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Online since: January 2009
Authors: N. Gabouze, G. Fortas, S. Sam, Z. Fekih
CoNi and CoFe based of ternary alloys are very
attractive materials for their corrosion resistance, magnetic and thermophysical properties.
Nobe, Journal of Applied Elecrochmistry, 21, (1991), p.672 [6] I.
Vallés, Applied Surface Science 253, (2006), p.2964 [10] Y.Zhang, D.
Ivey, Materials Science and Engineering B 140, (2007), p.15 [12] X.Liu, G.
Vernier, Journal of Magnetism and Magnetic Materials 315, (2007), p.26 [14] E.
Nobe, Journal of Applied Elecrochmistry, 21, (1991), p.672 [6] I.
Vallés, Applied Surface Science 253, (2006), p.2964 [10] Y.Zhang, D.
Ivey, Materials Science and Engineering B 140, (2007), p.15 [12] X.Liu, G.
Vernier, Journal of Magnetism and Magnetic Materials 315, (2007), p.26 [14] E.
Online since: November 2012
Authors: Li Kun Huang, Ai Lun Wang
Zheng: Applied Mechanics and Materials, Vol. 44 (2010) No. 13, p.985
Luo: Advanced Materials Research, Vol. 216 (2011) No. 10, p.703
Wei: Journal of Hydrodynamics, Vol. 13 (2001) No. 1, p.86
Wood: Journal of Mechanical Design, Vol. 127 (2005) No. 1, p.78
Kong: Application Foundation and Engineering Science Journal, Vol. 17 (2009) No. 3, p.452.
Luo: Advanced Materials Research, Vol. 216 (2011) No. 10, p.703
Wei: Journal of Hydrodynamics, Vol. 13 (2001) No. 1, p.86
Wood: Journal of Mechanical Design, Vol. 127 (2005) No. 1, p.78
Kong: Application Foundation and Engineering Science Journal, Vol. 17 (2009) No. 3, p.452.
Online since: February 2014
Authors: Xiao Ma, Wen Hong Zheng, Yi Shan Pan, Zhao Yun Qiu, Xiao Jing Zhu
Before this, many methods have been used [1] to improve energy absorption of the components, such as adding reducing groove, changing the quality of the cross section, adding cushioning materials etc.
International Journal of Mechanical Sciences, 2002,44:2 369-2391
Inter-national Journal of Mechanical Sciences, 1994,36 (12):1 087-1097
An experimental method for determining ductile tearing energy of thin metal sheets [J].Metals and Materials, 1998, 4(3): 432-436
Journal of Materials Processing Technology, 2001,1(18):316-320
International Journal of Mechanical Sciences, 2002,44:2 369-2391
Inter-national Journal of Mechanical Sciences, 1994,36 (12):1 087-1097
An experimental method for determining ductile tearing energy of thin metal sheets [J].Metals and Materials, 1998, 4(3): 432-436
Journal of Materials Processing Technology, 2001,1(18):316-320
Online since: June 2014
Authors: Ping Liu, Xiao Feng Gao, Wei Li Liu, Jun Wen Wang, Chuan Min Ding, Kan Zhang
N2 adsorption measurement was performed on a QUADRSORB SI material physical structure determinate.
Pidko, et al, Influence of steaming on the acidity and the methanol conversion reaction of HZSM-5 zeolite, Journal of Catalysis. 11 (2013) 194-203 [8] Youming Nia, Aiming Suna, Xiaoling Wua, et al, J.
Journal of Natural Gas Chemistry Vol. 20(3) (2011) 237 [9] Yingping HE, Min LIU, Chengyi DAI, et al, Modification of nanocrystalline HZSM-5 zeolite with tetrapropylammonium hydroxide and its catalytic performance in methanol to gasoline reaction, Chinese Journal of Catalysis. 11 (2013) 1148-1158 [10] H.A.
White, Chemistry-Zeolites and Porous Materials, Science press , Beijing, china, 2004
Janssens, Stian Svelle, et al, Product yield in methanol conversion over ZSM-5 is predominantly independent of coke content, Microporous and Mesoporous Materials . 164 (2012) 190-198
Pidko, et al, Influence of steaming on the acidity and the methanol conversion reaction of HZSM-5 zeolite, Journal of Catalysis. 11 (2013) 194-203 [8] Youming Nia, Aiming Suna, Xiaoling Wua, et al, J.
Journal of Natural Gas Chemistry Vol. 20(3) (2011) 237 [9] Yingping HE, Min LIU, Chengyi DAI, et al, Modification of nanocrystalline HZSM-5 zeolite with tetrapropylammonium hydroxide and its catalytic performance in methanol to gasoline reaction, Chinese Journal of Catalysis. 11 (2013) 1148-1158 [10] H.A.
