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Online since: August 2022
Authors: B. Narasimhamurthy, K.H. Hemakumar, N. Padmavathy, M. Manjunatha
The reactions involved in the synthesis process are:
2.3 Material Characterization
Materials synthesized by combustion gel technique are tested for purity by x-ray diffraction studies; morphological studies and atom present weight detection was carried out by SEM-Energy dispersive X-ray spectroscopy.
Valente, Pedro M Padilha, Ario Valdo O Florentino, Chemoshere, volume 64, Issue 7, p1128-1133, Elsevier (2006), https://doi.org/10.1016/j.chemosphere.2005.11.050 [7] Kansal S K, Singh M, Sud D, Journal of Hazardous materials, (2006), Volume 141(3) p581-590, PMID:1691871 https://doi.org/10.1016/j.jhazmat.2006.07.035 [8] Kais Elghniji, Olfa Hentati, Najwa Malik, Journal of Environmental Sciences, Volume 24, Issue 3, p479-487, Elsevier (2012), http://dx.doi.org/10.1021/ie101304a [9] A K Prodjo Santoso, C Kusuma Wardani, M P Utomo, C T Hand Ko, Asian Journal of Chemistry, Volume 29, issue 6, p1270-1274, (2017), https://doi.org/10.1155/2012/626759 [10] Padmavathy N, B Narasimhamurthy, K H Hemakumar, J.
[25] Adimule V, Yallur BC, Bhowmik D, & Gowda AHJ, Materials in Electronics 32(9):2164-12181, Journal of Materials Science(2021), https://doi.org/10.1007/s10854-021-05845-2 [26] Adimule V, Bhowmik D, & Gowda AH, In Macromolecular Symposia Vol 400 No 1:2100065,(2021), https://doi.org/10.1002/masy.202100065 [27] Filip Ambroz, Thomas J, Macdonald Vladimir, Small Methods, Volume 3, Issue 11, 1800173, Advanced Science News (2018), DOI: 10.1002/smtd.201800173 [28] Thammanoon Sreethawong, Supachai Ngamsinlapasathian, Susumu Yoshikawa, Chemical Engineering Journal, Volume 192, p292-300, Elsevier (2012), https://doi.org/10.1016/j.cej.2012.04.006 [29] Ajit Sharma, Byeong-Kyutee, J Environ Manage, Journal of Environmental Management, 181, p563-573, Elsevier (2016), http://dx.doi.org/10.1016/j.jenvman.2016.07.016 [30] Yuan-Chang Liang *, Nian-Cih Xu and Kai-Jen Chiang, Nanomaterials 9(12):1651, MDPI (2019), DOI:10.3390/nano9121651 [31] Mohammad Baugher Gholivand, Yadollah Yamini, Journal of
, Nadia Morin-Crini, Francois Renault, Pierre-Marie Badot, Journal of Hazardous materials, Volume157, Issue1, p34-46, Elsevier(2008), https://doi.org/10.1016/j.jhazmat.2007.12.072 [39] Jianlong wang, Xuan Guo, Journal of Hazardous Materials, Volume 390, 122156, Elsevier (2020), https://doi.org/10.1016/j.jhazmat.2020.122156 [40] Emmanuel D Revellance, Dhan Lord Portela, Wayne Sharp, Cleaner Engineering and Technology, Volume 1, 100032, Elsevier (2020), https://doi.org/10.1016/j.clet.2020.100032 [41] M Rajeswari Kulkarni, T Revanth, Anirudh Acharya, Prasad Bhat, Resource-Efficient Technologies, Volume3, Issue 1, p71-77, Elsevier (2017), https://doi.org/10.1016/j.reffit.2017.01.009 [42] Adimule V, Yallur B.C & Keri R, Top Catal(2022), Springer Nature(2022), http://doi.org/10.1007/s11244-022-01574-w [43] A Gnanaprakasam, V M Sivakumar, M Thirumarimurugan, Indian Journal of Material Science, Volume 2015, Article ID 601827, Hindawai Publication (2015), https://doi.org/10.1155/2015/601827
[44] C Y Beh, E M Cheng, N F Mohd Nasir, Emma Ziezie Mohd Tarmizi, Journal of Materials Research and Technology, Volume 9, Issue 6, p14267-14282, Elsevier (2020), https://doi.org/10.1016/j.jmrt.2020.10.012
Valente, Pedro M Padilha, Ario Valdo O Florentino, Chemoshere, volume 64, Issue 7, p1128-1133, Elsevier (2006), https://doi.org/10.1016/j.chemosphere.2005.11.050 [7] Kansal S K, Singh M, Sud D, Journal of Hazardous materials, (2006), Volume 141(3) p581-590, PMID:1691871 https://doi.org/10.1016/j.jhazmat.2006.07.035 [8] Kais Elghniji, Olfa Hentati, Najwa Malik, Journal of Environmental Sciences, Volume 24, Issue 3, p479-487, Elsevier (2012), http://dx.doi.org/10.1021/ie101304a [9] A K Prodjo Santoso, C Kusuma Wardani, M P Utomo, C T Hand Ko, Asian Journal of Chemistry, Volume 29, issue 6, p1270-1274, (2017), https://doi.org/10.1155/2012/626759 [10] Padmavathy N, B Narasimhamurthy, K H Hemakumar, J.
