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Online since: October 2011
Authors: Chao Zhang, Jiang Tao Yao, Yang Zhao, Hai Bei Xiong
Introduction
China is a developing country which is short of natural resources, such as energy resources, ground, water and construction materials.
As the times change, new materials and new techniques are constantly being discovered and used; the building structure has also undergone significant changes, ranging from masonry structure to concrete structure, wood and steel structure.
In order to compare with other two widely used materials, the teaching building is assumed to be redesigned adopting the structure of RC-frame and steel frame respectively.
If we compare this three materials’ production energy with foreign similar materials’ production energy, a modified coefficient can be obtained.
China Civil Engineering Journal, Vol.40-10 (2007), P. 41
As the times change, new materials and new techniques are constantly being discovered and used; the building structure has also undergone significant changes, ranging from masonry structure to concrete structure, wood and steel structure.
In order to compare with other two widely used materials, the teaching building is assumed to be redesigned adopting the structure of RC-frame and steel frame respectively.
If we compare this three materials’ production energy with foreign similar materials’ production energy, a modified coefficient can be obtained.
China Civil Engineering Journal, Vol.40-10 (2007), P. 41
Online since: June 2019
Authors: Giuseppe Lamanna, A. de Luca, Donato Perfetto
Caputo, Guided-Waves in a Low Velocity Impacted Composite Winglet, Key Engineering Materials 774 (2018) 343-348
Riccio, Numerical procedures for damage mechanisms analysis in CFRP composites, Key Engineering Materials 569-570 (2013) 111-118
Soprano, Numerical Investigation on the Structural behavior of a composite impact absorber, Key Engineering Materials 417-418 (2010) 685-688
Debacker, Survivability of occupants in commercial passenger aircraft accidents, Safety Science 104 (2018) 91-98
Fasanella, Design, Testing, and Simulation of Crashworthy Composite Airframe Structures at NASA Langley Research Center, Comprehensive Composite Materials II 8-8 (2018) 286-307
Riccio, Numerical procedures for damage mechanisms analysis in CFRP composites, Key Engineering Materials 569-570 (2013) 111-118
Soprano, Numerical Investigation on the Structural behavior of a composite impact absorber, Key Engineering Materials 417-418 (2010) 685-688
Debacker, Survivability of occupants in commercial passenger aircraft accidents, Safety Science 104 (2018) 91-98
Fasanella, Design, Testing, and Simulation of Crashworthy Composite Airframe Structures at NASA Langley Research Center, Comprehensive Composite Materials II 8-8 (2018) 286-307
Online since: June 2019
Authors: Guntram Wagner, Andreas Todt, Maik Trautmann, Sebastian Nendel, Christos Karapepas, Amar Al-Obaidi, Verena Kräusel
Materials and Methods
Two basalt fibres (BF) from different manufacturers (company JiLin Tongxin Basalt Technology Co., Ltd - sample name BF_1 - and company German Basalt Fibre GmbH - sample name BF_2-) were processed to a thermoplastic prepreg material (Ce-Preg®) on the fibre-foil-tape unit (FFTU) based on fibre ribbon technology at the Cetex Institute.
There is no statement in the literature about the influence of Rsk on the tensile shear strength of composite materials to confirm this assumption.
Tirillò, et al., Low velocity impact response of basalt-aluminium fibre metal laminates, Materials & Design 98 (2016) 98-107.
Tröltzsch, et al., CATPUAL – An Innovative and High-Performance Hybride Laminate with Carbon Fibre-Reinforced Thermoplastic Polyurethane, Key Engineering Materials 742 (2017) 294-301. https://doi.org/10.4028/www.scientific.net/KEM.742.294 [6] D.
Nendel, et al., Innovative hybrid laminates of aluminium alloy foils and fibre-reinforced thermoplastic layers, Materials Science and Engineering Technology 47 (11) (2016) 1121-1131.
