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Online since: September 2010
Authors: Hiromitsu Ueno, Yuki Kono, Kai Egashira
Kunieda: Proceedings of the 2009 Japan Society for Precision Engineering
Spring Conference (2009), p. 852 (in Japanese)
[3] M.
Kunieda: Journal of the Japan Society for Precision Engineering, Vol. 72, No. 5 (2006), p.636 (in Japanese) [4] M.
Kunieda: Journal of the Japan Society for Precision Engineering, Vol. 74, No. 3 (2008), p. 264 (in Japanese) [5] Y.
Mizutani: International Journal of Electrical Machining, No.10 (2005), p. 21 [8] K.
Hattori: Precision Engineering, Vol.34, No.1 (2010), p. 139 [9] T.
Kunieda: Journal of the Japan Society for Precision Engineering, Vol. 72, No. 5 (2006), p.636 (in Japanese) [4] M.
Kunieda: Journal of the Japan Society for Precision Engineering, Vol. 74, No. 3 (2008), p. 264 (in Japanese) [5] Y.
Mizutani: International Journal of Electrical Machining, No.10 (2005), p. 21 [8] K.
Hattori: Precision Engineering, Vol.34, No.1 (2010), p. 139 [9] T.
Online since: February 2026
Authors: Oleg Mikhailov, Anatoliy Mikhailov, Yevgenii Shtefan, Mikhail Shtern
Shtern, Method for the Determination of Rational Constructional and Technological Parameters for the Processes of Powder Materials Forming, Key Engineering Materials, 2024, Vol. 973 - pp.53-60
[2] M.
Series: Engineering, 2011, Vol. 62 - pp. 13 -19 [3] M.
Latypov, Twist Extrusion as a Potent Tool for Obtaining Advanced Engineering Materials: A Review, Advanced Engineering Materials, 19(8), 1600873, (2017)
Shtefan, Information technology for designing equipment for the corrugated pressing of ceramic masses, Col.
Shtern, Modeling of deformation processing of porous parts whose material contains hard inclusions, Мaterials and Technologies in Engineering (MTE-2024), Engineering, Materials, Technologies, Transport: Collection of Scientific Reports of the International Conference, Lutsk, Ukraine, May 14–16, 2024, pp. 190 – 195.
Series: Engineering, 2011, Vol. 62 - pp. 13 -19 [3] M.
Latypov, Twist Extrusion as a Potent Tool for Obtaining Advanced Engineering Materials: A Review, Advanced Engineering Materials, 19(8), 1600873, (2017)
Shtefan, Information technology for designing equipment for the corrugated pressing of ceramic masses, Col.
Shtern, Modeling of deformation processing of porous parts whose material contains hard inclusions, Мaterials and Technologies in Engineering (MTE-2024), Engineering, Materials, Technologies, Transport: Collection of Scientific Reports of the International Conference, Lutsk, Ukraine, May 14–16, 2024, pp. 190 – 195.
Online since: October 2018
Authors: S.A. Parshina, A.Yu. Sokolov, E.O. Savchenko
Drobota, The effect of silver nanoparticles on the collagen secondary structure, Key Engineering Materials 638 (2014) 8-13
Chelation by collagen in the immobilization of Aspergillus oryzae β-galactosidase: A potential biocatalyst to hydrolyze lactose by batch process, International Journal of Biological Macromolecules 109 (1) (2018) 303-310
Sorsa, et. al., Hydrazone crosslinked hyaluronan-based hydrogels for therapeutic delivery of adipose stem cells to treat corneal defects, Materials Science and Engineering C 85 (2018) 68-78
Osyczka, New composite materials prepared by calcium phosphate precipitation in chitosan/collagen/hyaluronic acid sponge cross-linked by EDC/NHS, International Journal of Biological Macromolecules 107 (A) (2018) 247-253
Stark, et. al, Novel 3D biomaterials for tissue engineering based on collagen and macroporous ceramics, Materialwissenschaft und Werkstofftechnik 40, 1-2, (2009) 54-60.
Chelation by collagen in the immobilization of Aspergillus oryzae β-galactosidase: A potential biocatalyst to hydrolyze lactose by batch process, International Journal of Biological Macromolecules 109 (1) (2018) 303-310
Sorsa, et. al., Hydrazone crosslinked hyaluronan-based hydrogels for therapeutic delivery of adipose stem cells to treat corneal defects, Materials Science and Engineering C 85 (2018) 68-78
Osyczka, New composite materials prepared by calcium phosphate precipitation in chitosan/collagen/hyaluronic acid sponge cross-linked by EDC/NHS, International Journal of Biological Macromolecules 107 (A) (2018) 247-253
Stark, et. al, Novel 3D biomaterials for tissue engineering based on collagen and macroporous ceramics, Materialwissenschaft und Werkstofftechnik 40, 1-2, (2009) 54-60.
