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Online since: August 2011
Authors: Cai Zhi Zhao, Hua Qiang Zhou
Experimental Research on Mechanical Properties of Coal Paste Filling Material
Caizhi Zhao1, a, Huaqiang Zhou2,b
1Faculty of Safety Engineering, China University of Mining and Technology, Xuzhou, Jiangsu 221008,China
2State Key Laboratory of Coal Resources and Safe Mining, China University of Mining and Technology, Xuzhou, Jiangsu 221008,China
azhaocaizhi@163.com, bhqiangzhou@126.com
Keywords: paste filling, cementstious material, strength, strain hardening.
The paste filling slurry, which is mixed with extremely small amount(about 50 kg/m3) of the material, can be solidified quickly and reach the strength requirement of none -village-relocation coal extraction engineering.
It was no precedent in China, and the key to the success is paste filling material.
The material meets the requirement of non-village-relocation surface subsidence control engineering and financially acceptable.
However paste filling materials of different compressive strength show different degree of plastic enhancement.
The paste filling slurry, which is mixed with extremely small amount(about 50 kg/m3) of the material, can be solidified quickly and reach the strength requirement of none -village-relocation coal extraction engineering.
It was no precedent in China, and the key to the success is paste filling material.
The material meets the requirement of non-village-relocation surface subsidence control engineering and financially acceptable.
However paste filling materials of different compressive strength show different degree of plastic enhancement.
Online since: April 2012
Authors: Valerie Randle, Mark Coleman
Grain Growth Control in Grain Boundary Engineered Microstructures
Valerie Randlea and Mark Colemanb
Materials Research Centre, School of Engineering, Swansea University, Swansea SA2 8PP, UK.
Nuclear Materials. 2007; 371: 171 INCONEL 600 58 Reed B.
The average grain size is generally required to be small for GBE materials.
References [1] Randle V., (2004) Twinning-related grain boundary engineering (overview), Acta Mater., 52, 4067-4081
and Coleman M., (2009) A study of low-strain and medium-strain grain boundary engineering.
Nuclear Materials. 2007; 371: 171 INCONEL 600 58 Reed B.
The average grain size is generally required to be small for GBE materials.
References [1] Randle V., (2004) Twinning-related grain boundary engineering (overview), Acta Mater., 52, 4067-4081
and Coleman M., (2009) A study of low-strain and medium-strain grain boundary engineering.
Online since: May 2011
Authors: Chao Liu, Hua Jun Meng, Tong Wan, Xin Sheng Li, Fan Yu Meng, Peng Zhang, Jin Yu Shang, Wei Zhong Cao, Yang Lan
The applications of a new material used in controlling underground engineering and coal mine disaster have been introduced.
Expanded materials are a kind of porous materials in which some bubbles can be produced by physical internal gasification.
Firstly, make clear the location and situation of foundation subsidence through the geophysical exploration and engineering survey.
Hydrogeology and Engineering Geology. 2008
Specification for site investigation and engineering design on Xi’ an ground graetures.2006.1~13
Expanded materials are a kind of porous materials in which some bubbles can be produced by physical internal gasification.
Firstly, make clear the location and situation of foundation subsidence through the geophysical exploration and engineering survey.
Hydrogeology and Engineering Geology. 2008
Specification for site investigation and engineering design on Xi’ an ground graetures.2006.1~13
Online since: December 2010
Authors: Wei Dong
The Evaluation Method for Product Form Attractiveness Based on Miryoku Engineering
Wei Dong
Department of Industrial Design, School of Art, Dalian Jiaotong University, Dalian, Liaoning, 116052, China
dwwillie@gmail.com
Keywords: Form attractiveness, Miryoku Engineering, Conjoint Analysis, Product design.
In this paper, an evaluation method for product form attractiveness based on Miryoku Engineering was proposed.
(Japan) initiated the study of Miryoku Engineering [1] to create attractive products.
Up to now, research methods of Miryoku Engineering mainly involve Evaluation Grid Method, Paired Comparison etc.
Product Form Attractiveness Evaluation Method Based on Miryoku Engineering In this section, a product form attractiveness evaluation method based on Miryoku Engineering was constructed to grasp consumers’ preferences to product form attractiveness.
In this paper, an evaluation method for product form attractiveness based on Miryoku Engineering was proposed.
(Japan) initiated the study of Miryoku Engineering [1] to create attractive products.
