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Online since: September 2013
Authors: Fu Long Zhao, Xiao Li Wang, Qing Ping Li, Yong Tian
Research on Template Concrete Board Security of Early Removal Connection Attached Support-System
Fulong Zhao1,a, Yong Tian1,b, Qingping Li1,c Xiaoli Wang1,d
1Guizhou construction science Research & Design Institute limited company of CSCEC,
Guizhou Guiyang, 550006, China
a308369555@qq.com, b506363252@qq.com, c373180093@qq.com, d358385591@qq.com
Keywords: Template support-system, Concrete board, Early strength of concrete, Most adversely model.
Design and make the manufacture of fittings welded to the material with Q235. φ48 pipe wall thickness 3.0 or 3.5mm steel pipe which is formed on top of the bar in the early removal system.
Electronic Journal of Structural Engineering,2001(2):111-119
[4]Barzegar,Maddipudi,Srinivas,Three-Dimensional Modeling of Concrete Structures.1:Plain Concrete Structures.1:Plain Concrete, Journal of Structural Engineering,1997,123(10:1339-1346
Electronic Journal of Structural Engineering, 2001(2):111-119.
Design and make the manufacture of fittings welded to the material with Q235. φ48 pipe wall thickness 3.0 or 3.5mm steel pipe which is formed on top of the bar in the early removal system.
Electronic Journal of Structural Engineering,2001(2):111-119
[4]Barzegar,Maddipudi,Srinivas,Three-Dimensional Modeling of Concrete Structures.1:Plain Concrete Structures.1:Plain Concrete, Journal of Structural Engineering,1997,123(10:1339-1346
Electronic Journal of Structural Engineering, 2001(2):111-119.
Online since: May 2013
Authors: Jian Qing Wang, Xi Jing Zhu
Acknowledgements
The subject is supported by the National Natural Science Foundation (50975265).
Key Engineering Materials. 2008, 359-360 : 494-498
International Journal of Machine Tools & Manufacture. 2008, 48: 832-840
Journal of Sound and Vibration.2007, 301(3-5): 950-962
JOURNAL OF MECHANICAL ENGINEERING, 2010,46(5):68-73.
Key Engineering Materials. 2008, 359-360 : 494-498
International Journal of Machine Tools & Manufacture. 2008, 48: 832-840
Journal of Sound and Vibration.2007, 301(3-5): 950-962
JOURNAL OF MECHANICAL ENGINEERING, 2010,46(5):68-73.
Online since: February 2012
Authors: Yong Ping Hao, Jia Yi Zhang, Long Fei Zhao
Acknowledgements
This work was financially supported by the LiaoNing Natural Science Foundation (201102182).
References [1] Min Hu, Xioahong Jiang and Jiaoying Shi: Chinese Journal of computer aided design and computer graphics Vol. 12 (2000), p. 777 (In Chinese) [2] X.
Zuo: Key Engineering Materials Vol. 392–394(2009), p. 1006
[3] Ying Hou, Yuanjun He and Zhigang Hu: Chinese Journal of computer engineering Vol. 29(2003), p. 180.
[5] Bin Qin, Chunping Yan and Fei Liu: Chinese Journal of computer engineering Vol. 35(2009), p. 184.
References [1] Min Hu, Xioahong Jiang and Jiaoying Shi: Chinese Journal of computer aided design and computer graphics Vol. 12 (2000), p. 777 (In Chinese) [2] X.
Zuo: Key Engineering Materials Vol. 392–394(2009), p. 1006
[3] Ying Hou, Yuanjun He and Zhigang Hu: Chinese Journal of computer engineering Vol. 29(2003), p. 180.
[5] Bin Qin, Chunping Yan and Fei Liu: Chinese Journal of computer engineering Vol. 35(2009), p. 184.
Online since: November 2013
Authors: Ji Hong Feng, Kai Xiang Li, Hua Juan Bai, Hao He
With the development of the modern medical science and technology, the routine urine examination has realized the automation to improve the speed and accuracy of urine analysis to some extent, but these instruments are expensive and complex to operate, so the automatic analysis can’t completely replace the traditional microscopy urine sediment test [4,5].
Fig. 1 Experiment device Experimental materials A urinary sediment quantitative analysis plate with 10 counting pools can detect 10 urinary specimens, shown in Figure 2.
International Journal of Laboratory Medicine, 2012, 33(11):1391-1392.
International Journal of Laboratory Medicine, 2011, 32(5):557-559.
