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Online since: January 2013
Authors: Shuang Long Feng, Ming Liu, Jiang Ying Peng, Jia Qi Zhang, Wei Xin Li, Hong Zhou Yan, Jun You Yang
Feng, et al., Growth of TiO2 nanosheet-array thin films by quick chemical bath deposition for dye-sensitized solar cells,Applied Physics A: Materials Science & Processing. 105 (2011) 769-774
Shimizu, et al., Direct preparation of anatase TiO2 nanotubes in porous alumina membranes, Journal of Materials Chemistry. 9 (1999) 2971-2972
Wang, et al., A Novel Protocol Toward Perfect Alignment of Anodized TiO2 Nanotubes, Advanced Materials. 21(2009) 1964-1967
Varghese, et al., A review on highly ordered, vertically oriented TiO2 nanotube arrays: Fabrication, material properties, and solar energy applications, Solar Energy Materials and Solar Cells. 90 (2006) 2011-2075
Lin, Freestanding TiO2 Nanotube Arrays with Ultrahigh Aspect Ratio via Electrochemical Anodization, Chemistry of Materials. 20 (2008) 1257-1261
Shimizu, et al., Direct preparation of anatase TiO2 nanotubes in porous alumina membranes, Journal of Materials Chemistry. 9 (1999) 2971-2972
Wang, et al., A Novel Protocol Toward Perfect Alignment of Anodized TiO2 Nanotubes, Advanced Materials. 21(2009) 1964-1967
Varghese, et al., A review on highly ordered, vertically oriented TiO2 nanotube arrays: Fabrication, material properties, and solar energy applications, Solar Energy Materials and Solar Cells. 90 (2006) 2011-2075
Lin, Freestanding TiO2 Nanotube Arrays with Ultrahigh Aspect Ratio via Electrochemical Anodization, Chemistry of Materials. 20 (2008) 1257-1261
Online since: August 2011
Authors: Shuang Jin Liu, Fen Fei Cai, Xun Yao, Chun Xiang Cui
Materials Science and Engineering, 1998: p. 243 A
Materials Science and Engineering C 25 (2005) 417 – 425 [9] S.J.
Comparison of measured and calculated on phase transition point of Ti-6Al-4V alloy phase transition of the experience of the caclculation formula [J].Rare Metal Materials and Engineering.1998,(8):47 [15]《{TTP}12298 Rare Metal Materials Processing Handbook》{TTP}12299 .
Writing Group Rare Metal Materials Processing Handbook [M].Beijing Metallurgical Industry Publication,1984:48
Chinese Journal of Rare Metals, 2009, 33(5):657.
Materials Science and Engineering C 25 (2005) 417 – 425 [9] S.J.
Comparison of measured and calculated on phase transition point of Ti-6Al-4V alloy phase transition of the experience of the caclculation formula [J].Rare Metal Materials and Engineering.1998,(8):47 [15]《{TTP}12298 Rare Metal Materials Processing Handbook》{TTP}12299 .
Writing Group Rare Metal Materials Processing Handbook [M].Beijing Metallurgical Industry Publication,1984:48
Chinese Journal of Rare Metals, 2009, 33(5):657.
Online since: February 2026
Authors: D. Jeyasimman, R Suresh
The term composite defines the mixture of two materials combined into to one for the enhancement of the property of those base materials.
Composites has two or more materials fused together, in this research to materials were chosen one for the matrix and other for the reinforcement, the reinforcement was the element that adds strength to the base matrix metal.
Nai, “Selective laser melting of micron-sized niobium functionalized Al7075 alloy: Element evaporation and grain refinement,” Materials Science and Engineering: A, vol. 834, p. 142595, Feb. 2022
IOSR Journal of Mechanical and Civil Engineering.
Krishnan et al., “Biodegradable magnesium metal matrix composites for biomedical implants: synthesis, mechanical performance, and corrosion behavior – a review,” Journal of Materials Research and Technology, vol. 20, pp. 650–670, Sep. 2022
Composites has two or more materials fused together, in this research to materials were chosen one for the matrix and other for the reinforcement, the reinforcement was the element that adds strength to the base matrix metal.
Nai, “Selective laser melting of micron-sized niobium functionalized Al7075 alloy: Element evaporation and grain refinement,” Materials Science and Engineering: A, vol. 834, p. 142595, Feb. 2022
IOSR Journal of Mechanical and Civil Engineering.
Krishnan et al., “Biodegradable magnesium metal matrix composites for biomedical implants: synthesis, mechanical performance, and corrosion behavior – a review,” Journal of Materials Research and Technology, vol. 20, pp. 650–670, Sep. 2022
Online since: March 2007
Authors: Jun Suda, C.S. Chang, H. Sato, T. Hiraoka, Kiichi Kanda, T. Ariga, Y. Miyazawa
Ariga
1, d
1
Department of Materials Science, School of Engineering, TOKAI UNIVERSITY
1117, Kitakaname, Hiratsuka-shi, Kanagawa-ken, 259-1292, JAPAN
2
Engineered Materials Solutions, Inc., MA 02703, USA
3
Kanto Yakin Kogyo Co., LTD., Kanagawa, JAPAN
a
ceramics@keyaki.cc.u-tokai.ac.jp, b, ckiichi.kanda@k-y-k.co.jp, dttariga@keyaki.cc.u-tokai.ac.jp
Keywords: Joining, Joint, Titanium, Titanium alloy, Brazing, Ti-based laminated brazing filler metal,
Cross-sectional microstructure
Abstract.
