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Online since: July 2011
Authors: Christine Thong, Simon Jackson
Abstract .The process of new materials development traditionally employs science and engineering based inquiry in the initial phases.
For composite materials development, the Defence Advanced Research Projects Agency, a subsidiary of the US Department of Defence, has developed an Accelerated Insertion of Materials (AIM) methodology.
Working with chemical science and timber engineering, product design was used to direct and focus research on relevant product applications.
Wessel, The Handbook of Advanced Materials: Enabling New Designs, John Wiley and Sons, New Jersey, 2004, p. 3
Susani: ‘Innovation that Makes Sense or Design is Search for Depth’, Shifting Foundations: the collected Papers of the Designing Futures Forum, Craftwest, Perth, (2002), p. 240
For composite materials development, the Defence Advanced Research Projects Agency, a subsidiary of the US Department of Defence, has developed an Accelerated Insertion of Materials (AIM) methodology.
Working with chemical science and timber engineering, product design was used to direct and focus research on relevant product applications.
Wessel, The Handbook of Advanced Materials: Enabling New Designs, John Wiley and Sons, New Jersey, 2004, p. 3
Susani: ‘Innovation that Makes Sense or Design is Search for Depth’, Shifting Foundations: the collected Papers of the Designing Futures Forum, Craftwest, Perth, (2002), p. 240
Online since: August 2016
Authors: Geralda Gilvânia Cavalcante de Lima, Fernando Fernandes Vieira, Carlos Antônio Pereira de Lima
Acknowledgement
The authors thank the Research Laboratory and Environmental Sciences - LAPECA Department of Sanitary and Environmental Engineering - DESA State University of Paraíba - UEPB for financial aid.
[2] Qin Huan Yang, Chang Qing Zhao: Advanced Materials Research Vol. 602 (2012), p. 1265
[3] Pei Yao Xu, Xiao Xue Han, Sa Sa Ban: Advanced Materials Research Vol. 383 (2011), 6391
[4] Jun Guo He, Fei Liu, Bao Ping Han, Bo Wei Zhao, Jian Liu: Advanced Materials Research Vol. 403 (2011), p. 625
[6] Nageswara Rao Neti: Materials Science Forum Vol.712 (2012), p. 191
[2] Qin Huan Yang, Chang Qing Zhao: Advanced Materials Research Vol. 602 (2012), p. 1265
[3] Pei Yao Xu, Xiao Xue Han, Sa Sa Ban: Advanced Materials Research Vol. 383 (2011), 6391
[4] Jun Guo He, Fei Liu, Bao Ping Han, Bo Wei Zhao, Jian Liu: Advanced Materials Research Vol. 403 (2011), p. 625
[6] Nageswara Rao Neti: Materials Science Forum Vol.712 (2012), p. 191
Online since: August 2004
Authors: Masaaki Ichiki, Lulu Zhang, Zhen Yang, Tsuyoshi Ikehara, Ryutaro Maeda
Formation and characteristics of ferroelectric film on non-planar substrate with
spray coating method
Masaaki ICHIKI, Lulu ZHANG, Zhen YANG, Tsuyoshi IKEHARA and Ryutaro MAEDA
Institute of Mechanical System Engineering
National Institute of Advanced Industrial Science and Technology
1-2-1 Namiki, Tsukuba, Ibaraki 305-8564, Japan
Keywords: PZT, spray coating method, MEMS, ferroelectric properties, perovskite structure
ABSTRACT
This paper presents a three-dimensional microfabrication and integration technology for MEMS
smart materials utilizing a spray coating method.
Eiju (National Institute of Advanced Industrial Science and Technology) for encouragement in this study, and Ms.
Sakiyama, Advanced process for ferroelectric memory (Science Forum, Tokyo, 1999) 1st Ed.
Eiju (National Institute of Advanced Industrial Science and Technology) for encouragement in this study, and Ms.
Sakiyama, Advanced process for ferroelectric memory (Science Forum, Tokyo, 1999) 1st Ed.
Online since: September 2011
Preface - Control of Uncertainty in Mechanical Engineering
During its lifetime, any mechanical engineering product will go through various phases in the
product development, production and usage.
