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Online since: August 2019
Authors: Kondaiah Gudimetla, Perumal Venkatachalam, S. Ramesh Kumar, Rajendara Rao Krishnaji Rao Vittel Rao, Mariappan Senthil Kumar
Chip consolidated nano/bimodal structured materials can be produced with tailored properties and these materials can be potentially used in aerospace to bio-medical applications [9].
He also thank Department of Metallurgical and Materials Engineering, NIT-T for providing technical support.
Langdon, Principles of equal-channel angular pressing as a processing tool for grain refinement, Progress in Materials Science 51 (2006) 881–981
Langdon, “Using high-pressure torsion for the cold-consolidation of copper chips produced by machining”, Materials Science and Engineering A, 486 (2008) 123–126
[10] Kondaiah Gudimetla, S Ramesh Kumar, B Ravisankar, R Prasad Prathipati and S Kumaran, Consolidation of commercial pure aluminum particles by hot ECAP, IOP Conference Series: Materials Science and Engineering 330 (2018) 012031.
Online since: January 2025
Authors: Rana Muhammad Waqas, Sameer Ali
GPC utilizes alumina and silica-rich materials activated by an alkaline solution, leading to reduced energy consumption, CO2 emissions, and overall costs through the effective utilization of waste materials [6].
Journal of King Saud University - Engineering Sciences, 33(1), 15-22.doi: https://doi.org/10.1016/j.jksues.2020.01.001 [3] Reis, N., de Brito, J., Correia, J.
Construction and Building Materials, 300, 123976. doi: https: //doi.org/10.1016/j.conbuildmat.2021.123976 [9] Quan Tran, V., Quoc Dang, V., & Si Ho, L. (2022).
Journal of King Saud University -Engineering Sciences. doi:https: //doi.org/10.1016/j.jksues.2021.03.006 [10] Nie, Y., Wei, Y., Zhao, K., Ding, M., & Huang, L. (2022).
Construction and Building Materials, 343, 128070. doi: https://doi.org/10.1016/j.conbuildmat. 2022.128070 [12] M., Si, H., Fan, X., Xuan 20, Y., & Zhang, M.
Online since: November 2013
Authors: Bang Biao Huang, Ji Zhen Zhu, Bing Zhang Huang, Jun Lai
Experiments take different ratio of municipal sludge shale brick and flux as materials, making maximum firing temperature of 950℃, finding different sludge lightweight sintered shale bricks’ compressive strength data, finding a suitable ratio to meet the requirements for using as load-bearing walls.
The research group will take the shale and sewage sludge as raw material, mixing exclusive formulated flux, as to study its effect on sewage sludge lightweight Shale-Sintered brick compressive strength, intending to create a new wall material of light, high compressive strength Experiment 1.1 Materials 1.1.1 Shale Shale gets from Guangxi Liuzhou suburb of peace village, deep purple, shale particle distribution in Table1, chemical composition in Table2.
Conclusions (1) It is feasible that the way of using sewage sludge and shale as a raw material of new wall materials.
When mixed with flux (1.5%), you can prepare a high compressive strength of new wall materials
Journal of Environmental Engineering, 2002, 128(11); 128~130; [2] Huang Bangbiao, Jing Jiahua, et al; The research and development of light shale-sintered brick; New Building Materials; 2001; 45~46; [3] Huang Bangbiao, Zhang Xianghua, et al; The content of sludge on the influence of sintering sludge-shale bricks’ compressive strength; Sichuan Building Materials;2012; 3~4.
Online since: June 2010
Authors: Bin Lin, Zhi Lin Han, Bao Xing Zhang, Lei Zhang
The work material was hardened and tempered to 42HRC.
Camuscu: Materials and Design, Vol27 (2006), p.997 [4] Ersan Aslan, Necip Camuscu, Burak Birgoren.: Materials and Design, Vol.28 (2007), p. 1618 [5] Jenn-Tsong Horng, Nun-Ming Liu and Ko-Ta Chiang: Journal of Materials Processing Technology, Vol.1 (2008), p.1 [6] D.I.
Jain: Journal of Materials Processing Technology, Vol.12 (2007), p.15 [7] Anderson P.
