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Online since: March 2008
Authors: Bin Shi Xu, Yong Xiong Chen, Jin Yuan Bai, Xiu Bing Liang, Jiang Bo Cheng
An automatic high velocity arc spraying system
Jin-Yuan Bai1,a, Yong-Xiong Chen
1, Jiang-Bo Cheng2 , Xiu-Bing Liang1, Bin-Shi Xu1,b
1 National Key Laboratory for Remanufacturing, Academy of Armored Forces Engineering, Beijing
100072, China
2 School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai
200240, China
a
bjy_206zdhz@sina.com, bxubinshi@vip.sina.com
Keywords: Automatic; High velocity arc spraying; Remanufacture; Maintenance
Abstract A new automatic high velocity arc spraying system was developed.
Acknowledgements This work was supported by Chinese National "973" Project (2007CB607601), Chinese National Scientific and Technical support project (2006BAF0219) and Key project of China Natural Science Foundation (50735006).
ASME Journal of Tribology. 2000,122(7):646-649 [2] B.S.
Journal of Materials Processing Technology 138 (2003) 443-448 [4] A.P.
Journal of Materials Processing Technology 178 (2006) 259-269 [5] S.H.
Acknowledgements This work was supported by Chinese National "973" Project (2007CB607601), Chinese National Scientific and Technical support project (2006BAF0219) and Key project of China Natural Science Foundation (50735006).
ASME Journal of Tribology. 2000,122(7):646-649 [2] B.S.
Journal of Materials Processing Technology 138 (2003) 443-448 [4] A.P.
Journal of Materials Processing Technology 178 (2006) 259-269 [5] S.H.
Online since: December 2010
Authors: Ya Li Hou, Chang He Li, Jing Yao Li
Introduction
Grinding processes are mainly technique employed widely as a finishing and difficult-to machine such as hardness and brittleness materials finishing.
Jahanmir: Journal of Tribology ASME Vol.123 (2001), p. 101–107 [2] E.
Malkin: Journal for Engineering for Industry ASME Vol.114 (1992), p. 427–434 [4] C.
Advanced Materials Research Vol. 135 (2010), p. 429-434 [7] Y.L.
Advanced Materials Research Vol. 97-101 (2010), p.1836-1840
Jahanmir: Journal of Tribology ASME Vol.123 (2001), p. 101–107 [2] E.
Malkin: Journal for Engineering for Industry ASME Vol.114 (1992), p. 427–434 [4] C.
Advanced Materials Research Vol. 135 (2010), p. 429-434 [7] Y.L.
Advanced Materials Research Vol. 97-101 (2010), p.1836-1840
Online since: September 2013
Authors: Qing Wang, Xi Cheng, Ya Hui Zhang
CdS and CdSe (groups II-VI) turned to be the most attractive semiconductor materials (due to its optical and electronic properties), which could be incorporated into multisegmented nanowires to create optoelectronic devices[1, 2].
Still, further investigations and more works are needed to: (1) find new methods to produce materials. (2) research the mechanism of the nanostructures growth. (3) expand the application range of the nanostructures.
N110423002), the Natural Science Foundation of Hebei Province of China (Grant No.
Gupta, The Journal of Physical Chemistry C Vol. 114 (2010), p. 2551 [4] X.
Gao, The Journal of Physical Chemistry C Vol. 113 (2009), p. 10981 [5] F.
Still, further investigations and more works are needed to: (1) find new methods to produce materials. (2) research the mechanism of the nanostructures growth. (3) expand the application range of the nanostructures.
N110423002), the Natural Science Foundation of Hebei Province of China (Grant No.
Gupta, The Journal of Physical Chemistry C Vol. 114 (2010), p. 2551 [4] X.
Gao, The Journal of Physical Chemistry C Vol. 113 (2009), p. 10981 [5] F.
Online since: October 2014
Authors: Jian Luo, Yu Zong, Chen Xu Du
Finite element simulation of recycled concrete slabs with anchor bolts
The simulation use the ABAQUS nonlinear finite element software which handle the nonlinear materials better.
The material parameters are shown in Table 1.
Table 1 Material parameters materials Concrete Steel plates The steel bars The stirrups of Column The plates of anchors Anchor bars Strength grade C40 HRB400 HRB400 HRB335 Q235 HPB235 Density (KN/m ³) 25 78.5 78.5 78.5 79 78.5 Modulus of elasticity ×104N/mm²) 3.25 20 20 20 21 21 Poisson's ratio 0.2 0.3 0.3 0.3 0.3 0.3 The constitutive relation of ordinary concrete used in simulation is from "code for design of concrete structures" (GB50010-2010), parameters and constitutive relation formula are taken from the appendix C.2 (GB50010-2010).
Journal of building structures, 1999, 20 (1): 50-58
Journal of building structures, 1982 (1): 1-8
The material parameters are shown in Table 1.
Table 1 Material parameters materials Concrete Steel plates The steel bars The stirrups of Column The plates of anchors Anchor bars Strength grade C40 HRB400 HRB400 HRB335 Q235 HPB235 Density (KN/m ³) 25 78.5 78.5 78.5 79 78.5 Modulus of elasticity ×104N/mm²) 3.25 20 20 20 21 21 Poisson's ratio 0.2 0.3 0.3 0.3 0.3 0.3 The constitutive relation of ordinary concrete used in simulation is from "code for design of concrete structures" (GB50010-2010), parameters and constitutive relation formula are taken from the appendix C.2 (GB50010-2010).
