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Online since: June 2006
Authors: Muhammad Azmi Abd Hamid, Azman Jalar, Shahrul Nizam Shahdan
SOLDER (Sn)
CRACK
COPPER
IMC(Ni)
Fig 4: Optical micrograph showed void and IMC layer in solder materials (500 X magnification)
Table 1: EDX composition analysis in the solder area.
Journal of Alloy and Compounds. (2004),p.389
Material Chemistry and Physics (2004),p. 87
Journal of Alloy and Compounds. (2004),p. 425
Journal of Alloy and Compounds. (2004),p. 381
Journal of Alloy and Compounds. (2004),p.389
Material Chemistry and Physics (2004),p. 87
Journal of Alloy and Compounds. (2004),p. 425
Journal of Alloy and Compounds. (2004),p. 381
Online since: November 2013
Authors: Feng Liu, Wen Xian Feng, Xu Xiang Wang, Lan Zeng
Materials and Structures. 11(65):371-378 (1978)
Materials and Structures. 19(3):201-246 (1986)
Journal of Fuzhou University. 33(z1):305-308 (2005).
Beijing:Science Press, (2007)
China Civil Engineering Journal. 46(2):1-7 (2013).
Materials and Structures. 19(3):201-246 (1986)
Journal of Fuzhou University. 33(z1):305-308 (2005).
Beijing:Science Press, (2007)
China Civil Engineering Journal. 46(2):1-7 (2013).
Online since: October 2015
Authors: Hamidi Abdul Aziz, Fagbenro Oluwakemi Kehinde
Journal of hazardous materials, 199 (2012) pp. 209-216
Journal of hazardous materials, 101 (3) (2003) pp. 315-322
Journal of hazardous materials, 179 (1) (2010) pp. 113-119
Journal of hazardous materials, 175 (1) (2010) pp. 858-865
Journal of hazardous materials, 175 (1) (2010) pp. 651-657
Journal of hazardous materials, 101 (3) (2003) pp. 315-322
Journal of hazardous materials, 179 (1) (2010) pp. 113-119
Journal of hazardous materials, 175 (1) (2010) pp. 858-865
Journal of hazardous materials, 175 (1) (2010) pp. 651-657
Online since: February 2012
Authors: Yu Long Hu, Wen Quan Wang, Sheng Huang, Yuan Hang Hou
The study on passage layout problem is to minimize the cost of transporting materials between compartments.
Therefore, choosing the passage routes reasonably is an effective measure to increase the efficiency of ship materials flow.
The objective is to minimize the cost of transporting materials between 14 compartments.
References [1] Yu Wei-bo Wang Tao: Chinese Journal of Ship Research.
Vol. 3, No.1 (2008), p. 18 [2] Yu Wei-bo Wu Xiao-guang Wang Tao: Chinese Journal of Ship Research Vol. 3, No.2 (2008), p. 16 [3] HU Xiao-fang, HU Yong, CHENG Jian: Ship Science and Technology.
Therefore, choosing the passage routes reasonably is an effective measure to increase the efficiency of ship materials flow.
The objective is to minimize the cost of transporting materials between 14 compartments.
References [1] Yu Wei-bo Wang Tao: Chinese Journal of Ship Research.
Vol. 3, No.1 (2008), p. 18 [2] Yu Wei-bo Wu Xiao-guang Wang Tao: Chinese Journal of Ship Research Vol. 3, No.2 (2008), p. 16 [3] HU Xiao-fang, HU Yong, CHENG Jian: Ship Science and Technology.
Online since: April 2014
Authors: Jian Qin Zhao, Zhi Wang
It not only made the shaft too heavy to move, but also waste material.
So, In order to save material and ensure the lifetime, we have only two choices.
[3] Milan Bantieta: submitted to International Journal of Mechanical Sciences(2001),in Chinese
[5]Xiaodong Zhu,Qidong TAn:submitted to Journal of Suzhou University(2004),in Chinese
[7]Shulun Liu, Jianghong Xue:submitted to Journal of Anhui Construction Industry(2011),in Chinese
So, In order to save material and ensure the lifetime, we have only two choices.
[3] Milan Bantieta: submitted to International Journal of Mechanical Sciences(2001),in Chinese
[5]Xiaodong Zhu,Qidong TAn:submitted to Journal of Suzhou University(2004),in Chinese
[7]Shulun Liu, Jianghong Xue:submitted to Journal of Anhui Construction Industry(2011),in Chinese
Online since: November 2014
Authors: Ilkka Paajanen
PAAJANEN Ilkka1, a *
1Saimaa University of Applied Sciences, Finland
ailkka.paajanen@saimia.fi
Keywords: Alvar Aalto, renovation
Abstract.
In the best areas, for example in the lobby, it was one kind of restoration (or conservation), all old materials were “valuable”, it was not always easy to find solutions for the new house technique.
In the case of modernist buildings the original architecture, constructions, materials etc. can still be there.