Up to now, research methods of Miryoku Engineering mainly involve Evaluation Grid Method, Paired Comparison etc.
Product Form Attractiveness Evaluation Method Based on Miryoku Engineering In this section, a product form attractiveness evaluation method based on Miryoku Engineering was constructed to grasp consumers’ preferences to product form attractiveness.
Online since: September 2013
Authors: Zhan Feng Zhao
High power LED packaging materials and tooling
Zhanfeng Zhao
Wenzhou Key Laboratory of Material Processing and Die & Mould Technology, Department of Mechanical Engineering, Wenzhou Vocational & Technical College, Wenzhou, 325035, China
zfronty@qq.com
Keywords: Light emitting diodes, packaging materials, stamp tooling, cavity molding
Abstracts: The high power light emitting diodes unit internal structure was elaborated from materials and tooling point of view, the unit matrix frame layout for mass production was presented for copper sheet stamping.
The packaging materials and tooling was analyzed from the materials processes and automatic stamping & transfer molding.
The key for photonics transduction rate improvement is the lens molding materials and the phosphor powder selection and optimization [3, 4].
As the polymer materials, epoxy resin and silicon resin thermal conductivity is poor intrinsically, high conductivity coefficient materials, such as SiC, AlN, Al2O3, and SiO2, were added into the matrix to form higher thermal conductivity coefficient composite materials.
Proc. of 2005 Conference on Lasers & Electro-Optics (CLEO), 2005, 337-339 [2] Zhanfeng Zhao, Juan Ye, Design Key Points for High Power LED Encapsulation, Advanced Materials Research Vol. 651 (2013), 706-709 [3] Tim Whitaker.
The packaging materials and tooling was analyzed from the materials processes and automatic stamping & transfer molding.
The key for photonics transduction rate improvement is the lens molding materials and the phosphor powder selection and optimization [3, 4].
As the polymer materials, epoxy resin and silicon resin thermal conductivity is poor intrinsically, high conductivity coefficient materials, such as SiC, AlN, Al2O3, and SiO2, were added into the matrix to form higher thermal conductivity coefficient composite materials.
Proc. of 2005 Conference on Lasers & Electro-Optics (CLEO), 2005, 337-339 [2] Zhanfeng Zhao, Juan Ye, Design Key Points for High Power LED Encapsulation, Advanced Materials Research Vol. 651 (2013), 706-709 [3] Tim Whitaker.
Online since: August 2016
Authors: Li Li Liu, Lu Fei Sheng
Multifunctional Sofa Design Based on the
Human Factors Engineering
Lufei Sheng1, a, Lili Liu2, b *
1Jiangsu Key Laboratory of Large Engineering Equipment Detection and Control,
Xuzhou Institute of Technology, Xuzhou, Jiangsu Province, 221000,China
adxw89@sohu.com, bdxwlll@sina.com
Keywords: The human factors engineering, Sofa, Multi-function, Interest.
The Main Problems of Existing Products for Engineering Relationship Human factors engineering is a new and rapidly developing interdisciplinary, involving a variety of disciplines, such as: physiology, psychology, anatomy, management, engineering, system science, science, safety science, environmental science, etc., whose application field is very broad.
A good design sometimes also needs good materials to render, to induce people to imagine and experience, which makes a person get the message and heartache [4].
The use of the method is very good use of human engineering, allowing users to use comfortable.
In addition, paying attention to people's physical and mental factors accords with humanized design under the human factors engineering, which pays more attention to people's health and the use of comfort.
The Main Problems of Existing Products for Engineering Relationship Human factors engineering is a new and rapidly developing interdisciplinary, involving a variety of disciplines, such as: physiology, psychology, anatomy, management, engineering, system science, science, safety science, environmental science, etc., whose application field is very broad.
A good design sometimes also needs good materials to render, to induce people to imagine and experience, which makes a person get the message and heartache [4].
The use of the method is very good use of human engineering, allowing users to use comfortable.
In addition, paying attention to people's physical and mental factors accords with humanized design under the human factors engineering, which pays more attention to people's health and the use of comfort.
Online since: December 2014
Authors: Qing Liang Zhang
The key energy saving of automobile body coating was stated.
The consumption of floating material would be reduced by 20%.
Key Energy Saving Techniques of Painting Management.
Painting management includes the order of painting material, control of material quality and control of work process.
