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Online since: October 2023
Authors: Olexandr Kondratenko, Ksenia Umerenkova, Vitalii Borysenko, Anton Lievtierov
Approaches to solving the problems of accumulation of solid waste from the production activities of industrial enterprises by developing of EPT and utilization of combustible waste as materials for fuel briquettes are given in the article [21].
Yavorska, Research into surface properties of disperse fillers based on plant raw materials.
All-Ukrainian Scientific and Practical Conference «Problems of Technogenic and Ecological Safety in the Field of Civil Defence»: Collection of Materials.
Materials Science Forum, 1038 (2021) 303–314
Journal of Achievements in Materials and Manufacturing Engineering, 87 2 (2018) 77–84
Yavorska, Research into surface properties of disperse fillers based on plant raw materials.
All-Ukrainian Scientific and Practical Conference «Problems of Technogenic and Ecological Safety in the Field of Civil Defence»: Collection of Materials.
Materials Science Forum, 1038 (2021) 303–314
Journal of Achievements in Materials and Manufacturing Engineering, 87 2 (2018) 77–84
Online since: September 2011
Authors: Cui Yu Yin, Yang Zhang, Feng Jiang
Experiment
Material.
Journal of the American Chemical Society. 2009.131(26):9389-9395 [4] Hudson S M, Cuculo J A.
Trends in Polymer science a bright future for cellulose.
Progress in Polymer Science. 1999.24(4):481-483 [6] Lina Zhang.
Natural modified polymer-materials and its application [M] Beijing: Chemical Industry Press 2006:71 (In Chinese) [7] Kang Peng, Zheng Zong Ming, Dong Chang Qing, Yang Yong Qing.
Journal of the American Chemical Society. 2009.131(26):9389-9395 [4] Hudson S M, Cuculo J A.
Trends in Polymer science a bright future for cellulose.
Progress in Polymer Science. 1999.24(4):481-483 [6] Lina Zhang.
Natural modified polymer-materials and its application [M] Beijing: Chemical Industry Press 2006:71 (In Chinese) [7] Kang Peng, Zheng Zong Ming, Dong Chang Qing, Yang Yong Qing.
Online since: January 2013
Authors: Iau Teh Wang, Chin Yu Lee
Influence of Open Channel on Explosion-Induced
Vibration Wave Propagation
Iau-Teh Wang1,2,a, Chin-Yu Lee3,b
1Graduate Institute of Disaster Prevention on Hillslopes and Water Resources Engineering, National Pingtung University of Science and Technology, Pingtung, 912, Taiwan, R.O.C.
2Department of Civil Engineering, Chinese Military Academy, Kaohsiung, 830, Taiwan, R.O.C.
3Department of Soil and Water Conservation, National Pingtung University of Science and Technology, Pingtung, 912, Taiwan, R.O.C.
This study used the LS-DYNA’s No. 9 *MAT_NULL material model to simulate air, and equations of state *EOS_LINEAR_POLYNOMIAL were used to describe the material model as in Eq. (4) [7].
The No. 8 *MAT_HIGH_EXPLOSIVE_BURN material model was used to simulate the high explosive model.
Fotis, Computer simulation of shock waves transmission in obstructed, Journal of Loss Prevention in the Process Industries. 17 (2004) 407-417
Liu, Experimental research on amplitude change of blasting seismic wave with topography, Journal of Beijing Institute of Technology. 9 (2000) 237-242
This study used the LS-DYNA’s No. 9 *MAT_NULL material model to simulate air, and equations of state *EOS_LINEAR_POLYNOMIAL were used to describe the material model as in Eq. (4) [7].
The No. 8 *MAT_HIGH_EXPLOSIVE_BURN material model was used to simulate the high explosive model.
