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Simulation of Dynamic Performance for Hydro-Hybrid Spindle-Bearing System of Superhigh Speed Grinder
Online since: September 2008
Authors: Wan Shan Wang, Jia Shun Shi, Tian Biao Yu, He Li, L.D. Zhu
Material Poisson's ratio is 0.3.
Material density is 7800 3 kg/m .All degrees of freedom are restricted outer bearing.
Journal of manufacturing Science and Engineering, Vol.122 (2), (2000).pp.32-41
[5] V Gagnol., et al., Stability-Based Spindle Design Optimization, Transactions of the ASME, Journal of Manufacturing Science and Engineering, Vol.129 (2),(2007),pp.407-415
Journal of Mechanical Design, Vol.126(8),(2004),pp.1089-104 [7] I.A.Zverev, U.E.In, K.H Yong, An elastic deformation model of high-speed spindle units, International Journal of Precision Engineering and Manufacturing, vol.7(3),(2006), pp.39-46.
Material density is 7800 3 kg/m .All degrees of freedom are restricted outer bearing.
Journal of manufacturing Science and Engineering, Vol.122 (2), (2000).pp.32-41
[5] V Gagnol., et al., Stability-Based Spindle Design Optimization, Transactions of the ASME, Journal of Manufacturing Science and Engineering, Vol.129 (2),(2007),pp.407-415
Journal of Mechanical Design, Vol.126(8),(2004),pp.1089-104 [7] I.A.Zverev, U.E.In, K.H Yong, An elastic deformation model of high-speed spindle units, International Journal of Precision Engineering and Manufacturing, vol.7(3),(2006), pp.39-46.
Online since: November 2021
Authors: Liāna Orola, Valda Valkovska
Practical dyeing experiments provide the necessary reference materials.
Materials and Methods Materials and chemicals.
Cardon, Natural Dyes: Sources, Tradition, Technology and Science, Archetype, London, 2007
Janulis, Phenolic Composition and Antioxidant Activity of Malus domestica leaves, The Scientific World Journal. 11 (2014) 1-10
Bernava, The Colour Characteristics of Wool Dyed with Plants of Latvia, Material Science.
Materials and Methods Materials and chemicals.
Cardon, Natural Dyes: Sources, Tradition, Technology and Science, Archetype, London, 2007
Janulis, Phenolic Composition and Antioxidant Activity of Malus domestica leaves, The Scientific World Journal. 11 (2014) 1-10
Bernava, The Colour Characteristics of Wool Dyed with Plants of Latvia, Material Science.
Online since: May 2011
Authors: Long Yu Yang, Zheng Liang Li
All material tests comply with correlative code[7].
Acknowledgements This project is supported by National Natural Science Foundation of China(51078367).
[7] CIQ China Inspection and Quarantine: Metallic materials-Tensile testing at ambient temperature (China Standards Press, Beijing 2002), in Chinese
[8] Longyu Yang, Zhengliang Li, etc.: Journal of Sichuan University(Engineering Science Edition), Vol. 42(2010), p. 203-208, in Chinese
[12] Zhongquan Zhang: Journal of Building Structures, Vol. 12(1991), p. 2-10, in Chinese
Acknowledgements This project is supported by National Natural Science Foundation of China(51078367).
[7] CIQ China Inspection and Quarantine: Metallic materials-Tensile testing at ambient temperature (China Standards Press, Beijing 2002), in Chinese
[8] Longyu Yang, Zhengliang Li, etc.: Journal of Sichuan University(Engineering Science Edition), Vol. 42(2010), p. 203-208, in Chinese
[12] Zhongquan Zhang: Journal of Building Structures, Vol. 12(1991), p. 2-10, in Chinese
Online since: November 2015
Authors: Gabriela Strnad, Laszlo Jakab-Farkas, Nicolae Chirila
Titanium alloys are standard materials in dental implants providing a combination of mechanical strength, chemical stability and biocompatibility [1,2,3,4,5,6].
