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Formation Structure and Properties of Parts from Titanium Alloys Produced by Direct Laser Deposition
Online since: September 2017
Authors: V.V. Cheverikin, M.O. Gushchina, Olga G. Klimova-Korsmik
Wicker, Metal Fabrication by Additive Manufacturing Using Laser and Electron Beam Melting Technologies, Journal of Material Science, 28 (2012) 1-14
Wikman, Intragranular cellular segregation network structure strengthening 316l stainless steel prepared by selective laser melting, Journal of Nuclear Materials, 470(2016) 170-178
Tuck, Effect of the build orientation on the mechanical properties and fracture modes of SLM Ti–6Al–4V, Materials Science and Engineering, A 616 (2014) 1-11
Huang, Grain morphology control and texture characterization of laser solidformed Ti6Al2Sn2Zr3Mo1.5Cr2Nb titanium alloy, Journal of Materials Processing Technology, 238 (2016) 202-211 [17] J.
Technological, Aspects of High Speed Direct Laser Deposition Based on Heterophase Powder Metallurgy, IOP Conference Series: Materials Science and Engineering, 125 (2016)
Wikman, Intragranular cellular segregation network structure strengthening 316l stainless steel prepared by selective laser melting, Journal of Nuclear Materials, 470(2016) 170-178
Tuck, Effect of the build orientation on the mechanical properties and fracture modes of SLM Ti–6Al–4V, Materials Science and Engineering, A 616 (2014) 1-11
Huang, Grain morphology control and texture characterization of laser solidformed Ti6Al2Sn2Zr3Mo1.5Cr2Nb titanium alloy, Journal of Materials Processing Technology, 238 (2016) 202-211 [17] J.
Technological, Aspects of High Speed Direct Laser Deposition Based on Heterophase Powder Metallurgy, IOP Conference Series: Materials Science and Engineering, 125 (2016)
Online since: January 2022
Authors: Chang Wang, Xiao Dan Zhang, Hai Feng Xu, Shu Lan Zhang
EBSD Study of the Effect of Hot Deformation on Low Carbon Bainitic Structure, 2020, Materials Science Forum.993: 513-519
A grain-size-dependent structure evolution in gradient-structured(GS) Ni under tension. 2020, Nano Materials Science, 2(01):42-52
General relationship between strength and hardness.2011, Materials Science & Engineering, 529C: p.62-73
Observations and issues on mechanisms of grain refinement during ECAP process.2000, Materials Science and Engineering: A, 291(1-2):46-53
Effect of block size on the strength of lath martensite in low carbon steels [J].2006, Materials Science & Engineering A, 438(1):237-240
A grain-size-dependent structure evolution in gradient-structured(GS) Ni under tension. 2020, Nano Materials Science, 2(01):42-52
General relationship between strength and hardness.2011, Materials Science & Engineering, 529C: p.62-73
Observations and issues on mechanisms of grain refinement during ECAP process.2000, Materials Science and Engineering: A, 291(1-2):46-53
Effect of block size on the strength of lath martensite in low carbon steels [J].2006, Materials Science & Engineering A, 438(1):237-240
Online since: February 2014
Authors: Hong Xia Li, Yong Zhi Zhang, Ke Ming Geng, Ai Jun Wu
XRD pattern of gel fibers heat treated at 80℃ for 24 h shows the materials have an amorphous Al13 structure, which is decomposed completely at 350℃.
Journal of Inorganic Materials, 19(2004, 2) 361-366.
Materials Letter, 3(2002) 189-195
Journal of Materials Processing Technology, 3(2006) 275-280
Journal of Materials Science,24(1989,3) 892-898
Journal of Inorganic Materials, 19(2004, 2) 361-366.
Materials Letter, 3(2002) 189-195
Journal of Materials Processing Technology, 3(2006) 275-280
Journal of Materials Science,24(1989,3) 892-898
Online since: July 2011
Authors: Li Yin Zhang, Chang Zhong Xu, Xuan Qiu Li, Jian Feng Yan, Liang Zhang, Wen Long Song, Jian Xin Deng
It was thought that a reduction of these problems could be achieved by improving the tool wear resistance such as using new tool materials, adapting tool geometries, and application of coating tool [4-6].
Acknowledgements This work was supported by “the National Natural Science Foundation of China (51075237)”, “the National Basic Research Program of China (2009CB724402)”, “the Taishan Scholar Program of Shandong Province”, “the Outstanding Young Scholar Science Foundation of Shandong (JQ200917)”, and “the National Natural Science Foundation of Shandong (ZR2010EZ002)”.
