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Online since: July 2020
Authors: Syahida Suhaimi, Ainfatin Kamila Rosli, Najiha Hamid, Mohd Azman Hashim@Ismail, Nadhrah Md Yatim
Materials Sciences and Applications, 6, pp. 1145-1155
Recent Research in Science and Technology, 4 (8), pp. 99-101
International Journal of Scientific and Research Publications, 3 (11), pp. 2250-3153
International Journal of Photoenergy, 2013, pp. 1-8
Science Reports, 5 (15230), pp. 1-12.
Online since: August 2014
Authors: Shuai Guan, Zu Fa Liu, Sheng Lin Tan
Journal of Hydrology, 113, No. 1 (1990) 307-323
Water Science & Technology, 25, No. 11(1992) 9-16
Fuzzy rule-based modelling for human health risk from naturally occurring radioactive materials in produced water.
Natural and Science, 2, No. 1 (2004) 24-28
Earth Science Frontiers, 13, No. 1 (2006) 224-229
Online since: March 2013
Authors: Yong Guo Zhao, Yong Fei Xiao, Tie Chen
Kinematics Analysis for a 4-DOF Palletizing Robot Manipulator Zhao Yong-guoa, Xiao Yong-feib and Chen Tiec Shandong Provincial Key Laboratory of Robot and Manufacturing Automation Technologyine Institute of Automation, Shandong Academy of Sciences,Jinan, 250014, China asduzyg@163.com, bxyf@keylab.net, cchent@keylab.net Keywords: Palletizing Robot;Kinematics Analysis Abstract.
The forward kinematics model and inverse kinematics were introduced in detail.The robot has been applied in the packaging industry with good results and it can be widely used in material handling, sorting, and other fields of logistics automation industry and has a broad market prospect. 6 References [1] Cai Zi-xing, Robotics[M].
Journal of Harbin Institute of Technology (NewSeries), 2006, 38( 5): 698~701 [5] Xie J, QiangWY.
Online since: June 2013
Authors: Xian Peng Cao, Chong Guang Zang
Experiment Main materials.
So Ni has great influence on materials’ permeability.
So Ni has great influence on materials’ permeability.
Materials Review,2001 (15):14-19
Journal of Inorganic Materials, 2005 20(3)
Online since: July 2014
Authors: Feng Jun Liu, Fei Fei Suo
For example, base materials of buildings and roads, which is processed into aggregates by treatment plants, and then made into a variety of building bricks and so on.
Scrap steel and other metal scrap materials could be directly reused or reforged.
Old building materials Construction waste Land excavation Backfill High value-added metal, etc.
Mixed backfill Recycling Landfill Burning Old building materials Inorganic waste, etc.
Take the building cycle management model into the whole process, break the traditional linear model of the "building materials - building - building rubbish", and form the circular economic model of the "building materials - building - construction waste - recycled materials"[2].
Online since: June 2015
Authors: A.S. Silva, Joelda Dantas, K.R.O. Pereira, R. de C.L. Dutra, M.F. Diniz, A.C.F. de M. Costa
Such substitution has been highlighted by the use of nanostructured magnetic materials, which is being touted as a new branch for use in existing materials as well as the discovery of new materials [8].
Materials agglomerates this way are therefore easily deagglomerated in liquid medium or physically.
Prospective Study of Advanced Materials.
Advanced Materials for Energy in Brazil 2010-2020.
Journal of Intellectual Property, 25/01/2012, nº BR 10 2012 002181-3
Online since: November 2013
Authors: Yue Zhao, Yan Wen Tian, Xiu Li Sun, Jian Zhong Li, Bo Wang
Now using Pb-Sn-Ag alloy as anodic materials of TFS is of the application in TFS production technology in woldwide.
However anodic materials are eroded in the process of TFS plating, because of plating solution containing Cr ions and F ions.
Anode materials selection for electrochemical engineering is a very important issue.
This would be significant for improving TFS product quality and corrosion resistance of anode materials.
Delgado, “Performance and degradation analyses of traditional and ECCS canning tinplates in citric-citrate medium”, Journal of Materials Processing Technology, 152(2004), 384-388
Online since: January 2014
Authors: Yan Zhao, Ke Sheng Cheng, Li Wan, Jian Min Wang
Preparation and Properties of Ultra-fine Grain Medium-carbon Steel Based On Warm Deformation Jianmin Wanga, Yan Zhaob, Kesheng Chengc, Li Wand School of Material Science and Engineering, Jiangsu University, Zhenjiang Jiangsu 212013, China ajmwang@ujs.edu.cn, b542496459@qq.com, c478960475@qq.com, d766034995@qq.com Key words: Martensite, Ultra-fine grain, Severe plastic deformation, Warm deformation, Temper Abstract.
Introduction The most effective and most straightforward way to acquire steel and iron materials with high strength, high toughness and low brittle transition temperature is grain refinement.1-4 In terms of single severe plastic deformation process, special deformation process and forming equipment are required, and it is difficult to transform materials into ultra-fine grain microstructures and realize composition uniformity of materials.5 In this paper, combining phase transformation with deformation, a new preparation process of ultra-fine grain medium-carbon steel is proposed, namely warm deformation of quenched steel after tempering.
Test material and method The hot-rolled steel 1045 bar was chosen as the test material, of which the size was φ10mm × 25mm.
[2] Ueji R, Tsuji N, Minamino Y, et al.: ‘Effect of rolling reduction on ultrafine grained and structure and mechanical properties of low-carbon steel thermomechanically processed from martensite starting structure’, Science and Technology of Advanced Materials, 2004, 5, (1/2), 153~162
[3] Huang Y D, Yang W Y, Sun Z Q: ‘Formation of ultrafine grained ferrite in low carbon steel by heavy deformation in ferrite or dual phase region’, Journal of materials processing Technology, 2003, 134, (1), 19~25
Online since: July 2013
Authors: Fu Gang Yan, Geng Huang He, Xian Li Liu
(1) The special material makes high demands of turning tool.
Acknowledgments This research is supported by the National Natural Science Foundation of China (Project approval number: 51175131) and National High Technology Research and Development Program ("863"Program: 2009AA044302).
Yan, etc: Advanced Materials Research, Vol. 188 (2011), pp. 450-453
Fang: International Journal of Advanced Manufacturing Technology, Vol. 10 (1995), pp. 225-226
Li, etc: Transactions of Materials and Heat Treatment, Vol. 27 (2006) No. 2, pp. 83-84.
Online since: April 2011
Authors: S. Dost, Farid Mechighel, Mahfoud Kadja, Bernard Pateyron, Mohammed El Ganaoui
Introduction Processing raw materials from the melt is the most important production principle for a large range of material classes [1].
Abbaschian, Crystal Growth, in Encyclopedia of Materials: Science and Technology, eds.
Cahn, Elsevier Science, New York, 2001, p. 1860
Lent: Journal of Crystal Growth Vol. 299 (2007), p. 227 [12] M.
Dost: Fluid Dynamics and Materials Processing Vol. 5 (2009), p. 313