However, it was difficult to produce homogeneous Ti-based ductile foil brazing filler metal with rapidly solidification technology, because there are no materials for nozzle [3].
Base materials used in this study were CP-Ti Type2, Ti alloy (Ti-6Al-4V), and stainless steel SUS 630.
Table1 shows chemical compositions of base materials.
Jha: Application of Roll Welding to Brazing, Welding Journal, 28, October 2003 [5] Kiichi Kanda: Development and application of the continuous atmosphere controlled furnace "OXYXNON", Journal of Advanced Science, 7, Vol.16, No.1, 2004, in Japanese [6] Information on http://www.k-y-k.co.jp/en/sanso_e.html 10µm Ti alloy Alloy layer Brazed layer Acicular microstructure Stainless Steel Fig.7 typical cross-section at the brazed joint
However, it was difficult to produce homogeneous Ti-based ductile foil brazing filler metal with rapidly solidification technology, because there are no materials for nozzle [3].
Base materials used in this study were CP-Ti Type2, Ti alloy (Ti-6Al-4V), and stainless steel SUS 630.
Table1 shows chemical compositions of base materials.
Jha: Application of Roll Welding to Brazing, Welding Journal, 28, October 2003 [5] Kiichi Kanda: Development and application of the continuous atmosphere controlled furnace "OXYXNON", Journal of Advanced Science, 7, Vol.16, No.1, 2004, in Japanese [6] Information on http://www.k-y-k.co.jp/en/sanso_e.html 10µm Ti alloy Alloy layer Brazed layer Acicular microstructure Stainless Steel Fig.7 typical cross-section at the brazed joint
Online since: April 2018
Authors: Qin Xiang Xia, Xiu Quan Cheng, Jia Yu Li, Jun Hao Zhang
The upper surface of specimen was covered with flexible coating materials which includes flexible confinement layer and energy absorbent layer (shown as in Fig. 2) [6].
Clark, The interaction between corrosion management and structural integrity of aging aircraft, Fatigue & Fracture of Engineering Materials & Structures, 35(2012) 64-73
Lahrmanet, The effect of laser shock peening on the life and failure mode of a cold pilger die, Journal of Materials Processing Technology, 204(2008) 486-491
Li, Experimental research on influence of layer materials on surface strengthening of 7075 aluminum alloy laser shot peening, Surface Technology, 03 (2017)124-129 (In Chinese)
Zhong, Effect of laser shock processing on wear resistance of AISI8620 alloy steel, Journal of Jiangsu University of Science and Technology, 25(2011)427-431 (In Chinese)
Clark, The interaction between corrosion management and structural integrity of aging aircraft, Fatigue & Fracture of Engineering Materials & Structures, 35(2012) 64-73
Lahrmanet, The effect of laser shock peening on the life and failure mode of a cold pilger die, Journal of Materials Processing Technology, 204(2008) 486-491
Li, Experimental research on influence of layer materials on surface strengthening of 7075 aluminum alloy laser shot peening, Surface Technology, 03 (2017)124-129 (In Chinese)
Zhong, Effect of laser shock processing on wear resistance of AISI8620 alloy steel, Journal of Jiangsu University of Science and Technology, 25(2011)427-431 (In Chinese)
Online since: October 2014
Authors: Jun Liu, Jie Zhang, Bo Zhou
It represented that the longer the grinding time was, the better the materials were reacted and the more powder refinement was.
Chinese Journal of Preventive Medicine, 2006,6(7): 180-184.
Chinese Science Bulletin, 2004,49(22):2294-2299.
Journal of Zhejiang University, 2000, 34(1): 1-4.
Journal of Functional Materials,2002,2 (38):320-322.
Chinese Journal of Preventive Medicine, 2006,6(7): 180-184.
Chinese Science Bulletin, 2004,49(22):2294-2299.
Journal of Zhejiang University, 2000, 34(1): 1-4.
Journal of Functional Materials,2002,2 (38):320-322.
Online since: April 2014
Authors: Yu Lai Chen, Fei Fang, Hong He
Microstructure Evolution in Isothermal Heat Treatment of
0Cr32Ni7Mo4NDuplex Stainless Steel
Yulai Chen1, a, Hong He 2,b and Fei Fang2,c
1Engineering Research Institute, University of Science and Technology Beijing, 30 Xueyuan Road, Beijing 100083, China
2School of Material Science and Engineering, University of Science and Technology Beijing, 30 Xueyuan Road, Beijing 100083, China
ayulaic@nercar.ustb.edu.cn, bcailiaoyoyo@163.com, custb_fangfei@163.com.