Ngoi: Journal of Materials Processing Technology Vol. 101 (2000), p. 287-291
Feng: Chinese Journal of Mechanical Engineering Vol. 38 (2002), p. 40-45
Shi, Solid lubricating materials (China Chemical Industry Press, China 2000)
Acknowledgements This work was supported by “the National Natural Science Foundation of China (51075237)”, “the National Basic Research Program of China (2009CB724402)”, “the Taishan Scholar Program of Shandong Province”, “the Outstanding Young Scholar Science Foundation of Shandong (JQ200917)”, and “the National Natural Science Foundation of Shandong (ZR2010EZ002)”.
Ngoi: Journal of Materials Processing Technology Vol. 101 (2000), p. 287-291
Feng: Chinese Journal of Mechanical Engineering Vol. 38 (2002), p. 40-45
Shi, Solid lubricating materials (China Chemical Industry Press, China 2000)
Online since: October 2014
Authors: Yu Wei Ji, Yu Min Liu, Ya Min Liu, Cong Yan
Materials and Methods
Fruit materials and treatments.
Chen: Journal of Chinese Institute of Food Science and Technology Vol. 3 (2006), p. 151 (In Chinese) [4] W.
Zhou: Southwest China Journal of Agricultural Sciences Vol. 17 (2004), p. 525 (In Chinese) [7] T.
An: Journal of Fujian College of Forestry Vol. 24 (2004), p. 88 (In Chinese) [9] Medical China Academy of Sciences: History of Chinese Medicine in Shanxib(Shanxi People’s Publishing House, China 1962), p.54 [10] Q.
Zhang: Journal of Gannan Medical University Vol. 27 (2007), p. 169 (In Chinese)
Chen: Journal of Chinese Institute of Food Science and Technology Vol. 3 (2006), p. 151 (In Chinese) [4] W.
Zhou: Southwest China Journal of Agricultural Sciences Vol. 17 (2004), p. 525 (In Chinese) [7] T.
An: Journal of Fujian College of Forestry Vol. 24 (2004), p. 88 (In Chinese) [9] Medical China Academy of Sciences: History of Chinese Medicine in Shanxib(Shanxi People’s Publishing House, China 1962), p.54 [10] Q.
Zhang: Journal of Gannan Medical University Vol. 27 (2007), p. 169 (In Chinese)
Online since: May 2014
Authors: Quan An Li, Lei Lei Chen, Hui Zhen Jiang, Wen Chuang Liu, Xing Yuan Zhang
Effect of Solution Treatment on Microstructures and Hardness of Mg-Gd-Y-Zr Alloy
Quan-an LI1,2,a, Lei-lei CHEN1,b, Wen-chuang LIU1, Xing-yuan ZHANG1
and Hui-zhen JIANG1
1School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, China
2Collaborative Innovation Center of Nonferrous Metals, Henan Province, Luoyang, 471023, China
aemail:q-ali@163.com, bemail: cll19880623@163.com
Keywords: Mg-Gd-Y-Zr alloy, solution treatment, microstructures, Vickers hardness.
Introduction Recently, there have been constantly increasing uses of light-weight and high-strength materials as structural materials in engineering applications such as automobile industry, 3C (Computer, Communication, Consumer Electronic) and electron industry [1,2].
Before the melting started, all the materials should be dried at 200°C for 1-2 hours.
[2] Aghion E, Bronfin B, Eliezer D, The role of the magnesium industry in protecting the environment, Journal of Materials Processing Technology. (117) 2001 381-385
[7] Yan Gao, Qudong Wang, Jinhai Gu, Yang Zhao and Yan Tong, Behavior of Mg–15Gd–5Y–0.5Zr alloy during solution heat treatment from 500 to 540 °C, Materials Science and Engineering A. (459) 2007 117-123
Introduction Recently, there have been constantly increasing uses of light-weight and high-strength materials as structural materials in engineering applications such as automobile industry, 3C (Computer, Communication, Consumer Electronic) and electron industry [1,2].
Before the melting started, all the materials should be dried at 200°C for 1-2 hours.
[2] Aghion E, Bronfin B, Eliezer D, The role of the magnesium industry in protecting the environment, Journal of Materials Processing Technology. (117) 2001 381-385
[7] Yan Gao, Qudong Wang, Jinhai Gu, Yang Zhao and Yan Tong, Behavior of Mg–15Gd–5Y–0.5Zr alloy during solution heat treatment from 500 to 540 °C, Materials Science and Engineering A. (459) 2007 117-123
Online since: December 2012
Authors: Yuan Yang, Xin Min Hao, Jian Chun Zhang, Hong Wei Li, Gun Jun Zhang, Fei Wang, Xin Hao
The results show that when content of hemp is nearly 40%, shoe’s lining of stitch-bonded materials can obtain high performance, which can meet the requirement for shoe’s lining.
