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Online since: December 2010
Authors: Shao Feng Nie, Xiu Mei Wang, Tian Hua Zhou, Xiang Bin Liu
Study on Mechanical Behavior of Concrete-Filled Square Tubular Column and Bolt-Weld Steel Beam Joints with Reduced Beam Section Shaofeng Nie1,a, Tianhua Zhou1,b, Xiangbin Liu1 and Xiumei Wang2 1School of Architectural Engineering, Chang’an University, Xi’an 710061, Shanxi, China 2Beijing Guanya Weiye Civil Architectural Design Company, Limited, Beijing 100034, China aniesf126@126.com, bzhouth@chd.edu.cn, Keywords: Concrete-Filled Square Tubular Column; Beam-Column Joint; Reduced Beam Section; Finite-Element Analysis Abstract: The nonlinear FEM models of concrete-filled square tubular column with internal diaphragms and steel beams with reduced beam section bolt-weld joints, involving geometric, materials and contact nonlinear, were established.
The connection of specimen is welding and bolt, and we can get the characteristic of all material from the test [4].
Acknowledgement This work is supported by Shaanxi natural science foundation (2004E205).
Journal of Building Structures, Vol. 25(1) (2004), p. 9-16.
Online since: October 2013
From which 151 papers have been accepted for presentation at the conference and will be published by TTP, in Applied Mechanics and Materials (AMM) Journal (ISSN: 1660-9336), which is online available in full text via the platform www.scientific.net.
The 3rd International Conference on Computer-Aided Design, Manufacturing, Modeling and Simulation (CDMMS2013) is organized by Hunan Institute of Engineering, Zhejiang Gongshang University, Nanyang Technological University, Shanghai Jiao Tong University, Beijing University, and sponsored by National Natural Science Foundation of China (NSFC), Provincial Natural Science Foundation of Hunan (13JJ9022), Provincial Science & Technology plan project of Hunan(2013GK3029).
Lahore, Pakistan Mian Muhammad Awais, Lahore University of Management Science Lahore, Pakistan Ing.
Li, University of Georgia, USA G.H.Gao,Henan Institute of Science and Technology ,China M.J.
Lin, Norwegian University of Science and Technology, Norwegian Y.W.
Online since: December 2012
Authors: Dyi Cheng Chen, Jiun Ru Shiu, Fung Ling Nian, Ming Ren Chen
Metallic materials are processed through plastic deformation.
This not only changes the appearance but also changes the internal organization of materials that improve mechanical properties.
Muralikrishna:Materials and Design Vol. 29 (2008), p. 1623 [2] Y.
Xu: Journal of Materials Processing Technology Vol. 209 (2009), p. 745 [3] M.
Peng: Journal of Plasticity Engineering Vol. 17 (1) (2010), p. 93 [5] J.F.
Online since: September 2014
Authors: Manabu Iwai, Kiyoshi Suzuki, William Chen
Introduction In the cutting work of non-ferrous hard to machine materials such as silicon aluminum alloy and CFRP, cutting tools tipped with diamond based materials such as PCD, CVD diamond or single crystal diamond are used.
This work was partly supported by Osawa Scientific Studies Grants Foundation and Japan Society for the Promotion of Science (Grant-in-Aid for Scientific Research (C)).
References [1] C.F.Yang, M.Yoshikawa: On polishing of diamond film with hot metal (The optimum polishing condition), Journal of JSPE, 57-1 (1991) 184-189 (in Japanese)
[2] T.Nakano, A.Miyoshi, M.Touge, J.Watanabe: Ultra-precision machining of PCD by UV-assisted polishing, Journal of Japan Society for Abrasive Technology, Vol.53, No.4 (2009) pp.242-247.
[5] K.Suzuki, M.Iwai, T.Uematsu, N.Yasunaga : Material Removal Mechanism in Dynamic Friction Polishing of Diamond, Key Engineering Materials Vols.238-239, Advances in Abrasive Technology V (2003) pp.235-240.
Online since: April 2011
Authors: Ping Wang, Xiao Yang Shen, Jun Yao
WRD Methods of Driving Medium of Drive System. (1)Using light-duty materials: Belt roller, timing belt wheel and mini- type gear can be made by light-duty materials, such as Al and Mg alloy or plastics. (2) Rationally distributing drive ratio of multi-shaft drive system.