During the use of the load-bearing system, new usage monitoring methods will ensure the permanent acquisition of actual loads, whilst advanced mechatronic and adaptronic or adaptive technologies will stabilise and attenuate the load-carrying structure.
Abele Production Engineering and Cutting Machine Tools, Technische Universität Darmstadt, Germany R.
Allwood Department of Engineering, Low Carbon Materials Processing, University of Cambridge, UK G.
Göransson Department of Aeronautics and Vehicle Engineering Royal Institute of Technology, Sweden E.
During the use of the load-bearing system, new usage monitoring methods will ensure the permanent acquisition of actual loads, whilst advanced mechatronic and adaptronic or adaptive technologies will stabilise and attenuate the load-carrying structure.
Abele Production Engineering and Cutting Machine Tools, Technische Universität Darmstadt, Germany R.
Allwood Department of Engineering, Low Carbon Materials Processing, University of Cambridge, UK G.
Göransson Department of Aeronautics and Vehicle Engineering Royal Institute of Technology, Sweden E.
Online since: May 2012
Authors: Mei Li, Dong Mei Zhao
Current Situation, Countermeasure and Research that
Develop the Comprehensive Utilization of Resources in Xinjiang
Dongmei Zhao1,a, Mei Li2,b
Engineering Training Center of Xinjiang University,
Yan’an Road 1230, Urumqi, Xinjiang, China
aZDM1925@163.com, blimei7140@163.com
Keywords: the comprehensive utilization of resources environmental protection economic development
Abstract: The comprehensive utilization of resources in Xinjiang has a certain achievement, but also exist some problem.
To accelerate the establishment of perfect experimental method system that utilize mineral resources comprehensively, and to pay attention to the use of foreign advanced methods and standard of comprehensive utilization of mineral resources, and then to establish comprehensive utilization technology standard of mineral resources by differential mineral, type, scale, regional, to determinate the indexes system of comprehensive utilization of mineral resources reasonably.
The development of comprehensive utilization field of resources needs advanced technology, professional talent and abundant capital, it is not enough to rely on Xinjiang's own strength and existing foundation.
The development in the field of the comprehensive utilization of resources is inseparable from the development and promotion of the advanced technology.
References [1] Hongting Shen, in: Prices Monthly, edited by Jiangxi people's Publishing House, Vol. 9(2010), p.66-69 [2] Information on http://www.tianshannet.com.cn/energy/content/2009-01/13/content_3793949_2.htm [3] Information on http: //www.xjdaily.com/news/cjkj/nyzk/416983.shtml [4] Yan Zhang, in: Finance and Economics of Xinjiang, edited by Xinjiang finance editorial department, Vol. 1(2011) [5] Peng Zhang and Bangyi Wei, in: Environmental Protection of Xinjiang, edited by Xinjiang environmental protection editorial department, Vol. 3 (2008), p. 01-03 [6] Bin Zhou, in: Social and Scientific Forum of Xinjiang, edited by Xinjiang Social Science Forum editorial department, Vol. 6(2005), p.4-7 [7] Lu Cao, in: Northern Economy, edited by Northern economy Magazine, Vol. 10 (2007), p.54-55
To accelerate the establishment of perfect experimental method system that utilize mineral resources comprehensively, and to pay attention to the use of foreign advanced methods and standard of comprehensive utilization of mineral resources, and then to establish comprehensive utilization technology standard of mineral resources by differential mineral, type, scale, regional, to determinate the indexes system of comprehensive utilization of mineral resources reasonably.
The development of comprehensive utilization field of resources needs advanced technology, professional talent and abundant capital, it is not enough to rely on Xinjiang's own strength and existing foundation.
The development in the field of the comprehensive utilization of resources is inseparable from the development and promotion of the advanced technology.