[25] Adimule V, Yallur BC, Bhowmik D, & Gowda AHJ, Materials in Electronics 32(9):2164-12181, Journal of Materials Science(2021), https://doi.org/10.1007/s10854-021-05845-2 [26] Adimule V, Bhowmik D, & Gowda AH, In Macromolecular Symposia Vol 400 No 1:2100065,(2021), https://doi.org/10.1002/masy.202100065 [27] Filip Ambroz, Thomas J, Macdonald Vladimir, Small Methods, Volume 3, Issue 11, 1800173, Advanced Science News (2018), DOI: 10.1002/smtd.201800173 [28] Thammanoon Sreethawong, Supachai Ngamsinlapasathian, Susumu Yoshikawa, Chemical Engineering Journal, Volume 192, p292-300, Elsevier (2012), https://doi.org/10.1016/j.cej.2012.04.006 [29] Ajit Sharma, Byeong-Kyutee, J Environ Manage, Journal of Environmental Management, 181, p563-573, Elsevier (2016), http://dx.doi.org/10.1016/j.jenvman.2016.07.016 [30] Yuan-Chang Liang *, Nian-Cih Xu and Kai-Jen Chiang, Nanomaterials 9(12):1651, MDPI (2019), DOI:10.3390/nano9121651 [31] Mohammad Baugher Gholivand, Yadollah Yamini, Journal of
, Nadia Morin-Crini, Francois Renault, Pierre-Marie Badot, Journal of Hazardous materials, Volume157, Issue1, p34-46, Elsevier(2008), https://doi.org/10.1016/j.jhazmat.2007.12.072 [39] Jianlong wang, Xuan Guo, Journal of Hazardous Materials, Volume 390, 122156, Elsevier (2020), https://doi.org/10.1016/j.jhazmat.2020.122156 [40] Emmanuel D Revellance, Dhan Lord Portela, Wayne Sharp, Cleaner Engineering and Technology, Volume 1, 100032, Elsevier (2020), https://doi.org/10.1016/j.clet.2020.100032 [41] M Rajeswari Kulkarni, T Revanth, Anirudh Acharya, Prasad Bhat, Resource-Efficient Technologies, Volume3, Issue 1, p71-77, Elsevier (2017), https://doi.org/10.1016/j.reffit.2017.01.009 [42] Adimule V, Yallur B.C & Keri R, Top Catal(2022), Springer Nature(2022), http://doi.org/10.1007/s11244-022-01574-w [43] A Gnanaprakasam, V M Sivakumar, M Thirumarimurugan, Indian Journal of Material Science, Volume 2015, Article ID 601827, Hindawai Publication (2015), https://doi.org/10.1155/2015/601827
[44] C Y Beh, E M Cheng, N F Mohd Nasir, Emma Ziezie Mohd Tarmizi, Journal of Materials Research and Technology, Volume 9, Issue 6, p14267-14282, Elsevier (2020), https://doi.org/10.1016/j.jmrt.2020.10.012
Online since: January 2013
Authors: Zhi Qiang He, Lei Tong, Tie Dan Gao
Development of new intelligent High potential therapeutic apparatus with intelligent materials
Lei Tong1, a, Tiedan Gao 2,b and ZhiQiang He 2,c*
1Guangdong Vocational College of Mechanical and Electrical Technology, Guangzhou, China
2School of Biomedical Engineering, Southern Medical University, Guangzhou, China
a957426228@qq.com, b443676017@ qq.com, c571611621@qq.com,
* Correspondence to: Dr HE Zhi-qiang , Institute of Biomedical Engineering, Southern Medical University,Guangzhou 510515, China.
Acknowledgement This article is supported by: subject of science and technology in Guangdong province (2009A030200008).
References [1] Xu Xiaomei, Clinical application of high potential therapeutic equipments: Chinese Journal of Convalescent Medicine, Vol.5 (1) (1996), P.28-30
[2] Tang Mengyu, The curative effect observation of high potential therapeutic apparatus for treatment of neurasthenic: Chinese Journal of Convalescent Medicine (2006)
[4] Lou Huijun, The research of Ac high potential treatment: Chinese Journal of Clinical Rehabilitation, Vol.6(12) (2002), P.3742-3743,
Acknowledgement This article is supported by: subject of science and technology in Guangdong province (2009A030200008).
References [1] Xu Xiaomei, Clinical application of high potential therapeutic equipments: Chinese Journal of Convalescent Medicine, Vol.5 (1) (1996), P.28-30
[2] Tang Mengyu, The curative effect observation of high potential therapeutic apparatus for treatment of neurasthenic: Chinese Journal of Convalescent Medicine (2006)
[4] Lou Huijun, The research of Ac high potential treatment: Chinese Journal of Clinical Rehabilitation, Vol.6(12) (2002), P.3742-3743,
Online since: March 2024
Authors: Agus Yulianto, Bambang Waluyo Febriantoko, Agung Setyo Darmawan, A'an Candra Mustika, Patna Partono
This can be overcome by using materials that have hard and ductile properties.