White, Chemistry-Zeolites and Porous Materials, Science press , Beijing, china, 2004
Janssens, Stian Svelle, et al, Product yield in methanol conversion over ZSM-5 is predominantly independent of coke content, Microporous and Mesoporous Materials . 164 (2012) 190-198
Online since: December 2012
Authors: Nurbaisyatul Ermiza Suhaimi, A. Noranizah, H. Azhan, K. Azman
Experimental
The raw materials for the preparation of Er3+ doped borotellurite glass are commercially obtained from chemically pure grades of materials Sigma-Aldrich (Germany).
The required proportions of raw materials are weighed of the total 10 grams.
Revel, in: Structure and properties of ZnO-B2O3-P2O5-TeO2 glasses, Materials Chemistry and Physics, 124 (2010), 732-737
Richardson, in: Viscosity properties of tellurite- based glasses, Materials Research Bulletin, 45 (2010), 1861-1865
Oueslati, in: Study of photoluminescence quenching in Er3+ -doped tellurite glasses, Optical Materials, 32 (2010), 743-747
The required proportions of raw materials are weighed of the total 10 grams.
Revel, in: Structure and properties of ZnO-B2O3-P2O5-TeO2 glasses, Materials Chemistry and Physics, 124 (2010), 732-737
Richardson, in: Viscosity properties of tellurite- based glasses, Materials Research Bulletin, 45 (2010), 1861-1865
Oueslati, in: Study of photoluminescence quenching in Er3+ -doped tellurite glasses, Optical Materials, 32 (2010), 743-747
Online since: June 2024
Authors: Alexis Pablo Tarazona Alarcon, Karla Lisette Lopez Pasapera, Marcos Jesus Boza Rabanal
Materials and Tools/Equipment
Materials.
Research Methodology Phase I: Analysis and characteristics of supplementary cementitious materials for self-compacting concrete.
In this phase, the proposed concrete mixtures are prepared in the laboratory after determining all the physical properties of the constituent materials.
Haruna, “Effect of Hybridization of Calcium Carbide Waste and Rice Husk Ash on the Properties of Self-Compacting Concrete”, Journal of Ceramics and Concrete Sciences, vol. 5, no. 3, pp. 2582-2582, Dic. 2020. https://www.researchgate.net/publication/ 346355201 [12] Gurpreet Singh, “Influence of RHA and stone dust on properties of concrete”, Materials Today: Proceeding, vol. 37, pp. 2441-2445, Ene. 2021. https://doi.org/10.1016/j.matpr.2020.08.282 [13] S.
Aci Materials Journal, 103, 121–129
Research Methodology Phase I: Analysis and characteristics of supplementary cementitious materials for self-compacting concrete.
In this phase, the proposed concrete mixtures are prepared in the laboratory after determining all the physical properties of the constituent materials.
Haruna, “Effect of Hybridization of Calcium Carbide Waste and Rice Husk Ash on the Properties of Self-Compacting Concrete”, Journal of Ceramics and Concrete Sciences, vol. 5, no. 3, pp. 2582-2582, Dic. 2020. https://www.researchgate.net/publication/ 346355201 [12] Gurpreet Singh, “Influence of RHA and stone dust on properties of concrete”, Materials Today: Proceeding, vol. 37, pp. 2441-2445, Ene. 2021. https://doi.org/10.1016/j.matpr.2020.08.282 [13] S.
Aci Materials Journal, 103, 121–129
Online since: August 2015
Authors: Xiao Zhang, Su Yuan Yang, Sheng Nan Yang
Research on Compression Properties of Ni-Ti shape Memory Alloys
Xiao Zhang1, a, Suyuan Yang2, b *, Shengnan Yang3, c
1 School of Materials Science and Technology, Beijing Institute of Technology, Beijing 100081, PR China;
2 National Key Laboratory of Science and Technology on Materials under Shock and Impact,
Beijing Institute of Technology, Beijing 100081, PR China
aemail: yangsuyuan@bit.edu.cn, bemail: jincaijiayou@163.com, cemail: 757430786@qq.com
Key words: Ni-Ti shape memory alloys; martensitic phase transformation (SIM); strain rates
Abstract:
Quasi-static and dynamic compressive mechanical properties of Ni-Ti shape memory alloys have been investigated by using electronic universal testing machine and Split-Hopkinson Pressure Bar (SHPB), respectively.