There is no statement in the literature about the influence of Rsk on the tensile shear strength of composite materials to confirm this assumption.
Tirillò, et al., Low velocity impact response of basalt-aluminium fibre metal laminates, Materials & Design 98 (2016) 98-107.
Tröltzsch, et al., CATPUAL – An Innovative and High-Performance Hybride Laminate with Carbon Fibre-Reinforced Thermoplastic Polyurethane, Key Engineering Materials 742 (2017) 294-301. https://doi.org/10.4028/www.scientific.net/KEM.742.294 [6] D.
Nendel, et al., Innovative hybrid laminates of aluminium alloy foils and fibre-reinforced thermoplastic layers, Materials Science and Engineering Technology 47 (11) (2016) 1121-1131.
Online since: November 2012
Authors: Xing Jun Hu, Xu Yan, Jian Ye, Zhi Ming Zhao, Rui Zhang
Acknowledgements
This work was financially supported by National Science Foundation of China (50805062) and Basic Science and Research foundation of Jilin University, China.
Applied Mechanics and Materials, 2011,Vols. 52-54, p1062-1067 [7] Xing-Jun Hu, Bo Yang, Jing-Yu Wang, Ting Li.
Journal of Hunan University Natural Sciences, 2010, v37, n SUPPL. 1, p 65-69.
Applied Mechanics and Materials, 2011,Vols. 52-54, p1062-1067 [7] Xing-Jun Hu, Bo Yang, Jing-Yu Wang, Ting Li.
Journal of Hunan University Natural Sciences, 2010, v37, n SUPPL. 1, p 65-69.
Online since: November 2008
Authors: Bichitra Nandi Ganguly
Palinko; Acta Cryst, vol B55, (1999) p 216-220.
2 Thesis 2005: Dhanadeep Dutta; Positron Annihilation Study on Molecular Substances with
Special Reference to Porous Materials.
3.
Takashi Kato, Science vol 295, (no. 5564 ) (2002) p 2414-2418 . 6.
Shantarovich, Journal of Nuclear and Radiochemical Sciences vol 2, ( No 1-2) (2001) p R23-26 . 7.R.
Leipner Springer Series in Solid State Sciences 127, Positron Annihilation in Semiconductors, Defect Studies.
Takashi Kato, Science vol 295, (no. 5564 ) (2002) p 2414-2418 . 6.
Shantarovich, Journal of Nuclear and Radiochemical Sciences vol 2, ( No 1-2) (2001) p R23-26 . 7.R.
Leipner Springer Series in Solid State Sciences 127, Positron Annihilation in Semiconductors, Defect Studies.
Online since: January 2005
Authors: Hye Yeon Kim, Ae Nim Pae, Yeon Joo Lee, Joon Kyu Park, Dae Sung Kim, Kwang Yeon Hwang, Myeong-Hee Yu, Eunice EunKyeong Kim
Journal Citation (to be inserted by the publisher)
Copyright by Trans Tech Publications
Structural Comparison of Ligand-Binding Domains in
Estrogen-Related Receptors
Hye-Yeon Kim
1
, Ae Nim Pae
2
, Yeon Joo Lee
2
, JoonKyu Park
3
, Dae-Sung Kim
2
,
Kwang Yeon Hwang
2
, Myeong-Hee Yu
1
and Eunice EunKyeong Kim
2 *
1
The Functional Proteomics Center, Seoul, 136-791, Korea
2
Life Sciences Division, Korea Institute of Science and Technology (KIST), Seoul, 136-791, Korea
3
Department of Life Science and Biotechnology, Korea University Seoul, 136-701, Korea
*Corresponding author : eunice@kist.re.kr
Keywords: Orphan nuclear receptor, estrogen related receptor (ERR), estrogen receptor (ER),
ligand-binding domain, diethylstilbestrol (DES), 4-hydroxyltamoxifen (OHT), homology modeling.
