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Online since: January 2012
Authors: Qing Long An, Zhi Qiang Liu, Ming Chen, Ying Ying Wei
Orthogonal tests are adopted in order to compare the cutting performance of the two materials.
We can see that the surface roughness of the two materials was worse at low cutting speed.
Fig. 3 Surface roughness of the two materials Tool Wear.
Through the contrast experiments, we observe the difference of machinability between the two materials.
Karnik: Journal of Materials Processing Technology, Vol. 205 (2008), p.16-23
We can see that the surface roughness of the two materials was worse at low cutting speed.
Fig. 3 Surface roughness of the two materials Tool Wear.
Through the contrast experiments, we observe the difference of machinability between the two materials.
Karnik: Journal of Materials Processing Technology, Vol. 205 (2008), p.16-23
Online since: April 2013
Authors: Lan Lan He, Zhao Lu Qin, Yan Hua Lan, Ding Hua Li, Rong Jie Yang, Yi Zhang
Introduction
Recent years, phosphazene has been extensively studied as biomedical materials,liquid crystal materials and flame retardants because of its particular structure and properties.
Experimental Materials.
Mao, Research and application of polyphosphazenes, New Chemical Materials. 38(2010)22-26
Journal of Applied Polymer Science. 77(2000)2987-2995
Yeh, etc, Curing and combustion properties of a PU-coating system with UV-reactive phosphazene, Journal of Applied Polymer Science. 85(2002)1980-1991
Experimental Materials.
Mao, Research and application of polyphosphazenes, New Chemical Materials. 38(2010)22-26
Journal of Applied Polymer Science. 77(2000)2987-2995
Yeh, etc, Curing and combustion properties of a PU-coating system with UV-reactive phosphazene, Journal of Applied Polymer Science. 85(2002)1980-1991
Online since: October 2010
Authors: Zhi Feng Liu, Liu Xian Zhao, Xin Yu Li, Huan Bo Cheng, Hong Chao Zhang
(3) The principle of compatibility of materials
The manufacturing of every electronic product needs different materials because of functional
requirements.
When classify the steps of product, it is conducive to recycling the materials if the components and parts with the same or compatible materials are disassembled in the same step
Due to the materials of the front cover, the battery compartment cover are made of PVC material which receives irradiation after casting, they satisfy the principle of compatibility of materials, then enter procedure 8.
The Journal of Sustainable Product Design, (2002)No.2, pp.69-82
Journal Of ShanDong University (Engineering Science), Vol.36(2006)No.2, pp. 52-57.
When classify the steps of product, it is conducive to recycling the materials if the components and parts with the same or compatible materials are disassembled in the same step
Due to the materials of the front cover, the battery compartment cover are made of PVC material which receives irradiation after casting, they satisfy the principle of compatibility of materials, then enter procedure 8.
The Journal of Sustainable Product Design, (2002)No.2, pp.69-82
Journal Of ShanDong University (Engineering Science), Vol.36(2006)No.2, pp. 52-57.
Online since: June 2019
Authors: Shu Yi Wei, Shi Jin Liu, Li Long Zhang, Hai Sheng Zhang, Guan Nan Du, Kai Nan Zhang, Rong Fan, Li Xin Guo, Ning Nan Zhang, Yi Fei Ma, Xiu Xia Zhang, Yuan-ze Ma
Journal of hunan university, 2008,8 (8): 55-58
The integration of nanoscale porous silicon light emitters: materials science, properties, and integration with electronic circuitry [J].
Journal of Luminescence. 2009, 80(1-4): 53–64
Material Science & Processing, Appl.A, [J].2004:(2): 279-292
Journal of functional materials and devices,[J].2002.8(3):293-296 [10] Hong, M.H., Park, C.S., Seo, W.S., Lim, Y.S., Lee, J.K. and Park, H.H. (2013) Thermoelectric properties of Al-doped mesoporous ZnO thin films.
The integration of nanoscale porous silicon light emitters: materials science, properties, and integration with electronic circuitry [J].
