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Online since: September 2013
Authors: Bin Guo, Hao Tang, Pan Xin Li, Hai Tian Jiang
Magdy et al. [2] found that yield stress increased slightly with increasing the TPS content up to 20 wt%, and it began to decrease when TPS content up to 25 wt%.
Wang et al. [6] prepared TPS/LDPE blends using maleic anhydride as compatibilizer by one-step molding method, starch and polyethylene mass ratio was up to 7:1, but it was found that the one-step molding step may cause bad mixing of starch and glycerol, which affected the formation of thermoplastic starch.
Bikiaris et al. [7] used two-step molding to prepare LDPE/TPS plastic, thermoplastic starch was first prepared, and then adding a certain amount of the compatibilizer maleic anhydride grafted polyethylene (PE-g-MA) and LDPE to blend extrude LDPE/TPS plastic.
El-Naggar Abdel: Polymer Composites Vol. 29(2008), p. 1140
Wang et al. [6] prepared TPS/LDPE blends using maleic anhydride as compatibilizer by one-step molding method, starch and polyethylene mass ratio was up to 7:1, but it was found that the one-step molding step may cause bad mixing of starch and glycerol, which affected the formation of thermoplastic starch.
Bikiaris et al. [7] used two-step molding to prepare LDPE/TPS plastic, thermoplastic starch was first prepared, and then adding a certain amount of the compatibilizer maleic anhydride grafted polyethylene (PE-g-MA) and LDPE to blend extrude LDPE/TPS plastic.
El-Naggar Abdel: Polymer Composites Vol. 29(2008), p. 1140
Online since: January 2017
Authors: Remy Tiako, Innocent Davidson, Patrick Taiwo Ogunboyo
[4] Rosli Omar, et al, Dynamic Voltage Restorer Application for Power Quality Improvement in Electrical Distribution System, An Overview.
El Mofty, K.
El-Gammal, Amr Y.
El-Shennawy,,“ Dynamic Voltage Restorer (DVR) for Voltage Sag Mitigation”,International Journal on Electrical Engineering and Informatics, vol.3, no.1, (2011) 1-11
Al-Hadidi, A.
El Mofty, K.
El-Gammal, Amr Y.
El-Shennawy,,“ Dynamic Voltage Restorer (DVR) for Voltage Sag Mitigation”,International Journal on Electrical Engineering and Informatics, vol.3, no.1, (2011) 1-11
Al-Hadidi, A.
Online since: December 2012
Authors: Ibram Ganesh, P.S.C. Sekhar, G. Padmanabham, G. Sundararajan
For the synthesis of Li (0.2, 0.4, 0.6, 0.8, 1.0, 2.0, 4.0, 6.0, 8.0 and 10 at. wt.%) and Al (0.5 at. wt.%) co-doped ZnO powders, aluminum nitrate (Al(NO3)3.9H2O) was employed as the source of Al.
Abu El-Fadl, E.M.
El-Maghraby, G.A.
Mohamed, M. bd El-Moiz, Rashad, Physica B: Condensed Matter, 370 (1-4) (2005) 158-167
Al-Sayyed, S.
Abu El-Fadl, E.M.
El-Maghraby, G.A.
Mohamed, M. bd El-Moiz, Rashad, Physica B: Condensed Matter, 370 (1-4) (2005) 158-167
Al-Sayyed, S.
Online since: August 2023
Authors: Ahmed Alami Merrouni, Maryam Mehdi, Nabil Ammari, Mohamed Dahmani, Aboubakr Benazzouz
Congedo et al. [16] evaluated the performance of a monocrystalline system installed in a warm Mediterranean location in Italy for the duration of 8 months.
On the other hand, Makrides et al. [17] compared the performance of thirteen grid-connected PV systems installed in Nicosia, Cyprus, and Stuttgart, Germany.
Al-Qattan, B.
El Bah, A.
El Daif, “Performance of Silicon Heterojunction Photovoltaic modules in Qatar climatic conditions,” Renew.
On the other hand, Makrides et al. [17] compared the performance of thirteen grid-connected PV systems installed in Nicosia, Cyprus, and Stuttgart, Germany.
Al-Qattan, B.
El Bah, A.
El Daif, “Performance of Silicon Heterojunction Photovoltaic modules in Qatar climatic conditions,” Renew.
Online since: June 2011
Authors: R. Mascorro, M. Corea
., et al., Axisymmetric adhesion tests of soft materials.
[2] Garrett, J., et al., Water-borne pressure-sensitive adhesives: effects of acrylic acid and particle structure.
[3] Mallegol, J., et al., Origins and Effects of a Surfactant Excess near the Surface of Waterborne Acrylic Pressure-Sensitive Adhesives.
El-Aasser, John Wiley & Sons, England, 1997, p. 398
Aymonier, et al., Control of structure and tack properties of acrylic pressure-sensitive adhesives designed by a polymerization process.
[2] Garrett, J., et al., Water-borne pressure-sensitive adhesives: effects of acrylic acid and particle structure.
[3] Mallegol, J., et al., Origins and Effects of a Surfactant Excess near the Surface of Waterborne Acrylic Pressure-Sensitive Adhesives.
El-Aasser, John Wiley & Sons, England, 1997, p. 398
Aymonier, et al., Control of structure and tack properties of acrylic pressure-sensitive adhesives designed by a polymerization process.
Online since: June 2014
Authors: Mariano Marcos Bárcena, Lorenzo Sevilla Hurtado, Francisco Javier Trujillo Vilches
Experimental
Several machining tests were performed with test pieces of UNS A97075-T6 (Al-Zn) alloy.
Composition of machined alloy [% mass] Zn Mg Cu Cr Fe Al 6.03 2.62 1.87 0.19 0.15 Rest The machining tests were carried out using techniques with low environmental impact.
El-Hossainy, Machinability of 7116 Structural Aluminum Alloy, Materials and Manufacturing Processes, 21 (2006) 23-27
Marcos, Parametric Potential Model for Determining the Micro-Geometrical Deviations of Horizontally Dry-Turned UNS A97075 (Al-Zn) Alloy, Advanced Science Letters, 19 (2013) 731-735
Marcos, Roughness Prediction Models for Tangential Cutting Forces in the Dry Turning of Al-Cu Alloys, Proceedings of the 14th International Conference on Advances in Material Processing Technologies AMPT, Estambul, 2011.
Composition of machined alloy [% mass] Zn Mg Cu Cr Fe Al 6.03 2.62 1.87 0.19 0.15 Rest The machining tests were carried out using techniques with low environmental impact.
El-Hossainy, Machinability of 7116 Structural Aluminum Alloy, Materials and Manufacturing Processes, 21 (2006) 23-27
Marcos, Parametric Potential Model for Determining the Micro-Geometrical Deviations of Horizontally Dry-Turned UNS A97075 (Al-Zn) Alloy, Advanced Science Letters, 19 (2013) 731-735
Marcos, Roughness Prediction Models for Tangential Cutting Forces in the Dry Turning of Al-Cu Alloys, Proceedings of the 14th International Conference on Advances in Material Processing Technologies AMPT, Estambul, 2011.