Fotis, Computer simulation of shock waves transmission in obstructed, Journal of Loss Prevention in the Process Industries. 17 (2004) 407-417
Liu, Experimental research on amplitude change of blasting seismic wave with topography, Journal of Beijing Institute of Technology. 9 (2000) 237-242
Online since: August 2013
Authors: Jian Guo Jing, Min Zhi Liu, Shao Jun Zeng, Lin Xu
References
[1] W W Cai, “Study on Crack Control by Temperature-control of RCC Dams,” Advances in Science and Technology of Water Resources. vol. 20(2), pp. 28-30, April 2000.
(In Chinese) [7] Z Y Zhu, S Qiang, M Z Liu, et al, “Cracking Mechanism of Long Concrete Bedding Cushion and Prevention Method,” Advanced Materials Research. vol.163-167, pp. 880-887, 2011
(in Chinese with English abstract) [9] M Z Liu, S Qiang, Z Y Zhu, “Study on crack Mechanism for Concrete Bedding Cushion on Rock,” Advanced Materials Research. vol.163-167, pp. 1291-1295, 2011
[10] M Z Liu, S Qiang, B L Wang, et al, “Study on Crack Prevention for Concrete Rapid Construction,” Advanced Materials Research, in press
[11] S Qiang, Y M Zhu, G L Zhong, et al, “Fast Pouring Method with Thick Layer and Short Interval for Concrete Dam and its Application,” Journal of China Three Gorges University(Natural Sciences). vol. 32(4), pp. 38-41, August 2010.
(In Chinese) [7] Z Y Zhu, S Qiang, M Z Liu, et al, “Cracking Mechanism of Long Concrete Bedding Cushion and Prevention Method,” Advanced Materials Research. vol.163-167, pp. 880-887, 2011
(in Chinese with English abstract) [9] M Z Liu, S Qiang, Z Y Zhu, “Study on crack Mechanism for Concrete Bedding Cushion on Rock,” Advanced Materials Research. vol.163-167, pp. 1291-1295, 2011
[10] M Z Liu, S Qiang, B L Wang, et al, “Study on Crack Prevention for Concrete Rapid Construction,” Advanced Materials Research, in press
[11] S Qiang, Y M Zhu, G L Zhong, et al, “Fast Pouring Method with Thick Layer and Short Interval for Concrete Dam and its Application,” Journal of China Three Gorges University(Natural Sciences). vol. 32(4), pp. 38-41, August 2010.
Online since: October 2021
Authors: Amnart Suksri, Kanin Wajanasoonthon
Materials and Methods
Materials.
Methanol of 99.9% purity (RCI Labscan Limited) was obtained from Union Science Co.
GNPs was purchased from Nanjing XFNANO Materials Tech Co., Ltd (Nanjing, China) with purity of 97%, flake diameter of 100-300 nm and thickness of 0.33-0.39 nm.
Journal of Engineering Science and Technology, 11, 140–152
Materials, 12(5). https://doi.org/10.3390/MA12050816
Methanol of 99.9% purity (RCI Labscan Limited) was obtained from Union Science Co.
GNPs was purchased from Nanjing XFNANO Materials Tech Co., Ltd (Nanjing, China) with purity of 97%, flake diameter of 100-300 nm and thickness of 0.33-0.39 nm.
Journal of Engineering Science and Technology, 11, 140–152
Materials, 12(5). https://doi.org/10.3390/MA12050816
Online since: March 2006
Authors: Gerhard Zimmermann, Georg Müller, Johannes Dagner, Marc Hainke, A. Weiß
Materials Science Forum
Online available at: http://www.scientific.net
Copyright 2005 Trans Tech Publications, Switzerland
Global modeling of directional solidification of Aluminum alloys using the
software package CrysVUn
J.Dagner1, A.
The sample material is AlSi7Mg0.6.
Journal of Materials Science, 39:2011-2015, 2004
International Journal of Cast Metals Research, 14:79-95, 2001
In Proceedings of 4th International Conference on Electromagnetic Processing of Materials, pages 423-428, Lyon, France, October 2003.
The sample material is AlSi7Mg0.6.
Journal of Materials Science, 39:2011-2015, 2004
International Journal of Cast Metals Research, 14:79-95, 2001
In Proceedings of 4th International Conference on Electromagnetic Processing of Materials, pages 423-428, Lyon, France, October 2003.
