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Online since: December 2012
Authors: Hui Wu, Tiger Sun
Sun gave the magnetorheological materials theory united in energy [7], which will be used to vibration control on watercraft.
Advanced Materials Research. 2012, Vol.569:P335-338
Magnetorheological Materials Theory United in Energy [J].
Applied Mechanics and Materials. 2012, Vol. 157-158: P 33-36
Advances in Information Sciences and Service Sciences. 2012(12), Vol.5:P33-40.
Advanced Materials Research. 2012, Vol.569:P335-338
Magnetorheological Materials Theory United in Energy [J].
Applied Mechanics and Materials. 2012, Vol. 157-158: P 33-36
Advances in Information Sciences and Service Sciences. 2012(12), Vol.5:P33-40.
Online since: January 2012
Authors: Jimy S. Unfried, Antonio Jose Ramirez
Optical and electron microscopy were used to characterize these materials and the results were compared with Calphad-based modeling results.
Dashed line indicates the critical threshold strain (15%) for DDC resistant materials.
Gifkins: Materials characterization 32, (1994) p. 59 [8] T.G.
Langdon: Materials science 41, (2006) p. 597 [9] A.J.
Ramirez: Materials science forum, 638-642, (2010) p. 2858 [19] J.
Dashed line indicates the critical threshold strain (15%) for DDC resistant materials.
Gifkins: Materials characterization 32, (1994) p. 59 [8] T.G.
Langdon: Materials science 41, (2006) p. 597 [9] A.J.
Ramirez: Materials science forum, 638-642, (2010) p. 2858 [19] J.
Online since: September 2020
Authors: Hasan Zuhudi Abdullah, Maizlinda Izwana Idris, Norhasikin Ismail
This is refers to the amount of the liquid that deposited on the surface solid materials spread out or the ability of liquid to form a barrier on the surfaces materials.
Journal of Food Science. 77 (9), pp.
International Journal of Food Science and Nutrition Engineering. 2(1), pp. 12
International Journal of Polymer Science, pp. 1-9
Materials Science Forum. 88, pp. 278-283
Journal of Food Science. 77 (9), pp.
International Journal of Food Science and Nutrition Engineering. 2(1), pp. 12
International Journal of Polymer Science, pp. 1-9
Materials Science Forum. 88, pp. 278-283
Online since: January 2020
Authors: Rui Sun, Yong Jun Shi, Zhen Fei Bing, Yan Kuo Guo
The chemical composition of the two materials is shown in Table 1.
The basic thermophysical parameters of all materials are listed in Table 3 [8].
Li: Journal of Materials Processing Technology.135 (2003), p. 347-357 https://doi.org/10.1016/S0924-0136(02)00867-1 [2] P.
Liu: Adanced Materials Research.
Yan: Journal of Sichuan University of Science and Technology (Natural Science Edition). 19 (2006), p. 75-78.
The basic thermophysical parameters of all materials are listed in Table 3 [8].
Li: Journal of Materials Processing Technology.135 (2003), p. 347-357 https://doi.org/10.1016/S0924-0136(02)00867-1 [2] P.
Liu: Adanced Materials Research.
Yan: Journal of Sichuan University of Science and Technology (Natural Science Edition). 19 (2006), p. 75-78.
Online since: October 2018
Authors: S. Nallusamy, M. Rajaram Narayanan
The fatigue properties of the different materials used in wind turbines from the steel in the tower to the composites used in blade design was studied [13-15].
SMA materials have been used in vibration control applications and SMA actuators to achieve active control of the first mode of flexible beam [34-36].
International Journal of Performability Engineering, Vol. 12(3) (2016), pp. 229-239 [7] Mevada, Himanshu and Dipal Patel: Experimental determination of structural damping of different materials.
Indian Journal of Science and Technology, Vol. 9(16) (2016), pp. 01-05 [19] Aranake et al: Computational analysis of shrouded wind turbine configurations using a 3-dimensional RANS solver.
Indian Journal of Science and Technology, Vol. 9(35) (2016), pp. 01-06 [29] Peter J.
SMA materials have been used in vibration control applications and SMA actuators to achieve active control of the first mode of flexible beam [34-36].
International Journal of Performability Engineering, Vol. 12(3) (2016), pp. 229-239 [7] Mevada, Himanshu and Dipal Patel: Experimental determination of structural damping of different materials.
Indian Journal of Science and Technology, Vol. 9(16) (2016), pp. 01-05 [19] Aranake et al: Computational analysis of shrouded wind turbine configurations using a 3-dimensional RANS solver.
Indian Journal of Science and Technology, Vol. 9(35) (2016), pp. 01-06 [29] Peter J.
Online since: January 2026
Authors: Nawar O. Almusawi, Mohammed A. Mustafa
Materials and Methods
2.1 Plant Selection and Coagulant Preparation
Several crucial stages are entailed in the preparation of plant-based coagulant.
Using Solid Waste as A Substitute for Raw Materials in Construction: A Review.
Association of Arab Universities Journal of Engineering Sciences, 31(1), 01-7
Journal of Environmental Sciences, 2019. 81: p. 168-180
[25] Ahmed, H., et al., Evaluation of different natural waste materials as bio-coagulants for domestic wastewater treatment.
