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Online since: August 2022
Authors: Chandra Kumar Dixit, Aziz Unnisa, Jamal Alsadi, Ronald M. Hernandez, Sarah Haidar Hasham, Alok Dubey
MREs have also been made from artificial materials such as MIPs (Nanostructured polymerization) & PNAs (Peptide Nucleic Acids).
Materials for Biosensors Magnetic Resonance Imaging.
Biosensor materials.
The charge transfer from the bio-molecule analytes contact to the nano-materials is the sensing mechanism.
The nano-materials showed a fast improvement for mobile and digital health-care applications for physicians and patients.
Materials for Biosensors Magnetic Resonance Imaging.
Biosensor materials.
The charge transfer from the bio-molecule analytes contact to the nano-materials is the sensing mechanism.
The nano-materials showed a fast improvement for mobile and digital health-care applications for physicians and patients.
Online since: March 2010
Authors: Yuan De Yin, Jie Xu, Sheng Zhi Li, Yang Hua Li, Gong Ming Long, Pi An Deng
Analysis of Transverse Wall Thickness Precision of Steel Tube
Rolled by Semi-floating Mandrel Mill
Yuande Yin1, a, Shengzhi Li1, b, Jie Xu
2, c, Yanghua Li3, d,
Gongming Long3, e and Pi'an Deng3, f
1
Department of Materials Forming and Control Engineering, Anhui University of Technology,
Maanshan 243002, P.R.
The material of pierced shell is 42CrMo4, which reads from MSC.Superform database including the mechanical and thermal property of the material.
Table 3 Calculated roll rotary speed per stand of improved pass by FE model Stand No. 1 2 3 4 5 6 Roll rotary speed [rad﹒s-1] 8.055 12.387 14.708 16.923 17.624 15.815 Technological parameters, material, mesh division and initial boundary conditions in FE model are the same as above.
References [1] Deng Pi'an, Zhou Mengxiong: Steel Pipe, Vol. 34, no.5(2005), p. 18(In Chinese) [2] P.Sobkowiak: Journal of Materials Processing Technology, Vol. 61, no.4(1996), p. 347 [3] K.S.Lee, L.Lu: Journal of Materials Processing Technology, Vol. 113, no.1-3(2001), p. 739 [4] Kazutake Komori: Journal of Mechanical Science, Vol. 45, no.1(2003), p. 141 [5] Miguel A.Cavaliere, Marcela B.Goldschmit and Eduardo N.Dvorkin: Computer and Structures, Vol. 79(2001), p. 2075 [6] Shuji YAMAMOTO, Kenji YAMADA, Shuichi HAMAUZU, Ichirou MASUDA and Tatsuo OZAK: Journal of the Japan Society for Technology of Plasticity, Vol. 40, no.11(1999), p. 1076 [7] Yin Yuande, Li Shengzhi: Journal of Engineering Graphics, Vol. 27, no.1(2006), p. 13(In Chinese)
The material of pierced shell is 42CrMo4, which reads from MSC.Superform database including the mechanical and thermal property of the material.
Table 3 Calculated roll rotary speed per stand of improved pass by FE model Stand No. 1 2 3 4 5 6 Roll rotary speed [rad﹒s-1] 8.055 12.387 14.708 16.923 17.624 15.815 Technological parameters, material, mesh division and initial boundary conditions in FE model are the same as above.
References [1] Deng Pi'an, Zhou Mengxiong: Steel Pipe, Vol. 34, no.5(2005), p. 18(In Chinese) [2] P.Sobkowiak: Journal of Materials Processing Technology, Vol. 61, no.4(1996), p. 347 [3] K.S.Lee, L.Lu: Journal of Materials Processing Technology, Vol. 113, no.1-3(2001), p. 739 [4] Kazutake Komori: Journal of Mechanical Science, Vol. 45, no.1(2003), p. 141 [5] Miguel A.Cavaliere, Marcela B.Goldschmit and Eduardo N.Dvorkin: Computer and Structures, Vol. 79(2001), p. 2075 [6] Shuji YAMAMOTO, Kenji YAMADA, Shuichi HAMAUZU, Ichirou MASUDA and Tatsuo OZAK: Journal of the Japan Society for Technology of Plasticity, Vol. 40, no.11(1999), p. 1076 [7] Yin Yuande, Li Shengzhi: Journal of Engineering Graphics, Vol. 27, no.1(2006), p. 13(In Chinese)
Online since: December 2011
Authors: Peng Ping Xie, Kai Guo, Jin Zhou Chen, Xin Fa Li, Ming Jun Niu
Preparation and Characterization of Biodegradable Polylactic acid/Gelatinized Cornstarch Foams
Pengping Xiea, Mingjun Niub, Kai Guoc, Jinzhou Chen*d, Xinfa Li e
School of Materials Science and Engineering, Zheng Zhou University, Zhengzhou 450001, China
a pengping870823@126.com, bniumj@zzu.edu.cn, cguokaiyj@zzu.edu.cn, dcjz@zzu.edu.cn,
e lixinfa@zzu.edu.cn
Keywords: polylactic acid, gelatinized cornstarch, blowing agent, foam, blend
Abstract.