Aatsalo, Aallon perinnön suojelija (= Protector of heritage of Aalto), an interview with Tommi Lindh, Rakennuslehti (= Building Journal) 27.6.2014, Helsinki, pp. 30
Mustonen, The Restoration of Central City Alvar Aalto Library in Vyborg, in: For an Architect’s Training, docomomo Journal 49 - 2013/2
In the best areas, for example in the lobby, it was one kind of restoration (or conservation), all old materials were “valuable”, it was not always easy to find solutions for the new house technique.
In the case of modernist buildings the original architecture, constructions, materials etc. can still be there.
Aatsalo, Aallon perinnön suojelija (= Protector of heritage of Aalto), an interview with Tommi Lindh, Rakennuslehti (= Building Journal) 27.6.2014, Helsinki, pp. 30
Mustonen, The Restoration of Central City Alvar Aalto Library in Vyborg, in: For an Architect’s Training, docomomo Journal 49 - 2013/2
Online since: June 2014
Authors: Thitipong Kruaehong
Materials and Methods
Three samples of YBa2Cu3O7-d(Y123) compound were synthesized by solid state reaction method.
The raw materials Y2O3, BaCO3 and CuO with atomic ratio of 1:2:3.
Through Measurement to Knowledge: The Inaugural Lecture of Heike Kamerling Onnes(1882).Journal of Research of the Nation Institute of Standard and Teacnology.107(2002) 261-277
[5] P.Udomsamuthirun, T.Kruaehong,T.Nilkamjon,S.Ratreng, The New Superconductors of YBaCuO Materails.Journal of Superconductivity and Novel Magnetism.23(2010)1377-1380
Kmitl Science and Technology Journal.13(2013)38-41.
The raw materials Y2O3, BaCO3 and CuO with atomic ratio of 1:2:3.
Through Measurement to Knowledge: The Inaugural Lecture of Heike Kamerling Onnes(1882).Journal of Research of the Nation Institute of Standard and Teacnology.107(2002) 261-277
[5] P.Udomsamuthirun, T.Kruaehong,T.Nilkamjon,S.Ratreng, The New Superconductors of YBaCuO Materails.Journal of Superconductivity and Novel Magnetism.23(2010)1377-1380
Kmitl Science and Technology Journal.13(2013)38-41.
Online since: January 2014
Authors: Jarosław Galkiewicz
The length of the cell edge is 15 μm, which is of the size of an average grain within the material.
(Source: Polish Ministry of Science and Higher Education, contract no.
Acknowledgment The financial support from the Polish Ministry of Science and Higher Education under contract no.
Limnell, Modified master curve of ultra high strength steel, International Journal of Pressure Vessels and Piping, 92 (2012) 19–26
Tracey, On the ductile enlargement of voids in triaxial stress fields, Journal of the Mechanics and Physics of Solids, 17 (1969) 201–217.
(Source: Polish Ministry of Science and Higher Education, contract no.
Acknowledgment The financial support from the Polish Ministry of Science and Higher Education under contract no.
Limnell, Modified master curve of ultra high strength steel, International Journal of Pressure Vessels and Piping, 92 (2012) 19–26
Tracey, On the ductile enlargement of voids in triaxial stress fields, Journal of the Mechanics and Physics of Solids, 17 (1969) 201–217.
Online since: September 2011
Authors: Cheng Yan Zhu, Jia Ying Sun, Yan Qing Li, Wei Tian, Qian Qian Luo
Design of 3D Integrated Structure with Vertical Honeycombed-core
Chengyan Zhu1,a, Jiaying Sun1, b, Yanqing Li1,c, Wei Tian1,d,
and Qianqian Luo1,e
1Key Laboratory of Advanced Textile Materials and Manufacturing Technology, Ministry of Education, Zhejiang Sci-Tech University, Hangzhou, Zhejiang, 310018, China
acyzhu@zstu.edu.cn, bsjynyl@163.com, cenchinglee@163.com, dtianwei_zstu@126.com, eluo.qianqian@163.com,
Keywords: Honeycomb Weaves, Weave Repeat Unit, Honeycombed-core, Three-dimensional Structure.
Table1 Sample specification parameters Sample number Warp and weft materials Yarn linear Density [tex] Warp density [ends /10cm] Weft density [picks /10cm] Fabric weave 1 Glass fiber 96 300 400 30-end honeycomb weave 2 Glass fiber 600 100 380 30-end honeycomb weave 3 Glass fiber 1200 100 350 30-end honeycomb weave 4 Polyester fiber 96 600 480 30-end honeycomb weave 5 Polyester fiber 120 480 400 30-end honeycomb weave 6 Polyester fiber 240 400 350 30-end honeycomb weave 7 Polyester fiber 96 300 400 8-end honeycomb weave 8 Polyester fiber 96 390 420 10-end honeycomb weave 9 Polyester fiber 96 450 430 12-end honeycomb weave 10 Polyester fiber 96 510 440 16-end honeycomb weave 11 Polyester fiber 96 580 450 20-end honeycomb weave Analysis on samples and honeycomb effects The fabric pictures with different yarn linear density are shown in Fig. 1 Fig. 1 Fabric pictures with different yarn linear density The study indicates that the vertical depth of honeycomb weaves
Acknowledgements This work was financially supported by the National Science and Technology Support Project(2007BAE28B03), Zhejiang Natural Science Foundation (Y4100118) and Program for Changjiang Scholars and Innovative Research Team in University (No.IRT0654).