DES refers to diethylstilbestrol and OHT refers to 4-hydroxyltamoxifen Materials and Methods Receptor-homology models.
DES refers to diethylstilbestrol and OHT refers to 4-hydroxyltamoxifen Materials and Methods Receptor-homology models.
Online since: September 2013
Authors: Xiang Peng Xiao, Jian Wei Wang, Guo Jie Huang
Thermodynamic calculation of the precipitate in Cu-Ni-Si-Co alloys and experimental investigation
WANG Jianwei1, a *, XIAO Xiangpeng2, b and HUANG Guojie1, c
1 State Key Lab of Nonferrous Metals & Processes, General Research Institute for Nonferrous Metals, Beijing 100088, China
2 Engineering Research Institute, Jiangxi University of Science and Technology, Jiangxi Ganzhou 341000, China
ajswjw@sina.com, bxiao xiangpeng@126.com, chuangguojie@grinm.com
Keywords: copper alloy; CALPHAD; precipitate; thermodynamic
Abstract.
Acknowledgements This work was financially supported by National “863” Foundation of China (2006AA03Z522), and Science &.
Rensei: Journal of the Japan Copper and Brass Research Association, Vol. 36 (1997), p. 25 [5] Q.
Mi: Materials Science Forum, Vol. 749 (2013), p. 294 [6] H.L.
Acknowledgements This work was financially supported by National “863” Foundation of China (2006AA03Z522), and Science &.
Rensei: Journal of the Japan Copper and Brass Research Association, Vol. 36 (1997), p. 25 [5] Q.
Mi: Materials Science Forum, Vol. 749 (2013), p. 294 [6] H.L.
Online since: October 2020
Authors: Marek Ďubek, Peter Makýš, Marián Bederka
With favourable combinations of cementitious materials and admixtures, the strength of concrete can remain unaffected by higher temperatures or can even be improved at lower temperatures.
„This publication was created with the support of the Scientific Grant Agency of the Ministry of Education, science, research and sport of the Slovak Republic and the Slovak Academy of Sciences for the project 1/1597/19“ References [1] Bajza, A. – Rouseková, I. (2006) Technology of Concrete.
Liaoning Gongcheng Jishu Daxue Xuebao (Ziran Kexue Ban)/Journal of Liaoning Technical University (Natural Science Edition), 26(5), 712-715
„This publication was created with the support of the Scientific Grant Agency of the Ministry of Education, science, research and sport of the Slovak Republic and the Slovak Academy of Sciences for the project 1/1597/19“ References [1] Bajza, A. – Rouseková, I. (2006) Technology of Concrete.
Liaoning Gongcheng Jishu Daxue Xuebao (Ziran Kexue Ban)/Journal of Liaoning Technical University (Natural Science Edition), 26(5), 712-715
Online since: September 2013
Authors: Qiu Yue Ma, Ji Teng Qu, Xiao Gang Dai, Tong Ming Yin, Ying Nan Chen
S. suchouensis, belonging to the Salicaceae family and Salix genus, is widely cultivated along the Huang-Huai river region of China and the coppice shoots are the main material for basket-making, which still survives as a cottage industry.
Experimental Plant material and growth condition.A male and a female individual of S. suchouensis were collected in Xinyi of Jiangsu Province.
Acknowledgment Funding for this work was provided by the Key Forestry Public Welfare Project (201304102), the 973 project (2012CB114505), and the Natural Science Foundation of China (31125008).
Canadian Journal of Plant Science, 92 (2012), p. 563
Poultry Science, 82(2003), p. 1536.
Experimental Plant material and growth condition.A male and a female individual of S. suchouensis were collected in Xinyi of Jiangsu Province.
Acknowledgment Funding for this work was provided by the Key Forestry Public Welfare Project (201304102), the 973 project (2012CB114505), and the Natural Science Foundation of China (31125008).
Canadian Journal of Plant Science, 92 (2012), p. 563
Poultry Science, 82(2003), p. 1536.