Balestrassi: Journal of Materials Processing Technology, Vol.189(1-3) (2007), p.26 [8] Tung-Hsu Hou, Chi-Hung Su and Wang-Lin Liu: Powder Technology, Vol.173 (2007), p.153 [9] Zhijue Han: Three edition designs (China Maching Press, China.1,1992) [10] Tian Xiaolan and Jinpu L.U.: Science Technology and Engineering, Vol.7 (2007), p.678 [11] A.B.
Chen: Key Engineering Materials, Vol.329 (2007), p.421
Online since: May 2021
Authors: A.Yu. Kuzmenko, A.A. Kuznetsov, A.S. Bryukhova, N.V. Volkova
[5] Lin Liu, Qiang Wang, Kai Guo, Research on evaluation method of ultrasonic testing for inspection of concrete jointing surface quality, Applied Mechanics and Materials.
[6] Musab Alhawat, Amir Khan, Ashraf Ashour, Evaluation of steel corrosion in concrete structures using impact-echo method, Advanced Materials Research.
[8] Xiang Yun, Jie Xiao, Research progress of concrete corrosion in acid environment, Advanced Materials Research.
Instruments and methods of measurement, quality control and diagnostics in industry and transport: Materials of the III All-Russian Scientific and Technical Conference with International Participation, OSTU, Omsk. (2018) 14-21.
Hassan Finite, Element modelling of steel corrosion in reinforced concrete cylinders, Advanced Materials Research.
Online since: June 2013
Authors: José Grácio, Frédéric Barlat, Gabriela Vincze, Marilena Butuc
A Theoretical Study of the Effect of the Double Strain Path Change on the Forming Limits of Metal Sheet Marilena Butuc1, a, Frederic Barlat1, 2, b, José Gracio1, c and Gabriela Vincze1,d 1Centre for Mechanical Technology and Automation, University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal 2Pohang University of Science and Technology – Materials Mechanics Laboratory – Republic of Korea acbutuc@ua.pt , bfbarlat@postech.ac.kr , cjgracio@ua.pt, dgvincze@ua.pt Keywords: Forming limits; Plastic flow localization; Strain path change; Anisotropy; Constitutive equations; Numerical simulation Abstract.
Gracio, A theoretical study on Forming Limit Diagrams Prediction, Journal of Materials Processing Technology, Vol, 142, Issue 3 (2003) 714-724
Metallurgical and Materials Transactions A24, (1993) 2503
International Journal of Material Forming, DOI 10.1007/s12289-009-0667-6 (2009)
[21] 3DS Report, Selection and identification of elastoplastic models for the materials used in the benchmarks. 18-Months Progress Report, International IMS Research Contract “Digital Die Design Systems (3DS)”, Laboratory of the Mechanical and Thermodynamic Properties of the Materials, University Paris 13, Villetaneuse, France, 2001
Online since: June 2013
Authors: Ying Cheng Hu, Jia Yao, Jie Yuan, Li Zhang, Yan Fang Li
The Optimized Design of Manufacturing Process of Shrub Scrimber Yanfang Li1, 2, Yingcheng Hu1, 2, a, Li Zhang1, 2, Jia Yao1, 2, 3 and Jie Yuan1, 2 1 Key Laboratory of Bio-based Material Science and Technology of Ministry of Education, Northeast Forestry University, 150040, Harbin, China 2 College of Material Science and Engineering, Northeast Forestry University, 150040, Harbin, China 3 College of Mechanical Engineering, Jiamusi University, 154007, Jiamusi, china.
Materials and Methods Shrub was obtained from Ordos, Inner Mongolia, China, with 56% moisture content and 5.14 PH value.
The Shrub woods were grinded repeatedly until the morphology with continuous in longitudinal and loose but matted at the transverse direction was formed, and the average thickness of these materials was controlled within 2 mm.
The materials were assembled in the mould, and the dimension of specimen was determined as 320mm×340 mm (length×width) by the mould.