Journal of Luminescence. 2009, 80(1-4): 53–64
Material Science & Processing, Appl.A, [J].2004:(2): 279-292
Journal of functional materials and devices,[J].2002.8(3):293-296 [10] Hong, M.H., Park, C.S., Seo, W.S., Lim, Y.S., Lee, J.K. and Park, H.H. (2013) Thermoelectric properties of Al-doped mesoporous ZnO thin films.
Online since: July 2020
Authors: Nafisah Osman, Oskar Hasdinor Hassan, Montri Suklueng, Lidyayatty Abdul Malik, Shazana Mohd. Senari, Abdul Mutalib Md Jani
All powder materials were synthesized using a sol-gel method.
All the powder materials were synthesized using a sol-gel method as previously reported by our research group [8-10].
Traversa, Materials challenges toward proton-conducting oxide fuel cells: a critical review.
ACS applied materials & interfaces, 2016. 8(14): p. 9097-9103
Journal of Sol-Gel Science and Technology, 2016. 80(2): p. 259-266.
All the powder materials were synthesized using a sol-gel method as previously reported by our research group [8-10].
Traversa, Materials challenges toward proton-conducting oxide fuel cells: a critical review.
ACS applied materials & interfaces, 2016. 8(14): p. 9097-9103
Journal of Sol-Gel Science and Technology, 2016. 80(2): p. 259-266.
Online since: April 2021
Authors: Yana Taryana, Sovian Aritonang, Yus Rama Denny, Teguh Firmansyah, Adhitya Trenggono, Irvan Revaldi
These composite materials are expected to be able to absorb microwaves in the X-Band frequency range (8.2 GHz to 12.5 GHz), therefore, this material can be applied to application.
Jha, Trends in radar absorbing materials technology, Sadhana. 20 (1995) 815–850. https://doi.org/10.1007/BF02744411
Rhyee, Second order magnetic phase transition and scaling analysis in iron doped manganite La0.7Ca0.3Mn1−xFexO3 compounds, Journal of Magnetism and Magnetic Materials. 395 (2015) 41–47. https://doi.org/10.1016/j.jmmm.2015.07.033
Chen, Hydrogenated TiO2 Nanocrystals: A Novel Microwave Absorbing Material, Advanced Materials. 25 (2013) 6905–6910. https://doi.org/10.1002/adma.201303088
İçin, Manufacturing radar-absorbing composite materials by using magnetic Co-doped zinc oxide particles synthesized by Sol-Gel, Journal of Composite Materials. 54 (2020) 4059–4066. https://doi.org/10.1177/0021998320927754
Jha, Trends in radar absorbing materials technology, Sadhana. 20 (1995) 815–850. https://doi.org/10.1007/BF02744411
Rhyee, Second order magnetic phase transition and scaling analysis in iron doped manganite La0.7Ca0.3Mn1−xFexO3 compounds, Journal of Magnetism and Magnetic Materials. 395 (2015) 41–47. https://doi.org/10.1016/j.jmmm.2015.07.033
Chen, Hydrogenated TiO2 Nanocrystals: A Novel Microwave Absorbing Material, Advanced Materials. 25 (2013) 6905–6910. https://doi.org/10.1002/adma.201303088
İçin, Manufacturing radar-absorbing composite materials by using magnetic Co-doped zinc oxide particles synthesized by Sol-Gel, Journal of Composite Materials. 54 (2020) 4059–4066. https://doi.org/10.1177/0021998320927754
Online since: July 2014
Authors: Su Qin Jiang, Ai Hui Liu, Xue Ting Wang, Jian Hua Wu, Bo Kui Li
Since the constraint of surrounding materials around spot position makes the heating area produce negative strain.
Journal of Materials Processing Technology, 151 (2004), p. 70 [3] Jeong H, Hata S.
Journal of materials processing technology, 108 (2001) , p. 376 [5] N.
Laser fabrication and machining of materials, Chapter 8: Laser forming( 2008), p. 291 [6] J.