Materials and Methods Materials.
The formulation of all experimental materials was shown in Table 1.
Park: Materials Science and Engineering Vol.30 (2010), p. 255 [2] Srikanth Pilla, Seong G.
Hanna: Journal of Polymers and the Environment Vol.12 (2004), p. 57
Materials and Methods Materials.
The formulation of all experimental materials was shown in Table 1.
Park: Materials Science and Engineering Vol.30 (2010), p. 255 [2] Srikanth Pilla, Seong G.
Hanna: Journal of Polymers and the Environment Vol.12 (2004), p. 57
Online since: January 2019
Authors: Fang Po Li, Chun Feng, Hang Wang, Li Hong Han, Cai Hong Lu, Yao Rong Feng, Long Jiang, Shang Yu Yang, Li Juan Zhu, Hui Qun Liu, Le Wang
Deformation Stability of a Low-Cost Titanium Alloy Used for Petroleum Drilling Pipe
Long Jiang1,2,3,a*, Chun Feng1,2,3,b*, Huiqun Liu4, Le Wang4, Lihong Han1,2,3,c*, Yaorong Feng1,2,3, Fangpo Li1,2,3, Caihong Lu1,2,3, Lijuan Zhu1,2,3,
Hang Wang1,2,3 and Shangyu Yang1,2,3
1State Key Laboratory for Performance and Structure Safety of Petroleum Tubular Goods and Equipment Materials, CNPC Tubular Goods Research Institute, Xi’an, Shaanxi 710077, China
2Shaanxi key Laboratory for Performance and Structure Safety of Petroleum Tubular Goods and Equipment Materials, Xi’an, Shaanxi 710077, China
3Key Laboratory of Petroleum Tubular Goods Engineering, CNPC, Xi’an, Shaanxi 710077, China
4School of Materials Science and Engineering, Central South University, Changsha, Hunan 410083, China
ajianglong003@cnpc.com.cn, bfengchun003@cnpc.com.cn, chanlihong@cnpc.com.cn
Keywords: Titanium Alloy; Hot Deformation; Flow Stress; Processing Map
Abstract.
The used materials are Ti-5wt.
Watkins, Recent Developments in Titanium Alloy Application in the Energy Industry, Materials Science and Engineering A , 243 (1998) 305–315
Environmentally Assisted Cracking of Drill Pipes in Deep Drilling Oil and Natural Gas Wells, Journal of Materials Engineering and Performance, 21 (2012) 1061–1069
Zhao, Research and application progress of Titanium alloy petroleum pipe, Rare Metal Materials and Engineering, 43 (2014) 1518-1524
The used materials are Ti-5wt.
Watkins, Recent Developments in Titanium Alloy Application in the Energy Industry, Materials Science and Engineering A , 243 (1998) 305–315
Environmentally Assisted Cracking of Drill Pipes in Deep Drilling Oil and Natural Gas Wells, Journal of Materials Engineering and Performance, 21 (2012) 1061–1069
Zhao, Research and application progress of Titanium alloy petroleum pipe, Rare Metal Materials and Engineering, 43 (2014) 1518-1524
Online since: March 2020
Authors: Tian Qi Wang, Xiao Lan Han, Zhan Feng Liu, Yuan Ying Qiu
Improving tool performance only by updating tool materials does not meet the production needs.
Journal of Materials Processing Technology, 2006(173),pp151-156
Progress insteel used for large-calibre thick-wall gun barrel.Ordnance Material Science and Engineering, 2013, 36(2), pp142-146
[13] Comprehensive sample of MITSUBISHI products[Z].MITSUBISHI MATERIALS,2012
Microstructures and mechanical properties of high strength gun steels[J].Ordnance Material Science and Engineering, 2003, 26(2), pp7~11
Journal of Materials Processing Technology, 2006(173),pp151-156
Progress insteel used for large-calibre thick-wall gun barrel.Ordnance Material Science and Engineering, 2013, 36(2), pp142-146
[13] Comprehensive sample of MITSUBISHI products[Z].MITSUBISHI MATERIALS,2012
Microstructures and mechanical properties of high strength gun steels[J].Ordnance Material Science and Engineering, 2003, 26(2), pp7~11
Online since: February 2024
Authors: Gulzat Demeuova, A Gabdullina, Rabiga Kudaibergenova, Gulnar Sugurbekova, E. Sugurbekov
Iron magnetic materials due to their availability, low cost, and environmental safety, due to which they are used for water purification [7–8].
The magnetic contribution of FeNi particles, which are magnetically soft materials, is insignificant.
Soft magnetic spinel materials are promising for water purification as adsorbents and materials that facilitate the separation of oil from water.
Acknowledgement This work was supported by the Science Committee of the Ministry of Education and Science of the Republic of Kazakhstan (Grant— No.
AR14871780, “Improvement of the Electrodes of the Biocatalytic Device with Graphene Materials for the Production of Green Hydrogen in Wastewater Treatment” and Grant- No.
The magnetic contribution of FeNi particles, which are magnetically soft materials, is insignificant.
Soft magnetic spinel materials are promising for water purification as adsorbents and materials that facilitate the separation of oil from water.