Ding, Surface modification of titanium, titanium alloys, and related materials for biomedical applications, Materials Science and Engineering. 47 (2004) 49–121
Garg, Implant surface modifications: a review, Journal of Clinical and Diagnostic Research. 6, 2 (2012) 319-324
Wennerberg, The impact of oral implants – past and future, 1966-2042, Journal of Canadian Dental Association. 71, 5 (2005) 327-332
Wennerberg, New acid etched titanium dental implant surface, Stomatologija, Baltic Dental and maxillofacial Journal. 5 (2003) 101-105
Ding, Surface modification of titanium, titanium alloys, and related materials for biomedical applications, Materials Science and Engineering. 47 (2004) 49–121
Garg, Implant surface modifications: a review, Journal of Clinical and Diagnostic Research. 6, 2 (2012) 319-324
Wennerberg, The impact of oral implants – past and future, 1966-2042, Journal of Canadian Dental Association. 71, 5 (2005) 327-332
Wennerberg, New acid etched titanium dental implant surface, Stomatologija, Baltic Dental and maxillofacial Journal. 5 (2003) 101-105
Online since: November 2012
Authors: Hong Lin Wu, Zhen Yu Liu, De Jian Xu, Xiao Di Zhu, Zhong Long Li, Hong Jiang Gu
School of Transportation Science and Engineering, Harbin Institute of Technology, Key Laboratory of traffic safety, specialty materials and intelligent control technology transportation industry Harbin 150090, China;
2.Postdoctoral Station of Mechanics,Harbin Institute of Technology,Harbin 150090,China;
3.
Compressing air, jet MSN-6 high-strength non-shrinkage grouting materials to the surface of concrete and rapid condense the jetting layers.
Journal of the Structural Division,Vol.103 (1977),p.211
Xu.Journal of Xi'an University of Architecture and Technology, Vol.40 (2008),No.1.
[7] Metallic Materials - Tensile Testing - Part 1 : Method of Test at Room Temperature(GB/T 228.1-2010).Standards Press of China,China,2011
Compressing air, jet MSN-6 high-strength non-shrinkage grouting materials to the surface of concrete and rapid condense the jetting layers.
Journal of the Structural Division,Vol.103 (1977),p.211
Xu.Journal of Xi'an University of Architecture and Technology, Vol.40 (2008),No.1.
[7] Metallic Materials - Tensile Testing - Part 1 : Method of Test at Room Temperature(GB/T 228.1-2010).Standards Press of China,China,2011
Online since: January 2004
Authors: Jan T. Bonarski
Citation &
Copyright (to be inserted by the publisher )
Texture Inheritance in a Zn Protective Layer
Jan Bonarski
Institute of Metallurgy and Materials Science, Polish Academy of Sciences,
ul.
The investigation of the texture of layered structures or gradient materials by means of X-ray diffraction back-reflection pole figure measurements requires a control of the information depth.
The microstructure of deposited layers is determined by the competing influences of substrate (type of material, condition and purity of the surface, texture, grain size) and conditions of applied deposition process.
In practice, it is difficult to find polycrystalline material without texture, i.e. characterised by random, chaotic orientation distribution.
Journal Title and Volume Number (to be inserted by the publisher) hexagonal structure (c/a = 1.856), as it follows from its texture, become arranged in such a way that their {112} planes are approximately parallel to the substrate surface.
The investigation of the texture of layered structures or gradient materials by means of X-ray diffraction back-reflection pole figure measurements requires a control of the information depth.
The microstructure of deposited layers is determined by the competing influences of substrate (type of material, condition and purity of the surface, texture, grain size) and conditions of applied deposition process.
In practice, it is difficult to find polycrystalline material without texture, i.e. characterised by random, chaotic orientation distribution.
Journal Title and Volume Number (to be inserted by the publisher) hexagonal structure (c/a = 1.856), as it follows from its texture, become arranged in such a way that their {112} planes are approximately parallel to the substrate surface.
Online since: January 2010
Authors: Krzysztof Jan Kurzydlowski, R. Sitek, Julia Ferenc-Dominik, H. Matysiak
Brill: Advanced Materials &Processes Vol. 158 (4) (2000), p. 31-34
Nofal: Materials Science and Engineering A Vol. 487 (2008), p. 152-161 [5] R.J.H.
