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Online since: November 2006
Authors: Francisco Rolando Valenzuela-Díaz, Jo Dweck, John J. Sansalone, Frank K. Cartledge, Pedro M. Büchler, Carolina A. Pinto
Water Science Technology.
Journal of Hazardous Materials B89, pp. 165-175, 2002. [11]Zhang, A.; Akhter, H.; Cartledge, F.K.
Advanced Powder Technology II Key Engineering Materials.
Science and technology of clays.
Journal of Hazardous Materials.
Journal of Hazardous Materials B89, pp. 165-175, 2002. [11]Zhang, A.; Akhter, H.; Cartledge, F.K.
Advanced Powder Technology II Key Engineering Materials.
Science and technology of clays.
Journal of Hazardous Materials.
Online since: June 2012
Authors: Rui Guo, Zhong Ju Feng, Ping Li
Experimental Methods
Materials used and specimen manufacture.
Juang: Journal of Materials in Civil Engineering, June (2007), p. 465
He: Construction and Building Materials, Vol. 18 (2004), p. 399
Zhang: Journal of Wuhan University of Technology(Transportation Science & Engineeriong), Vol. 35 (2011) No. 3, p. 471.
Dai: Journal of Chang’an University (Natural Science), Vol. 24 (2004) No. 5, p. 11.
Juang: Journal of Materials in Civil Engineering, June (2007), p. 465
He: Construction and Building Materials, Vol. 18 (2004), p. 399
Zhang: Journal of Wuhan University of Technology(Transportation Science & Engineeriong), Vol. 35 (2011) No. 3, p. 471.
Dai: Journal of Chang’an University (Natural Science), Vol. 24 (2004) No. 5, p. 11.
Online since: August 2013
Authors: Shi Hai Cui, Jian Yuan, Hai Yan Li
Acknowledgements
This work was financially supported by the National Natural Science Foundation of China(No. 81201015)and Tianjin municipal commission of education (No. 20100423).
References [1] Yang Zhiyong,Han jianmin,Li weijing.Chinese Journal of mechanical engineering, vol.46,issue2(2010) , p. 88-92.
Chinese Journal of mechanical engineering, vol.44,issue2(2008) , p. 145–151.
(in Chinese) [3] Zagrodzki P, Lam K B, Al Bahkali E, et al.Journal of Tribology, vol.123,issue4(,2001), p.699–708
Journal of Automobile Engineering, vol. 205issue2(1991),p.137–146.
References [1] Yang Zhiyong,Han jianmin,Li weijing.Chinese Journal of mechanical engineering, vol.46,issue2(2010) , p. 88-92.
Chinese Journal of mechanical engineering, vol.44,issue2(2008) , p. 145–151.
(in Chinese) [3] Zagrodzki P, Lam K B, Al Bahkali E, et al.Journal of Tribology, vol.123,issue4(,2001), p.699–708
Journal of Automobile Engineering, vol. 205issue2(1991),p.137–146.
Online since: December 2022
Authors: Sadeem Al-Barody, Faiz Ahmed, Thar M. Badri Albarody, Alaa Raad Hussein, Mohammed Mahmmud Direa, Ali Ameen Roshan Ali
Introduction
In the industry, composite materials have been widely used.
NDEs are low-cost and non-destructive to composite materials [8-9].
As observed pure material of B4C has the highest value of permittivity compared with the other materials.
"Development of Boron-based materials for nuclear applications. " Technol.
"Evaluation of electromagnetic near-field measurement technique as non-destructive testing for composite structures, " in IOP Conference Series: Materials Science and Engineering. (2018) [8] Yan, X., Zhang, D., Pan, S., Zhang, E. & Gao, W.
NDEs are low-cost and non-destructive to composite materials [8-9].
As observed pure material of B4C has the highest value of permittivity compared with the other materials.
"Development of Boron-based materials for nuclear applications. " Technol.
"Evaluation of electromagnetic near-field measurement technique as non-destructive testing for composite structures, " in IOP Conference Series: Materials Science and Engineering. (2018) [8] Yan, X., Zhang, D., Pan, S., Zhang, E. & Gao, W.
Online since: August 2012
Authors: Qing Xi Hu, Yuan Yuan Liu, Yong Ze Yu, Zhen Zhong Han, Ying Liu, Shu Hui Fang
As a result, these scaffolds could hardly make up the deficiency, such as: difficult forming and lack mechanical properties of hydrophilic natural biological materials; the poor biocompatibility of synthetic biological materials.
Materials and Methods Materials.
Science, Vol. 260 (1993), pp.920–926
Zhan: Journal of Medical Biomechanics, Vol. 25 (2010), pp.26–31
Materials Letters, Vol. 74 (2012), pp.155-158
Materials and Methods Materials.
Science, Vol. 260 (1993), pp.920–926
Zhan: Journal of Medical Biomechanics, Vol. 25 (2010), pp.26–31
Materials Letters, Vol. 74 (2012), pp.155-158
Online since: November 2024
Authors: Indra Surya, Johan Anto, Nabil Hayeemasae
They are hydrophilic and will interact strongly with hydrophilic materials too.
It was because of the difference in polarity of those materials.
Ginting, The silica-filled polychloroprene rubber in the addition of alkanolamide: tensile and vulcanization properties, IOP Conference Series: Materials Science and Engineering 801 (1) (2020) 012089
Mohsen, Journal of Thermoplastic Composite Materials, 1 (18) (2019) 1-14
Surya, NR/precipitated silica/dodecanol composites: Torque, hardness and morphology behaviors, IOP Conference Series: Materials Science and Engineering, 1122 (1) (2021) 012115
It was because of the difference in polarity of those materials.