“Detection of structure and density distribution of wooden floor by Computed Tomography,”Journal of Beijing Forestry University. 32(6), 109-113 (In Chinese)
Online since: February 2012
Authors: Ying Ying Qiu, Fang Ding, Zhi Gao Liu, Qiu Hui Zhang
Optimization of Resinification of Liquefied Products from Trash ACQ-treated Antiseptic Wood Fang Ding1,a, Yingying Qiu1,b , Zhigao Liu1,c,Qiuhui Zhang1,d 1School of Materials Science and Technology, Beijing Forestry University, 35 Tsinghua East Road, China, 10083 adingfang11@126.com, bqiuyingying987@126.com, c234775311@qq.com, dqhzh66@163.com Keywords: ACQ, Antiseptic woods, Resinification, Liquefaction Abstract.
Liquefied products from biomass have a very extensive applied foreground; because they could be used to produce adhesive, molding compounds, foam materials and carbon fiber [2-6].
Material and methods Raw material.Trash ACQ antiseptic fir was smasher and sieved, and the particle between 60-80 mesh was dried at 103 °C for 12 h before being used.
Journal of Applied Polymer Science, Vol. 8, No. 3, (2002), pp. 468~472 [6] Xiaojun Ma, Guangjie Zhao.
New Chemical Materials In Chinese, Vol. 39, No. 8, (2011), pp. 81~83
Online since: December 2003
Authors: Yun Hee Lee, Won Seon Seo, In Seop Lee, Geun Hee Lee, Fu Zhai Cui, Jong Chul Park, Jong Kweon Kim, Kwon Yong Lee
Journal Citation (to be inserted by the publisher ) Copyright by Trans Tech Publications Neural Cells on Iridium Oxide I-S.
Cui8 1 Atomic-scale Surface Science Research Center, Yonsei University, Seoul 120-749, Korea.
inseop@yonsei.ac.kr 2 Department of Medical Engineering, Yonsei University College of Medicine, Seoul 120-752, Korea 3 Korea Institute of Machinery & Materials, Chang-Won 641-010, Korea 4 Korea Institute of Ceramic Engineering & Technology, Seoul 153-023, Korea 5 Department of Electronic Engineering, Kangwon University, Kyungnam 200-701, Korea 6 Bioengineering Research Center, Sejong University, Seoul 143-747, Korea 7Department of Biomedical Engineering, Inje University, Kyungnam 621-749, Korea 8 Department of Materials Science & Engineering, Tsinghua University, Beijing 100084, China Keywords: Neuron, Iridium oxide, charge injection, e-beam evaporation, ar ion beam, stimulation Abstract.
Iridium oxide was investigated as a material for the stimulating neural electrode.
Materials and Methods Iridium was deposited on either Si wafer or silicone rubber plate.
Online since: January 2013
Authors: Hai Yun Jiang, Ruo Mei Wu, Zhi Qing Yuan, Hong Chen, Qi Long Liu, De Jian Zhao, Xian Wang, Ji Ping Bin
Anti-icing properties of superhydrophobic poly (vinyl chloride) coatings Zhiqing Yuan1,a, Xian Wang1, Jiping Bin1, Qilong Liu1, Haiyun Jiang1, Dejian Zhao1, Ruomei Wu1, Hong Chen2,b 1 School of Packaging & Materials Engineering, Hunan University of Technology, Zhuzhou,Hunan,412007, People’s Republic of China 2Central South University of Forestry & Technology, Changsha, Hunan, 410004, People’s Republic of China aemail: byxy2001@163.com, bemail: chenhongcs@126.com Keywords: Coatings, Superhydrophobic, Anti-icing Abstract.
It means that the sliding angle is very important for the anti-icing property of superhydrophobic materials or coatings.
It indicates that the ultra-low water sliding angle is necessary for superhydrophobic anti-icing coatings or materials.
Acknowledgments The authors thank the support of the Natural Science Foundation of China (No. 51103036), Youth Foundation of Hunan Educational Committee(No.11B035), Natural Science Foundation of Hunan province (No. 10JJ4033), and Science and Technology Planning Project of Hunan Province (No. 2010RS4011) References [1] S.
Tang, Journal of Porous Materials, vol.16 (2008) , p.447.