Konečná, Microstructure and mechanical properties of pearlitic gray cast iron, Materials Science and Engineering: A 488(1–2) (2008) 529-539 [3] J.
Wang, Synergy of ball-milling and pre-oxidation on microstructure and corrosion resistance of hot-dip zinc coating of nodular cast iron, Journal of Materials Research and Technology 16 (2022) 1402-1412 [9] A.
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Konečná, Microstructure and mechanical properties of pearlitic gray cast iron, Materials Science and Engineering: A 488(1–2) (2008) 529-539 [3] J.
Wang, Synergy of ball-milling and pre-oxidation on microstructure and corrosion resistance of hot-dip zinc coating of nodular cast iron, Journal of Materials Research and Technology 16 (2022) 1402-1412 [9] A.
Darmawan, Teaching Finite Element Method of Structural Line Elements Assisted by Open Source FreeMat, Research Journal of Applied Sciences, Engineering and Technology 4(10) (2012) 1277-1286 [21] A.
Setiawan, Microstructure and hardness of gray cast iron as a product of solidification in permanent mold, Materials Science Forum 991 (2020) 37-43 [22] A.S.
Online since: August 2018
Authors: K. Kadirgama, A.F. Ismail, W.N.W. Salleh, N. Sazali, F.E.C. Othman
Experimental Section
Materials.
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Online since: January 2026
Authors: Ashok Kumar Palaniappan, V. P. Pradeep, R. Karthikeyan, Kumar G. Aravind, M. Vignesh
Advances in Materials Science and Engineering, 2021, 5756563
Materials Science Forum, 1120, 61–67
Materials, 11(8), 1333
International Journal of Lightweight Materials and Manufacture, 2(4), 267–278
Bilecik Şeyh Edebali University Journal of Science and Engineering, 10(1), 196–202.
Materials Science Forum, 1120, 61–67
Materials, 11(8), 1333
International Journal of Lightweight Materials and Manufacture, 2(4), 267–278
Bilecik Şeyh Edebali University Journal of Science and Engineering, 10(1), 196–202.
Online since: June 2020
Authors: Gandjar Kiswanto, Tae Jo Ko, Adrian Mandala, Maulana Azmi, Dede Lia Zariatin
Therefore, this research will do mapping the cutting parameter of both materials to get the characteristics or different behavior of the machining process on poor machinability materials and excellent machinability materials.
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Journal of Materials Science & Technology, 28(8), 673–685. doi:10.1016/s1005-0302(12)60115-7
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State of the Art on Micromilling of Materials, a Review.
Journal of Materials Science & Technology, 28(8), 673–685. doi:10.1016/s1005-0302(12)60115-7
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Online since: June 2010
Authors: Qun Hui Wang, Jian Guo Liu, Hong Zhi Ma, Shuang Wang
Meanwhile microwave chemistry with the feature of high thermal efficiency and
easy operation, is adopted recently on such raw materials for further utilization
Such research could facilitate the fast hydrolysis of raw materials and reduce the experimental time.
Materials and methods Materials Solid vinasse: They are residues taken from one wine plant in Beijing, using sorguhm as brewing raw materials and rice husk as auxiliary materials to regulate voidage then fermentation.
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Such research could facilitate the fast hydrolysis of raw materials and reduce the experimental time.
Materials and methods Materials Solid vinasse: They are residues taken from one wine plant in Beijing, using sorguhm as brewing raw materials and rice husk as auxiliary materials to regulate voidage then fermentation.
China Environmental Science 2002,22(1):24-27.
Journal of Cellulose Science and Technology, 2004,12(1):1-6.
Online since: September 2013
Authors: Hsi Hsin Chien, Choung Lii Chao, Kung Jeng Ma, Su Wei Huang, Shi Chang Chen
The similar low temperature sintering behavior has been observed in other materials.
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Online since: May 2015
Authors: Beata Stankiewicz
Good exploration of new materials, like composite GFRP creates a possibility to improve this technology and make comparison analysis with traditional standard of materials.
Composite materials are the future of building structures.
Keller, has published the results of scanned analysis of GFRP Fiberline composite materials [6].
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Journal of Materials Science and Engineerinig A 4 (9) 2014 p.282-289
Composite materials are the future of building structures.
Keller, has published the results of scanned analysis of GFRP Fiberline composite materials [6].
International Journal of Fatigue 33 (2011) p. 1451-1460
Journal of Materials Science and Engineerinig A 4 (9) 2014 p.282-289
Online since: February 2007
Authors: János Dobránszky, György Ring, Eszter Bognár
Dobránszky
2,c
1
Budapest University of Technology and Economics, Department of Materials Science
and Engineering.
The flexibility of stents' materials is extremely important.
The most widely used stent materials are 316L and 316LVM.
Journal of Materilas Science, 35 (2000) 1699-1705
Materials Today, 7. (2004:5) 13
The flexibility of stents' materials is extremely important.
The most widely used stent materials are 316L and 316LVM.
Journal of Materilas Science, 35 (2000) 1699-1705
Materials Today, 7. (2004:5) 13