References [1] Hongting Shen, in: Prices Monthly, edited by Jiangxi people's Publishing House, Vol. 9(2010), p.66-69 [2] Information on http://www.tianshannet.com.cn/energy/content/2009-01/13/content_3793949_2.htm [3] Information on http: //www.xjdaily.com/news/cjkj/nyzk/416983.shtml [4] Yan Zhang, in: Finance and Economics of Xinjiang, edited by Xinjiang finance editorial department, Vol. 1(2011) [5] Peng Zhang and Bangyi Wei, in: Environmental Protection of Xinjiang, edited by Xinjiang environmental protection editorial department, Vol. 3 (2008), p. 01-03 [6] Bin Zhou, in: Social and Scientific Forum of Xinjiang, edited by Xinjiang Social Science Forum editorial department, Vol. 6(2005), p.4-7 [7] Lu Cao, in: Northern Economy, edited by Northern economy Magazine, Vol. 10 (2007), p.54-55
Online since: September 2024
Authors: Vladimir Lebedev, Maryna Cherkashyna, Alla Sokolova, Volodymyr Purys
It can be recommended for reuse in traditional fields of primary polyamide-6 to obtain engineering and technical products.
Materials Science Forum. 1038 (2021)168–174
Lecture Notes on Data Engineering and Communications Technologies. 178 (2023) 446–458
Krygina, Design And Researching Conductive Hybrid Biopolymer Nanocomposite Materials For Micro-And Nanoelectronics. 2022 IEEE 3rd KhPI Week on Advanced Technology (KhPIWeek). (2022) 1–4
ACS Sustainable Chemistry & Engineering. 7 (2019) 11004–11013
Materials Science Forum. 1038 (2021)168–174
Lecture Notes on Data Engineering and Communications Technologies. 178 (2023) 446–458
Krygina, Design And Researching Conductive Hybrid Biopolymer Nanocomposite Materials For Micro-And Nanoelectronics. 2022 IEEE 3rd KhPI Week on Advanced Technology (KhPIWeek). (2022) 1–4
ACS Sustainable Chemistry & Engineering. 7 (2019) 11004–11013
Online since: October 2010
Authors: Bo Zhao, Hui Ma
However, due to their large brittleness, bad uniformity, low reliability, less malleability and intensity, etc. the application for components of advanced engineering ceramic has been impeded by damage introduced during finishing process.
Therefore, ultrasonic machining is used as an important and effective supplementary method for finishing advanced ceramics.
Liu, et al: Key Engineering Materials, Vol. (291-292) (2005), p. 45-50 [6] B.
Key Engineering Materials, Vol. (304-305) (2006), p. 171-175 [7] Y.
Wu, et al: Materials Science Forum, Vol. (532-533) (2006), p. 532-535
Therefore, ultrasonic machining is used as an important and effective supplementary method for finishing advanced ceramics.
Liu, et al: Key Engineering Materials, Vol. (291-292) (2005), p. 45-50 [6] B.
Key Engineering Materials, Vol. (304-305) (2006), p. 171-175 [7] Y.
Wu, et al: Materials Science Forum, Vol. (532-533) (2006), p. 532-535
Online since: December 2012
Authors: Quan Cai Li, Xu Sheng Guo, Ju Liang Xiao
Dynamic Characteristics Simulation of the Digital Hydraulic Cylinder
Based on AMESim
XuSheng Guo 1, a, QuanCai Li2, 3, b and JuLiang Xiao1, c
1Key Laboratory for Advanced Manufacture Technology and Equipment of Tianjin,
Tianjin University, Tianjin 300072, China
2North China University of Water Resources and Electric Power, Zhengzhou 450011, China
3Zhengzhou Research Institute of Mechanical Engineering, Zhengzhou 450001, China
axushenggxs@163.com, bliquancai@ncwu.edu.cn, ctianjinxjl@163.com
Keywords: Digital Hydraulic Cylinder; AMESim; Four-Way Valve; Feedback; Simulation
Abstract.
Thus in this paper, using the AMESim which is a senior modeling software facing engineering task design, does the modeling and simulation calculations for one kind of digital hydraulic cylinder.
Forum. 2003, 3:1-3 [2] Wang Guo-Dong, He You-Hui and Xiao Ju-Liang: Modeling and dynamic characteristics simulation of the multi-cylinder synchronous cylinder valve system based on AMESim [J].
Chongqing University, college of Mechanical Engineering, 2005 [4] Yagci, B, Frazho,A.E and Sumali, H: Determining the extension of a hydraulic cylinder using spectral estimation.