Acknowledgement This work was supported by the Science Committee of the Ministry of Education and Science of the Republic of Kazakhstan (Grant— No.
AR14871780, “Improvement of the Electrodes of the Biocatalytic Device with Graphene Materials for the Production of Green Hydrogen in Wastewater Treatment” and Grant- No.
Online since: February 2011
Authors: Tao Jiang, Xiang Xin Xue, Mi Zhou, He Yang, Zhe Fu Li
Three kinds of low cost shielding materials using boron-containing ores and epoxy as starting materials were developed.
Therefore, the demands for shielding materials are increasing.
Currently, there are not available reports on the ores that are specific in China as starting materials to prepare the composites shielding materials.
Okuno, et al: Journal of Nuclear Materials, Vol. 367-370 (2007), p. 1085-1089
[6] Lingsen Wang, Fang Wu, et al: Materials science and engineering of powder metallurgy.
Therefore, the demands for shielding materials are increasing.
Currently, there are not available reports on the ores that are specific in China as starting materials to prepare the composites shielding materials.
Okuno, et al: Journal of Nuclear Materials, Vol. 367-370 (2007), p. 1085-1089
[6] Lingsen Wang, Fang Wu, et al: Materials science and engineering of powder metallurgy.
Online since: August 2023
Authors: Alexander Shyshkin
It is important to note that these properties are achieved when using concrete mixtures with reduced cement consumption and the use of technological raw materials [4, 5, 6, 7, 8].
Materials and Methods Portland cement M400 of OJSC "Heidelberg Cement Kryvyi Rih" (Ukraine) was used for the production of concrete.
Eastern-European Journal of Enterprise Technologies, 2(6–92) (2018) 29–33
Eastern-European Journal of Enterprise Technologies, 1(6–97) (2019) 47–52
IOP Conference Series: Materials Science and Engineering, (2020) 907(1) 012038
Materials and Methods Portland cement M400 of OJSC "Heidelberg Cement Kryvyi Rih" (Ukraine) was used for the production of concrete.
Eastern-European Journal of Enterprise Technologies, 2(6–92) (2018) 29–33
Eastern-European Journal of Enterprise Technologies, 1(6–97) (2019) 47–52
IOP Conference Series: Materials Science and Engineering, (2020) 907(1) 012038
Online since: January 2015
Authors: Tomasz Dzitkowski, Andrzej Dymarek
Acknowledgements
This work has been conducted as a part of research project N 502 447239 supported by the Ministry of Science and Higher Education of Poland in 2010–2013.
Dymarek, Active synthesis of multiaxial drive systems using a comparative method, Journal of Achievements in Materials and Manufacturing Engineering 49(2) (2011) 275–284
Dzitkowski, Method of active synthesis of discrete fixed mechanical systems, Journal of Vibroengineering 14(2) (2012) 458–463
Dymarek, Active synthesis of discrete systems as a tool for stabilisation vibration, Applied Mechanics and Materials 307 (2013) 295–298
Dzitkowski, Reduction vibration of mechanical systems, Applied Mechanics and Materials 307 (2013) 257–260
Dymarek, Active synthesis of multiaxial drive systems using a comparative method, Journal of Achievements in Materials and Manufacturing Engineering 49(2) (2011) 275–284
Dzitkowski, Method of active synthesis of discrete fixed mechanical systems, Journal of Vibroengineering 14(2) (2012) 458–463
Dymarek, Active synthesis of discrete systems as a tool for stabilisation vibration, Applied Mechanics and Materials 307 (2013) 295–298
Dzitkowski, Reduction vibration of mechanical systems, Applied Mechanics and Materials 307 (2013) 257–260
Online since: July 2012
Authors: A. Vimala Juliet, S. Maflin Shaby
MEMS combines physics, microelectronics, micromechanics, material science and computer Aided Design (CAD) Technology.MEMS technology is considered as the amalgamation of two main sub-domains such as ultra-precision microengineering and Integrated Circuit Technology.
The fundamental concept of piezoresistive effect is the change in receptivity of a material resulting from an applied stress.
Lithography is a process of imprinting a geometric pattern from a mask onto a thin layer of material called resist, which is a radiation sensitive material.
Zhou: A novel capacitive pressure sensor based on sandwich structures, Journal of microelectromechanical systems, vol. 14 (2005), pp. 1272-1282
[7] S.Maflin Shaby and A.Vimala Juliet: Single Polysilicon Nano-Wire Piezoresistors for MEMS Pressure Sensor, Journal of ciit vol 3 (2011),pp 497-501
The fundamental concept of piezoresistive effect is the change in receptivity of a material resulting from an applied stress.
Lithography is a process of imprinting a geometric pattern from a mask onto a thin layer of material called resist, which is a radiation sensitive material.
Zhou: A novel capacitive pressure sensor based on sandwich structures, Journal of microelectromechanical systems, vol. 14 (2005), pp. 1272-1282
[7] S.Maflin Shaby and A.Vimala Juliet: Single Polysilicon Nano-Wire Piezoresistors for MEMS Pressure Sensor, Journal of ciit vol 3 (2011),pp 497-501