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Online since: January 2018
Authors: V.C.C. Lee, Noman Khandoker, Sumaiya Islam, Yik Vui Kong
Cronin: Journal of Manufacturing Science and Engineering 117(3) (1995): 316-322
Barkey: Journal of Engineering Materials and Technology 127(3) (2005):310-317
Shang: Materials & Design 30(4) (2009): 1008-1013
Chao: Journal of Engineering Materials and Technology 125(2) (2003):125-132
Takla: Materials & Design 54 (2014): 323-330
Online since: December 2010
Authors: Hua Li, Zi Yang Cao
Li: Journal of Microfabrication Technology, Vol. 11 (2006) No.3, p.1-5 [2] J.
Kapoor: Journal of Manufacturing Science and Engineering, Vol. 126 (2004) No. 3, p.666-678 [4] M.
Fischer, and M.Vos: Journal. of Nanotechnology, Vol. 192 (1997) No. 8, p.145-148 [5] T.
Schaller: Journal of Precision Engineering, Vol. 23 (1999) No. 2, p.229-235 [11] Y.
Mishima, Journal of Manufacturing Science and Engineering, Vol. 126 (2004) No. 5, p.837-844 [13] W.
Online since: September 2012
Authors: Kinji Asaka, Tadashi Ihara, Taro Nakamura
It is expected to be one of the most promising materials for artificial muscle and other medical devices.
Proc. 8th SICE System Integration Division Annual Conference: 223-224 [7] Fujiwara N, Asaka K, Nishimura Y, Oguro K, and Torikai E (2000) Preparation of Gold-Solid Polymer Electrolyte Composites as Electric Stimuli-Responsive Materials.
Nishimura, Oguro K, Torikai E (2000) Preparation of Gold-Solid Electrolyte Composites as Electric Stimuli-Responsive Materials.
Materials 12:1750-1754 [9] de Gennes PG, Okumura K, Shahinpoor M, Kim KJ (2000) Mechanoelectric effects in ionic gels.
Journal of Intelligent Material Systems and Structures 14:343-357 [12] Asaka K, Oguro K, Nishimura Y, Mizuhata M, and Takenaka H (1995) Bending of Polyelectrolyte Membrane-Platinum Composites by Electric Stimuli I.
Online since: May 2021
Authors: Moses E. Emetere, T.O.C. Adedayo, Sunday Adeniran Afolalu
This is a naturally biodegradable material that decays over time.
Photovoltaic Solar Spectral Filtering Using Bio-Filters, Academic Journal of Interdisciplinary Studies, 9:148 [2].
Yu X., Shou W., Mahajan B.K., Huang X., Pan H., (2018), Materials, processes, and facile manufacturing for bioresorbable electronics: A review.
Ishikawa Tsutomu, Masataka Masuda, Yasunori Hayashi (1999), Characterization on the Electrical Properties of Copper Nitride Thin Films and the Effects of Hydrogen Implantation, The Japan Institute of Metals and Materials, 63(5): 621-624 [15].
Liu X., Shi M., Luo Y., Zhou L., Loh Z.R., Oon Z.J., Lian X., Wan X., Chong F.B.L., Tong Y., (2020), Degradable and Dissolvable Thin-Film Materials for the Applications of New-Generation Environmental-Friendly Electronic Devices.
Online since: September 2014
Authors: Yong Jiang, Jiu Ren Yin, Wen Fu Zeng, Yan Huai Ding
Handbook of polymer matrix composite materials[M].
Preparation and properties of EP/ZnO hybrid materials[J].
Polymer Materials Science & Engineering, 2005, 21(5):261-265
Journal of Materials Engineering, 2011, (12): 78-82
Chinese Journal of Inorganic Chemistry, 2010, 26(1): 96-100.
Online since: November 2013
The ModTech2013 International Conference became a major conference to exchange the new ideas of science and technology among Europe, Asia and USA researchers and scientists and provide a forum to present their new results focused on the main topics of the conference.
The main publication of ModTech2013 International Conference were as follow: International Journal of Materials & Product Technology, Indian Journal of Engineering & Materials Sciences, Materials Science-Poland, International Journal of Modern Manufacturing Technologies and Advanced Materials Research-AMR" by Trans Tech Publications Inc.