Chinese Journal of Trauma and Disability Medicine, 2012, 20(8):82-83.
Fig. 1 Experiment device Experimental materials A urinary sediment quantitative analysis plate with 10 counting pools can detect 10 urinary specimens, shown in Figure 2.
International Journal of Laboratory Medicine, 2012, 33(11):1391-1392.
International Journal of Laboratory Medicine, 2011, 32(5):557-559.
Chinese Journal of Trauma and Disability Medicine, 2012, 20(8):82-83.
Online since: September 2013
Authors: Fei Yang, Mao Hua Xiao, Zun Mang Ke, Si Hong Zhu, Deng Song Xiao
Accumulation plan enterprises in Jiangsu Province, the Central Universities basic service fee&Youth Science and Technology Innovation Fund of Nanjing Agricultural University (No.
International Journal of MachineTools&Manufacture.1995, 35(10):1425-1433
Journal of Materials Processing Technology, 1996:138-142
International Journal of Machine Tools and Manufacture, 1998, 38(3): 131-141
International Journal of MachineTools&Manufacture.1995, 35(10):1425-1433
Journal of Materials Processing Technology, 1996:138-142
International Journal of Machine Tools and Manufacture, 1998, 38(3): 131-141
Online since: February 2012
Authors: Tao Chen, Duo Shu Wang
Study on Optical Properties of Silicon Oxycarbide Thin Films Prepared by RF Magnetron Sputtering
Tao Chen1,a, Duoshu Wang1,b
Science and Technology on Surface Engineering Laboratory, Lanzhou Institute of Physics, Lanzhou 730000, China
achensuix@126.com, bwang_d_s@sina.com
Keywords: Silicon oxycarbide, thin films, RF magnetron sputtering, optical performance
Abstract: Silicon oxycarbide(SiCO)thin films is a kind of glassy compound materials, which possess many potential excellent properties such as thermal stability, wide energy band, high refractive index and high hardness, and have many potential applications in space.
SiC film is an excellent optical film material, it can be used as AR films of photoelectric device, solar cell and window protective material [4, 5].
Silicon oxycarbide(SiCO)thin films are a kind of glassy compound materials, which possess many excellent properties such as thermal stability, wide energy band, high refractive index and high hardness, and have many potential applications in space.
Solar Energy Materials & Solar Cells, 2002, 72: 597~603
Journal of Non-Crystalline Solids, 2008, 354: 2430~2434
SiC film is an excellent optical film material, it can be used as AR films of photoelectric device, solar cell and window protective material [4, 5].
Silicon oxycarbide(SiCO)thin films are a kind of glassy compound materials, which possess many excellent properties such as thermal stability, wide energy band, high refractive index and high hardness, and have many potential applications in space.
Solar Energy Materials & Solar Cells, 2002, 72: 597~603
Journal of Non-Crystalline Solids, 2008, 354: 2430~2434
Online since: December 2011
Authors: Ji You Gu, Can Liu, Yan Hua Zhang
This paper has made corn starch as raw material and hydrogen peroxide as oxidant to produce oxidation starch.
Materials and Methods Raw Materials and Reagents.
The target materials is Cu.
Zhang: Modified Starch (South China University of Science and Technology Press, Guangzhou 1992)
Yang etc: South China University of Technology Journal (Natural science edition) Vol. 29 (2001), p. 55
Materials and Methods Raw Materials and Reagents.
The target materials is Cu.
Zhang: Modified Starch (South China University of Science and Technology Press, Guangzhou 1992)
Yang etc: South China University of Technology Journal (Natural science edition) Vol. 29 (2001), p. 55
Online since: April 2014
Authors: Hong Wang, Ming Tian Li, Yue Lu, Di Liu
Preparation and Thermal Stability of Pyrrole and m-toluidine Copolymer / Montmorillonite Composites
Hong Wang1, a, Mingtian Li1,b, Yue Lu1,c and Di Liu2,d
1 Key Laboratory of Material Corrosion & Protection of Sichuan Province, Department of Materials & Chemical Engineering, Sichuan University of Science & Engineering, Zigong, 643000, China
2College of Chemistry Chemistry, Jilin University, Changchun 130012, China;
ajluhong999@163.com, blimingtian01@aliyun.com, cluyuepolymer@126.com, dliudi_student@yahoo.cn
Keywords: Pyrrole and m-toluidine Copolymer, Montmorillonite, Thermal property,
Abstract.
