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The Performance Analysis of Semi-Flexible Pavement by the Volume Parameter of Matrix Asphalt Mixture
Online since: December 2010
Authors: Zheng Sun, Fan Shen, Shao Long Huang, Qing Jun Ding
Filled cement grout, three may form stress- concentration spot, which is easy to produce microcrack based on material destroy theory in Materials Physical Properties[10].
Whereas semi-flexible pavement material is composite materials, the author figures out its microstructure has great effect on its mechanics performances and pavement performance.
Materials Science and Engineering[M].
Physical Properties of Materials[M].
Publisher of East China University of Science and Technology, 2006.10.;75-110 [11] Xu Peihua, Song Zeyu, Yao Ailin: China Journal of Highway and Transport, 2002.4.;2-5
Whereas semi-flexible pavement material is composite materials, the author figures out its microstructure has great effect on its mechanics performances and pavement performance.
Materials Science and Engineering[M].
Physical Properties of Materials[M].
Publisher of East China University of Science and Technology, 2006.10.;75-110 [11] Xu Peihua, Song Zeyu, Yao Ailin: China Journal of Highway and Transport, 2002.4.;2-5
Online since: August 2013
Authors: Yang Zhang, Chong Kang
The underwater vehicle is mainly made of ferromagnetic material, the sensor measured except magnetic field, besides magnetic field that the vehicle of the inherent hard magnetic and soft magnetic materials produce and vehicle magnetic fields produced in mechanical and electrical equipment.
Journal of Applied Clinical Medical Physics, 2005, 6(3): 143-149
Journal of Chinese Inertial Technology, 2007, 15(1): 47-50
Journal of Chinese Inertial Technology, 2007, 15(3): 322-326
Journal of Applied Clinical Medical Physics, 2005, 6(3): 143-149
Journal of Applied Clinical Medical Physics, 2005, 6(3): 143-149
Journal of Chinese Inertial Technology, 2007, 15(1): 47-50
Journal of Chinese Inertial Technology, 2007, 15(3): 322-326
Journal of Applied Clinical Medical Physics, 2005, 6(3): 143-149
Online since: July 2011
Authors: Ying Na Zhao, Jia Chen Liu, Wen Li Zhang, Hai Xu
Microwave Joining 95-Al2O3 Ceramics Used Al-Si Alloy as Interlayer
Yingna Zhao 1,2,a, Jiachen Liu1,b, Hai Xu1 and Wenli Zhang2,c
1School of Materials Science and Engineering of Tianjin University, Tianjin, China, 300072
2School of Materials Science and Engineering of Hebei United University, Tangshan, Hebei, China, 063000
ayingna_1120@sohu.com, bjchl@tju.edu.cn, ctszhwl@126.com
Keywords: Microwave joining, AL-Si alloy, Interlayer
Abstract.
Introduction Ceramic materials and ceramic matrix composites (CMC) play important roles in science and technology.
A schematic of ceramics joining used interlayer materials is shown in Fig. 1.
The phenomenon of materials sintered at short time by microwave can be explained that the materials could absorb microwave to heat rapidly, polarize and dielectric loss at electromagnetic field.
Siores, Journal of Materials Processing Technology.
Introduction Ceramic materials and ceramic matrix composites (CMC) play important roles in science and technology.
A schematic of ceramics joining used interlayer materials is shown in Fig. 1.
The phenomenon of materials sintered at short time by microwave can be explained that the materials could absorb microwave to heat rapidly, polarize and dielectric loss at electromagnetic field.
Siores, Journal of Materials Processing Technology.
Online since: April 2013
Authors: Wei Jin Guo, Zhong Da Guo
Experimental results
Influence of PH value on material removal.
Fig.8 The surface roughness of the sapphire substrate after polishing Conclusions The ring-belt magnetorheological polishing apply to polish high hardness materials such as sapphire, broadened the processing method of the sapphire crystal.
Journal of Semiconductors, In Chinese.1996, (10):57-62 [2] G rzegory I.
Materials Science and Engineering, 2001, 30-34 [3] Liang Chunguang, Zhang Yi.
