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Online since: March 2015
Authors: Nathalie Boudeau, Abir Abdelkefi, Pierrick Malecot, Noamen Guermazi, Gérard Michel
References
[1] Ahmetoglu.M., Altan.T., Tube hydroforming: state-of-the-art and future trends, Journal of materials Processing Technology, 98 (2000) 25-33
[2] Kridli G.T., Bao.L., Mallick P-K., Tian.Y., Investigation of thickness variation and corner filling in tube hydroforming, Journal of Materials Processing Technology, 33 (2003) 287-296
[6] Vollertsen F., Plancak M., On possibilities for the determination of the coefficient of friction in hydroforming of tubes, Journal of materials Processing Technology, 125-126 (2002) 412-420
[9] Orban H., Hu S.J., Analytical modeling of wall thinning during corner filling in structural tube hydroforming, Journal of Materials Processing Technology, 194 (2007) 7–14
[10] Xu X., Li S., Zhang W., Lin Z., Analysis of thickness distribution of square-sectional hydroformed parts, Journal of Materials Processing Technology, 209 (2009) 158–164
[2] Kridli G.T., Bao.L., Mallick P-K., Tian.Y., Investigation of thickness variation and corner filling in tube hydroforming, Journal of Materials Processing Technology, 33 (2003) 287-296
[6] Vollertsen F., Plancak M., On possibilities for the determination of the coefficient of friction in hydroforming of tubes, Journal of materials Processing Technology, 125-126 (2002) 412-420
[9] Orban H., Hu S.J., Analytical modeling of wall thinning during corner filling in structural tube hydroforming, Journal of Materials Processing Technology, 194 (2007) 7–14
[10] Xu X., Li S., Zhang W., Lin Z., Analysis of thickness distribution of square-sectional hydroformed parts, Journal of Materials Processing Technology, 209 (2009) 158–164
Online since: February 2011
Authors: Imtiaz Ahmed Choudhury, M. Azuddin, Z. Taha
Hoyle: Journal of Materials Processing Technology Vol. 189 (2007), p.418
[3] C.
Zhao: Journal of Materials Processing Technology Vol. 187–188 (2007), p.668 [6] C.K.
Hsu: Materials Science and Engineering A Vol. 460–461 (2007), p.288 [15] C.H.
Pakkanen: Optical Materials Vol. 30 (2007), p.285 [20] H.
Huang: Journal of Materials Processing Technology Vol. 184 (2007), p.163 [24] C.K.
Zhao: Journal of Materials Processing Technology Vol. 187–188 (2007), p.668 [6] C.K.
Hsu: Materials Science and Engineering A Vol. 460–461 (2007), p.288 [15] C.H.
Pakkanen: Optical Materials Vol. 30 (2007), p.285 [20] H.
Huang: Journal of Materials Processing Technology Vol. 184 (2007), p.163 [24] C.K.
Online since: August 2009
Authors: Cheng Ji Deng, Hong Xi Zhu, Yi Yu, Wei Zhou
Our experiments showed
that use these materials can synthesize Al8B4C7, and the final product is closely related to the
temperature and ratio of raw materials.
The molar ratios of raw materials and sintering schedule of the samples are summarized in Table 1.
In addition, the shape of most grains in sintered samples was irregular, and there were also a few of grains having the shape of prism or sheet, the size of the grains were about several microns. 4 Conclusions (1) Assumed Al was the reducing agent, use aluminum, borax and carbon powders as raw materials can produce the composite materials contain Al8B4C7, and the final products were related to the temperature and the ratio of the raw materials
While the raw materials of carbon overdose, more Al8B4C7 were generated with the carbon increased, for this we believe that carbon is good for synthesis
[8] Liao Lulin, Tan Hongshou, Jiang Dongliang, Journal of Inorganic Materials, 2002, 17[2]: 265-270 [9] V.S.Neshpor, Refra.Indus.Ceram., 2003, 44(2): 89-90
The molar ratios of raw materials and sintering schedule of the samples are summarized in Table 1.
In addition, the shape of most grains in sintered samples was irregular, and there were also a few of grains having the shape of prism or sheet, the size of the grains were about several microns. 4 Conclusions (1) Assumed Al was the reducing agent, use aluminum, borax and carbon powders as raw materials can produce the composite materials contain Al8B4C7, and the final products were related to the temperature and the ratio of the raw materials
While the raw materials of carbon overdose, more Al8B4C7 were generated with the carbon increased, for this we believe that carbon is good for synthesis
[8] Liao Lulin, Tan Hongshou, Jiang Dongliang, Journal of Inorganic Materials, 2002, 17[2]: 265-270 [9] V.S.Neshpor, Refra.Indus.Ceram., 2003, 44(2): 89-90
Online since: January 2013
Authors: Xian Zheng Gong, Su Ping Cui, Chen Li, Hong Tao Wang, Xian Ce Meng
In 2010, SINOMA Corporation Branch in Tianjin City measured the heat balance and materials balance.