Ye: Materials and Design Vol. 30 (2009), p. 964-969 [13] N.S.
Telari: Materials Science and Engineering A Vol. 336 (2002), p. 99-109 [15] R.
Wierzchoń: Materials Science Poland Vol. 26 (3) (2008), p. 767-777 [16] H.
Nofal: Materials Science and Engineering A Vol. 487 (2008), p. 152-161 [5] R.J.H.
Ye: Materials and Design Vol. 30 (2009), p. 964-969 [13] N.S.
Telari: Materials Science and Engineering A Vol. 336 (2002), p. 99-109 [15] R.
Wierzchoń: Materials Science Poland Vol. 26 (3) (2008), p. 767-777 [16] H.
Online since: January 2022
Authors: Sandrine Marceau, Lucie Lacour, Dinarzed Diafi, Fabienne Farcas
Therefore, these materials are key alternatives to traditional construction materials for the energy-efficiency renovation of existing buildings.
Up to now, biobased construction materials are mostly used for their insulating properties than for structural purposes.
The final objective of this project is to define an indicator to predict the compatibility between a mineral binder and vegetal particles in order to generalize the production of plant-based concrete based on local resources. 2 MATERIALS AND TECHNIQUES 2.1 Materials The mineral binder is a Portland cement CEM I.
Bio-aggregates Based Building Materials.
Wood-cement composites : effect of model compounds on hydration characteristics and tensile strength, Wood and fiber science 23, 472–482
Up to now, biobased construction materials are mostly used for their insulating properties than for structural purposes.
The final objective of this project is to define an indicator to predict the compatibility between a mineral binder and vegetal particles in order to generalize the production of plant-based concrete based on local resources. 2 MATERIALS AND TECHNIQUES 2.1 Materials The mineral binder is a Portland cement CEM I.
Bio-aggregates Based Building Materials.
Wood-cement composites : effect of model compounds on hydration characteristics and tensile strength, Wood and fiber science 23, 472–482
Online since: November 2012
Authors: Amit Bansal, Pradeep Kumar, Apurbba Kumar Sharma, Shantanu Das
The interaction of the microwave with materials depends upon the dielectric properties of the materials [5].
Non conducting materials are transparent to microwave energy, while highly conductive materials like metals are opaque due to presence of electron cloud, resulting in reflection of microwaves.
West, Processing materials with microwave energy, Mater.
Aravindan, Microwave sintering of copper–graphite composites, Journal of Materials Processing Technology 209 (2009) 5601–5605
Iuliano, Microwave assisted sintering of green metal parts, journal of materials processing technology 205 (2008) 489–496
Non conducting materials are transparent to microwave energy, while highly conductive materials like metals are opaque due to presence of electron cloud, resulting in reflection of microwaves.
West, Processing materials with microwave energy, Mater.
Aravindan, Microwave sintering of copper–graphite composites, Journal of Materials Processing Technology 209 (2009) 5601–5605
Iuliano, Microwave assisted sintering of green metal parts, journal of materials processing technology 205 (2008) 489–496
Online since: February 2009
Authors: Juan Su, Hou Jiang Zhang, Zhi Ren Guo
Drill resistance is relative to several properties the object materials, such as hardness and
strength.
For the wood materials, the hardness and strength are mainly decided by the value of the density [1, 2].
Materials and Methods Experimental materials and method.
(USDA Forest Service, USA 1999) [2] CHENG Junjie: Wood science (China Forestry Publishing House, Beijing 1985) [3] ASTM (American Society for Testing and Materials): Standard test methods for specific gravity of wood and wood-based materials.
(Annual book of ASTM standards, USA 1985) [4] Laufenberg, T L: Forest Products Journal.
For the wood materials, the hardness and strength are mainly decided by the value of the density [1, 2].
Materials and Methods Experimental materials and method.
(USDA Forest Service, USA 1999) [2] CHENG Junjie: Wood science (China Forestry Publishing House, Beijing 1985) [3] ASTM (American Society for Testing and Materials): Standard test methods for specific gravity of wood and wood-based materials.
(Annual book of ASTM standards, USA 1985) [4] Laufenberg, T L: Forest Products Journal.