Journal of Semiconductors, In Chinese.2000, (2): 89- 99 [4] CholK S, John S T.
Fig.8 The surface roughness of the sapphire substrate after polishing Conclusions The ring-belt magnetorheological polishing apply to polish high hardness materials such as sapphire, broadened the processing method of the sapphire crystal.
Journal of Semiconductors, In Chinese.1996, (10):57-62 [2] G rzegory I.
Materials Science and Engineering, 2001, 30-34 [3] Liang Chunguang, Zhang Yi.
Journal of Semiconductors, In Chinese.2000, (2): 89- 99 [4] CholK S, John S T.
Online since: June 2011
Authors: Yong Gang Li, Yang Dong Hu, Lian Ying Wu, Hong Li
(b) The properties of materials are isotropy during analysis.
Swain: Structure and Properties of Ceramics-volume 11 of Materials Science and Technology.
Science Press, Beijing, 1998. pp.156-163; 206-21) [5] Dai Changhong, Yang Jingyi and Lin Yusheng: submitted to Journal of Qingdao Institute of Chemical Technology (1999) [6] Wang Xiaogang, Liu Yongsheng and Li Xiaochi, et al: submitted to Xi'an University of Science & Technology Journal (2001) [7] Liu Yongsheng, Wang Xiaogang and Li Qiang, et al: submitted to Ceramics Engineering (2001) [8] Wang Xiaogang, Guo Jihua and Li Chengfeng: submitted to Journal of Inorganic Materials (2005) [9] Li Xiaochi, Wang Xiaogang and Guo Xiaobin: submitted to Journal of Inorganic Materials (2003) [10] Wang Xiaogang, Li Xiaochi and Guo Xiaobin: submitted to Journal of the Chinese Ceramic Society (2002) [11] Pan Qunxiong, Wang Luming and Cai Anlan: The Foundation of Inorganic Materials Science (Chemical Industry Press, Beijing, 2007)
Degtyarev: submitted to Chemistry and Technology of Fuels and Oils (1986) [15] Lin Tairui: The Introduction of Heat and Mass Transfer in Porous Materials (Science Press.
Heat Mass Transfer (1986) [20] Wang Jiaofang, Yue Xianjun and Song Shuzhen, et al: submitted to Journal of Shandong Building Materials College (2000) [21] Liang Guoping: Finite Element language (Science Press, Beijing, 2008)
Swain: Structure and Properties of Ceramics-volume 11 of Materials Science and Technology.
Science Press, Beijing, 1998. pp.156-163; 206-21) [5] Dai Changhong, Yang Jingyi and Lin Yusheng: submitted to Journal of Qingdao Institute of Chemical Technology (1999) [6] Wang Xiaogang, Liu Yongsheng and Li Xiaochi, et al: submitted to Xi'an University of Science & Technology Journal (2001) [7] Liu Yongsheng, Wang Xiaogang and Li Qiang, et al: submitted to Ceramics Engineering (2001) [8] Wang Xiaogang, Guo Jihua and Li Chengfeng: submitted to Journal of Inorganic Materials (2005) [9] Li Xiaochi, Wang Xiaogang and Guo Xiaobin: submitted to Journal of Inorganic Materials (2003) [10] Wang Xiaogang, Li Xiaochi and Guo Xiaobin: submitted to Journal of the Chinese Ceramic Society (2002) [11] Pan Qunxiong, Wang Luming and Cai Anlan: The Foundation of Inorganic Materials Science (Chemical Industry Press, Beijing, 2007)
Degtyarev: submitted to Chemistry and Technology of Fuels and Oils (1986) [15] Lin Tairui: The Introduction of Heat and Mass Transfer in Porous Materials (Science Press.
Heat Mass Transfer (1986) [20] Wang Jiaofang, Yue Xianjun and Song Shuzhen, et al: submitted to Journal of Shandong Building Materials College (2000) [21] Liang Guoping: Finite Element language (Science Press, Beijing, 2008)
Online since: September 2016
Authors: M.H. Aliabadi, L. Li
Introduction
Multiscale material modelling is increasingly being developed to allow better understanding of material behavior for composite, ceramics and metallic [1-18].
