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Online since: August 2013
Authors: Wei Xiang Liu
Nano-ceramic materials had high hardness and wear resistance.
Introduction With the development of science and technology, the existing general material has been difficult to meet the requirements, it is very important to develop and use effectively new materials.
Nano-ceramic thermal spray refers to those spraying materials whose particle size distribute in the range of 1~100nm, those spraying materials have high performance on a substrate. at present, thermal spraying technology has become a very active subject in the field of metal surface science.
References [1] Zhang B.Surface Integrity in Machining Hard-brittle Materials.Journal of Japan Society for Abrasive Technology,2008,47(3)
International Journal of Advanced Manufacturing Technology.
Introduction With the development of science and technology, the existing general material has been difficult to meet the requirements, it is very important to develop and use effectively new materials.
Nano-ceramic thermal spray refers to those spraying materials whose particle size distribute in the range of 1~100nm, those spraying materials have high performance on a substrate. at present, thermal spraying technology has become a very active subject in the field of metal surface science.
References [1] Zhang B.Surface Integrity in Machining Hard-brittle Materials.Journal of Japan Society for Abrasive Technology,2008,47(3)
International Journal of Advanced Manufacturing Technology.
Online since: September 2024
Authors: Hanna Koloskova, Volodymyr Koloskov, Yurii Didovets, Boris Bandurian
Materials and Methods
Contamination by heavy metals as a result of the explosion occurs in the surface layer of the soil, however, their migration deep into the soil layer is possible in the future.
Journal of Hazardous Materials. 164/2–3 (2009) 1386–1391
International Journal of Environmental Science and Technology. 16 (2019) 4989–4996
Wang, Synthesis of Ordered Mesoporous Carbonaceous Materials and Its Highly Efficient Capture of Uranium from Solutions.
Materials Science Forum. 1038 MSF (2021) 407–416
Journal of Hazardous Materials. 164/2–3 (2009) 1386–1391
International Journal of Environmental Science and Technology. 16 (2019) 4989–4996
Wang, Synthesis of Ordered Mesoporous Carbonaceous Materials and Its Highly Efficient Capture of Uranium from Solutions.
Materials Science Forum. 1038 MSF (2021) 407–416
Online since: October 2023
Authors: Daniel Garcia-Garcia, Rafael Balart, Debora Puglia, Franco Dominici, Juan Ivorra-Martinez, Jaume Gomez-Caturla, Luigi Torre
This work reports on the development of thermoplastic starch materials based on mango kernel flour.
Several environmentally friendly materials have been studied as alternatives for petrochemical plastics.
Materials and Methods Materials Mango stones were purchased from a local marmalade company, “El rincon de las Mermeladas (Alicante, Spain).
Field emission scanning electron miscroscopy (FESEM) images of all the TPS materials.
Huneault, Comparison of sorbitol and glycerol as plasticizers for thermoplastic starch in TPS/PLA blends, Journal of Applied Polymer Science 119(4) (2011) 2439-2448
Several environmentally friendly materials have been studied as alternatives for petrochemical plastics.
Materials and Methods Materials Mango stones were purchased from a local marmalade company, “El rincon de las Mermeladas (Alicante, Spain).
Field emission scanning electron miscroscopy (FESEM) images of all the TPS materials.
Huneault, Comparison of sorbitol and glycerol as plasticizers for thermoplastic starch in TPS/PLA blends, Journal of Applied Polymer Science 119(4) (2011) 2439-2448
Online since: February 2019
Authors: Denis B. Solovev, Evgenij Korolev, Ruslan A. Ibragimov, T.R. Deberdeev, V.V. Leksin
Improving the efficiency of construction composites is a relevant problem for modern-day material science.
Introduction The production of construction materials can be made more efficient by implementing new devices with low specific energy and material consumption while featuring a high degree of impact on the processed material.
Effects of supplementary cementitious materials on apparent activation energy.
Journal of ASTM International. 7 (2010) 46-51
Advance cement based materials. 1 (1993) 12–21
Introduction The production of construction materials can be made more efficient by implementing new devices with low specific energy and material consumption while featuring a high degree of impact on the processed material.
Effects of supplementary cementitious materials on apparent activation energy.
Journal of ASTM International. 7 (2010) 46-51
Advance cement based materials. 1 (1993) 12–21
Online since: June 2011
Authors: W.M.A. Ibrahim, A.S. Mohamad Kasim
Physical properties and mechanical properties of this material are affected by the type of binding materials used, the composition of the binding material, and the temperature during drying process.
The mean compressive strength of a sample without binding materials (Experiment 1) is significant lower the mean compressive strength of a sample with binding material (Experiment 2 - 6).
Physical properties and mechanical properties of this material are affected by the type of binding materials used, the composition of the binding material, and the temperature during drying process.
B., S Rajeswari, Development of calcium phosphate based apatite from hen’s eggshell, Journal of Indian Academy of Sciences, Vol. 28 No. 2 (2005), 115–119
Sampath Kumar, A novel route for synthesis of nanocrystalline hydroxyapatite from eggshell waste, Journal of Materials Science: Materials in Medicine, Vol. 18, No. 9 (2007). 1735-1743
The mean compressive strength of a sample without binding materials (Experiment 1) is significant lower the mean compressive strength of a sample with binding material (Experiment 2 - 6).
Physical properties and mechanical properties of this material are affected by the type of binding materials used, the composition of the binding material, and the temperature during drying process.