Ginting, The silica-filled polychloroprene rubber in the addition of alkanolamide: tensile and vulcanization properties, IOP Conference Series: Materials Science and Engineering 801 (1) (2020) 012089
Mohsen, Journal of Thermoplastic Composite Materials, 1 (18) (2019) 1-14
Surya, NR/precipitated silica/dodecanol composites: Torque, hardness and morphology behaviors, IOP Conference Series: Materials Science and Engineering, 1122 (1) (2021) 012115
Online since: August 2011
Authors: Ming Zhao, Dong Ying Ju
In the bonding interface of 3Y-TZP and SUS440, the Ti-Cu (brass) powder/sheet was used as bonding materials.
Additionally, brass sheet-Ti powder and Ti sheet-brass powder were applied to be two kinds of bonding materials.
The materials were both cut off by the unit length of 10mm, and the section was polished with the #600 and #1200 sandpaper respectively.
Takehiko: Diffusion Bonding of Tungsten to Copper, Quarterly Journal of the Japan Welding Society, 16-3(1998), 319-323
Mitamura: Proc of the International Conference on Advanced Materials Development and Performance Evaluation and Application, (1999), 818-23
Additionally, brass sheet-Ti powder and Ti sheet-brass powder were applied to be two kinds of bonding materials.
The materials were both cut off by the unit length of 10mm, and the section was polished with the #600 and #1200 sandpaper respectively.
Takehiko: Diffusion Bonding of Tungsten to Copper, Quarterly Journal of the Japan Welding Society, 16-3(1998), 319-323
Mitamura: Proc of the International Conference on Advanced Materials Development and Performance Evaluation and Application, (1999), 818-23
Online since: August 2014
Authors: Qian Li, Gang He, Ying Sun, Ying Ya Huang, Deng Lin Zhu
Sample 1, 2 and 3 are rubber springs with rubber materials NR38, NR50 and NR60, respectively.
Fig. 3 The static stiffness of rubber springs with different rubber materials The damping ratios, ξr, of the natural rubber materials NR45, NR50 and NR60 are 0.065, 0.069 and 0.075, respectively.
The Vibration Isolation Characteristics of HEMs with Different Rubber Materials.
Nakhaie Jazar: Journal of Sound and Vibration, Vol. 290 (2006) No. (3-5), pp.1040–1070
Ravindra: Journal of Sound and Vibration, Vol. 158 (1992) No.3, pp.219–243
Fig. 3 The static stiffness of rubber springs with different rubber materials The damping ratios, ξr, of the natural rubber materials NR45, NR50 and NR60 are 0.065, 0.069 and 0.075, respectively.
The Vibration Isolation Characteristics of HEMs with Different Rubber Materials.
Nakhaie Jazar: Journal of Sound and Vibration, Vol. 290 (2006) No. (3-5), pp.1040–1070
Ravindra: Journal of Sound and Vibration, Vol. 158 (1992) No.3, pp.219–243
Online since: July 2021
Authors: Mohammed Q. Kareem, Khaled Al-Farhany, Zainab Kareem Ghoben
Barot, Casting simulation and defect identification of geometry varied plates with experimental validation, Materials Today: Proceedings, (2020)
Xiangyi Jiao, Jun Wang, Zhipeng Guo, Junyou Wang, Zhuoming Wang, Junming Gao, Shoumei Xiong, On the characterization of microstructure and fracture in a high-pressure die-casting Al-10 wt%Si alloy, Progress in Natural Science: Materials International, (2019)
Yawas, Comparative Analysis of the Effects of Pressure on the Mechanical Properties and Microstructure of Die Cast Aluminum Alloys, Journal of Minerals and Materials Characterization and Engineering, (2016)
Yawas, Effects of Pressure on the Mechanical Properties and Microstructure of Die Cast Aluminum A380 Alloy, Journal of Minerals and Materials Characterization and Engineering, (2014)
Katsina Christopher BALA, Rate of solidification of aluminium casting in varying wall thickness of cylindrical metallic moulds, Leonardo Journal of Sciences, (2014)
Xiangyi Jiao, Jun Wang, Zhipeng Guo, Junyou Wang, Zhuoming Wang, Junming Gao, Shoumei Xiong, On the characterization of microstructure and fracture in a high-pressure die-casting Al-10 wt%Si alloy, Progress in Natural Science: Materials International, (2019)
Yawas, Comparative Analysis of the Effects of Pressure on the Mechanical Properties and Microstructure of Die Cast Aluminum Alloys, Journal of Minerals and Materials Characterization and Engineering, (2016)
Yawas, Effects of Pressure on the Mechanical Properties and Microstructure of Die Cast Aluminum A380 Alloy, Journal of Minerals and Materials Characterization and Engineering, (2014)
Katsina Christopher BALA, Rate of solidification of aluminium casting in varying wall thickness of cylindrical metallic moulds, Leonardo Journal of Sciences, (2014)
Online since: October 2010
Authors: Walman Benício de Castro, Carlos José de Araújo, George Carlos S. Anselmo
Introduction
Shape memory alloys (SMA) have attracted much interest for their potential use as functional materials in many engineering applications, such as active, adaptive or smart structures, as well as certain biomedical applications [1-/3].
Stover, Materials Science and Engineering A337 (2002) 254-263; [2] J.
Stover, Materials Science and Engineering A 481–482 (2008) 630–634; [3] H.X.
Stover, Journal of Alloys and Compounds 463 (2008) 250–256
Stover, Materials Science and Engineering A 491 (2008) 270–278.
Stover, Materials Science and Engineering A337 (2002) 254-263; [2] J.
Stover, Materials Science and Engineering A 481–482 (2008) 630–634; [3] H.X.
Stover, Journal of Alloys and Compounds 463 (2008) 250–256
Stover, Materials Science and Engineering A 491 (2008) 270–278.