Coal &Raw materials input Coal &Raw meal grinding Calciner MSC Incineration Low-Nox burner Clinker Electricity NOx Transportation Cement plant boundary Fig. 1 Low-NOx system The energy and raw materials input.
The fans and kiln hood electricity station are the primary consumer.The ratio of mass of raw materials to clinker is 1.66.
CO2 Emissions from Typical Cement Plants in China [J], Journal of Shanghai Jiaotong University, 17 (2012) 341-344
CO2 Emissions due to Cement Manufacture [J], Material Science Forum, 685 (2011) 181-187.
Coal &Raw materials input Coal &Raw meal grinding Calciner MSC Incineration Low-Nox burner Clinker Electricity NOx Transportation Cement plant boundary Fig. 1 Low-NOx system The energy and raw materials input.
The fans and kiln hood electricity station are the primary consumer.The ratio of mass of raw materials to clinker is 1.66.
CO2 Emissions from Typical Cement Plants in China [J], Journal of Shanghai Jiaotong University, 17 (2012) 341-344
CO2 Emissions due to Cement Manufacture [J], Material Science Forum, 685 (2011) 181-187.
Online since: November 2017
Authors: U. Achutha Kini, S.R. Harisha, Sathyashankara Sharma
[2] Harisha, S R and Sharma, S S and Kini, Achutha U “Influence of Spheroidizing Heat Treatment on Mechanical Properties of EN47 Steel” Materials Science Forum, 880. pp. 136-139.
ISSN 1662-9752, 2016 [3] Atanu Saha, Dipak Kumar Mondal, JoydeepMaity, “Effect of cyclic heat treatment on microstructure and mechanical properties of 0.6wt% carbon steel”, Materials Science and Engineering: A, 537(16-17):4001-4007, 2010
[4] Jing Yuan Li, SumioSuguyama, Jun Yanagimoto, Yu-Lai Chen, Guang-Wei Fan, “Effect of peritectic reaction on microstructural spheroidization in semi-solid state”, Journal of Materials Processing Technology, 208(1):165-170, 2007
Im, “Effect of initial microstructure on mechanical properties in warm caliber rolling of high carbon steel”, Materials Science and Engineering, 528(18):5833-5839, 2011
[6] Young-Won Lee, Young-II Son, Seok-Jae Lee, “Microstructure and mechanical properties of spheroidized D6AC steel”, Materials Science and Engineering: A, 585:94-99, 2013.
ISSN 1662-9752, 2016 [3] Atanu Saha, Dipak Kumar Mondal, JoydeepMaity, “Effect of cyclic heat treatment on microstructure and mechanical properties of 0.6wt% carbon steel”, Materials Science and Engineering: A, 537(16-17):4001-4007, 2010
[4] Jing Yuan Li, SumioSuguyama, Jun Yanagimoto, Yu-Lai Chen, Guang-Wei Fan, “Effect of peritectic reaction on microstructural spheroidization in semi-solid state”, Journal of Materials Processing Technology, 208(1):165-170, 2007
Im, “Effect of initial microstructure on mechanical properties in warm caliber rolling of high carbon steel”, Materials Science and Engineering, 528(18):5833-5839, 2011
[6] Young-Won Lee, Young-II Son, Seok-Jae Lee, “Microstructure and mechanical properties of spheroidized D6AC steel”, Materials Science and Engineering: A, 585:94-99, 2013.
Online since: March 2009
Authors: Rainer Hock, Peter J. Wellmann, Ulrike Künecke, Philip Hens, Katja Konias
Wellmann1,e
1
Department of Material Science - Electrical Engineering Materials (WW6), University of
Erlangen-Nuremberg, Martensstr. 7, 91058 Erlangen, Germany
2
Institute for Crystallography, University of Erlangen-Nürnberg, Staudtstrasse 3, 91058
Erlangen, Germany
a
philip.hens@ww.uni-erlangen.de, bulrike.kuenecke@ww.uni-erlangen.de,
ckatja.konias@krist.uni-erlangen.de, drainer.hock@krist.uni-erlangen.de,
e
peter.wellmann@ww.uni-erlangen.de
Keywords: bulk growth, germanium, EDX, Hall, lattice parameters, dislocations
Abstract.
The change in lattice parameters has also been shown in ion implanted material [6].
Goeken: Materials Science Forum Vols. 556-557 (2007), p. 259 [2] K.
Spaeth: Materials Science Forum Vols. 338-342 (2000), p. 785 [8] S.
Wellmann: Journal of Crystal Growth Vol. 289 (2006), p. 520
The change in lattice parameters has also been shown in ion implanted material [6].
Goeken: Materials Science Forum Vols. 556-557 (2007), p. 259 [2] K.
