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Online since: October 2014
Authors: Gong Zhong Wang
Acknowledgement This work is supported by Natural Science Key Project of Department of Education of Henan Province (13A440151).
Journal of China Coal Society, 2010, 35(3): 357-361
Journal of China Coal Soci-ety, 2010, 35(1): 1-6
Journal of China Coal Society, 2004,33( 2) : 167-169
Journal of Mining & Safety Engineering, 2013, 30(1): 74-79
Online since: September 2013
Authors: Chien Chon Chen, Wern Dare Jheng, Jin Shyong Lin, Ker Jer Huang
The high quality and functional green building materials can therefore be easily fabricated.
Introduction Green building materials are composed of renewable, rather than nonrenewable resources.
Those materials such alumina (Al2O3) and titania (TiO2) there are candidate materials of energy and green building materials.
The inorganic materials of alumina titania (TiO2) are basic materials used in the modern building for example, harder Al2O3 tile and photocatalyst of TiO2 film.
Diau, Journal of The Electrochemical Society, Vol. 156 (2009), p.
Online since: June 2013
Authors: Lei Shao, He Ming Zhao, Yi Biao Yu, Tao Liu
Organic materials (cable particularly) aging has an adverse effect on the safety of production situations, and it is unscientific to replace organic materials blindly.
A live evaluation system of organic materials aging was developed in present paper.
Another method is based on physical detection, ssuch as elongation at break (EAB) and compressive modulus of cable materials [4].
Compressive modulus of organic materials is the ratio of force to distance.
(5) It can evaluate not only cable but also other organic materials
Online since: June 2006
Authors: Su Su Wang, Xiao Hong Chen
Long-term durability of advanced polymeric materials in hygrothermal environments is of vital concern.
Pioneering work [1-6] has been conducted on diffusion and viscoelastic deformation in polymeric materials.
The effective time theory to predict long-term behavior of polymeric materials experiencing physical aging from short-term experiments [13] is analogous to the method of reduced variables for thermorheologically simple materials [7], both of which may be described with the concept of a material clock [8].
Elahi: Mechanics of Time-Dependent Materials Vol. 4 (2000), p. 107
Hodge: Science Vol. 267 (1995), p. 1945
Online since: May 2021
Authors: Aris Doyan, Susilawati Hambali
Both materials were dissolved using distilled water, HCl (hydrochloric acid), and NH4OH.
Doyan, Sahlam, Synthesis and Characterization Materials M-Barium Hexaferrite Doping Ions Co-Mn NanoParticle, In IOP Conference Series: Materials Science and Engineering 196(1) (2017) 012016.
Fitriani, Nazarudin, Characterization of Barium M-Hexaferrite with Doping Zn and Mn for Microwaves Absorbent, Journal Materials Science Forum 966 (2019) 283-289.
Zainuri, Synthesis, and Characterization of BaM/PANi Radar Absorbing Material (RAM) Layer Based on X-Band Wave Range with Thickness Variation, Journal of Science and Art ITS 5(2) (2016).
Wang, Magnetic and microwave absorbing properties of electrospun Ba (1− x)LaxFe12O19 nanofibers, Journal of Magnetism and Magnetic Materials 324(7) (2012) 1305-1311.
Online since: December 2012
Authors: Qi Song Shi, Tai Qi Liu, Fu Rui Ma, Jin Fang Chu, Tan Qiu Li, Dong Hui Yang
Introduction The research of phase change materials began in the 1960s.
Experimental Materials.
Material Development and Application of Materials.
Journal of Beijing Institute of Technology.
Textile Science & Technology.
Online since: June 2014
Authors: Lin Xiang Wang, Fu Zai Lv, Wei Feng Chen
Journal of intelligent material systems and structures, 2004, 15(2): 107-115
Journal of Materials Science, 1999, 34(16): 4001-4010
Stress induced polarization switching and coupled hysteretic dynamics in ferroelectric materials [J].
Science in China Series E: Technological Sciences, 2009, 52(1): 141-147
Advanced Materials Research, 2008, 47: 65-68
Online since: June 2011
Authors: Jian Xiu Su, Xin Ning, Jia Xi Du, Xi Qu Chen, Ren Ke Kang
Experiment on Non-Uniformity of Material Removal on Wafer surface in Wafer CMP Jianxiu Su1,a, Jiaxi Du1,b, Xiqu Chen1,c , Xin Ning1 and Renke Kang2 1 Henan Institute of Science and Technology, Xinxiang 453003, China 2Key Laboratory for Precision and Non-traditional Machining of Ministry of Education, Dalian University of Technology, Dalian 116024, China ajxsu2008@people.com.cn, bdujx@163.com, cchxq@126.com Keywords: Chemical mechanical polishing, Material Removal, Non-uniformity.
This result could reveal the material removal mechanism of wafer CMP from the aspect of the non-uniformity of material removal.
Acknowledgements The authors acknowledge the Supported by the Key Project of Science and Technology R & D Program of Henan Province (102102210405), the Research Project program of Natural science of the Education Department of Henan Province (2009A460004) , and Funded by Science and Technology Innovation Program of Henan Institute of Science and Technology.
Hocheng and et al.: International Journal of Machine Tools & Manufacture Vol.40 (11) (2000), pp.1651-1669 [4] P.L.
Tso and et al.: Journal of Materials Processing Technology Vol.116(2-3) (2001), pp.194-200 [5] J.F.
Online since: September 2024
Authors: Ojiyed Tegus, Wei Li, Si Qin Bator, Han Wu, Xiao Tao Wang, Bo Liao
Journal of Power Sources. 2015, 294:141-149
Journal of Solid State Electrochemistry. 2023, 27(1):1-23
Journal of Alloys and Compounds. 2022, 899:163311
Journal of Alloys and Compounds. 2021, 861:158000
Journal of Alloys and Compounds. 2019, 782:451-460
Online since: February 2019
Authors: M.Y. Elistratkin, Valery Lesovik, E.S. Glagolev, V.V. Voronov, M.V. Absimetov
Construction sector development which is impossible without creation of knowledge- and science-intensive materials and technologies oriented to a wide range of practice is an important tool for achieving the goal.
Their distinctive feature is the focus on the primary use of local raw materials, flexibility in production and use organization, high science-intensive and modernization potential.
Saidumov, High-performance SCC-concrete at earthquake resistant construction, International Journal of Environmental and Science Education. 11.18 (2016) 12779-12786
Shapovalov, Features of application of high-mg technogenic raw materials as a component of composite binders, Research Journal of Applied Sciences. 9.11 (2014) 779-783
Karakurt, Properties of the autoclaved aerated concrete produced from coal bottom ash, Journal of materials processing technology. 209.2 (2009) 767-773