Thus in this paper, using the AMESim which is a senior modeling software facing engineering task design, does the modeling and simulation calculations for one kind of digital hydraulic cylinder.
Forum. 2003, 3:1-3 [2] Wang Guo-Dong, He You-Hui and Xiao Ju-Liang: Modeling and dynamic characteristics simulation of the multi-cylinder synchronous cylinder valve system based on AMESim [J].
Chongqing University, college of Mechanical Engineering, 2005 [4] Yagci, B, Frazho,A.E and Sumali, H: Determining the extension of a hydraulic cylinder using spectral estimation.
Influence of Diffusion Bonding for Superplasticity Magnesium Alloys with the Fore and Post Treatment
Online since: July 2007
Authors: Yan Dong Yu, C.W. Wang
Wang 2,b
1
School of Materials Science and Engineering, Harbin Science and Technology University,
Harbin 150040, P.
China 2 School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, P.
Introduction Combining diffusion bonding with superplastic forming (SPF/DB) is one of the most advanced technologies of all forming and connecting recently.
At present, the connecting and forming techniques of the SPF/DB have been studied for advanced materials such as high strength aluminum alloys and magnesium alloys [1-2].
B:Materials Science and Engineering [J], Vol.302(2001), p. 56 [3] Yu Y.
China 2 School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, P.
Introduction Combining diffusion bonding with superplastic forming (SPF/DB) is one of the most advanced technologies of all forming and connecting recently.
At present, the connecting and forming techniques of the SPF/DB have been studied for advanced materials such as high strength aluminum alloys and magnesium alloys [1-2].
B:Materials Science and Engineering [J], Vol.302(2001), p. 56 [3] Yu Y.
Online since: July 2014
Authors: R. Solomon Raja, Channankaiah Channankaiah
On the relationship of Ni volume fraction in polymer matrix composite to its impact property
SOLOMON RAJA R1, a * and CHANNANKAIAH2, b
1Adhiyamaan College of Engineering, Department of Mechanical Engineering, Hosur, Tamil Nadu, India
2Adhiyamaan College of Engineering, Department of Mechanical Engineering, Hosur, Tamil Nadu, India
aslmn.raja@gmail.com, bhod_mech@adhiyamaan.ac.in
Keywords: Nickel; Polymer matrix; Acoustic energy; Damping characteristics
Abstract.
[8] Hideki Hosoda, Shinsuke Takeuchi, Tomonari Inamura, Kenji Wakashima, “Material design and shape memory properties of smart composites composed of polymer and ferromagnetic shape memory alloy particles”, Science and Technology of Advanced Materials 5 (2004) 503–509 [9] N.
O’Handley, “Stress-Induced Twin Boundary Motion in Particulate Ni–Mn–Ga /Polymer Composites”, Materials Science Forum Vol. 583 (2008) 197-212 [16] Y.Shen, Z.Yue, M.Li, C.
Nan, “Enhanced initial permeability and dielectric constant in a double- percolating Ni0.3Zn0.7Fe1.95O4 –Ni- Polymer composite”, Advanced Functional Materials Vol.15 (2005) 1100-1103 [17] ASM Specialty Handbook: Nickel, Cobalt, and Their Alloys, ASM International, 2000
[8] Hideki Hosoda, Shinsuke Takeuchi, Tomonari Inamura, Kenji Wakashima, “Material design and shape memory properties of smart composites composed of polymer and ferromagnetic shape memory alloy particles”, Science and Technology of Advanced Materials 5 (2004) 503–509 [9] N.
O’Handley, “Stress-Induced Twin Boundary Motion in Particulate Ni–Mn–Ga /Polymer Composites”, Materials Science Forum Vol. 583 (2008) 197-212 [16] Y.Shen, Z.Yue, M.Li, C.
Nan, “Enhanced initial permeability and dielectric constant in a double- percolating Ni0.3Zn0.7Fe1.95O4 –Ni- Polymer composite”, Advanced Functional Materials Vol.15 (2005) 1100-1103 [17] ASM Specialty Handbook: Nickel, Cobalt, and Their Alloys, ASM International, 2000