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Online since: May 2021
Authors: Yi Han, Tae Wan Kim, Jong Yeon Lim, Xiao Yong Wang
International Journal of Concrete Structures and Materials 12 (2018) 1-13 [2] Wang XY.
ACI Materials Journal 116(2019) 141-151 [3] Sobhani J, Najimi M, Pourkhorshidi AR, Parhizkar T.
Construction and Building Materials 24 (2010) 709-718 [4] Yuan Z, Wang LN, Ji X.
Construction and Building Materials 42 (2013) 205-216 [6] Nedushan BA.
Construction and Building Materials 36 (2012) 665-673 [7] Boga AR, Ozturk M, Topçu IB.
Online since: March 2026
Authors: Viktor Puchý, Marek Vojtko, Peter Tatarko
It is well known that ceramic materials are inherently brittle along grain boundaries, therefore it is appropriate to study the shape memory phenomenon in ceramic materials within a single grain.
Experimental Material and Methods Commercial cerium-stabilized ZrO2 powders, namely PSZ-10C and PSZ-20C (Stanford Advanced Materials, ZrO2 – 10 wt.% CeO2 and ZrO2 – 20 wt.% CeO2, Particle Size: D50 = 0.5–1 μm) were used to prepare the samples.
Denry, Dental Materials, 24 (2008) 289-298
Garvie, Journal of Physical Chemistry, 69, 4 (1965) 1238-1243
Schuh, Science 27, 341, 6153 (2013) 1505-1508
Online since: December 2014
Authors: Anna Diligenskaya, Andrey Mandra
Introduction Investigating thermal process and systems, determining heat conduction conditions, thermal characteristics of materials and other heat parameters are of high priority problems in design, reconstruction and retrofitting of devices of power engineering and industrial facilities.
The IHCP for identification of material thermal characteristics and internal heat source power has been researched in many publications [4-7].
Acknowledgement This work is supported by the Ministry of Education and Science of Russian Federation (Basic Part of Government Contract, Project No. 1271).
Journal of Math.
Journal of Computational Analysis and Applications 11 (2) (2009) 322-327
Online since: August 2009
Authors: Tokunaga Hitoo, Hiroyuki Kinoshita, Kiyohiko Ikeda, Koichi Kaizu, Hiromori Miyagi
High-Strength Porous Ceramics Produced by Recycling Glass Fibers in Waste GFRP Hiroyuki Kinoshita1, a, Koichi Kaizu2, b, Hiromori Miyagi1, c Hitoo Tokunaga3, d and Kiyohiko Ikeda1, e 1 University of Miyazaki, Gakuen-Kibanadai-Nishi, Miyazaki City, 889-2192, Japan a t0d165u@cc.miyazaki-u.ac.jp Keywords: Ceramics, Composite Material, GFRP, Clay, Recycling, Bending strength Abstract In this study, as the effective recycling technique for the waste GFRP, the process for the producing the porous glass fiber reinforced ceramics by firing the mixture of the clay and the crushed waste GFRP was proposed.
Specimens Raw materials for specimens Fig.1 shows the clay produced in Miyazaki Prefecture in Japan and POM plastics (Polyacetal pellets, Trade name: DURACON made in Japan) with glass fibers of 40% used as the raw materials for specimens.
NAGAOKA: Value-Added Recycling of Disposal Plastics, Journal of the JSTP, Vol.49, No.566 (2008), pp.175-179
[4] The Clay Science Society of Japan, Clay Handbook, (1966), pp.701-737, Gihodo Shuppan Co.
Online since: February 2012
Authors: Shao Wu Cai, Xiaoan Yue, Li Zhen Zou, Li Ge Wang, Yong Sheng Zhou, En Ze Wang, Zheng Quan Zhang
Study on new technology of removing abandoned tobacco zinc plate coating by using mechanical method Lizhen Zou1,a , Enze Wang1,b*, Zhengquan Zhang1,c , Lige Wang1,d ,Yongsheng Zhou 1,e, Shaowu Cai1,f ,Xiaoan Yue 1,g 1 State Key Laboratory Cultivation Base for Nonmetal Composites and Functional Materials, Southwest University of Science and Technology, Mianyang 621010,P.R.
Address: State Key Laboratory Cultivation Base for Nonmetal Composites and Functional Materials, Southwest University of Science and Technology, Mianyang 621010, P.R.
A flexible abrasive material and predation process should be found to work effectively [4].
Mechanical method is that remove cladding materials though grinding, olishing lapping[1,2].
[4]Shaopeng Li & Hailiang Xie, Journal of Nan Tong Vocational College,2006,2(20):73-75 In Chinese
Online since: April 2008
Authors: Shu Qing Kou, Jian Qiao, Dong Ye He, She Hua Yang
The experiments including to the press fit and torque strength of lobe/tube joining were carried out.The results show that the torque strength of the cam lobe/shaft joining can availably increase by matching cam and tube materials, choosing appropriate knurling form, enlarging magnitude of interference and extending knurling width.
