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Online since: January 2021
Authors: Ya Wang, Li Zhu Liu, Wei Song, Chun Qi Zhang, Ming Yu Zhang
Experimental
Materials.
Chemistry of Materials, 2007. 19(3): p. 393-401
Journal of Applied Polymer Science, 2008. 108(2): p. 705-712
Journal of Functional Materials, 2013. 5: p. 740-743
Journal of Applied Polymer Science, 2012. 125(5): p. 3552-3559
Chemistry of Materials, 2007. 19(3): p. 393-401
Journal of Applied Polymer Science, 2008. 108(2): p. 705-712
Journal of Functional Materials, 2013. 5: p. 740-743
Journal of Applied Polymer Science, 2012. 125(5): p. 3552-3559
Online since: August 2011
Authors: Qin Li
The scholars on porous materials have found[11] that the strength of materials is increasing with the decreasing of the amount of pores.
Building residues is a kind of good recycled material.
Perret,S.O.Prasher, A.R.Kacimov:European Journal of Soil Science.Vol.54(2003), P. 569–579
Mao, R.Xue, Z.X.Yuan:.Journal of Chang’an University(Natural Science Edit ion),Vol.3(2007),P.30-33
Zhang: Science Paper online,Vol.4(2009),P.493-497
Building residues is a kind of good recycled material.
Perret,S.O.Prasher, A.R.Kacimov:European Journal of Soil Science.Vol.54(2003), P. 569–579
Mao, R.Xue, Z.X.Yuan:.Journal of Chang’an University(Natural Science Edit ion),Vol.3(2007),P.30-33
Zhang: Science Paper online,Vol.4(2009),P.493-497
Online since: November 2014
Authors: Hanizah Ab Hamid, Ibrahim Azmi, Rozaina Ismail, Nurul Husna Rajhan
However, most of the journals did not discuss the full process of MRE preparation in detail.
Mu, “A model of the behaviour of magnetorheological materials,” Vol. 5 (1996), pp. 607–614 [2] M.
Stenberg, “Performance of isotropic magnetorheological rubber materials,” Polym.
Stenberg, “Improving the magnetorheological effect in isotropic magnetorheological rubber materials,” Polym.
Samsuri, An Introduction to Polymer Science and Rubber Technology.
Mu, “A model of the behaviour of magnetorheological materials,” Vol. 5 (1996), pp. 607–614 [2] M.
Stenberg, “Performance of isotropic magnetorheological rubber materials,” Polym.
Stenberg, “Improving the magnetorheological effect in isotropic magnetorheological rubber materials,” Polym.
Samsuri, An Introduction to Polymer Science and Rubber Technology.
Online since: December 2024
Authors: Cee Kee Lim, Kean Chong Lim, Muhamad Nurfirdaus Baddrulsham, Joemer Absalon Adorna Jr, Mohd Hanif Mohd Pisal
Sue, "Morphology and mechanical properties of blown films of a low‐density polyethylene/linear low‐density polyethylene blend," Journal of Polymer Science Part B: Polymer Physics, vol. 40, no. 6, pp. 507-518, 2002
Roslan et al., "Optimisation of shrinkage and strength on thick plate part using recycled LDPE materials," Materials, vol. 14, no. 7, p. 1795, 2021
Maspoch, "Effects of recycling on the microstructure and the mechanical properties of isotactic polypropylene," Journal of materials science, vol. 36, pp. 2607-2613, 2001
Thongsang, "Rheology, morphology, and mechanical and thermal properties of recycled PVC pipes," Journal of applied polymer science, vol. 82, no. 10, pp. 2478-2486, 2001
Mantia, "Processing and mechanical properties of recycled PVC and of homopolymer blends with virgin PVC," Journal of applied polymer science, vol. 59, no. 5, pp. 759-767, 1996
Roslan et al., "Optimisation of shrinkage and strength on thick plate part using recycled LDPE materials," Materials, vol. 14, no. 7, p. 1795, 2021
Maspoch, "Effects of recycling on the microstructure and the mechanical properties of isotactic polypropylene," Journal of materials science, vol. 36, pp. 2607-2613, 2001
Thongsang, "Rheology, morphology, and mechanical and thermal properties of recycled PVC pipes," Journal of applied polymer science, vol. 82, no. 10, pp. 2478-2486, 2001
Mantia, "Processing and mechanical properties of recycled PVC and of homopolymer blends with virgin PVC," Journal of applied polymer science, vol. 59, no. 5, pp. 759-767, 1996
Online since: August 2016
Authors: Keila Machado Medeiros, Hélio Lucena Lira, Vanessa da Nóbrega Medeiros, Edcleide Maria Araújo, Diego Farias Lima, Carlos Antônio Pereira de Lima
Experimental
Materials
For this study, it was used the following materials: The polymer matrix used was the polyamide6 (PA6), named Technyl C216 and supplied by Rhodia/SP, Brazil.
Acknowledgements The authors thank to the Bentonit União Nordeste (BUN), to Rhodia/SP, to LabMat (Laboratory of Materials Engineering /CCT/UFCG), to MCT/CNPq and PRH-25/ANP for financial support.
Yang: Journal of Membrane Science Vol. 172 (2000), p. 157
Cheng: Journal of Membrane Science Vols. 415-416 (2012), p. 784
Pereira: Journal of Membrane Science.
Acknowledgements The authors thank to the Bentonit União Nordeste (BUN), to Rhodia/SP, to LabMat (Laboratory of Materials Engineering /CCT/UFCG), to MCT/CNPq and PRH-25/ANP for financial support.
Yang: Journal of Membrane Science Vol. 172 (2000), p. 157
Cheng: Journal of Membrane Science Vols. 415-416 (2012), p. 784
Pereira: Journal of Membrane Science.
