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Online since: June 2014
Authors: Shahrul Azam Abdullah, Muhamad Sani Buang, Juri Saedon
Kapustka, Journal of Metallurgical and Materials Transactions A, Vol. 37A, (2006) p. 3221 - 3231
Matlockb: International Journal of Mechanical Sciences (2002)
Ferrer: Journal of Materials Processing Technology Vol. 191 (2007) p. 174-177
Lib: Journal of Materials Processing Technology Vol. 123 (2002) p. 209-211
Jin: Journal of Materials Processing Technology Vol. 201 (2008) p. 189-192
Online since: November 2012
Authors: Jin Xiang Yang, Xiao Long Li
Study on Emission Characteristics of Automobile Exhaust and Control Measures with Environmental Materials* YANG Jin-xiang, LI Xiao-long The School of Earth and Environmental, Anhui University of Science and Technology, Huainan Anhui, 232001, China xlli@aust.edu.cn Keywords: automobile exhaust, emission characteristics, environmental materials Abstract: With the rapid development of automobile industry and the accelerated process of urbanization, pollution caused by automobile exhaust had become one of the major sources of urban environment and atmospheric environment pollution.
And the pollutants emitted by automobile into the air with rain felled into the ocean to cause great damages to marine environment. 2 The control of automobile exhaust with environmental materials 80% to 90% of the global urban emissions were from motor vehicle emissions.
Journal of Neijiang Normal University, Vol.24 (2008), p.70-75 [3] Wu Guozheng, Ma Liping, He Kediao.
Journal of Maoming University, Vol.18(2008), p.40-43 [8] SHAO Wenyan.
Environmental Science Survey, Vol.29(2010), p.62-69 [10] Qiaolefan MNAHAN, Romila WUZIMAN.
Online since: April 2012
Authors: Yoke San Wong, De Ping Yu, Geok Soon Hong
Ductile-regime Machining for Fast Tool Servo Diamond Turning of Micro-structured Surfaces on Brittle Materials De Ping Yu1, a, Yoke San Wong 2, b and Geok Soon Hong 2, c 1Sichuan University, School of Manufacturing Science and Engineering, China, 610065 2National University of Singapore, Department of Mechanical Engineering, Singapore, 119260 awilliamydp@yahoo.com.cn, bmpewys@nus.edu.sg, cmpehgs@nus.edu.sg Keywords: ductile-regime machining; fast tool servo; diamond turning; micro-structured surfaces; brittle materials Abstract.
Nevertheless, it is challenging to machine micro-structured surfaces with a mirror surface on the brittle materials due to the low fracture toughness of the materials and the complex shapes of the surfaces.
Ogura and Okazaki used FTS diamond turning to machine micro-lens array on brittle materials [10].
The value of tc can be estimated by Bifano’s model [17] for typical brittle materials using Eq
Hong: Key Engineering Materials Vol. 443 (2010), p. 669-674 [13] D.P.
Online since: September 2024
Authors: Oleg Kulakov, Albert Katunin, Oleksii Roianov, Yuliia Mykhailovska
Calculations were made for insulation materials made of polyvinyl chloride plastic and rubber, and copper and aluminum wires.
IOP Conference Series: Materials Science and Engineering. 708/1 (2019) 012065
Key Engineering Materials Submitted. 954 (2023) 125–133
International Scientific Journal «Grail of Science». 24 (2023) 210–215 [in Ukrainian]
Materials Science Forum. 1006 MSF (2020) 70–75
Online since: January 2013
Authors: Jun Lin Zhang, Chun Li Wang
Zhang: Journal of Building Materials.
Wu: Journal of Building Materials.
Gustavson: Materials and Structures.
Naaman: ACI Materials Journal.
Najm: Journal of structural engineering.
Online since: November 2011
Authors: Bing Gao, Zheng Quan Su, Si Hui Wu, Si Rong Tan, Jun Rui Xiao, Zi Yue Guo, Si Yun Long, Yan Bai
Chitosan is a new kind of material in life-science, it can be used in lipid-lowering.
Nowadays, many researches have proved that chitosan is a new kind of useful materials in medicine and biomedical engineering [1].
Materials and method Materials and instruments.
Hyperlipidemia may have a serious effect on our health, so developing new materials for lowering lipid levels is extremely urgent.
Chitosan, as a promising material in life-science, is widely used in people’s health.
Online since: August 2009
Authors: Hong Yuan Jiang, Ya Dong Guo, Hui Yan, Yu Hong Xia
It can solve many difficult problems which could not do by other porous materials.
Rare Metal Materials and Engineering, 2006,(35)S2:30-34 [2] P.S.
Applications of porous metal materials.
Journal of Functional Materials, 2001, (32)1:12-15 [3] Е.Чегодаев,О.П.Мулюкин и др.
Test of gas penetrability of porous metal rubber material made of 0Cr18Ni9Ti.Journal of Functional Materials, 2004,(35)2: 267-270 [6] H.Y.
Online since: November 2012
Authors: Ming Zhou, Lai Zou
The diffusion model of carbon atoms diffusion into γ-Fe has been established in terms of materials science theory.
There are two common mechanisms for atoms diffusing in solid based on materials science theory, vacancy diffusion and interstitial diffusion.
In view of this, the diffusion model about diamond wear is built on account of materials science theory.
Bulent: Journal of Materials Processing Technology, Vol.190 (2007), p.138
Ikawa: Key Engineering Materials, Vol. 196 (2001), p.69
Online since: May 2025
Authors: Ahmad Haya, Muhammad Arsyad, Ahamad Nurul Muttaqin
Composite is a combination of two or more materials that form a new material.
Materials and Method The materials used are polyester resin (Yukalac BQTN EX Lot No.
ARPN Journal of Engineering and Applied Sciences.
Archives of Materials Science and Engineering.
Journal of Thermoplastic Composite Materials.
Online since: June 2017
Authors: Nikolay Velikanov, Sergei Koryagin, Oleg V. Sharkov
An adhesive composition is used as a binder in many composite materials.
Crack resistance of an adhesive composition is the most important characteristic determining the bearing capacity of composite materials.
Introduction An adhesive composition (joint) is used as a binder in many composite materials.
One of the most important characteristics determining the bearing capacity of composite materials is a crack resistance of an adhesive composition.
Paraschi, The effect of the substrate material on the value of the adhesive fracture energy, Gc: Further considerations, Journal of Materials Science Letters, 20 (2001) 265–267
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