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Online since: January 2005
Authors: Gyu-Sam Shim, Hiroshi Yamagata, Mok Soon Kim, Won Yong Kim, Dong Suk Lee
High Temperature Deformation Behavior of
Pre-sintered Al-10Si-5Fe Based Alloy
Dong-Suk Lee
1
, Gyu-Sam Shim
1
, Mok-Soon Kim
1,a, Won-Yong Kim
2,b
and Hiroshi Yamagata
3,c
1
School of Materials Science and Engineering, Inha University
#253, Yonghyun-dong, Nam-gu, Incheon 402-751, Korea
2
Advanced Materials R&D Center, Korea Institute of Industrial Technology
#472, Kajwa-dong, Suh-gu, Incheon 404-254, Korea
3
R&D Division, Yamaha Motor Co.
Forum Vol. 305/306 (1999), p. 739 [6] J.W.
Forum Vol. 305/306 (1999), p. 739 [6] J.W.
Online since: July 2011
Authors: De Juan Lin, Shui Fa Shen, Qing Hua Wang, Lin Jie Wang, Nai Sheng Chen, Jin Ling Huang
[4] L.Castaneda: Materials Science and Engineering B Vol.139 (2007),p.149-154
[6] J.Peng,L.Duren:Sensors and Actuators B Vol.66 (2000),p.213-215 [7] J Zoccal, F Arouca, J Goncalves: Materials Science Forum.
[12] K.Seumatsu, T.Honda, M.Yuasa, T.Kida, K.Shimanoe, N.Yamazoe: Advanced Materials Research Vol.47-50 (2008), p.1502-1505.
[6] J.Peng,L.Duren:Sensors and Actuators B Vol.66 (2000),p.213-215 [7] J Zoccal, F Arouca, J Goncalves: Materials Science Forum.
[12] K.Seumatsu, T.Honda, M.Yuasa, T.Kida, K.Shimanoe, N.Yamazoe: Advanced Materials Research Vol.47-50 (2008), p.1502-1505.
Online since: March 2006
Authors: Tae Hyun Nam, Shin Goo Hur, Gyu Bong Cho, Jae Hwa Lee
Shape Memory Effect and Superelasticity of an Equiatomic Ti-Ni Alloy
with Surface Sulfide Layers
Tae-hyun Nam
1a, Shin-goo Hur1b, Jae-hwa Lee1c and Gyu-bong Cho
1d
1 Division of Advanced Materials Engineering and ERI, Gyeongsang National University,
900 Gazwadong, Jinju, Gyeongnam 660-701, Korea
a tahynam@ gsnu.ac.kr,
b
shingooh@hanmail.net,
c s_ljhcom@gaechuk.gsnu.ac.kr
d chogb@ gsnu.ac.kr
Keywords: Ti-Ni alloy, sulfide layers, transformation elongation, superelasticity
Abstract.
Forum Vol. 486-487 (2005), p.622
Forum Vol. 486-487 (2005), p.622
Online since: September 2011
Authors: Gui Bao Guo, Jia Xu
Studies on preparation and methanol permeability of PVDF-g-PAMPS Membrane
Jia Xua , Guibao Guo b*
School of Chemistry and Chemistry Engineering, Inner Mongolia University of Science & Technology, Baotou 014010, Inner Mongolia, P.R.
Nasman, et al:Polymers for Advanced Technologies, Vol. 9 (1998), p. 121 [10] G.
Jokela, Materials Science Forum, (2002), p. 481 [16] M.
Nasman, et al:Polymers for Advanced Technologies, Vol. 9 (1998), p. 121 [10] G.
Jokela, Materials Science Forum, (2002), p. 481 [16] M.
Online since: September 2013
Authors: Jun Xie, Jie Liang, Zhi Yong Chang, Hong Wei Wang
The Correlation Research of Insects Song Sound Quality and Nano-mechanical Characteristics
Jun Xie1, 2, a, Zhiyong Chang2, b, Hongwei Wang1, c and Jie Liang3, d
1Aerospace Intelligence Department, Air Force Aviation University, Changchun, Jilin, 130021, China
2 The Key Laboratory of Engineering Bionics, Ministry of Education,
Jilin University, Changchun, Jilin, 130022, China
3 State Key Laboratory of Automobile Simulation and Control,
Jilin University, Changchun, 130025, China
axiejun1981@gmail.com, bzychang@jlu.edu.cn, calex19820911@126.com, dliangjie1965@yahoo.com.cn
Keywords: Insects Song, Sound Quality, Nano-mechanical Properties, Correlation
Abstract.
Nano-mechanical measurement technique is advanced nano-indentation test techniques combined with continuous stiffness, many mechanical properties of thin film materials could be obtained without separating the film and substrate material.
Forum Vol. 52 (2007), p. 1263 [2] Y.X.
Nano-mechanical measurement technique is advanced nano-indentation test techniques combined with continuous stiffness, many mechanical properties of thin film materials could be obtained without separating the film and substrate material.
Forum Vol. 52 (2007), p. 1263 [2] Y.X.
Online since: July 2013
Authors: Hong Xu, Yong Jun Zhang, Ping Zhang
The key problem of portable food traceability electronic weigher design
XU HONG1,2, YONGJUN ZHANG 2 and ZHANG PING2
1 National Agricultural Products Logistics Engineering Technology Research Center,China
2shandong institute of commerce and technology, China
xuhonglele@163.com
Keywords: electronic measuring scale; food traceability; LPC2220; Ethernet; GSM; low power consumption; BootLoader
Abstract.This paper describes a portable food can be several key techniques in the design of electronic balance.
