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Online since: June 2021
Authors: Xu Qing Wang, Zi Chao Peng, Jun Ying Sheng, Yue Tang
Low Cycle Fatigue Properties of FGH720Li Superalloy
Zichao Peng1,a*, Junying Sheng2,b, Xuqing Wang1,c and Yue Tang1,d
1Science and Technology on Advanced High Temperature Structural Materials Laboratory,
AECC Beijing Institute of Aeronautical Materials, Beijing, 100095, China
2AECC South Aviation Industry Co.
References [1] Zou Jinwen, Wang Wuxiang, Development and Application of PM Superalloy, Journal of Aeronautical Materials, 26(3) (2012) 244-250
Reed, Heat treatment of Udimet720Li: the effect of microstructure on properties, Material Science and Engineering A, 259(1) (1999) 85-97
Reed, Quantification of the minor precipitates in Udimet720Li using electrolytic extraction and X-ray diffraction, Material Science and Engineering A, 245(2) (1998) 225-232
[8] China national standardization administration, GB/T 15248-2008 the test method for axial loading constant-amplitude low-cycle fatigue of metallic materials, China Standard Press, Beijing, 2008, 1–17
References [1] Zou Jinwen, Wang Wuxiang, Development and Application of PM Superalloy, Journal of Aeronautical Materials, 26(3) (2012) 244-250
Reed, Heat treatment of Udimet720Li: the effect of microstructure on properties, Material Science and Engineering A, 259(1) (1999) 85-97
Reed, Quantification of the minor precipitates in Udimet720Li using electrolytic extraction and X-ray diffraction, Material Science and Engineering A, 245(2) (1998) 225-232
[8] China national standardization administration, GB/T 15248-2008 the test method for axial loading constant-amplitude low-cycle fatigue of metallic materials, China Standard Press, Beijing, 2008, 1–17
Online since: February 2014
Authors: Mei Dong Huang, Li Xue, Fan Yu Meng, Hong Yu Li, Xi Ying Fan
Xu: Journal of materials protection Vol. 33 (2000), p. 28
Xie: Materials protection Vol 32 (1999), p. 34
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Wu: Transactions of materials and heat treatment Vol 22 (2001), p.62.
Xie: Materials protection Vol 32 (1999), p. 34
Zhao: Rare metal materials and engineering Vol. 27 (1998), p. 278
Liu: Journal of functional materials Vol. 40 (2009), p. 1465.
Wu: Transactions of materials and heat treatment Vol 22 (2001), p.62.
Online since: September 2009
Authors: C. Andreouli, C.J. Stournaras, E. Xenogiannopoulou
All materials were in powder form.
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Online since: October 2013
Authors: Yu Can Fu, Jiu Hua Xu, Guo Hui Zhu, Shu Bao Yang
Moreover, the high chemical reactivity with many tool materials and the low elastic modulus, which generate harmful vibrations for the tool and the workpiece, also contribute to the difficult machinability of this material.
Wang: Journal of Materials Processing Technology.
Yamane: Journal of Materials Processing Technology.
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Wang: Journal of Materials Processing Technology.
Yamane: Journal of Materials Processing Technology.
Moreira, Ferreira: Journal of Materials Processing Technology, Vol. 143-144(2003), p. 458
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Online since: March 2012
Authors: Da Wei Hu, Xiu Juan Liang, Xiao Fang Hu
As we known that ZnO is an important n-type semiconductor materials, an electric field could affect the high-energy facets of the nano-particles.
Room-temperature ultraviolet nanowire nanolasers, Science. 292(2001)1897-1899
Aqueous synthesis of interconnected ZnO nanowires using spray pyrolysis deposited seed layers, Materials Letters . 64(2010)291-294 [10] S.
Catalytic Growth of Zinc Oxide Nanowires by Vapor Transport, Advanced Materials. 13(2001)113-116
Anionic surfactant-assisted hydrothermal synthesis of high-aspect-ratio ZnO nanowires and their photoluminescence property, Materials Letters. 60 (2006) 2777–2782 [22] G.H.
Room-temperature ultraviolet nanowire nanolasers, Science. 292(2001)1897-1899
Aqueous synthesis of interconnected ZnO nanowires using spray pyrolysis deposited seed layers, Materials Letters . 64(2010)291-294 [10] S.
Catalytic Growth of Zinc Oxide Nanowires by Vapor Transport, Advanced Materials. 13(2001)113-116
Anionic surfactant-assisted hydrothermal synthesis of high-aspect-ratio ZnO nanowires and their photoluminescence property, Materials Letters. 60 (2006) 2777–2782 [22] G.H.
Online since: September 2017
Authors: Lucia Figuli, Alexander A. Karabutov, Yulia G. Sokolovskaya, Dmitry V. Morozov, Anton S. Bychkov, Elena V. Savateeva, Vasily P. Zarubin
Ruud (Eds.), Nondestructive Characterization of Materials VI, Plenum Press, 1994, pp. 669–676
Key Engineering Materials.
Simulation of Ultrasonic Materials Evaluation Experiments Including Scattering Phenomena due to Polycrystalline Microstructure.
Key Engineering Materials.
Karabutov, N.B.Podymova, E.B.Cherepetskaya, Measuring the dependence of the local Young's modulus on the porosity of isotropic composite materials by a pulsed acoustic method using a laser source of ultrasound, Journal of Applied Mechanics and Technical Physics, 54(3)(2013), 500-507
Key Engineering Materials.