Introduce Assembled camshaft, where shaft tube and cam lobe are separately produced and then assembled, has offered a range of remarkable advantages in cost reduction, weight saving, optimum combination of cam/ shaft materials, design and manufacture flexibility and performance improvement over conventional camshafts made from one material [1,2].
Material.
The optimum combination of cam/shaft materials has an important influence on joining strength.
References [1] Kou S, Yang S, Zhao Y, et al: China Mechanical Engineering, Vol. 15 (2004), p. 474 [2] Yang S, Zhang C, Kou S, et al: Neiranji gongcheng, Vol. 25 (2004), p. 32 [3] Qiao J, Kou S, Yang S, et al: VEHICLE ENGINE, 1 (2007), p. 1 [4] Yuan.S, Liu.G, Huang.R, et al: Journal of Materials Processing Technology, Vol. 151 (2004), p. 203 [5] Harald M, Andreas K: Automotive Engineering, Vol. 105 (1997), p. 1 [6] M.Hagedorn, K.Weinert: Journal of Materials Processing Technology, Vol. 153-154 (2004), p. 329 [7] Pierre B, Salvator N, Juan R.L.T, et al: SAE Technical Paper Series No.2001010397 (2001), p. 1 [8] Kou S, Qiao J, Yang S, et al: Journal of Jilin University(Engineering and Technology Edition), Vol.37 (2005), p. 1106 [9] Wang Q: CHINA MECHANICAL DESIGN CANON (Jiang Xi Science and Technology Publication, China 2002)
Online since: August 2017
Authors: Béla Illés, Péter Tamás
Illés: Planning and controlling of material flow systems.
Kemsley: Productivity improvement using simulation modelling and lean tools, International Journal of Engineering Sciences & Research Technology, ISSN: 2277-9655, 2016
Rajenthirakumar: Lean Tools and Techniques Implementation in a Manufacturing Industry, Journal of Applied Sciences Research November 2015
Davim: Gamification in Engineering Education and Professional Training, International Journal of Mechanical Engineering Education, Vol. 43(2), pp. 118-131, 2015.
Ito: Integration of e-learning and simulation to user training programme of SMED, International Journal of Internet Manufacturing and Services, Vol.. 3(2) 2013.
Online since: March 2014
Authors: Gui Ji Tang, Zhang Qin Wu, Jin Wang, Wen Xu, Zhan Jie Lv
Combined with the characteristics of hydropower, analyzes the causes of cracks in the turbine, materials, design and manufacturing, operation and so on.
The Reason of the Cracks The reason cracks should be multifaceted and has a certain relationship with the materials, design, manufacturing and operation.
Metallic materials under the stress state within the material inherent defects (pores, inclusions and cracks, etc.) at the first formation of micro-cracks, and to a certain form of the expansion, bringing together until a fracture caused by metal material or surface cracking.
By contrast with the Chinese material composition standards, sample composition meets ZG00Cr13Ni5Mo requirements.
Ma: Journal of science and technology of Tsinghua University, Vol. 48 (2008) No. 5, p. 765
Online since: November 2016
Authors: Xiao Dong Zhao, Hui Qin Chen, Kun Zhang
China 2 Beijing Institute of Aeronautical Materials, AVIC, Beijing 100095, R.P.
Effect of Zr, Er and Cr additions on microstructures and properties of Al–Zn–Mg–Cu alloys, Materials Science & Engineering A. 610 (2014)10–16 [4] G.Y.
Zhang, Progress on research of advanced thermo-mechanical treatment of aluminum alloy, Journal of Materials Science & Engineering.32(2014)284-292 [7] M Tajally, E.
Mechanical and anisotropic behaviors of 7075 aluminum alloy sheet, Materials and Design. 32(2011)1594-1599 [8] Y.Y.Zhang, Y.L Deng, L.
Sitdikov, Geometric dynamic recrystallization in an AA2219 alloy deformed to large strains at an elevated temperature, Materials Science Forum. 467- 470 (2004) 1199- 1204
Online since: June 2012
Authors: Tatsuo Sawada, Ahmad Isnikurniawan, Yoshitaka Moroka, Hiromichi Ohba
Nishida: Numerical analysis of the polishing process of inner tube wall using micron-size particles in magnetic fluid, Materials Science Forum, Vol. 670 (2011), pp. 110-117
Sawada: Ultrasonic propagation velocity in magnetic and magnetorheological fluids due to an external magnetic field, Journal of Physics: Condensed Matter, Vol. 22 (2010) 324102 (5pp)
Sawada: Ultrasonic investigation of the effect of volume fraction on the clustering structures of magneto-rheological fluids, Materials Science Forum, Vol. 670 (2011), pp. 198-206
Carlson: Properties and applications of commercial magnetorheological fluids, Journal of Intelligent Material Systems and Structures, Vol. 10 (1999), pp. 5-13
Schleyer: Electrorheological and magnetorheological fluids in blast resistant design applications, Material and Design, Vol. 23 (2002), pp. 391-404