A Brief Talk on Energy-Saving Process, New Material, New Equipment and Management of Painting.
The consumption of floating material would be reduced by 20%.
Key Energy Saving Techniques of Painting Management.
Painting management includes the order of painting material, control of material quality and control of work process.
A Brief Talk on Energy-Saving Process, New Material, New Equipment and Management of Painting.
Online since: January 1999
Edited by: F.P. Missell
This publication contains the proceedings of the sixth Latin-American Workshop on "Magnetism, Magnetic Materials and their Applications".
This book will provide the scientist or engineer, working in this subject area, with the most recent results in all of the key aspects of this important field.
Online since: December 2010
Authors: Jing Hua Jiang, Ping Hua Lin, Dan Song, Aibin Ma
Overview on the Corrosion Behavior of Ultra-Fine Grained Materials Fabricated by Equal-Channel Angular Pressing
Dan Song, Aibin Ma, Jinghua Jiang, Pinghua Lin
College of Mechanics and Material Engineering, Hohai University,
1 Xikang Road, Nanjing 210098, China.
The large proportion of the non-equilibrium grain boundaries and high residual stress inside of the grain were regarded as the key to affect the corrosion behavior of the UFG materials.
Present state of the effect of ECAP on corrosion behavior Characterization of the corrosion behavior of modern materials is important both for prospective engineering applications and for better understanding of their fundamental physical properties.
Both of them provide the UFG materials more corrosion nucleus than ordinary CG materials.
To some passive materials like titanium [6], the more corrosion nucleus let the UFG materials form rapid passive film in corrosive media excluding the corrosion and let it represent better corrosion resistance than CG materials.
The large proportion of the non-equilibrium grain boundaries and high residual stress inside of the grain were regarded as the key to affect the corrosion behavior of the UFG materials.
Present state of the effect of ECAP on corrosion behavior Characterization of the corrosion behavior of modern materials is important both for prospective engineering applications and for better understanding of their fundamental physical properties.
Both of them provide the UFG materials more corrosion nucleus than ordinary CG materials.
To some passive materials like titanium [6], the more corrosion nucleus let the UFG materials form rapid passive film in corrosive media excluding the corrosion and let it represent better corrosion resistance than CG materials.
Online since: December 2013
Authors: Nik Hisyamudin Muhd Nor, Yokoyama Seiji, M.F. Ahmad, Mohd Azwir Azlan, Al Emran Ismail, Ashari Kasmin, Fariza Mohamad, Sia Chee Kiong
Development of Course Management and Monitoring System as a Quality Tools in Engineering Education
Nik Hisyamudin Muhd Nor1,a, Mohd Azwir Azlan1,b, Sia Chee Kiong1,c,
Fariza Mohamad1,d, Al Emran Ismail1,e, Ashari Kasmin1,f, Md Fauzi Ahmad1,g, Seiji Yokoyama2,h
1Engineering Design Research Group (EDRG), Department of Materials and Design Engineering, Faculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia, 86400, Parit Raja, Batu Pahat, Johor.
2Faculty of Mechanical Engineering, Toyohashi University of Technology, 1-1 Hibarigaoka Tempaku Toyohashi Aichi Japan.
According to the Malaysian Qualification Framework (MQF), the educational standardization process must be according to outcome based education (OBE) and the accreditation of OBE implementation in engineering field is done by the Engineering Accreditation Council (EAC).
The current E-learning system used by most university is more on the management of course in general and it is limited to certain common functions; uploading materials, assignment, key in marks, grading and so on.
Problem and Countermeasure To record all problems faced during the lecture session in term of man, method, machine, materials and other factors.
Michalska-Ćwiek, The quality management system in education - implementation and certification, Journal of Achievements in Materials and Manufacturing Engineering 37(2) (2009) 743-750
According to the Malaysian Qualification Framework (MQF), the educational standardization process must be according to outcome based education (OBE) and the accreditation of OBE implementation in engineering field is done by the Engineering Accreditation Council (EAC).
The current E-learning system used by most university is more on the management of course in general and it is limited to certain common functions; uploading materials, assignment, key in marks, grading and so on.
Problem and Countermeasure To record all problems faced during the lecture session in term of man, method, machine, materials and other factors.
Michalska-Ćwiek, The quality management system in education - implementation and certification, Journal of Achievements in Materials and Manufacturing Engineering 37(2) (2009) 743-750