Online since: January 2011
Authors: Robert A.W. Mines, Rafidah Hasan, Eva Shen, Sozohn Tsopanos, Wesley Cantwell
Compression strength as well as compressive behaviour of both materials are compared and observed.
Therefore, it can be appointed as a benchmark material in proposing and designing new core materials for sandwich structure.
The results show that constraining the blocks increased the strength of both core materials.
Li: Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material Vol. 15 (3) (2008), p. 255 [8] B.K.
Sutcliffe: Journal of Manufacturing Science and Engineering ASME (2009) [15] L.J.
Therefore, it can be appointed as a benchmark material in proposing and designing new core materials for sandwich structure.
The results show that constraining the blocks increased the strength of both core materials.
Li: Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material Vol. 15 (3) (2008), p. 255 [8] B.K.
Sutcliffe: Journal of Manufacturing Science and Engineering ASME (2009) [15] L.J.
Online since: June 2013
Authors: Silvio Romero de Barros, Sandro Marden Torres, José Felix da Silva Neto, Elisângela Pereira da Silva, Walquiria Galdino Mendes de Farias, Arthur Alves de Albuquerque
These interface models were initially developed to simulate composite materials, but they also became widely used in the simulation of bonded joints.
Materials.
This damaged zone then passes to form a crack that propagates across the interface until there is no longer any connection between the two materials.
Gjelsvik: Journal of Materials in Civil Engineering Vol. 2 (1999), pp. 46-49
Yan: Materials Letters Vol. 59 (2005), pp. 3976-3981.
Materials.
This damaged zone then passes to form a crack that propagates across the interface until there is no longer any connection between the two materials.
Gjelsvik: Journal of Materials in Civil Engineering Vol. 2 (1999), pp. 46-49
Yan: Materials Letters Vol. 59 (2005), pp. 3976-3981.
Online since: November 2010
Authors: Stanislav Seitl, Ladislav Řoutil, Václav Veselý, Jan Klusák
Traditionally, K has been used for the assessment of the crack stability in
brittle materials.
Konig: Construction and Building Materials, 18 (2004), p. 359
Olesen: Journal of Advanced Concrete Technology, 3 (2005), p. 423
[12] RILEM Committee FMC 50: Materials and Structures, 18 (1985), p. 285
Williams: ASME Journal of Applied Mechanics, 24 (1957), p. 109
Konig: Construction and Building Materials, 18 (2004), p. 359
Olesen: Journal of Advanced Concrete Technology, 3 (2005), p. 423
[12] RILEM Committee FMC 50: Materials and Structures, 18 (1985), p. 285
Williams: ASME Journal of Applied Mechanics, 24 (1957), p. 109
Online since: January 2012
Authors: Xiao Mei Fan, Xiao Rong Hu
Introduction
Ultimate axisymmetric punching capacity of concrete slabs are problems related to the three dimensional stress state analysis and the failure properties of the brittle materials.
Among them, the twin-shear failure criterion has abilities to reflect the failure properties for all kinds of materials and take the other existing criteria as its one special case [3, 4].
Hill [20] had pointed out that the Harr-Von Karman’s perfect plastic assumption is not inconsistent with the materials.
Science in China (series E), 2001, 31(4): 323-331 (in Chinese)
Science in China (series E), 2001, 44(2): 207-215 [18] ZHAO Peng-nian.
Among them, the twin-shear failure criterion has abilities to reflect the failure properties for all kinds of materials and take the other existing criteria as its one special case [3, 4].
Hill [20] had pointed out that the Harr-Von Karman’s perfect plastic assumption is not inconsistent with the materials.
Science in China (series E), 2001, 31(4): 323-331 (in Chinese)
Science in China (series E), 2001, 44(2): 207-215 [18] ZHAO Peng-nian.
Online since: October 2011
Authors: De Rong Wang, Chun Ming Song, Ming Yang Wang
Table 5 Compression coefficients of several materials
Material parameter
C30
C40
C50
C60
RPC(5% steel fiber)
Compression coefficient
0.17
0.157
0.15
0.147
0.036
Conclusions
The steel-fiber reactive powder concrete shows high strength and superior performance in terms of anti-explosion capability when compared to reinforced concrete, the compression coefficient of RPC with 0.5% steel fibres under contact explosion is obtained as 0.041 by model tests , it has about 3 times anti-explosion capability compared to C30 reinforced concrete.
Journal of fuzhou university,2005,31(s) 132-137.
Anti-penetration performance of reactive powder concrete reinforced with steel-wire-net.Journal of PLA University of Science and Technology,2008,9(1):57-61(In Chinese) [5] WANG Yao-ming,DUAN Ji-xiang,WANG De-rong,et a1.
Journal of PLA University of Science and Technology,2010,11(3):296-299(In Chinese) [6] WU Xu-tao,HU Shi-sheng,CHEN De-xing,et a1.
[8] An Ming-zhe,Zhang LI-ju,Yi Quan-xin.Size effect on compressive strength of PRC [J].Journal of China University of Nining&Teehnology,2008,(2):279-282.
Journal of fuzhou university,2005,31(s) 132-137.
Anti-penetration performance of reactive powder concrete reinforced with steel-wire-net.Journal of PLA University of Science and Technology,2008,9(1):57-61(In Chinese) [5] WANG Yao-ming,DUAN Ji-xiang,WANG De-rong,et a1.
Journal of PLA University of Science and Technology,2010,11(3):296-299(In Chinese) [6] WU Xu-tao,HU Shi-sheng,CHEN De-xing,et a1.
[8] An Ming-zhe,Zhang LI-ju,Yi Quan-xin.Size effect on compressive strength of PRC [J].Journal of China University of Nining&Teehnology,2008,(2):279-282.