Journal of building structures, 1999, 20 (1): 50-58
Journal of building structures, 1982 (1): 1-8
Online since: May 2014
Authors: John N. Mundy
Unfortunately when I sat down to write I discovered two problems: in the majority of materials that I investigated atoms did follow a random walk; and the history of random walk has been well documented and shows little connection to diffusion.
In 1892 Pearson wrote “The Grammar of Science”.
Science changed rapidly in the twentieth century.
Vacancies occur naturally in all crystalline materials.
For twelve years at the end of my career I was an associate editor with the Journal of Applied Physics and for the last five years I worked as a consultant at the Office of Basic Energy Sciences, U.S.
In 1892 Pearson wrote “The Grammar of Science”.
Science changed rapidly in the twentieth century.
Vacancies occur naturally in all crystalline materials.
For twelve years at the end of my career I was an associate editor with the Journal of Applied Physics and for the last five years I worked as a consultant at the Office of Basic Energy Sciences, U.S.
Online since: May 2022
Authors: Nestor Agreda, Jimmy Vasquez, Vieri Cardenas
Materials and Methods
General.
Specimen Materials Sandy Soil.
For this research we used two types of reinforcement materials, the gravel column, and the pile.
These materials were purchased at the nearest hardware store.
In addition, it was analyzed how each of the columns was settling with its different materials.
Specimen Materials Sandy Soil.
For this research we used two types of reinforcement materials, the gravel column, and the pile.
These materials were purchased at the nearest hardware store.
In addition, it was analyzed how each of the columns was settling with its different materials.
Online since: January 2022
Authors: Subramonian Sivarao, S. Pujari, Aidy Ali, Ku Zarina Ku Ahmad
Advanced Materials Research Vol. 903 (2014), pp. 61-66
[2] Sivarao, P.
Journal of Computer Science Vol. 5, No. 10 (2009), p. 704-710 [3] M.
Journal of Mechanical Science and Technology Vol. 27 (2013), p. 2115-2124 [7] H.A.
Shirley: Laser Cutting of Polymeric Materials: An Experimental Investigation.
Journal of Material Processing Technology Vol. 168 (2005), p. 438-447
Journal of Computer Science Vol. 5, No. 10 (2009), p. 704-710 [3] M.
Journal of Mechanical Science and Technology Vol. 27 (2013), p. 2115-2124 [7] H.A.
Shirley: Laser Cutting of Polymeric Materials: An Experimental Investigation.
Journal of Material Processing Technology Vol. 168 (2005), p. 438-447
Online since: March 2017
Authors: Zdeněk Prošek, Lukáš Hlubocký
This paper deals with the use of waste materials from processing of stone in the construction
industry.
Because of the improvement of the environment or the reduction of environmental degradation and reduction in quantity of waste materials which are not reusable, the effort to utilize these waste materials in harmony with sustainable development principles increases [1].
The estimated quantity of waste materials from the extraction in Egypt is 6.4 million tons per year [2].
The best way how to make these waste materials on the basis of marble and limestone reusable is recovery [3].
Ibrahim, et al., Health Risk Assessment of Marble Dust at Marble Workshops, Nature and Science, 9 (2011) 144-154
Because of the improvement of the environment or the reduction of environmental degradation and reduction in quantity of waste materials which are not reusable, the effort to utilize these waste materials in harmony with sustainable development principles increases [1].
The estimated quantity of waste materials from the extraction in Egypt is 6.4 million tons per year [2].
The best way how to make these waste materials on the basis of marble and limestone reusable is recovery [3].
Ibrahim, et al., Health Risk Assessment of Marble Dust at Marble Workshops, Nature and Science, 9 (2011) 144-154
Online since: May 2026
Authors: Hoorab Shoaib
Unlike OPC, which involves high energy and fuel expenses, these supplementary materials require minimal processing and transportation.
Construction and Building Materials, 22(8), 1675–1683
International Journal of Concrete Structures and Materials, 12, Article 17
Mangi et al., “Influence of combined supplementary cementitious materials on mechanical and durability performance of concrete,” SN Applied Sciences, vol. 6, 2024.
Materials, 9(3):146. https://doi.org/10.3390/ma9030146
Construction and Building Materials, 22(8), 1675–1683
International Journal of Concrete Structures and Materials, 12, Article 17
Mangi et al., “Influence of combined supplementary cementitious materials on mechanical and durability performance of concrete,” SN Applied Sciences, vol. 6, 2024.
Materials, 9(3):146. https://doi.org/10.3390/ma9030146
Online since: October 2011
Authors: Yi Shen, Xiao Ming Sang, Lei Zhang, Run Zeng Wang, Xing Gang Chen, Man An
Experimental
Materials and Synthesis.
Materials and synthesis of polyurethane-imide foams are same as the process used by Sang [5].
Valle: Journal of Food Engineering Vol. 98(2010), p. 19
Yu: Advanced Materials Research Vols. 150-151 (2011), p. 1123
Xu: New Carbon Materials Vol. 24(2009), p. 321.
Materials and synthesis of polyurethane-imide foams are same as the process used by Sang [5].
Valle: Journal of Food Engineering Vol. 98(2010), p. 19
Yu: Advanced Materials Research Vols. 150-151 (2011), p. 1123
Xu: New Carbon Materials Vol. 24(2009), p. 321.