Using Solid Waste as A Substitute for Raw Materials in Construction: A Review.
Association of Arab Universities Journal of Engineering Sciences, 31(1), 01-7
Journal of Environmental Sciences, 2019. 81: p. 168-180
[25] Ahmed, H., et al., Evaluation of different natural waste materials as bio-coagulants for domestic wastewater treatment.
Online since: July 2015
Authors: Egbe Ngu Ntui Ogork, Augustine Elinwa, Okorie Austine Uche
Materials and Methods
Materials.
This is due to the reaction mechanism of the GHA-RHA materials and cement [20] and [21].
Mahmud: Study on Properties of Rice Husk Ash and its use as Cement Replacement Material, Materials Research, vol. 13, no. 2, (2010), pp. 185-190 [11] O.
Roongreung: Cementing Material from Calcium Carbide Residue-Rice Husk Ash, Journal of Materials in Civil Engineering, vol. 15, no. 5, (2003), pp. 470-475, [20] L.
Jaturapitakkul: Development of Bagasse Ash as Pozollanic Material in Concrete, Asian Journal on Energy and Environment, vol. 10, no. 3, (2009), pp. 149-159, www.asian-energy-journal.info
This is due to the reaction mechanism of the GHA-RHA materials and cement [20] and [21].
Mahmud: Study on Properties of Rice Husk Ash and its use as Cement Replacement Material, Materials Research, vol. 13, no. 2, (2010), pp. 185-190 [11] O.
Roongreung: Cementing Material from Calcium Carbide Residue-Rice Husk Ash, Journal of Materials in Civil Engineering, vol. 15, no. 5, (2003), pp. 470-475, [20] L.
Jaturapitakkul: Development of Bagasse Ash as Pozollanic Material in Concrete, Asian Journal on Energy and Environment, vol. 10, no. 3, (2009), pp. 149-159, www.asian-energy-journal.info
Online since: January 2012
Authors: Yi Sun, Gao Ying Kang, Ding Cui, Jing Ran Ge
Acknowledgement
It is a project sponsored by the Nature Science Foundation of China (10972066).
Average stress in matrix and average of materials with misfitting inclusion [J].
[8] Zhihao Jin, Wei Guo, Application of Homogenization Theory in Study on Tube-Sheet, Journal of Shenyang Institute of Chemical Technology, 2007, 21(1) 2: 9-35
[9] Shanyi Du, Biao Wang, Mesomechanics of Composites, Science Press, Beijing, 1998
[10] Qingsheng Yang, Microstructural mechanics and design of composite materials, China railway publishing house, Beijing, 2000.
Average stress in matrix and average of materials with misfitting inclusion [J].
[8] Zhihao Jin, Wei Guo, Application of Homogenization Theory in Study on Tube-Sheet, Journal of Shenyang Institute of Chemical Technology, 2007, 21(1) 2: 9-35
[9] Shanyi Du, Biao Wang, Mesomechanics of Composites, Science Press, Beijing, 1998
[10] Qingsheng Yang, Microstructural mechanics and design of composite materials, China railway publishing house, Beijing, 2000.
Online since: October 2012
Authors: Min Wang, Wen Hao Hu, Li Qiang Zhang, Chao Jie Zhang, Zun Peng, Yan Ping Bao
Vapalahti: Materials Science and Engineering: A, Vol. 413–414 (2005) p.135
Nieminen: Metallurgical and Materials Transactions B, Vol. 24 (1993) No.4, p.685
Kunold-Bello: International Journal of Minerals, Metallurgy, and Materials, Vol. 17 (2010) No.3, p.267
Palomar-Pardavé: International Journal of Minerals, Metallurgy, and Materials, Vol. 17 (2010) No.4, p.403
Beckermann: Materials Processing in the Computer Age, Vol. 3 (2000) p.61
Nieminen: Metallurgical and Materials Transactions B, Vol. 24 (1993) No.4, p.685
Kunold-Bello: International Journal of Minerals, Metallurgy, and Materials, Vol. 17 (2010) No.3, p.267
Palomar-Pardavé: International Journal of Minerals, Metallurgy, and Materials, Vol. 17 (2010) No.4, p.403
Beckermann: Materials Processing in the Computer Age, Vol. 3 (2000) p.61
Online since: June 2014
Authors: Jie Liu
However, most of the commercially available materials such as photo-polymers, powders, paper, wax, plastic materials, and even rubber, are only for the application of concept models, visual prototypes, and limited functional prototypes.
The physical properties of these materials are not suitable for functional prototypes or tooling applications[1-3].
Journal of Materials Processing Techonology, 2001, (109): 154-160 [3] Jeng-Ywan Jeng, et al.
Journal of Materials Processing Technology 110 (2001):98-103 [4] Gahr K H Zum, Schneider J.
Science and Technology of Advanced Materials, 2001, (2): 185-191
The physical properties of these materials are not suitable for functional prototypes or tooling applications[1-3].
Journal of Materials Processing Techonology, 2001, (109): 154-160 [3] Jeng-Ywan Jeng, et al.
Journal of Materials Processing Technology 110 (2001):98-103 [4] Gahr K H Zum, Schneider J.
Science and Technology of Advanced Materials, 2001, (2): 185-191