Traditional shoe’s lining are composed of polyester staple fiber as web raw materials and polyester filaments as stitching warp [1].
Experiments Experimental materials.
In Chinese [10] Y.N.Chen and M.Yao: Journal of Northwest Institute of Textile Science and Technology.Vol.15(2001), p.53-55.
Chen and M.Yao: Journal of Northwest Institute of Textile Science and Technology.Vol.15(2001),p.15-23.
Traditional shoe’s lining are composed of polyester staple fiber as web raw materials and polyester filaments as stitching warp [1].
Experiments Experimental materials.
In Chinese [10] Y.N.Chen and M.Yao: Journal of Northwest Institute of Textile Science and Technology.Vol.15(2001), p.53-55.
Chen and M.Yao: Journal of Northwest Institute of Textile Science and Technology.Vol.15(2001),p.15-23.
Online since: August 2011
Authors: Bing Qiang Yu, Li Po Yang
Shape detecting and shape control of cold rolling strip
Lipo Yang1, a, Bingqiang Yu1,b
1National Engieering Research Center for Equipment and Technology of Cold Rolling Strip;
2State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao 066004, Hebei, China;
ayanglp@ysu.edu.cn, byf6688@163.com
Keywords: cold rolling strip; shape detecting; shape control; shape meter
Abstract.
Beijing: Science Press, 2009
Journal of Materials Processing Technology, 2009, 209(9):4584-4589
Advanced Materials Research, 2010, 97:81-81
Journal of Materials Processing Technology, 2009, 209(9): 4584-4589
Beijing: Science Press, 2009
Journal of Materials Processing Technology, 2009, 209(9):4584-4589
Advanced Materials Research, 2010, 97:81-81
Journal of Materials Processing Technology, 2009, 209(9): 4584-4589
Online since: March 2013
Authors: Yu Hong Zhao, Hua Hou, Jin Shan Zhang, Chun Xiang Xu, Wei Liang, Wei Li Cheng, Xiao Feng Niu, Hong Xia Wang
A New High Order Mathematical Model for Calculating the Energy Conservation Equation
Xiaofeng Niu1, a, Wei Liang1, b*, Hua Hou2, c, Yuhong Zhao2, d, Hongxia Wang1, e, Chunxiang Xu1, f, Jinshan Zhang1, g and Weili Cheng1, h
1 College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China
2 College of Materials Science and Engineering, North University of China, Taiyuan 030051, China
a niu.xiao.feng@126.com, b liangwky@126.com, c houhua@263.net, d zyh388@sina.com,
e wanghxia1217@163.com, fxuchunxiang2012@126.com, g jinshansx@tom.com, hchengweili7@126.com
Keywords: Hamming distance, High order ADI method, The equivalent specific heat method, Solidification process.
Ahmad, Numerical simulation of casting solidification in permanent metallic molds, Journal of Materials Processing Technology. 178 (2006) 29-33
Xu, Numerical method to improve the computational efficiency of solidification simulation for the investment casting process, Materials Processing Technology. 173 (2006) 70-74
University of Shanghai for science and technology. 29 (2007) 55-58
Ghosh, Similarity based approximate reasoning: fuzzy control, Journal of Applied Logic. (2008) 47 -71
Ahmad, Numerical simulation of casting solidification in permanent metallic molds, Journal of Materials Processing Technology. 178 (2006) 29-33
Xu, Numerical method to improve the computational efficiency of solidification simulation for the investment casting process, Materials Processing Technology. 173 (2006) 70-74
University of Shanghai for science and technology. 29 (2007) 55-58
Ghosh, Similarity based approximate reasoning: fuzzy control, Journal of Applied Logic. (2008) 47 -71
Online since: January 2019
Authors: Si Feng Chen, Yong Deng, Heng Xiong, Hao Cheng Lei
In addition, there is no hazardous materials produced in this process.
Journal of Kunming University Ofence and Technology (1997)
Wen, Process for recovery of indium from ITO scraps and metallurgic microstructures, Materials Science and Engineering B. 158(2009) 82-87
Chien-Kai, Journal of Hazardous Materials.172 (2009) 744-748
Journal of Hazardous Materials. 268(2014) 185-190
Journal of Kunming University Ofence and Technology (1997)
Wen, Process for recovery of indium from ITO scraps and metallurgic microstructures, Materials Science and Engineering B. 158(2009) 82-87
Chien-Kai, Journal of Hazardous Materials.172 (2009) 744-748
Journal of Hazardous Materials. 268(2014) 185-190