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Online since: October 2014
Authors: Qing Fu Yang, Yu Zhang, Han Rui Ma
The pyroclastic flow deposits formed by the eruption in 1000 BP widely distributed to the south of the Guangming Forest and the rockfall deposits in the upstream of the Erdaobai River provide a source for massive solid loose materials.
After volcanic eruption, plants are not developed in the Erdaobai River Basin, eruptive materials are loose thus branch gullies are easily formed, and fall into the Erdaobai River.
Journal of Hydrology, 388, (2010), 399–413 [13] Procter J N, et al.
Journal of Capital Normal University ( Natural Science Edition ), 30(1), (1999), 70-75 (in Chinese) [16] Wan Yuan, et al.
Journ al of Jilin University (Earth Science Edition), 41(5), (2001), 1638-1645 (in Chinese)
Online since: March 2018
Authors: Vladimir Yuryevich Bazhin, Yaroslav Igorevich Kosov
Nie, A study of precipitation strengthening and recrystallization behavior in dilute Al–Er–Hf–Zr alloys, Materials Science and Engineering: A. 639 (2015) 307-313 [6] Z.M.
Zhang Effects of erbium modification on the microstructure and mechanical properties of A356 aluminum alloys, Materials Science and Engineering: A. 626 (2015) 102-107
Seidman, Criteria for developing castable, creep-resistant aluminum-based alloys - A review, International Journal of Materials Research. 97(3) (2006) 246-265
Massalski (Ed.), Binary Alloy Phase diagrams, ASM International, Materials Park, OH, 1990
Science and Technology.
Online since: November 2014
Authors: Ming Hou Xu, Peng Wang, Zhen Guo Chen, Xun Gong, Biao Zhang
Experiment Experimental Materials and the Pocess of Cellulose Regeneration.
Ragauskas: Science, 2006. 311(5760), p. 484-489
Javier Son: Journal of Applied Polymer Science, 1973. 17(12), p. 3627-3635
Shafizadeh: Journal of Applied Polymer Science, 1979. 23(11), p. 3271-3280
Seddon: Science, 2003. 302(5646), p. 792-793
Online since: May 2021
Authors: Oluwarotimi Michael Olofinnade, Iyinoluwa E.E. Davies, Ifeoma W. Egwuonwu
After mixing the constituent materials, potable water was supplied to the mixture to secure a suitable fluid slurry.
The recorded water absorption capacity of sand and granulated PET aggregate materials is 0.95%, and 0.02% respectively.
[5] K.J Appiah, V.N Berko-Boateng, and A.T Tagbor, Use of waste plastic materials for road construction in Ghana Case Studies in Construction Materials 6(2017) 1–7 https://doi.org/10.1016/j.cscm.2016.11.001 [6] J.
Jackson, Civil Engineering Materials 5th ed.
Ghafoori, Evaluation of Alkali-Silica Reactivity Using Aggregate Geology, Expansion Limits of Mortar Bars and Concrete Prisms, and Kinetic Model, Journal of Materials Science Research, 2(2013) 103-117 [33] ASTM C330 – 04 Standard Specification for Lightweight Aggregates for Structural Concrete, American Society for Testing and Materials, ‎West Conshohocken, (2004) [34] J.K Prusty and S.K Patro, Properties of fresh and hardened concrete using agro-waste as partial replacement of coarse aggregate – A review Construction and Building Materials 82(2015) 101–113 [35] BS 2028, Specification for Precast Concrete Blocks , British Standard Institution, London, (1968) [36] J.O Akinyele and I.O Toriola, The effect of crushed plastics waste on the structural properties of sandcrete blocks, African Journal of Science, Technology, Innovation and Development (2018), 1–5 [37] Nigerian Building and Road Research Institute (NBRRI), NBRRI Interlocking Block making Machine, NBRRI Newsletter, 1(2006
Online since: March 2004
Authors: J.M. Zhan, Jun Zhao, F. Zhang, Y.X. Zhu
Higuchi: JSME International Journal, Series C Vol. 44(3) (2001), p. 842 [4] F.
Watanabe, et al: Journal of Robotics and Mechatronics Vol. 13(5) (2001), p. 517 [5] J.
Yu: Key Engineering Materials Vols. 202-203 (2001), p. 73 (Trans.
Zhao, et al: Journal of Materials Processing Technology Vol. 129 (2002) , p. 186 [8] X.C.
Wang: Journal of Materials Processing Technology Vol. 123 (2002), p. 191 [9] Z.X.
Online since: January 2014
Authors: Chang Tao Ji, Xiao Peng Cui, Zi Wei Chen, Jing Jing Huo
LU: Materials Science and Engineering. 16 (1996) 161
LU: Journal of Materials Science & Technology. 19 (2003) 1
LU: Materials Science and Engineering: A Structural Materials Properties Microstructure and Processing. 286 (2000) 91
LI: Materials Science and Engineering.490 (2008) 95
LU: Materials Science and Engineering. 352 (2003) 144
Online since: September 2015
Authors: Elizaveta Beridze, Claudio Gennari, Francesco Michieletto, Marco Breda
Applied Mechanics and Materials 698 (2014), pp. 264–272
Material Science and Engineering A582 (2013), pp. 211–218
Materials Science and Engineering A528 (2011), pp. 3539–3544
Journal of Manufactoring Science and Engineering 135 (2013), 061022-1–061022-8
Materials Research Innovations 2 (1998), pp. 1–8.
Online since: October 2011
Authors: Xian Min Zhang, Ben Liang Zhu
The maximal material usage is restricted to .
Sethian: Journal of computational physics.
Toader: Journal of computational physics.
Min: Journal of computational physics.
Schröder: Journal of computational physics.
Online since: November 2006
Authors: Jan Sladek, Vladimir Sladek, Chuan Zeng Zhang, Xiao Wei Gao
Introduction Functionally graded materials (FGMs) are advanced composite materials with continuously nonhomogeneous material properties [1].
The effects of the materials gradients on the stress intensity factors are investigated and discussed.
Numerical results show that the materials gradient has significant influences on the stress intensity factors.
Mortensen: Fundamentals of Functionally Graded Materials (IOM Communications Ltd., London 1998)
Gao: ASME Journal of Applied Mechanics Vol. 69 (2002), p. 154
Online since: July 2011
Authors: Bo Lin Liang
Experimental Materials Dialdehyde starch was prepared in the literature [3].
Ranjith: Journal of Microencapsulation.
Coutinho, er al: Journal of Materials Science: Materials in Medicine.
Zhou: New Building Materials.
Ashok Kumar, et al: Journal of Pharmaceutical Science and Research.