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Online since: November 2011
Authors: Marisa Masumi Beppu, F.C. Vasconcellos, R.A. Bataglioli, E.B. Flores
Materials and Methods Polyelectrolyte Solutions.
Kotov: Advanced Materials, Vol. 18 (2006), p. 3203-3224
Kawai: Journal of Applied Polymer Science, Vol. 108 (2008), p. 2481-2487
Kawai: Journal of Wood Science, Vol. 56 (2010), p. 387-394
Grozeva: Journal of Colloid and Interface Science, Vol. 287 (2005), p. 415-421
Online since: October 2011
Authors: Yang Wang, Xue Feng Wu, Xiang Wei Wang, Hong Zhi Zhang, Li Jun Yan
Laser assisted milling (LAML) is a potential method for machining difficult-to-machine materials such as superalloys and ceramics, which uses a high power laser to focally heat a workpiece prior to material removal with a traditional cutting tool.
LAML is also a potential machining method with the ability of machining planes and grooves of difficult-to-machine materials.
Melkote [12] developed a novel laser assisted micro-milling mach-ine to enable the creation of freeform three-dimensional micro-scale features in hard materials.
The main cutting force is greater than axial force and it is the common characteristics of cutting plastic materials.
References [1] Rozzi JC, Pfefferkorn FE, Shin YC: Journal of Manufacturing Science and Engineering Vol.122(4) (2000), p. 666-670 [2] Rebro PA, Shin YC, Incropera FP: Journal of Manufacturing Science and Engineering Vol.124(4) (2002), p. 875-885 [3] Pfefferkorn FE, Shin YC, Tian Y: Journal of Manufacturing Science and Engineering Vol.126(1) (2004), p.42-51 [4] Anderson M, Patwa R, Shin YC: International Journal of Machine Tools and Manufacture Vol.46(14) (2006), p.1879-1891 [5] Skvarenina S, Shin YC: International Journal of Machine Tools and Manufacture Vol.46(1) (2006),p.7-17 [6] Anderson MC, Shin YC: Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture Vol.220(12) (2006), p.2055-2067 [7] Konig W, Zaboklicki A K: NIST Special Publication, Gaithersburg, MD Vol. 847 (1993), p.455–463 [8] Shen, X. and S.
Online since: July 2012
Authors: Zong Lin Wang, Li Hui Yin
[7] Eric C.M.Su, Thomas T.C.Hsu, Biaxial Compression fatigue and discontinuity of concrete, ACI Materials Journal. 3(1988)178-188
[11] Lemaitre J, A Continuous Damage Mechanics Model for Ductile Fracture, ASEM,Journal of Engineering Materials and Technology. 3(1988)83-89
[12] Miroslaw Grzybowski, Christian Meyer, Damage accumulation in concrete with and without fiber reinforcement, ACI Materials Journal.6(1999)594-604
[17] Freudenthal A M, Heller R A, On stress interaction in fatigue and cumulative damage rule, Journal of the Aerospace Science.7(1959)431-442
[18] Halford G R, The energy required for fatigue, Journal of Materials.1(1966)3-8
Online since: July 2015
Authors: Zhi Ying Ou, Jing Guo
Effect of Surface Stress on the Deformation of an Half-Plane Applied to Nanometer Materials Zhiying Ou1*, Jing Guo1 1*School of Science, Lanzhou University of Technology, Lanzhou 730050, P.R.China 1*zhiyingou@163.com, 1gj303346820@126.com Key words: Circular hole; Surface stress; Nano material.
Mura, Inclusion problem, ASME Journal of Applied Mechanics Review, 1988, pp. 15-20
Keer, Interaction between a rigid indenter and a near-surface void or inclusion, Journal of Applied Mechanics. 50 (1993) 615-620
Pharr, An Improved Technique for Determining Hardness and Elastic Modulus Using Load and Displacement Sensing Indentation Experiment, Journal of Materials Research. 7(1992) 1564-1583
Murdoch, A continuum theory of elastic material surfaces, Arch.
Online since: September 2013
Authors: Jiří Němeček
Materials with continuous but heterogeneous isotropic phases can be successfully treated with statistical grid indentation for many materials like cementitious materials [4-6] geopolymers [7] or metal alloys [8].
An emphasis was put on the behavior of basic building blocks for the distinct materials.
Vlassak et al., The indentation modulus of elastically anisotropic materials for indenters of arbitrary shape, Journal of the Mechanics and Physics of Solids 51 (2003) 1701-1721
Němeček, Nanoindentation Based Analysis of Heterogeneous Structural Materials, in: J.
Němeček (Ed.), Nanoindentation in Materials Science, Intech 2012, ISBN 978-953-51-0802-3
Online since: December 2012
Authors: Zhao Mei Qiu, Yu Qiu Song, Li Yan Wu
The result showed to improve the materials absorbance to 90% is practicable.
In this study, bionic structural material was employed to increase materials utilizing efficiency of solar energy through pure physical structure.
The results confirm the feasibility of increasing solar absorbance through bionic structural materials and lay some theoretical foundation for designing and fabricating of solar materials.
Chinese Journal of Materials Research, Vol. 24 (2001), p. 17-24 [8] Zhibin Li, Yating Wu, Yida Deng, et al.
Science in China Series E: Technological Sciences, Vol. 50 (2007), p. 430-436 [19] G.
Online since: July 2011
Authors: Yun Wang, Kai Zhang, Ya Chun Dai, Jiong Liu, Yuan Yuan Zhang
Appropriate materials of RM.
The raw material quality determines the product quality in a certain degree, and crushing the materials causes the costs rising.
Ramazzotti, Rotational Molding, Journal of Materials Processing Technology. 56 (1996) 263-271
Beall, Rotational Molding - Design, Materials, Tooling and Processing, Journal of Cellular Plastics. 39 (2003) 149~58
Polini, Cold Plasma Technology for Surface Treatment, Journal of Materials Processing Technology. 121 (1999) 69-72
Online since: August 2009
Authors: Zhu Ding, Tie Jun Zhao, Li Tian, Jing Ru Chen
PVA fiber reinforced Strain-hardening Cement-based Materials (SHCC) which is characterized by strain-hardening and multi-micro cracking significantly improves the mechanics performance of cement-based materials.
Obviously cement-based materials play an important role in civil engineering field in China.
Advanced Cement Based Materials.1994,1(3).-142-149 [2]Victor C.
ACI materials journal/American concrete institute.2001, 98(6).-483-492 [3] Mustafa Şahmaran, Mohamed Lachemi, Khandaker M.
ACI Materials Journal.
Online since: May 2014
Authors: Romain Boman, Mark C. Thompson, Robert S. Pierce, Brian Falzon
Journal of the Textile Institute. 1956;47:477-88
Journal of Materials Processing Technology. 2010;210:378-88
Composites Science and Technology. 2011;71:1075-81
International Journal of Material Forming. 2010;3 (Suppl 2):S1241-S51
Composites Science and Technology. 1998;58:229-37
Online since: July 2020
Authors: Ahmad Khartabil, Samer Al Martini
The investigated mixture incorporated relatively high supplementary cementitious materials.
The water-to cementitious materials for these mixtures was 0.45.
Sustainable Concrete Using Recycled Aggregate and Supplementary Cementitious Materials.
ACI Materials Journal, 114(6), 945-956
Johor: IOP Conference Series: Materials Science and Engineering
Showing 3781 to 3790 of 97129 items