References [1] GK Sfantos, MH Aliabadi Computer Methods in Applied Mechanics and Engng 196 (7), 1310-1329, 2007 [2] GK Sfantos, MH Aliabadi Int. journal for numerical methods in engineering 69 (8), 1590-1626, 2007 [3] I Benedetti, MH Aliabadi Computer Methods in Applied Mechanics and Engineering 265, 36-62, 2013 [4] I Benedetti, MH Aliabadi Computational Materials Science 67, 249-26, 2013 [5] I Benedetti, MH Aliabadi Computer Methods in Applied Mechanics and Engineering 289, 429-45, 2015 [6] LY Li, et al Composites Science and Technology 71 (15), 1777-1788, 2014 [7] L Li, F Aliabadi, PH Wen Journal of Multiscale Modelling, 1550009, 2016 [8] O Bacarreza, et al Woven Composites, Imperial College Press, London, 1-74, 2015 [9] O Bacarreza, et al Journal of Multiscale Modelling 4 (02), 1250005, 2012 [10] N.V.
of solids and structures 43 (14), 4029-4046, 2006 [21] MH Aliabadi, et al The Journal of Strain Analysis for Engineering Design 22 (4), 203-207, 1987 [22] T Dirgantara, MH Aliabadi International Journal of fracture 105 (1), 27-47, 2000 [23] T Dirgantara, MH Aliabadi Int.
Journal for numerical methods in engineering 45 (9), 1257-1275, 1999 [24] PH Wen, MH Aliabadi.
International Journal of Solids and Structures 48 (7), 1171-1179, 2011 [25] L Rodríguez-Tembleque, et al International Journal of Solids and Structures 47 (18), 2600-2612, 2010 [26] I Benedetti, et al International journal for numerical methods in engineering 80 (10), 1356-1378, 2009 [27] P Fedelinski, et al Computers & structures 59 (6), 1021-1031, 1996 [28] V.Sladek, et al Computer Modeling in Engineering and Sciences 13 (2), 103 [29] PH Wen, MH Aliabadi, Communications in Numerical Methods in Engineering 24 (8), 635-651, 2008 [30] PH Wen, et al CMES: Computer Modeling in Engineering & Sciences 30 (3), 133-147, 2008 [31] PH Wen, MH Aliabadi, The Journal of Strain Analysis for Engineering Design 44 (4), 273-286, 2009 [32] PH Wen, MH Aliabadi, Journal of Multiscale Modelling 1 (02), 303-31, 2009 [33] PH Wen, et a;l Computer Modeling in Engineering & Sciences (CMES) 61 (2), 133-154, 2010 [34] PH Wen, et al ,Journal of Composite Materials, 0021998311430868, 2012 [35] PH Wen
References [1] GK Sfantos, MH Aliabadi Computer Methods in Applied Mechanics and Engng 196 (7), 1310-1329, 2007 [2] GK Sfantos, MH Aliabadi Int. journal for numerical methods in engineering 69 (8), 1590-1626, 2007 [3] I Benedetti, MH Aliabadi Computer Methods in Applied Mechanics and Engineering 265, 36-62, 2013 [4] I Benedetti, MH Aliabadi Computational Materials Science 67, 249-26, 2013 [5] I Benedetti, MH Aliabadi Computer Methods in Applied Mechanics and Engineering 289, 429-45, 2015 [6] LY Li, et al Composites Science and Technology 71 (15), 1777-1788, 2014 [7] L Li, F Aliabadi, PH Wen Journal of Multiscale Modelling, 1550009, 2016 [8] O Bacarreza, et al Woven Composites, Imperial College Press, London, 1-74, 2015 [9] O Bacarreza, et al Journal of Multiscale Modelling 4 (02), 1250005, 2012 [10] N.V.
of solids and structures 43 (14), 4029-4046, 2006 [21] MH Aliabadi, et al The Journal of Strain Analysis for Engineering Design 22 (4), 203-207, 1987 [22] T Dirgantara, MH Aliabadi International Journal of fracture 105 (1), 27-47, 2000 [23] T Dirgantara, MH Aliabadi Int.