Petersburg, Russia Mihai GOANTA, "Dunarea de Jos" University of Galati, Romania Nil GULER, Istanbul Technical University, Turkey Traian GRAMESCU, "Gheorghe Asachi" Technical University of Iasi, Romania Huran LIU, Zhejiang University of Science and Technology, China Alexandru EPUREANU, "Dunarea de Jos" University of Galati, Romania Cornel IOANA Politechnical Institute, Grenoble, France Romeo IONESCU, "Stefan cel Mare" University of Suceava, Romania Gabriel KOST, Silesian University of Technology, Gliwice, Poland Vasile KRIVTOV, University of Michigan, USA Chris LACOR, Vrije University, Brussels, Belgium Peter LORENZ, University of Applied Sciences Saarbrücken, Germany Nouras LUPULESCU, "Transilvania" University of Brasov, Romania Sarwoko MANGKOEDIHARDJO, Tenth of November Institute of Technology, Surabaya,Indonesia Alexandr MALIARENCO, National Technical University of Belarus, Belarus Arkadiusz MEZYK,Silesian University of Technology, Gliwice, Poland Boyan
Advances in Composite Materials and Technologies: Advanced Metals, Ceramics and Polymers; Bio-Materials; Recycling of Materials: President: Prof.
Micro- and Nano- Technologies: New Developments in Micro/Nano Scale Processes; Fabrication of Nanostructure and Materials: Nanofilms, Nano-bubbles, Nano-droplets, Nanofluids: President: Prof.
Online since: May 2017
Authors: Abdulaziz N. AlHazaa
It can be seen that the joint region is rich in Sn for bond made at 540 C and then Sn rich region reduced with the increase of bonding temperature due to the diffusion of Sn into the base materials and the dissolution of the base materials into the joint region.
Sakakibara, Materials Science forum, Vol 235, 187-192, 1996
Khan, Journal of Materials Processing Technology 214 (2014) 3158-3168
Shar, Journal of King Saud University (Science), Volume 28, Issue 2, 152-159, 2016
Reddy, Jong-Taek Yeom, Chong Soo Lee, Journal of Materials Processing Technology 187:766-769.  
Online since: October 2012
Authors: Yan Li Jiang, Mei Tian, Jia Yao Liu, Li Juan Yang, Rui Hai Cui
Intorduction ZnO is a very important wide bandgap semiconductor materials, with a direct bandgap of 3.37 eV at room temperature, a high exciton binding energy of 60 meV, excellent chemical and thermal stability and its specific electrical and optoelectronic property[1].
The principle of Sol-Gel method is mainly hydrolysis and condensation reaction of raw materials.
Experimental Materials and instruments.
Acknowledgement This work was supported by the Creative Talent Fund of Harbin Municipal Science and Technology (No. 2010RFQXG019)..
Radosz, Zn0 schottky ultraviolet photodetecors, Journal of Crystal Growth, 215(3) (2001) 110-113
Online since: April 2011
Authors: Ming Ding, Sheng Lian Lu, Lei Li, Dan Feng Huang
Materials for seedling production are multifarious, and have strict storage conditions.
Fig. 4 BOM model of the grafted seedling production process The key to a successful ERP system begins with the bill of materials (BOM).
The production schedule quantifies significant seedling production phases, materials, equipments and greenhouse arrangements in order to identify production bottlenecks and to anticipate needs.
Agricultural materials such as seeds, fertilizer, and pesticide generally are deteriorating items, so inventory management is important to the cost control for a seedling enterprise.
Huang: ER Model and Implementation of Management Information System for the Safety Production of Green Leafy Vegetables Based on HACCP: Journal of Shanghai Jiaotong University (Agricultural Science) Vol. 28 (2010) p.470-473 [8] D.R.
Online since: February 2014
Authors: Huan Huan Lu, Fan Song Wei, Fan Na Wei
The Phase Structure and Electrochemical Properties of La4MgNi19-xCox(x=0~2) Hydrogen Storage Alloys Huanhuan Lu a, Fansong Wei b and Fanna Wei c Department of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang, Jiangsu, 212003, China aluhuanhuannjit@163.com, bzju.wei@yahoo.com.cn, cfanna0815@126.com Keywords: hydrogen storage alloy, A5B19 type, crystal structure, electrochemical property, La-Mg-Ni system.
Introduction In recent years , as the negative electrode materials of nickel/metal hydride(Ni/MH) secondary batteries, hydrogen storage alloys have attracted extensive attention and undergo considerable development[1-3].
Journal of Alloys and Compounds, 2004, 376(1/2): 186−195
Functional Materials, 2006, 37(2): 265−268.
[18] Zhou Zeng-lin, Song Yue-qing, Cui Shun, Lin Chen-guang, GUO Zhi-meng, QUXuan-hui.Rare Metal Materials and Engineering, 2008,37 (6):964-969.
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