Experimental materials and methods The materials used in this study were Ni-Ti shape memory alloys, whose chemical composition and transformation temperature were given in Table 1.The materials were prepared by Vacuum Induction Melting.
[4] Hu Shisheng, Wang Lili, An Apparatus For Materials Testing At High Strain Rates, Journal Of Vibration And Shock, 17 (1986) 41-47
[5] Liu Jinxu, Hu Dandan, Zheng Xiuhua, Effect of Precipitation Phase Morphology on Mechanical Properties of Ni-Ti Shape Memory Alloy, Rare Metal Materials and Engineering, 42(2013): 942-6
[8] Nemat-Nasser S, Chol J-Y, Guo W-G, Very high strain-rate response of a NiTi shape-memory alloy, Mechanics of materials, 37 (2005), 287-98.
Experimental materials and methods The materials used in this study were Ni-Ti shape memory alloys, whose chemical composition and transformation temperature were given in Table 1.The materials were prepared by Vacuum Induction Melting.
[4] Hu Shisheng, Wang Lili, An Apparatus For Materials Testing At High Strain Rates, Journal Of Vibration And Shock, 17 (1986) 41-47
[5] Liu Jinxu, Hu Dandan, Zheng Xiuhua, Effect of Precipitation Phase Morphology on Mechanical Properties of Ni-Ti Shape Memory Alloy, Rare Metal Materials and Engineering, 42(2013): 942-6
[8] Nemat-Nasser S, Chol J-Y, Guo W-G, Very high strain-rate response of a NiTi shape-memory alloy, Mechanics of materials, 37 (2005), 287-98.
Online since: September 2014
Authors: Nikita V. Martyushev, Igor B. Ardashkin, Alexey N. Yakovlev
Materials and Methods
Let us consider one of the approaches to the issue under investigation.
"Such materials as cast alloys, refractories, modifying agents, ferroalloys, etc. are used as the main objects of the information supply" [5].
Martyushev, Creation of ceramic nanocomposite material on the basis of ZrO2-Y2O3-Al2O3 with improved operational properties of the working surface, Applied Mechanics and Materials. 379 (2013) 77 – 81 [7] N.V.
Tomchik, Simulation of active shielding gas impact on heat distribution in the weld zone, Materials Science Forum. 762 (2013) 717-721 [9] D.A.
Agrenich, Computer simulation of thermo-mechanical processes at fusion welding of alloyed steels, Materials Science Forum. 575-578 (2008) 833-836 [10] S.Yu.
"Such materials as cast alloys, refractories, modifying agents, ferroalloys, etc. are used as the main objects of the information supply" [5].
Martyushev, Creation of ceramic nanocomposite material on the basis of ZrO2-Y2O3-Al2O3 with improved operational properties of the working surface, Applied Mechanics and Materials. 379 (2013) 77 – 81 [7] N.V.
Tomchik, Simulation of active shielding gas impact on heat distribution in the weld zone, Materials Science Forum. 762 (2013) 717-721 [9] D.A.
Agrenich, Computer simulation of thermo-mechanical processes at fusion welding of alloyed steels, Materials Science Forum. 575-578 (2008) 833-836 [10] S.Yu.
Online since: February 2011
Authors: Chang Long Du, Song Yong Liu, Fei Liu, Hao Jiang, Jia Jia Zhang
In this paper board hammer, shaft, coal and gangue were defined as research objects, properties of the materials were listed in Table 1.
Using regular Eight-node hexahedral element to mesh the board hammer, shaft and impact materials, the specific shapes were shown in Fig. 1.
coal gangue Fig. 2 Contact Forcing Process for Material It can be seen from Figure 2: As the materials properties were different, both the impact time and the peak of impact forces were has big difference even the impact velocity and materials size were the same.
Acknowledgements The authors would like to express their grateful for the financial support of the National Natural Science Foundation of China (51005232) and the Natural Science Fund of Jiangsu Province (BK2009098).
[5] Jun Liu: Chinese Journal of Rock Mechanics and Engineering, 2(2004), pp. 635-640.
Using regular Eight-node hexahedral element to mesh the board hammer, shaft and impact materials, the specific shapes were shown in Fig. 1.
coal gangue Fig. 2 Contact Forcing Process for Material It can be seen from Figure 2: As the materials properties were different, both the impact time and the peak of impact forces were has big difference even the impact velocity and materials size were the same.
Acknowledgements The authors would like to express their grateful for the financial support of the National Natural Science Foundation of China (51005232) and the Natural Science Fund of Jiangsu Province (BK2009098).
[5] Jun Liu: Chinese Journal of Rock Mechanics and Engineering, 2(2004), pp. 635-640.