Journal for numerical methods in engineering 45 (9), 1257-1275, 1999 [24] PH Wen, MH Aliabadi.
International Journal of Solids and Structures 48 (7), 1171-1179, 2011 [25] L Rodríguez-Tembleque, et al International Journal of Solids and Structures 47 (18), 2600-2612, 2010 [26] I Benedetti, et al International journal for numerical methods in engineering 80 (10), 1356-1378, 2009 [27] P Fedelinski, et al Computers & structures 59 (6), 1021-1031, 1996 [28] V.Sladek, et al Computer Modeling in Engineering and Sciences 13 (2), 103 [29] PH Wen, MH Aliabadi, Communications in Numerical Methods in Engineering 24 (8), 635-651, 2008 [30] PH Wen, et al CMES: Computer Modeling in Engineering & Sciences 30 (3), 133-147, 2008 [31] PH Wen, MH Aliabadi, The Journal of Strain Analysis for Engineering Design 44 (4), 273-286, 2009 [32] PH Wen, MH Aliabadi, Journal of Multiscale Modelling 1 (02), 303-31, 2009 [33] PH Wen, et a;l Computer Modeling in Engineering & Sciences (CMES) 61 (2), 133-154, 2010 [34] PH Wen, et al ,Journal of Composite Materials, 0021998311430868, 2012 [35] PH Wen
Online since: September 2013
Authors: Ming Yin, Kui Xu, Yan Yi Xu
Tap file for automatic testing and electronic materials with fault diagnosis equipment.
Fault-tolerant design of digital integrated circuits, Beijing; Science Press, (2011), Chapter 4, pp.153-162
Software design and implementation of the electronic materials with fault diagnosis system for radar board boundary scan module (D), Chongqing; University of Electronic Science and Technology, (2011), Chapter 1, pp.1-15
[3] Tao Liu, Electronic materials with fault diagnosis of Digital Circuit-board Based on LASAR's Simulation.
JOURNAL OF PROJECTILES, ROCKETS, MISSILES AND GUIDANCE, No.30, 2010.
Fault-tolerant design of digital integrated circuits, Beijing; Science Press, (2011), Chapter 4, pp.153-162
Software design and implementation of the electronic materials with fault diagnosis system for radar board boundary scan module (D), Chongqing; University of Electronic Science and Technology, (2011), Chapter 1, pp.1-15
[3] Tao Liu, Electronic materials with fault diagnosis of Digital Circuit-board Based on LASAR's Simulation.
JOURNAL OF PROJECTILES, ROCKETS, MISSILES AND GUIDANCE, No.30, 2010.
Online since: July 2022
Authors: Imad Manssouri, Khalid Cherkaoui, Hassane Sahbi, Silvia Erba, Asmae Khaldoun, Othmane Noureddine, Houssame Limami
Recent papers studied the rheology of materials related to construction.
However, fibrous materials were found to affect positively the strength [26, 27].
Materials and Method Materials.
Nikbakht, “Incorporation of waste materials in the manufacture of masonry bricks: An update review,” Journal of Building Engineering, vol. 21, pp. 37–54, Jan. 2019, doi: 10.1016/j.jobe.2018.09.023
Okoro, “The potential of calcium carbide waste and termite mound soil as materials in the production of unfired clay bricks,” Journal of Cleaner Production, vol. 279, p. 123693, Jan. 2021, doi: 10.1016/j.jclepro.2020.123693
However, fibrous materials were found to affect positively the strength [26, 27].
Materials and Method Materials.