Since light-duty materials can not satisfy requirement that gear and rag wheel endure impact load, the rotary inertia can be obviously reduced by structure optimization, reasonable design in gear’s former and spoke.
Koo: International Journal of Automotive Technology Vol. 10(2009), No.3, p. 355 [2] S.
Wang: Journal of Mechanical Engineering Vol. 44(2008), No. 2, p.129 [3] X.
Y Shen: Advanced Materials Research Vol. 139-141 (2010), p.1406
Online since: November 2012
Authors: Fabio de Angelis, Donato Cancellara
[14]Cancellara, D., De Angelis, F., Pasquino, V., Displacement based approach for the seismic retrofitting of a RC existing building designed for only gravitational loads, Applied Mechanics and Materials, Vol. 166-169, (2012), pp. 1718-1729
Journal for Multiscale Computational Engineering, Vol. 5, n. 2, (2007), pp. 105-116
[18]De Angelis, F., Multifield potentials and derivation of extremum principles in rate plasticity, Materials Science Forum, Vol. 539-543, (2007), pp. 2625-2630
[19]De Angelis, F., Evolutive laws and constitutive relations in nonlocal viscoplasticity, Applied Mechanics and Materials, Vol. 152-154, (2012), pp. 990-996
[23]De Angelis, F., Cancellara, D., Implications due to different loading programs in inelastic materials, Advanced Material Research, Vol. 422, (2012), pp. 726-733
Online since: February 2026
Authors: Sylvester Olanrewaju Omole
They are the most widely used structural materials and the most important functional materials in the modern era.
Steel is one of the most important materials used widely for both domestic and industrial purposes throughout the world.
It is the foundation for industrial growth: They are raw materials used in the construction industries such as in buildings, roads and bridges.
Journal of New Economics and Social Sciences 2(10), 2019. 75-83
The South African Journal of Industrial Engineering, 28(4), 2017, 1 – 13
Online since: January 2013
Authors: Wen Ping Chen, Yong Su, Ping Hu, Yan Jiang
Effects of Alloy Composition and Annealing Treatment on the Performance of Aluminum Conductor Wenping Chen1,a,Yong Su1,b,Ping Hu1,Yan Jiang1 1School of Materials Science and Engineering, Hefei University of Technology, Hefei, Anhui 230009, P.R.
In contrast, the costs for materials of aluminum cable are cheaper and relatively stable; the resources of materials are abundant and rich as well [1].
Experimental Materials, Equipment and Procedure Experimental Materials Industrial aluminum 1070, iron 75, pure magnesium, aluminum-copper alloy, aluminum-boron alloy, aluminum-cerium alloy, encapsulated agent, refining agent, and hexachloroethane.
Principle and application of cable technology (China machine press, PRC, 2011) [7] Huashun Liu, Guoquan Bi, Changmao Li: Materials for mechanical engineering.
Patent201110060732. 6. (2011) [9] Liping Wang, Fuwei Kang, Erjun Guo: Journal of the Chinese rare earth society.
Online since: October 2011
Authors: Meng Ye, Qi Zhuang He, Rui Chen, Jin Huang
The structure of the materials was confirmed by Powder X-ray diffraction.
However, most adsorbents, both natural and synthetic materials, are effective for As(V) [12,13], but they fail in the case of As(III)[14,15].
XRD patterns of the materials are shown in Figure 2.
Figure 3 shows nitrogen adsorption-desorption isotherms for the materials, which exhibit a typical type Ⅳ isotherm with an H1 hysteresis loop as defined by IUPAC [23].
Pore parameters for the materials are shown in Tabla 1.
Online since: December 2018
Authors: Thawatchai Boonluang, Kritsana Thummikanonth, Pairoj Sapsamanwong, Apirath Gositanon
The raw materials were given two different type of fluid on quenching and four different type of temperature on tempering to obtain varying a phase volume which indicated directly relationship with final mechanical properties of raw material.
Callister Jr.: Materials Science and Engineering, 4th Edition, Department of Metallurgical Engineering, The University of Utah
Jones: Rocket materials - a challenge for metallurgists, J.
Van Tyne, “Correlation of yield strength and tensile strength with hardness for steels”, Journal of Materials Engineering and Performance, vol. 17(6)( December 2008), pp. 888-893
[14] Fundamentals of Modern Manufacturing: Materials, Processes, and Systems, 4th Edition, 2010, USA.