Spaeth: Materials Science Forum Vols. 338-342 (2000), p. 785 [8] S.
Wellmann: Journal of Crystal Growth Vol. 289 (2006), p. 520
Online since: February 2014
Authors: Bo Zhang, Pei Yang Shi, Mao Fa Jiang, Cheng Jun Liu, Wen Hai Chi
Sodium dichromate and chromium anhydride could be prepared by electrolytic method, when sodium chromate were used as raw materials.
Cooper et al.[30] used ferrochrome alloy as raw materials to produce the qualified sodium chromate and sodium dichromate.
Journal of Hazardous Materials.
Journal of Environmental Quality.
Journal of Ecotechnology Research.
Cooper et al.[30] used ferrochrome alloy as raw materials to produce the qualified sodium chromate and sodium dichromate.
Journal of Hazardous Materials.
Journal of Environmental Quality.
Journal of Ecotechnology Research.
Online since: December 2012
Authors: Jianxin Lu, Jia Xing Wu, Hua Long, Jun Yu, Chong Ying Zheng, Gan Ning Zeng, Yan Zhou
Materials and methods
Study area
The study area is the Zhejiang coastal water zone, which covers from 27°10′N to31°30′N, from 120°32′E to 123°28′E, as shown in Fig.1.
Journal of coastal research, Vol.
Science and Art.
Journal of Geographical Sciences, Vol.16 (2006), p. 447-457
Journal of natural disasters.
Journal of coastal research, Vol.
Science and Art.
Journal of Geographical Sciences, Vol.16 (2006), p. 447-457
Journal of natural disasters.
Online since: March 2018
Authors: Danut Nicolae Tarnita, Alin Petcu
Therefore, we chose to use a lightweight material, but with a high resistance to the housing - Duralumin - a good strength / weight ratio.
Chu-Fen, Biomechanics of human movement and its clinical applications, Kaohsiung Journal of Medical Sciences. 28 (2012) 13-25
In “New Trends on Medical and Service Robotics: Challenges and Solutions”, Mechanisms and Machine Science. 20 (2014) 283-297 [12] C.
Alexandru, Software platform for analyzing and optimizing the mechanical systems, Proceedings of the 10th IFToMM International Symposium on Science of Mechanisms and Machines – SYROM. (2009) 665-677 [13] Geonea, et al., Design and Simulation of a Single DOF Human-Like Leg Mechanism, In: Applied Mechanics and Materials.
Catana, et al., Modelling, Simulation and Optimization of a Human Knee Orthotic Device, Applied Mechanics and Materials. 371, (2013) 549-553
Chu-Fen, Biomechanics of human movement and its clinical applications, Kaohsiung Journal of Medical Sciences. 28 (2012) 13-25
In “New Trends on Medical and Service Robotics: Challenges and Solutions”, Mechanisms and Machine Science. 20 (2014) 283-297 [12] C.
Alexandru, Software platform for analyzing and optimizing the mechanical systems, Proceedings of the 10th IFToMM International Symposium on Science of Mechanisms and Machines – SYROM. (2009) 665-677 [13] Geonea, et al., Design and Simulation of a Single DOF Human-Like Leg Mechanism, In: Applied Mechanics and Materials.
Catana, et al., Modelling, Simulation and Optimization of a Human Knee Orthotic Device, Applied Mechanics and Materials. 371, (2013) 549-553
Online since: September 2011
Authors: Zhang Wei, Chuan Xiong Fu, Lu Feng Yang, Jin Zhang
In the design specification [7], the circumferential reinforcement and the steel lining of the SLRCP are the main bearing materials, while the longitudinal reinforcement is allocated to bearing temperature changing stress [8].
The material parameters are listed in Table 1.
[5] Wei Zhang, Lufeng Yang and Xiaofeng Han: Chinese Journal of Hydraulic Engineering, Vol. 40(2009), p. 1175-1183, in Chinese
[6] Wei Zhang, Lufeng Yang and Xiaofeng Han: Chinese Journal of Hydroelectric Engineering, Vol. 29(2010), p. 71-179, in Chinese
[11] Wei Zhang, Hegao Wu and Congbao Wang: Chinese Journal of Hydroelectric Engineering, Vol, 25(2006): p. 34~38,in Chinese.
The material parameters are listed in Table 1.
[5] Wei Zhang, Lufeng Yang and Xiaofeng Han: Chinese Journal of Hydraulic Engineering, Vol. 40(2009), p. 1175-1183, in Chinese
[6] Wei Zhang, Lufeng Yang and Xiaofeng Han: Chinese Journal of Hydroelectric Engineering, Vol. 29(2010), p. 71-179, in Chinese
[11] Wei Zhang, Hegao Wu and Congbao Wang: Chinese Journal of Hydroelectric Engineering, Vol, 25(2006): p. 34~38,in Chinese.