Introduction Montmorillonite is an inert and electrically insulating material, which shows unique features of marked cation exchange properties, expandability, taking up of water or organic molecules between their interlayer spaces, thus increasing the d-spacing of the material.1 By incorporating electrically conduc- tive polymer into the interlayer galleries, the insulating montmorillonite clay may be converted to an electrically conducting nanocomposite materials.
The (001) peak is shifted toward a lower angle (5.4°) because of the intercalation of P(PY/MT) material between the MMT layers during nanocomposite synthesis (Fig. 1b-d).
Acknowledgements: This work is supported by NSF of China (51272165 and 51303115), Research Sichuan Province Education Commission (12ZA092), and Foundation of Sichuan University of Science & Engineering (2011RC17), and Research Foundation of Zigong Municipal science and technology Commission (20110041).
[2] Summer, Ali Olad, Azam Rashidzadeh and Maryam Amini: Advances in polymer technology, Vol.32(2013), p.21337 [3] Mohammad Rezaul Karim, Jeong Hyun Yeum, Journal of Polymer Science: Part B: Polymer Physics, Vol. 46(2008), p.2279–2285 [4] Kuila, B.
Introduction Montmorillonite is an inert and electrically insulating material, which shows unique features of marked cation exchange properties, expandability, taking up of water or organic molecules between their interlayer spaces, thus increasing the d-spacing of the material.1 By incorporating electrically conduc- tive polymer into the interlayer galleries, the insulating montmorillonite clay may be converted to an electrically conducting nanocomposite materials.
The (001) peak is shifted toward a lower angle (5.4°) because of the intercalation of P(PY/MT) material between the MMT layers during nanocomposite synthesis (Fig. 1b-d).
Acknowledgements: This work is supported by NSF of China (51272165 and 51303115), Research Sichuan Province Education Commission (12ZA092), and Foundation of Sichuan University of Science & Engineering (2011RC17), and Research Foundation of Zigong Municipal science and technology Commission (20110041).
[2] Summer, Ali Olad, Azam Rashidzadeh and Maryam Amini: Advances in polymer technology, Vol.32(2013), p.21337 [3] Mohammad Rezaul Karim, Jeong Hyun Yeum, Journal of Polymer Science: Part B: Polymer Physics, Vol. 46(2008), p.2279–2285 [4] Kuila, B.
Online since: June 2012
Authors: Jin Yong Xu, Cheng Gao, Yan Tang, Gui Wang, Jing Chun Zhang, Wei Heng Mo
Introduction
The surface technology is the new technology, which is used to improve the material surface properties, and, improve wear resistant of steel materials in recent years.
Conclusions 1. 0Cr18Ni9 austenitic stainless steel after been treated by plasma copper-infiltrated can acquire metallurgical bond graded materials whose surface content of Cu reach up to 3.5%. 2.
Xu and Q Gao: Chinese Engineering Science Vol. 10 (2008), P. 26.
Xu: Chinese Engineering Science Vol. 4 (2002), P. 36.
Wu: Journal of Vacuum Science and Technology Vol. 30 (2010), P. 434.
Conclusions 1. 0Cr18Ni9 austenitic stainless steel after been treated by plasma copper-infiltrated can acquire metallurgical bond graded materials whose surface content of Cu reach up to 3.5%. 2.
Xu and Q Gao: Chinese Engineering Science Vol. 10 (2008), P. 26.
Xu: Chinese Engineering Science Vol. 4 (2002), P. 36.
Wu: Journal of Vacuum Science and Technology Vol. 30 (2010), P. 434.
Online since: February 2019
Authors: L. Grigoryeva, Michail Bruyako
As a result of the influence of the corrosive environment, the construction materials have a decrease in performance.
The influence of bioadditives on the durability of cement materials was studied.
Reddy, Corrosion prevention of reinforced concrete with microbial calcite precipitation, ACI Materials Journal. 109(2) (2012) 157-164
Li et al., Novel Microbial Based Low Energy Green Building Material Production Technology, Advanced Materials Research. 1090 (2015) 96-100
Science Forum. 871 (2016) 70-75
The influence of bioadditives on the durability of cement materials was studied.
Reddy, Corrosion prevention of reinforced concrete with microbial calcite precipitation, ACI Materials Journal. 109(2) (2012) 157-164
Li et al., Novel Microbial Based Low Energy Green Building Material Production Technology, Advanced Materials Research. 1090 (2015) 96-100
Science Forum. 871 (2016) 70-75