Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: July 2020
Authors: Małgorzata Musztyfaga-Staszuk, Piotr Panek
Konarskiego 18A, 44-100 Gliwice, Poland
2Institute of Metallurgy and Materials Science PAS.
The motive for its publication is the need to present selected results of own research carried out in the Welding Department cooperating for many years with the Department of Engineering and Biomedical Materials (IMIiB) of the Silesian University of Technology and the Institute of Metallurgy and Materials Engineering (IMIM) of the Polish Academy of Sciences in Cracow. 1.
In the Welding Department and the Department of Materials Process Technology and Computer Techniques in Materials Science at the Department of Engineering and Biomedical Materials of the Silesian University of Technology in Gliwice, the use of lasers in surface engineering was studied.
Zięba: submitted to Journal of Achiev.
Drygała: submitted to Journal of Achievements in Materials and Manufacturing Engineering (2010) [8] L.A.
The motive for its publication is the need to present selected results of own research carried out in the Welding Department cooperating for many years with the Department of Engineering and Biomedical Materials (IMIiB) of the Silesian University of Technology and the Institute of Metallurgy and Materials Engineering (IMIM) of the Polish Academy of Sciences in Cracow. 1.
In the Welding Department and the Department of Materials Process Technology and Computer Techniques in Materials Science at the Department of Engineering and Biomedical Materials of the Silesian University of Technology in Gliwice, the use of lasers in surface engineering was studied.
Zięba: submitted to Journal of Achiev.
Drygała: submitted to Journal of Achievements in Materials and Manufacturing Engineering (2010) [8] L.A.
Online since: December 2012
Authors: Fang Ma, H. Guo, X. Feng, X. Lou, M.O. Tade
Li: Journal of Materials Chemistry 21(2011), p. 3664
Hu: Journal of Hazardous Materials 171(2009), p. 459
Li: Journal of Hazardous Materials 179(2010), p. 251
Xu: Journal of Materials Chemistry 21(2011), p. 1218
Gu: Journal of Materials Chemistry 20(2010), p. 5110
Hu: Journal of Hazardous Materials 171(2009), p. 459
Li: Journal of Hazardous Materials 179(2010), p. 251
Xu: Journal of Materials Chemistry 21(2011), p. 1218
Gu: Journal of Materials Chemistry 20(2010), p. 5110
Online since: April 2009
Authors: V. Anil Kumar, M.K. Karthikeyan, P. Ramkumar, P.P. Sinha, Rohit Kumar Gupta
Gastón-Ochoa: Journal of Materials Processing
Technology, Vol. 153-154 (2004) , p.846
Gastón-Ochoa: Journal of Materials Processing Technology, Vol.143-144 (2003) , p.105
Shin: Materials Science & Engineering A, Vol. 293 (2000), p.165
Segal: Materials Science & Engineering A, Vol. 338 (2002), p.331
Langdon: Materials Science & Engineering A, Vol. 342 (2003), p. 294
Gastón-Ochoa: Journal of Materials Processing Technology, Vol.143-144 (2003) , p.105
Shin: Materials Science & Engineering A, Vol. 293 (2000), p.165
Segal: Materials Science & Engineering A, Vol. 338 (2002), p.331
Langdon: Materials Science & Engineering A, Vol. 342 (2003), p. 294
Online since: July 2011
Authors: Yun Huang, Zhi Huang, Hai Long Wu, G.J. Cheng
Blades are the key parts of the turbine, which usually use materials such as 1Cr13 stainless steel.
Thus, belt grinding has its unique advantages on the processing of these hard to grind materials.
Liu: Advances in Materials Manufacturing Science and Technology Vol. 626-627(2009), pp: 617-622
Rajendra: Applied Surface Science Vol. 228(2004), pp: 213-220
Sun: Key Engineering Materials Vol. 202-203(2001), pp: 53-56
Thus, belt grinding has its unique advantages on the processing of these hard to grind materials.
Liu: Advances in Materials Manufacturing Science and Technology Vol. 626-627(2009), pp: 617-622
Rajendra: Applied Surface Science Vol. 228(2004), pp: 213-220
Sun: Key Engineering Materials Vol. 202-203(2001), pp: 53-56
Online since: April 2008
Authors: De Yun Chen, Li Li Wang, Yu Chen
Analysis and Simulation of Sensor Structure Parameters and Filling
Materials Characteristics for Electrical Capacitance Tomography System
Deyun Chen1, a, Lili Wang1,b and Yu Chen1,c
1
Harbin University of Science and Technology, China
a
chendeyun@hrbust.edu.cn, bwanglili@hrbust.edu.cn, clg_chenyu@yahoo.com.cn
Keywords: Electrical Capacitance Tomography, Finite Element Method, Filling Materials
Characteristic, Parameter Optimizing, Computer Simulation
Abstract.
In conclusion, the final parameters and materials adopted are proved better than those adopted before.
And it is better than any other insulated materials in dielectric loss, voltage withstand, volume resistivity and surface resistivity.
And in this way, the effect on EC that is caused by changes of dielectric constant of outside materials can be prevented.
Chinese Journal of scientific instrument.
In conclusion, the final parameters and materials adopted are proved better than those adopted before.
And it is better than any other insulated materials in dielectric loss, voltage withstand, volume resistivity and surface resistivity.
