal use.
Acknowledgement The authors are grateful for the support of Natural Science Foundation of Beijing Municipality (8184068).
Wang, Architecture beauty in Heaven Temple and universe outlook of Chinese philosophy, Journal of University of Science and Technology Beijing (Social Sciences Edition). 22 (2007) 157-161
Machado, Testing and modeling of a traditional timber mortise and tenon joint, Materials and Structures, 47 (2014) 213-225
Jiang, et al., Exploration of the decay distribution of wooden structure columns with stress wave and impedance meter technology, Journal of Building Materials. 11 (2008) 457-463
Acknowledgement The authors are grateful for the support of Natural Science Foundation of Beijing Municipality (8184068).
Wang, Architecture beauty in Heaven Temple and universe outlook of Chinese philosophy, Journal of University of Science and Technology Beijing (Social Sciences Edition). 22 (2007) 157-161
Machado, Testing and modeling of a traditional timber mortise and tenon joint, Materials and Structures, 47 (2014) 213-225
Jiang, et al., Exploration of the decay distribution of wooden structure columns with stress wave and impedance meter technology, Journal of Building Materials. 11 (2008) 457-463
Online since: September 2011
Authors: Su Zhen Liang
It concludes that the breast root girth is a complicated three-dimensional curve; it’s inappropriate for the neighboring size’s brassieres to adopt the steel ring with the same specification; the material design of the steel ring should be moderate.
Journal of Textile Research, 2007, 28(8):75-78.
Journal of Textile Research, 2008, 29(12):73-77.
Journal of Xi’an University of Engineering Science and Technology, 2006, 20(5):555-559.
Shanghai: Shanghai science and technology publishing house, 2004, 6:31-55.
Journal of Textile Research, 2007, 28(8):75-78.
Journal of Textile Research, 2008, 29(12):73-77.
Journal of Xi’an University of Engineering Science and Technology, 2006, 20(5):555-559.
Shanghai: Shanghai science and technology publishing house, 2004, 6:31-55.
Online since: July 2012
Authors: Ming Feng Zhong, Da Gen Su, Feng Ye
Study on Heat Insulation Properties of Zinc Oxide Coated
Hollow Glass Beads
Mingfeng Zhonga, Feng Yeb, Dagen Suc
School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China
mfzhong@scut.edu.cn,yefeng188@163.com, dgsu@scut.edu.cn
Keywords: Zinc Oxide Coated Hollow Glass Beads, Near-infrared Reflectivity, Heat Insulation Properties.
Experimental materials and methods 1.1 Experimental materials ZnSO4٠7H2O, Guangzhou first chemical reagent factory, analytically pure.
(1) Where is solar energy reflectance of materials, is wavelength, is materials’ reflectivity when wavelength is, is solar spectrum radiant flux density.
Preparation of near infrared reflection materials with titanium dioxide coated hollow glass beads [J].
Journal of central south university (Natural science edition),2004,35(5):806 -809 (in chinese) [4]Liubenhongguang,Zuojianyizhi,etc.
Experimental materials and methods 1.1 Experimental materials ZnSO4٠7H2O, Guangzhou first chemical reagent factory, analytically pure.
(1) Where is solar energy reflectance of materials, is wavelength, is materials’ reflectivity when wavelength is, is solar spectrum radiant flux density.
Preparation of near infrared reflection materials with titanium dioxide coated hollow glass beads [J].
Journal of central south university (Natural science edition),2004,35(5):806 -809 (in chinese) [4]Liubenhongguang,Zuojianyizhi,etc.
Online since: July 2015
Authors: Massimiliano Merola, Vasiliki Maria Archodoulaki, Dimitrios Kastanis, Pierpaolo Carlone, Thomas Koch
Influence of the impregnation velocity on impregnation quality and mechanical properties of Vacuum Assisted Resin Transfer Moulding (VARTM) Materials
Vasiliki-Maria Archodoulaki1,a*, Massimiliano Merola1,2,b, Dimitrios Kastanis3,c, Thomas Koch1,d, Pierpaolo Carlone2,e
1 Vienna University of Technology, Institute of Materials Science and Technology, Getreidemarkt 9, 1060 Vienna, Austria
2 University of Salerno, Department of Industrial Engineering, Via Giovanni Paolo II, 84084 Fisciano, Italy
3 University of Leoben, Department Polymer Engineering and Science, Otto Glöckel-Straße 2/III, 8700 Leoben, Austria
a vasiliki-maria.archodoulaki@tuwien.ac.at, b mmerola@unisa.it,
c Dimitrios.Kastanis@unileoben.ac.at, d thomas.koch@tuwien.ac.at, e pcarlone@unisa.it
Keywords: Vacuum Assisted Resin Transfer Molding, Void volume fraction, thermal analysis, mechanical testing.
Materials and Methods Objects of the investigation are carbon fiber and glass fiber reinforced laminates.
In order to reduce probability of higher materials inhomogeneity, all samples were fabricated with less thickness as required for mechanical testing.
Tensile, bending and interlaminar shear strength properties of the composite materials are slightly influenced by the void volume ratio.
Materials Park, Ohio: ASM International, 2010
Materials and Methods Objects of the investigation are carbon fiber and glass fiber reinforced laminates.
In order to reduce probability of higher materials inhomogeneity, all samples were fabricated with less thickness as required for mechanical testing.
Tensile, bending and interlaminar shear strength properties of the composite materials are slightly influenced by the void volume ratio.
Materials Park, Ohio: ASM International, 2010
Online since: October 2014
Authors: Zeng Shan Li, Kai Lun Wang, Jun Guo, Zhi Dong Guan
The dent depth of thinner face-sheet (AFT) is larger than that of BFT at the same impact energy level: AFT panel with thinner face-sheets materials is likely to deflect due to lower stiffness.
Journal of Materials Processing Technology, 201: 425–430 (2008) [5] Cheng xiaoquan, Kou Changhe, Li Zhengneng: Compression of Composite Honeycomb Core Sandwich Panels after Low Velocity Impact.
In: Fatigue of fibrous composite materials, ASTM STP723; 1981. p. 174–96
[10] Kim CG, Jun EJ: Journal of Composite Materials;26(15):2247 (1992) [11] Dear, J.P., Lee, H., Brown, S.A.: Impact damage process in composite sheet and sandwich honeycomb materials.
Journal of Sandwich Structures and Materials, 11: 329 (2009) [13] Zhou, G. and Rivera, L.: Investigation for the Reduction of In-plane Compressive Strength in Preconditioned Thick Composite Panels, Journal of Composite Materials, 41: 1961–1994 (2007)
Journal of Materials Processing Technology, 201: 425–430 (2008) [5] Cheng xiaoquan, Kou Changhe, Li Zhengneng: Compression of Composite Honeycomb Core Sandwich Panels after Low Velocity Impact.
In: Fatigue of fibrous composite materials, ASTM STP723; 1981. p. 174–96
[10] Kim CG, Jun EJ: Journal of Composite Materials;26(15):2247 (1992) [11] Dear, J.P., Lee, H., Brown, S.A.: Impact damage process in composite sheet and sandwich honeycomb materials.
Journal of Sandwich Structures and Materials, 11: 329 (2009) [13] Zhou, G. and Rivera, L.: Investigation for the Reduction of In-plane Compressive Strength in Preconditioned Thick Composite Panels, Journal of Composite Materials, 41: 1961–1994 (2007)