References [1] Guofa Zou, Guorong Long, Jianping Wan: Fiber Reinforced Plastics/Composites No.6 (2005), p.42(In Chinese) [2] Liang Wang,Ling Sun: Journal of Wuhan University of Technology Vol.21(2009), p.52(In Chinese) [3] Ping Zhang, Li Zhou,Tao Qiu: Actc Aeronautica Et Astronautica Sinica Vol.32(1) (2011), p.156(In Chinese) [4] Jianbing Nie, Xia Reng: Wool Textile Journal Vol.38(11) (2010), p.29(In Chinese) [5] Chengyan Zhu, Dongyi Tan, Wei Tian: Journal of Textile Research Vol.27(12) (2006), p.9(In Chinese)
Table1 Sample specification parameters Sample number Warp and weft materials Yarn linear Density [tex] Warp density [ends /10cm] Weft density [picks /10cm] Fabric weave 1 Glass fiber 96 300 400 30-end honeycomb weave 2 Glass fiber 600 100 380 30-end honeycomb weave 3 Glass fiber 1200 100 350 30-end honeycomb weave 4 Polyester fiber 96 600 480 30-end honeycomb weave 5 Polyester fiber 120 480 400 30-end honeycomb weave 6 Polyester fiber 240 400 350 30-end honeycomb weave 7 Polyester fiber 96 300 400 8-end honeycomb weave 8 Polyester fiber 96 390 420 10-end honeycomb weave 9 Polyester fiber 96 450 430 12-end honeycomb weave 10 Polyester fiber 96 510 440 16-end honeycomb weave 11 Polyester fiber 96 580 450 20-end honeycomb weave Analysis on samples and honeycomb effects The fabric pictures with different yarn linear density are shown in Fig. 1 Fig. 1 Fabric pictures with different yarn linear density The study indicates that the vertical depth of honeycomb weaves
Acknowledgements This work was financially supported by the National Science and Technology Support Project(2007BAE28B03), Zhejiang Natural Science Foundation (Y4100118) and Program for Changjiang Scholars and Innovative Research Team in University (No.IRT0654).
References [1] Guofa Zou, Guorong Long, Jianping Wan: Fiber Reinforced Plastics/Composites No.6 (2005), p.42(In Chinese) [2] Liang Wang,Ling Sun: Journal of Wuhan University of Technology Vol.21(2009), p.52(In Chinese) [3] Ping Zhang, Li Zhou,Tao Qiu: Actc Aeronautica Et Astronautica Sinica Vol.32(1) (2011), p.156(In Chinese) [4] Jianbing Nie, Xia Reng: Wool Textile Journal Vol.38(11) (2010), p.29(In Chinese) [5] Chengyan Zhu, Dongyi Tan, Wei Tian: Journal of Textile Research Vol.27(12) (2006), p.9(In Chinese)
Online since: January 2012
Authors: Jiu Ran Zhang, Wen Guo Ma, Xia Ning Li, Qiu Yue Yang, Hui Fen Xia
In this paper, viscous and elastic parts are distinguished through creep-recovery and dynamic experiments, their proportions are calculated respectively, and the limit of mass concentration for high concentration polymer solution is given, which provides theoretical support for the application of polymer solution in oilfield.
2 Experimental materials, equipment and condition
Materials: partially hydrolyzed polyacrylamide, produced by Beijing Hengju Chemical Group Co., Ltd.
The proportions of elastic part of polymer solution are the same when the mass concentration is higher than1500mg/L; (2) The proportion of viscous part is greater than that of elastic part under low shear rate condition; the proportion of elastic part is greater than viscous part under oil reservoir shear rate condition, the proportion of elastic part increases with the increase in mass concentration, but the increment becomes smaller. 6 Acknowledgements This research was financially supported by the National Natural Science Foundation Project of China (Grant No. 50874023) and Scientific Research Project Fund of Education Department of Heilongjiang Province (Grant No. 11551007).
Journal of Daqing Petroleum Institute.
Journal of Xi′an Shiyou University(Natural Science Edition).
Journal of Daqing Petroleum Institute.
The proportions of elastic part of polymer solution are the same when the mass concentration is higher than1500mg/L; (2) The proportion of viscous part is greater than that of elastic part under low shear rate condition; the proportion of elastic part is greater than viscous part under oil reservoir shear rate condition, the proportion of elastic part increases with the increase in mass concentration, but the increment becomes smaller. 6 Acknowledgements This research was financially supported by the National Natural Science Foundation Project of China (Grant No. 50874023) and Scientific Research Project Fund of Education Department of Heilongjiang Province (Grant No. 11551007).
Journal of Daqing Petroleum Institute.
Journal of Xi′an Shiyou University(Natural Science Edition).
Journal of Daqing Petroleum Institute.