B., S Rajeswari, Development of calcium phosphate based apatite from hen’s eggshell, Journal of Indian Academy of Sciences, Vol. 28 No. 2 (2005), 115–119
Sampath Kumar, A novel route for synthesis of nanocrystalline hydroxyapatite from eggshell waste, Journal of Materials Science: Materials in Medicine, Vol. 18, No. 9 (2007). 1735-1743
Online since: August 2015
Authors: Miratul Alifah, Vika Ayu Devianti, Amirul Mukminin, Yulia Rachmawati, Ratna Ediati, Muhammad Ainul Fahmi
Currently, the use of porous materials is becoming a concern as a hydrogen storage material.
Among the porous materials, carbon material can become a good hydrogen storage at temperatures above 77 K [3].
Mokaya, Preparation and hydrogen storage capacity of templated and activated carbons nanocast from commercially available zeolitic imidazolate framework, Journal of Materials Chemistry 56 (2011) 120-129
Lun, Enhanced electrochemical hydrogen storage capacity of activated mesoporous carbon materials containing nickel inclusions, International Journal of Hydrogen Energy 35 (2010) 12410-12420
Musselman, Molecular sieving realized with ZIF-8/Matrimid mixed-matrix membranes, Journal of Membrane Science 361 (2010) 28–37.
Among the porous materials, carbon material can become a good hydrogen storage at temperatures above 77 K [3].
Mokaya, Preparation and hydrogen storage capacity of templated and activated carbons nanocast from commercially available zeolitic imidazolate framework, Journal of Materials Chemistry 56 (2011) 120-129
Lun, Enhanced electrochemical hydrogen storage capacity of activated mesoporous carbon materials containing nickel inclusions, International Journal of Hydrogen Energy 35 (2010) 12410-12420
Musselman, Molecular sieving realized with ZIF-8/Matrimid mixed-matrix membranes, Journal of Membrane Science 361 (2010) 28–37.
Online since: September 2013
Authors: Wen Feng Ding, Biao Zhao, Jiu Hua Xu, Jian He, Qing Miao
In Fig. 2(d), the adhered materials coating on the particulates contributed to the formation of large particles.
Lei: Journal of Materials Science Vol. 40 (2005), p. 4387–4390
Strohaecker: Composites Science and Technology Vol. 64 (2004), p. 1495–1501
Ranganath: Journal of Materials Science Vol.32 (1997) p. 1–16
Chrysanthou: Journal of the European Ceramic Society Vol. 28 (2008), p. 1697–1713
Lei: Journal of Materials Science Vol. 40 (2005), p. 4387–4390
Strohaecker: Composites Science and Technology Vol. 64 (2004), p. 1495–1501
Ranganath: Journal of Materials Science Vol.32 (1997) p. 1–16
Chrysanthou: Journal of the European Ceramic Society Vol. 28 (2008), p. 1697–1713
Online since: January 2017
Authors: Ling Li Wang, Shi Quan Feng, Hai Yan Wang
Xiong: Materials, Vol. 8 (2015) No.6, p.3101
Umar: Materials Express, Vol. 5 (2015) No.1, p.3
Hu: Journal of Materials Chemistry A, Vol. 1 (2013) No.29, p.8445
Jana: Progress In Materials Science, Vol. 54 (2009) No.1, p.89
Lee:Materials Science and Engineering: B Vol. 107 (2004) No.1, p.301.
Umar: Materials Express, Vol. 5 (2015) No.1, p.3
Hu: Journal of Materials Chemistry A, Vol. 1 (2013) No.29, p.8445
Jana: Progress In Materials Science, Vol. 54 (2009) No.1, p.89
Lee:Materials Science and Engineering: B Vol. 107 (2004) No.1, p.301.
Online since: November 2011
Authors: Cheng Yao Gao
In this frame, several anode materials have been tested, but some of them presented a rapid loss of activity due to surface fouling (glassy carbon) others released toxic ions (PbO2)[4] and others showed a limited service life (SnO2)[5].
Olivi, Journal of Hazardous Materials, vol. 180(2010), p. 429 [6] J.
Yang, Journal of Hazardous Materials, vol. 179 (2010), p. 762 [7] C.
Gu, Chemical Engineering Journal, vol. 161(2010), p. 93 [8] V.
Jiang, Journal of the Electrochemical Society, vol. 156 (2009), p.
Olivi, Journal of Hazardous Materials, vol. 180(2010), p. 429 [6] J.
Yang, Journal of Hazardous Materials, vol. 179 (2010), p. 762 [7] C.
Gu, Chemical Engineering Journal, vol. 161(2010), p. 93 [8] V.
Jiang, Journal of the Electrochemical Society, vol. 156 (2009), p.
Online since: January 2014
Authors: Hao Wei Wang, Ming Liang Wang, Cong Zhou, Cun Juan Xia
Hall, Journal of Materials Science Vol. 27 (1992) p. 2093
Hall, Journal of Materials Science Vol. 26 (1991) p. 776
Katzman, Journal of Materials Science Vol. 22 (1987) p. 144
Sun, Journal of Materials Science Vol. 44 (2009) p. 4124
Suery, Journal of Materials Science Vol. 32 (1997) p. 3987
Hall, Journal of Materials Science Vol. 26 (1991) p. 776
Katzman, Journal of Materials Science Vol. 22 (1987) p. 144
Sun, Journal of Materials Science Vol. 44 (2009) p. 4124
Suery, Journal of Materials Science Vol. 32 (1997) p. 3987