And in this way, the effect on EC that is caused by changes of dielectric constant of outside materials can be prevented.
Chinese Journal of scientific instrument.
Online since: June 2012
Authors: Ying Tong, Guo Zheng Quan, Gui Sheng Li
Introduction
The share of composite materials in aerospace structures has increased drastically in the last decades due to the low weight and high stiffness of such materials.
One of the powerful approaches could be the use of high strength composite materials [2].
Riedel W and Harwick W [5] had undertaken extensive researches on the mechanics of composite materials found the constitutive relation of orthotropic composites materials.
Sekine.composites Part A:applied science and manufacturing.35(2004) , p. 683-692
Journal of Composite materials:31(1997) , p.788-811
One of the powerful approaches could be the use of high strength composite materials [2].
Riedel W and Harwick W [5] had undertaken extensive researches on the mechanics of composite materials found the constitutive relation of orthotropic composites materials.
Sekine.composites Part A:applied science and manufacturing.35(2004) , p. 683-692
Journal of Composite materials:31(1997) , p.788-811
Online since: September 2011
Authors: Long Quan Shao, Ning Wen, Bin Deng, Yuan Fu Yi, Ting Sun, Shan Yu Zhou
Core materials of medium opacity (MO) and high opacity (HO) are designed for discolored teeth.
Materials and Methods Preparation of specimens.
The relative translucency of core materials should be taken into consideration for choice of all ceramic materials.
Acknowledgements This work was supported by National Natural Science Foundation (50973045) and Natural Science Foundation of Guangdong Province (9151051501000072).
Wen, et al.: Chinese Journal of Prosthodontics.
Materials and Methods Preparation of specimens.
The relative translucency of core materials should be taken into consideration for choice of all ceramic materials.
Acknowledgements This work was supported by National Natural Science Foundation (50973045) and Natural Science Foundation of Guangdong Province (9151051501000072).
Wen, et al.: Chinese Journal of Prosthodontics.
Online since: April 2012
Authors: Shu Cai Li, Li Wei Wang, Jun Ying Wang
Study on Properties of Modified Nano-ZnO/WPU Hybrid Material
Shucai Li 1,a, Liwei Wang 2,b,Junying Wang
1, 2Deparentmen of Material Science and Chemical Engineering, TianJin University of Science & Technology, Tianjin, 300457, China
alishuc@tust.edu.cn, bveida621@yahoo.com.cn,
Keywords: modified nano-ZnO; waterborne polyurethane; hybrid material
Abstract.
Experimental 1.1 Materials used Nano-ZnO modified by titanate coupling agent was self-made.
Electronic tension machine (CMT4503) was made in Shenzhen sans materials detection Co., LTD.
Materials Letters, 60 (2006): 3686–3692
European Polymer Journal, 45 (2009) :960–966
Experimental 1.1 Materials used Nano-ZnO modified by titanate coupling agent was self-made.
Electronic tension machine (CMT4503) was made in Shenzhen sans materials detection Co., LTD.
Materials Letters, 60 (2006): 3686–3692
European Polymer Journal, 45 (2009) :960–966
Online since: January 2013
Authors: Lin Wu, Jin Ying Hao
Due to the mechanical engineering materials we have three operating modes that can find out the most dangerous place.
Now we need a parameterized position to upload depended on the engineering materials.
The maximum deformation of the entire organization’s engineering materials is 0.735mm, the biggest stress is 5.14Mpa after calculation.
The maximum deformation of the entire organization’s engineering materials is 0.660mm, the biggest stress is 3.77Mpa.
As well as analysis the rack's stability according to the reaction of the structure and the mechanical engineering materials.
Now we need a parameterized position to upload depended on the engineering materials.
The maximum deformation of the entire organization’s engineering materials is 0.735mm, the biggest stress is 5.14Mpa after calculation.
The maximum deformation of the entire organization’s engineering materials is 0.660mm, the biggest stress is 3.77Mpa.
As well as analysis the rack's stability according to the reaction of the structure and the mechanical engineering materials.
Online since: July 2013
Authors: Xiao Jian Hao, Hui Zhong Hu, Bao Wu Pan
Hydrothermal Synthesis of LiMnO2 with Orthorhombic Structure as Cathode Materials
Hu Huizhong, Pan Baowu*, Hao Xiaojian
Department of Material Science and Engineering, North University of China, Taiyuan, China, 030051
Keywords: Lithium-ion batteries; Orthorhombic LiMnO2; Hydrothermal method; Li+/Mn3+ ratios
Abstract: o-LiMnO2 was successfully synthesized by the hydrothermal method at Li+/Mn3+=4:1.
Hydrothermal synthesis is usually carried out at a temperature lower than 300℃ and the products are single crystals or high crystalline materials with small particle size.
Fergus: Journal of Power Sources. 195(2010), 939-954
Chen: Journal of Materials Science & Engineering. 26(2008), 35-38
Ohta: Journal of Power Sources. 81-82(1999), 49-53
Hydrothermal synthesis is usually carried out at a temperature lower than 300℃ and the products are single crystals or high crystalline materials with small particle size.
Fergus: Journal of Power Sources. 195(2010), 939-954
Chen: Journal of Materials Science & Engineering. 26(2008), 35-38
Ohta: Journal of Power Sources. 81-82(1999), 49-53