Simulation of Ultrasonic Materials Evaluation Experiments Including Scattering Phenomena due to Polycrystalline Microstructure.
Key Engineering Materials.
Karabutov, N.B.Podymova, E.B.Cherepetskaya, Measuring the dependence of the local Young's modulus on the porosity of isotropic composite materials by a pulsed acoustic method using a laser source of ultrasound, Journal of Applied Mechanics and Technical Physics, 54(3)(2013), 500-507
Online since: June 2010
Authors: Nian Xin Zhou, Shu Ai Wang, Ya Qun He, Chen Long Duan
Integrated circuit
components are more complex and their basic materials are silicon monocrystalline or gallium
arsenide; packaging materials are usually plastic materials, ceramic packaging materials and metal
packaging materials, and its ingredients are mainly resin, silica, lead glass, metals and the
corresponding curing agents, promoting agents, flame retardants and etc; lead wire materials usually
consist of inner and outer materials, and they primarily consist some metals or their alloys
composition.
Table 1 summarizes a combination method of the circuit board materials[5].
Acknowledgment The financial support from the National Natural Science Foundation of China (50921002), China Postdoctoral Science Foundation (20090461153), and Youth Science Foundation of CUMT (2007A021).
[2] DUAN Chen-Long, ZHAO Yue-Min, WEN Xue-Feng, et al: Journal of China University of Mining and Technology,Vol.34(2005), p. 730 ~ 734
[4] GU Xin-shi: Beijing, Chemical Industry Press, Publishing Center of Materials Science and Engineering(2002)
Table 1 summarizes a combination method of the circuit board materials[5].
Acknowledgment The financial support from the National Natural Science Foundation of China (50921002), China Postdoctoral Science Foundation (20090461153), and Youth Science Foundation of CUMT (2007A021).
[2] DUAN Chen-Long, ZHAO Yue-Min, WEN Xue-Feng, et al: Journal of China University of Mining and Technology,Vol.34(2005), p. 730 ~ 734
[4] GU Xin-shi: Beijing, Chemical Industry Press, Publishing Center of Materials Science and Engineering(2002)
Online since: April 2015
Authors: H.D. Rozman, Abdul Rahman Rozyanty, A. Zuliahani
Materials
Epoxy resin with equivalent weight of epoxide 182-192 and fatty polyamides based hardeners were purchased from Euro Chemo Pharma Sdn Bhd Penang, Malaysia.
The effects of RH particle size, GF length, RH/GF ratio and addition of coupling agent (2010) Journal of Applied Polymer Science
Azniwati, A.R Rozyanty The tensile properties of Kenaf-unsaturated polyester composite filled with montmorillonite filler. (2009) Journal of Applied Polymer Science 5: 1402-1417
Material Science 29:133-145
Material
The effects of RH particle size, GF length, RH/GF ratio and addition of coupling agent (2010) Journal of Applied Polymer Science
Azniwati, A.R Rozyanty The tensile properties of Kenaf-unsaturated polyester composite filled with montmorillonite filler. (2009) Journal of Applied Polymer Science 5: 1402-1417
Material Science 29:133-145
Material
Online since: August 2017
Authors: Katsuyuki Kida, Koshiro Mizobe, Kohei Egawa
In this case, the material was heated by both a furnace and an induction coil.
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Kawasaki, Fatigue strength and fracture mechanism of steel modified by super-rapid induction heating andquenching, International Journal of Fatigue, Vol. 23, (2001), pp.
McGreevy, Simulation of steel microstructure evolution during induction heating, Materials science and engineering A, Vol. 527, (2010), pp. 2978-2984
Hata, Microstructures developed by super-rapid induction heating-and-quenching (SRIHQ) of Fe–1.4%Cr–1%C pearlitic steel, Materials Science and Engineering A, Vol. 577, (2013), pp. 29-35
Wright, The science and engineering of materials, 6th edition, Cengage Learning Inc. (2011) [3] V.
Kawasaki, Fatigue strength and fracture mechanism of steel modified by super-rapid induction heating andquenching, International Journal of Fatigue, Vol. 23, (2001), pp.
McGreevy, Simulation of steel microstructure evolution during induction heating, Materials science and engineering A, Vol. 527, (2010), pp. 2978-2984
Hata, Microstructures developed by super-rapid induction heating-and-quenching (SRIHQ) of Fe–1.4%Cr–1%C pearlitic steel, Materials Science and Engineering A, Vol. 577, (2013), pp. 29-35
Online since: June 2012
Authors: Yun Jin Wang, Jian Wang, Xiao Jun Jiang, Hong Bo Xu
This investigation involves the effects of non-ionic surfactant materials on the industrial sodium oleate, sodium naphthenate and their mixtures at different temperatures by the surface tension methods.
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Meguro, Journal of the American Oil Chemists Society, (1972), p.437 [11] K.E.Rykov,N.P.Zablotska,and T.
Blinova, Soviet Mining Science,(1976),p.108 [12] B.
Bel'kova ,Journal of Mining Science Vol.31, (1995),p.309 [4]O.
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Meguro, Journal of the American Oil Chemists Society, (1972), p.437 [11] K.E.Rykov,N.P.Zablotska,and T.
Blinova, Soviet Mining Science,(1976),p.108 [12] B.