Online since: November 2010
Authors: Yue Xin Han, Li Mei Bai, Rui Xiao, Jing Xing Hui
Beijing:Science Press, 2002
[2] JiRu Meng, ZhaoLei, etc: Chemical Materials.
[7] ShiMin Wang etc: The Preparation Technique of Nanometer Material.
[8] MaoCheng Cao: The Preparation Science and Technology Of Superfine Materials.
Yulin: Journal of Colloid and Interface Science.
[12] Qingfeng Liu, Shoutian Chen etc: Journal of Inorganic Materials.
[7] ShiMin Wang etc: The Preparation Technique of Nanometer Material.
[8] MaoCheng Cao: The Preparation Science and Technology Of Superfine Materials.
Yulin: Journal of Colloid and Interface Science.
[12] Qingfeng Liu, Shoutian Chen etc: Journal of Inorganic Materials.
Online since: October 2011
Authors: Ying Li, Zhi Ying Zhang
However, when considering the soil-structure interaction (SSI) effect, most scholars believe that, due to the difference in the composition of the system materials and the difference of deformation ability of each part, this system should be treated as non-classical damping system [3,4,5].
References [1] HuaiZhong Wu, RuHeng Wang and Wen Guo in: Sichuan Building Science (In Chinese), Vol. 34(2008), issue 5, p. 117-119
[3] GuoQin Gui and YuAo He in: Journal of Tongji University (In Chinese), Vol. 22(1994), issue 4, p. 505-510
[4] GuoDong Zhang in: Journal of China Three Gorges University (In Chinese), Vol. 26(2004), issue 2, p. 144-146
Journal of Vibration and Acoustics, Vol. 131(2009), p. 1-11.
References [1] HuaiZhong Wu, RuHeng Wang and Wen Guo in: Sichuan Building Science (In Chinese), Vol. 34(2008), issue 5, p. 117-119
[3] GuoQin Gui and YuAo He in: Journal of Tongji University (In Chinese), Vol. 22(1994), issue 4, p. 505-510
[4] GuoDong Zhang in: Journal of China Three Gorges University (In Chinese), Vol. 26(2004), issue 2, p. 144-146
Journal of Vibration and Acoustics, Vol. 131(2009), p. 1-11.
Online since: January 2013
Authors: Nai Xiang Feng, Li Zhang, Wu Zhang
Effect of Oxidation on Phase Transformation in Ti-Bearing Blast Furnace Slag
Zhang Wu1, a, Zhang Li1, b, Feng Nai-Xiang1, c
1School of Materials and Metallurgy, Northeastern University, Shengyang, Liaoning 110819, P.
Sui, Effect of peiovskite phase precipitation on viscosity of Ti-bearing blast furnace slag under the dynamic oxidation condition, Journal of Non-crystalline solids.352 (2006)123-129
Sui, Kinetics of non-isotherinal precipitate process of peoivskite phase in CaO-TiO2-SiO2-Al2O3-MgO system, Journal of Materials science.35 (2000)5635-5637
Zhang, Precipitation selectivity of boron compounds from slags, Acta Material.47 (1999)1337-1344
Sui, Precipitation kinetics of calcium cerite phase in slag bearing rare earths, Journal of iron and steel research. 16(2004) 64−67
Sui, Effect of peiovskite phase precipitation on viscosity of Ti-bearing blast furnace slag under the dynamic oxidation condition, Journal of Non-crystalline solids.352 (2006)123-129
Sui, Kinetics of non-isotherinal precipitate process of peoivskite phase in CaO-TiO2-SiO2-Al2O3-MgO system, Journal of Materials science.35 (2000)5635-5637
Zhang, Precipitation selectivity of boron compounds from slags, Acta Material.47 (1999)1337-1344
Sui, Precipitation kinetics of calcium cerite phase in slag bearing rare earths, Journal of iron and steel research. 16(2004) 64−67