China Materials Engineering Canon (4), Non-Ferrous Materials Engineering (on), Chemical Industry Press, Bei Jin (2005)
Journal of Materials Processing Technology, 151 (2004), p. 70 [3] Jeong H, Hata S.
Journal of materials processing technology, 108 (2001) , p. 376 [5] N.
Laser fabrication and machining of materials, Chapter 8: Laser forming( 2008), p. 291 [6] J.
China Materials Engineering Canon (4), Non-Ferrous Materials Engineering (on), Chemical Industry Press, Bei Jin (2005)
Online since: December 2012
Authors: Rinat V. Safiullin
Superplasticity of Materials: from Rheology to Technology.
Astanin On the Model of Solid State Joint Formation under Superplastic Forming Conditions Journal of Materials Engineering and Performance Vol. 8 No. 2 April 1999 pp. 205-210
Deformation and Fracture of Materials. 2009. №11.
Key Engineering Materials, 2010, Vol. 433, Р. 319-323
Deformation and Fracture of Materials. 2010. №9.
Astanin On the Model of Solid State Joint Formation under Superplastic Forming Conditions Journal of Materials Engineering and Performance Vol. 8 No. 2 April 1999 pp. 205-210
Deformation and Fracture of Materials. 2009. №11.
Key Engineering Materials, 2010, Vol. 433, Р. 319-323
Deformation and Fracture of Materials. 2010. №9.
Online since: May 2013
Authors: Xiao Hui Mao
Porous materials have characteristics of soft, low density and buffer power-absorbing, and have the more excellent performance than other materials on the protection to explosion shock wave [2].At present, in China and other countries it has become the research hot spot about explosion protection to use porous materials or light materials for designing multilayer composite structure.
China Safety Science Journal, 2006,16(5):42-46
China Safety Science Journal,2008,18(10):92-97
China Safety Science Journal, 2007, 17(3): 92-94
China Safety Science Journal, 2006,16(12):86-91
China Safety Science Journal, 2006,16(5):42-46
China Safety Science Journal,2008,18(10):92-97
China Safety Science Journal, 2007, 17(3): 92-94
China Safety Science Journal, 2006,16(12):86-91
Online since: December 2023
Authors: Haia Aldosari
Materials and Experimental Methods
Materials
In order to fabricate the polystyrene-based nanoparticle, Polystyrene (PS) was supplied from (SABIC) in pellet form and with a melt flow of 9 g/10 min.
Traoré & et al., Elaboration of a Composite Material Based on Fabrics Waste and Polystyrenes: Effect of Polystyrene Resin on the Strengths of the Composite, International Journal of Composite Materials 2023,13, 1-6
Kaho & et, al., Development of a Composite Material Based on Wood Waste Stabilized with Recycled Expanded Polystyrene, Open Journal of Composite Materials. 2020,10, 66-76
Kouadio & et, al., Influence of a Mineral Filler on the Fire Behaviour and Mechanical Properties of a Wood Waste Composite Material Stabilized with Expanded Polystyrene, Open Journal of Applied Sciences. 2020, 10, 834-843
Saba Payrazm & et, al., Structural and Optical Characterization of ZnO -Graphene Nanocomposite Quantum Dots, Iranian Journal of Materials Science and Engineering. 2022, 3
Traoré & et al., Elaboration of a Composite Material Based on Fabrics Waste and Polystyrenes: Effect of Polystyrene Resin on the Strengths of the Composite, International Journal of Composite Materials 2023,13, 1-6
Kaho & et, al., Development of a Composite Material Based on Wood Waste Stabilized with Recycled Expanded Polystyrene, Open Journal of Composite Materials. 2020,10, 66-76
Kouadio & et, al., Influence of a Mineral Filler on the Fire Behaviour and Mechanical Properties of a Wood Waste Composite Material Stabilized with Expanded Polystyrene, Open Journal of Applied Sciences. 2020, 10, 834-843
Saba Payrazm & et, al., Structural and Optical Characterization of ZnO -Graphene Nanocomposite Quantum Dots, Iranian Journal of Materials Science and Engineering. 2022, 3