Forum Vol. 83-87 (1992), p. 119 [2] M.A.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Forum Vol. 83-87 (1992), p. 119 [2] M.A.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Online since: December 2010
Authors: Konstantin V. Ivanov, Evgeny V. Naydenkin
Introduction
It is well known that ultrafine-grained (UFG) metals and alloys processed by severe plastic deformation exhibit advanced mechanical properties in comparison with coarse-grained counterparts, e.g. enhanced strength at ambient temperature and high strain rate or lowtemperature superplasticity at elevated temperatures [[] R.Z.
Forum Vols. 584-586 (2008), p. 741 ].
Scan 1 Scan 2 Scan 3 Scan 4 Local plastic strain nearby the scan 0 0 0.5 0.9 Number of grains/subgrains in the scan 1369 / 3083 1222 / 2757 702 / 1687 610 / 1494 Average grain/subgrain size, [mm] 2.4 / 1.8 2.5 / 1.9 3.2 / 2.3 3.2 / 2.5 Average grain/subgrain aspect ratio 0.71 / 0.75 0.74 / 0.75 0,73 / 0.75 0,72 / 0.73 Average grain/subgrain shape orientation, [°] 47 / 60 48 / 62 46 / 59 45 / 52 Fraction of high-angle grain boundaries 0.68 0.68 0.62 0.64 Fraction of twins: S3, 60° around <111> S9, 38.9° around <110> Total 0.003 0.001 0.004 0.001 0.002 0.003 0.001 0.002 0.003 0 0.002 0.002 Area fraction of coarse grains (lager than 6 mm) 0.28 0.25 0.50 0.42 Fig. 2 represents the engineering curves of plastic flow obtained for the UFG and recrystallized aluminum.
Forum Vols. 633-634 (2010), p. 165 ] gives the respective total elongation being 14%.
Engineering flow curves obtained for UFG (1) and recrystallized (2) aluminum.
Forum Vols. 584-586 (2008), p. 741 ].
Scan 1 Scan 2 Scan 3 Scan 4 Local plastic strain nearby the scan 0 0 0.5 0.9 Number of grains/subgrains in the scan 1369 / 3083 1222 / 2757 702 / 1687 610 / 1494 Average grain/subgrain size, [mm] 2.4 / 1.8 2.5 / 1.9 3.2 / 2.3 3.2 / 2.5 Average grain/subgrain aspect ratio 0.71 / 0.75 0.74 / 0.75 0,73 / 0.75 0,72 / 0.73 Average grain/subgrain shape orientation, [°] 47 / 60 48 / 62 46 / 59 45 / 52 Fraction of high-angle grain boundaries 0.68 0.68 0.62 0.64 Fraction of twins: S3, 60° around <111> S9, 38.9° around <110> Total 0.003 0.001 0.004 0.001 0.002 0.003 0.001 0.002 0.003 0 0.002 0.002 Area fraction of coarse grains (lager than 6 mm) 0.28 0.25 0.50 0.42 Fig. 2 represents the engineering curves of plastic flow obtained for the UFG and recrystallized aluminum.
Forum Vols. 633-634 (2010), p. 165 ] gives the respective total elongation being 14%.
Engineering flow curves obtained for UFG (1) and recrystallized (2) aluminum.
Online since: April 2010
Authors: Takahisa Okino, C.G. Lee, Toshitada Shimozaki, O. Taguchi
Taguchi3, d
1 The Center for Instrumental Analysis, Kyushu Institute of Technology, Tobata
Kitakyushu 804-8550, Japan
2
Department of Applied Mathematics, Faculty of Engineering, Oita University,
Dannoharu, Oita 870-1192, Japan
3
School of Nano · Advanced Materials Engineering, Changwon National University,
Changwon, Gyeongnam 641-773, South Korea
a shimozak@kitcia.kyutech.ac.jp, b
okino@cc.oita-u.ac.jp,
c cglee@sarim.changwon.ac.kr
d
Taguchi@sarim.changwon.ac.kr
Keywords: Interdiffusion, Intrinsic diffusion, Multiple marker method, Numerical analysis, Lattice
formation
Abstract.
Forum Vol. 283-286 (2009), p. 394
Forum Vol. 194-199 (2001), p. 195
Forum Vol. 283-286 (2009), p. 394
Forum Vol. 194-199 (2001), p. 195
Online since: August 2014
Authors: Thomas Nitschke-Pagel, Jonas Hensel, Klaus Dilger
This material is widely used in many engineering disciplines for welded constructions.
(a) (b) Figure 2 (a) Macrograph of the weld; (b) Hardness distribution of the weld (HV1) Many engineering disciplines rely on fatigue strength evaluation based on nominal stresses.
E.g. [11] show that this effect should be considered in advanced fatigue design concepts.
Schönborn, Effects of Residual Stresses on the Fatigue Performance of Welded Steels with Longitudinal Stiffeners, Materials Science Forum, Vols. 768-769, pp. 636-643, 2013
Edwards, Influence of Residual Stress Redistribution on Fatigue Crack Growth and Damage Tolerant Design, Materials Science Forum, Vols. 524-525, pp. 363-372, 2006
(a) (b) Figure 2 (a) Macrograph of the weld; (b) Hardness distribution of the weld (HV1) Many engineering disciplines rely on fatigue strength evaluation based on nominal stresses.
E.g. [11] show that this effect should be considered in advanced fatigue design concepts.
Schönborn, Effects of Residual Stresses on the Fatigue Performance of Welded Steels with Longitudinal Stiffeners, Materials Science Forum, Vols. 768-769, pp. 636-643, 2013
Edwards, Influence of Residual Stress Redistribution on Fatigue Crack Growth and Damage Tolerant Design, Materials Science Forum, Vols. 524-525, pp. 363-372, 2006