Obviously, γ2 phase is the most vulnerable in pitting corrosion area, σ phase will significantly reduce the corrosion resistance of DSSs materials.
Cui: Journal of Iron and Steel Research, International, 5(6) (2008), p. 72-77
Zhang: Journal of Iron and Steel Research, International, 17(11) (2010), p. 67-72
Feng: Journal of Iron and Steel Research, International, 19(8) (2012), p. 43-51
Obviously, γ2 phase is the most vulnerable in pitting corrosion area, σ phase will significantly reduce the corrosion resistance of DSSs materials.
Cui: Journal of Iron and Steel Research, International, 5(6) (2008), p. 72-77
Zhang: Journal of Iron and Steel Research, International, 17(11) (2010), p. 67-72
Feng: Journal of Iron and Steel Research, International, 19(8) (2012), p. 43-51
Online since: September 2013
Authors: Yu Peng Li, Cheng Jun Guo, Ning Pei, Da Sen Wang, Feng Ming Nie, Guang Ping Zhang
The Technique of Ion Beam Etching Polishing
ChengJun Guo1, a,Ning Pei1,b,DaSen Wang1,c,FengMing Nie1,d, GuangPing Zhang1,d,YuPeng Li1,d
1 The northern institute of materials science and engineering,ningbo,315103,China
agcj-228@163.com, bpeining1984@163.com, cwds9059@sina.com, dnfm2006@sina.com,
Keyword:Ion beam, Etching,Polishing
Abstract: The accelerated gas ions collide with the surface material, the atom or molecule on material surface is removed by momentum transferring.
Depositing a layer low viscosity of the thin film materials on the original surface of the optical, such materials will form a layer thin film on the surface of optical element that is lower than the original.
This method has the low material removal rate.
Therefore, using ion beam deposition modification technology is put forward,its principle is shown in Fig.5: Fig. 5.Ion beam deposition correction technology Fig. 6.The influence of surface roughness of Ion beam density and incident angle Depositing a layer low viscosity of the thin film materials on the original surface of the optical, such materials will form a layer thin film on the surface of optical element that is lower than the original.
(in Chinese) [7] Changjun Jiao; optical mirror ion beam processing material removal mechanism and the basic technology of [D]; National Defense Science and Technology University; 2008.
Depositing a layer low viscosity of the thin film materials on the original surface of the optical, such materials will form a layer thin film on the surface of optical element that is lower than the original.
This method has the low material removal rate.
Therefore, using ion beam deposition modification technology is put forward,its principle is shown in Fig.5: Fig. 5.Ion beam deposition correction technology Fig. 6.The influence of surface roughness of Ion beam density and incident angle Depositing a layer low viscosity of the thin film materials on the original surface of the optical, such materials will form a layer thin film on the surface of optical element that is lower than the original.
(in Chinese) [7] Changjun Jiao; optical mirror ion beam processing material removal mechanism and the basic technology of [D]; National Defense Science and Technology University; 2008.
Online since: February 2011
Authors: Bang Chun Wen, Jia Zhao, Wen Jin, Zhi Hao Jin
Introduction
With the development of modern science, technology progress, rotating machinery has become more evident importance in industrial production.
Sensor 1 and 3 is placed at the left side of the rotor friction load bracket, sensor 2 is placed at the right side of the bearing bracket, using the coupling agent fixed sensors and test specimen, rub the specimen materials is chosen HT150 and 1Cr18Ni9Ti.
ASME Journal of Vibration and Acoustics. 1995, 117(2S):154-161
ASME Journal of Vibration and Acoustics, 1993,114(1):93-100
[5] Yancheng Qu, song Wang and jiayu Zhang in: Application of Wavelet Based Method to Level Detection of Oil Wells.Journal of Data Acquisition & Processing ,1998,13(12):353-356)
Sensor 1 and 3 is placed at the left side of the rotor friction load bracket, sensor 2 is placed at the right side of the bearing bracket, using the coupling agent fixed sensors and test specimen, rub the specimen materials is chosen HT150 and 1Cr18Ni9Ti.
ASME Journal of Vibration and Acoustics. 1995, 117(2S):154-161
ASME Journal of Vibration and Acoustics, 1993,114(1):93-100
[5] Yancheng Qu, song Wang and jiayu Zhang in: Application of Wavelet Based Method to Level Detection of Oil Wells.Journal of Data Acquisition & Processing ,1998,13(12):353-356)
Online since: August 2006
Authors: Zhi Hao Jin, Jun Min Qian, Guan Jun Qiao
The microstructure and
characteristics for this series of materials were determined and compared.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 233 [4] G.J.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 175 [6] T.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 197 [7] K.
Okabe, et al.: Journal of Porous Materials, Vol. 6(1999), p. 255 [9] T.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 233 [4] G.J.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 175 [6] T.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 197 [7] K.
Okabe, et al.: Journal of Porous Materials, Vol. 6(1999), p. 255 [9] T.