Nikbakht, “Incorporation of waste materials in the manufacture of masonry bricks: An update review,” Journal of Building Engineering, vol. 21, pp. 37–54, Jan. 2019, doi: 10.1016/j.jobe.2018.09.023
Okoro, “The potential of calcium carbide waste and termite mound soil as materials in the production of unfired clay bricks,” Journal of Cleaner Production, vol. 279, p. 123693, Jan. 2021, doi: 10.1016/j.jclepro.2020.123693
Online since: August 2018
Authors: Zhi Wang, Zhi Hao Wang, Qian Liu, Jun Yan Wu
Yin, Research advance on brittleness of Ti-Al intermetallics, Materials Science and Engineering of Powder Metallurgy 12 (2007) 330-336
Xie, Glass formation and icosahedral medium-range order in liquid Ti-Al alloys, Computational Materials Science. 95 (2014) 502-508
Processing, spark plasma sintering, and mechanical behavior of alumina/titanium composites, Journal of Materials Science. 49 (2014) 3823-3830
Ferrante, Interface compounds formed during the diffusion, Interface compounds formed during the diffusion bonding of Al2O3 to Ti, Journal of Materials Science. 35 (2000) 4243-4249
Shen, et al, Study of the Ti/Al2O3 interface, Journal of Materials Science. 30 (1995) 339-346
Xie, Glass formation and icosahedral medium-range order in liquid Ti-Al alloys, Computational Materials Science. 95 (2014) 502-508
Processing, spark plasma sintering, and mechanical behavior of alumina/titanium composites, Journal of Materials Science. 49 (2014) 3823-3830
Ferrante, Interface compounds formed during the diffusion, Interface compounds formed during the diffusion bonding of Al2O3 to Ti, Journal of Materials Science. 35 (2000) 4243-4249
Shen, et al, Study of the Ti/Al2O3 interface, Journal of Materials Science. 30 (1995) 339-346
Online since: March 2012
Authors: Li Hao Yuan, Zhi Xin Xiong, Lei Song, Zhi Hui Dong
Material parameter of titanium alloy is shown in Table 1.
Using tensile curve (curve, shown as Fig.2) of material and correlative material parameters, curve can be attained and shown in Fig .3.
curves of perfect elastic material and actual material.
[2] Lu Bei, Liu Tao and Cui Weicheng: Ultimate strength of pressure spherical hull in deep-sea manned submersibles, Journal of Ship Mechanics, 8(1):51~58. (2004) [3] Wang Renhua, Yu Minghua, Wang Zili,etc: Ultimate Strength Analysis of Pressure Spherical Hull of Manned Deep-ocean Submersibles, Journal of Jiangsu University of Science and Technology (Natural Science Edition), 20(4):1~5. (2006) [4] Wang Zili, Wang Renhua, Yu Minghua, etc: The Influence of the Initial Imperfections on the Ultimate Strength of Manned Deep-sea Submersible Pressure Sphere Hull, Shipbuilding of China, 48(2):45~50. (2007) [5] Han Yun, Luo Peilin and Tong Fushan: The Connotation and Extension of Tangent Modulus Theory.
Journal of Harbin Engineering University,17(4):62~66.(1996) [8] Zhang Shujiang, Wan Lei, Shi Dexin: The analytical Expression of the Nonlinear Property of Material.
Using tensile curve (curve, shown as Fig.2) of material and correlative material parameters, curve can be attained and shown in Fig .3.
curves of perfect elastic material and actual material.
[2] Lu Bei, Liu Tao and Cui Weicheng: Ultimate strength of pressure spherical hull in deep-sea manned submersibles, Journal of Ship Mechanics, 8(1):51~58. (2004) [3] Wang Renhua, Yu Minghua, Wang Zili,etc: Ultimate Strength Analysis of Pressure Spherical Hull of Manned Deep-ocean Submersibles, Journal of Jiangsu University of Science and Technology (Natural Science Edition), 20(4):1~5. (2006) [4] Wang Zili, Wang Renhua, Yu Minghua, etc: The Influence of the Initial Imperfections on the Ultimate Strength of Manned Deep-sea Submersible Pressure Sphere Hull, Shipbuilding of China, 48(2):45~50. (2007) [5] Han Yun, Luo Peilin and Tong Fushan: The Connotation and Extension of Tangent Modulus Theory.
Journal of Harbin Engineering University,17(4):62~66.(1996) [8] Zhang Shujiang, Wan Lei, Shi Dexin: The analytical Expression of the Nonlinear Property of Material.