Online since: December 2022
Authors: Nofel Zuhier Whieb, Firas Jabar Hmood, Kutaiba Al-Marzoki
Hmood1,c
1Department of Ceramics Engineering and Building Materials, University of Babylon, 964 Babylon, Iraq
akutaiba.hussein@uobabylon.edu.iq, bmat.nofel.zuhair@uobabylon.edu.iq, cmat.firas.jabar@uobabylon.edu.iq
Keywords: Hybrid glass, Melting gel, Functional coating, MWCNTs, Sol-gel
Abstract.
Hybrid (inorganic- organic) glass is an emerging material for engineering applications like protection and functional coatings.
Mukherjee, “Carbon nanotube Reinforced Alumina-Based Ceramics with novel mechanical, mechanical, electrical, and thermal Properties,” Intentional Journal of Applied Ceramic Technology, 1 (2004) 161-71
[13] ASTM C1327-15(2019), Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics, ASTM International, West Conshohocken, PA, 2019, www.astm.org
Marshall, “Elastic/plastic indentation damage in ceramics: The median/radial crack system,” J.
Hybrid (inorganic- organic) glass is an emerging material for engineering applications like protection and functional coatings.
Mukherjee, “Carbon nanotube Reinforced Alumina-Based Ceramics with novel mechanical, mechanical, electrical, and thermal Properties,” Intentional Journal of Applied Ceramic Technology, 1 (2004) 161-71
[13] ASTM C1327-15(2019), Standard Test Method for Vickers Indentation Hardness of Advanced Ceramics, ASTM International, West Conshohocken, PA, 2019, www.astm.org
Marshall, “Elastic/plastic indentation damage in ceramics: The median/radial crack system,” J.
Online since: May 2021
Authors: Azman Jalar, Azuraida Amat, Noor Fadhilah Rahmat, Najib Saedi Ibrahim, Wan Yusmawati Wan Yusoff, Irman Abdul Rahman
The electrical interconnections were established by the technology of electronic packaging and it is a major field in the electronic engineering.
Yeoh, Cancer and Radiation Therapy: Current Advances and Future Directions, International Journal of Medical Sciences 9 (2012) 193-199
Li, Evolution of mechanical properties of thermal barrier coatings subjected to thermal exposure by instrumented indentation testing, Ceramics International 42 (2016) 10242-10250
Pharr, Measurement of mechanical properties by ultra-low load indentation, Material Science and Engineering 253 (1998) 151-159
Shin, Elastic, plastic and cracking indentation behaviour of silicon crystals, Material Science and Engineering 209 (1996) 91-96
Yeoh, Cancer and Radiation Therapy: Current Advances and Future Directions, International Journal of Medical Sciences 9 (2012) 193-199
Li, Evolution of mechanical properties of thermal barrier coatings subjected to thermal exposure by instrumented indentation testing, Ceramics International 42 (2016) 10242-10250
Pharr, Measurement of mechanical properties by ultra-low load indentation, Material Science and Engineering 253 (1998) 151-159
Shin, Elastic, plastic and cracking indentation behaviour of silicon crystals, Material Science and Engineering 209 (1996) 91-96
Online since: December 2004
Authors: Pei Qi Ge, Jian Feng Li, W. Gao, J.F. Meng
Gao1,d
1School of Mechanical Engineering, Shandong University, Jinan, 250061, P.R.China
amengjf@sdu.edu.cn,
bljf@sdu.edu.cn,
cpqge@sdu.edu.cn,
dgaow@sdu.edu.cn
Keywords: Removal mechanism, Wire-sawing, Hard-brittle material
Abstract.
Li, et al: Chinese journal of mechanical engineering Vol. 37(2001), p. 1 [2] X.B.
Deng: International Journal of Machine Tools & Manufacture Vol. 42(2002), p. 1665 [3] B.Zhang, X.L.
Yoshikawa: Journal of Materials Processing Technology Vol. 132(2003), p. 353 [4] S.
Scattergood: Journal of Engineering for Industry Vol.113(1991), p. 184 Fig.4 SEM picture of chips in wire-sawing(2000x) Fig.3 SEM picture of granite in wire-sawing(10x) Advances in Materials Manufacturing Science and Technology 196 [6] J.X.
Li, et al: Chinese journal of mechanical engineering Vol. 37(2001), p. 1 [2] X.B.
Deng: International Journal of Machine Tools & Manufacture Vol. 42(2002), p. 1665 [3] B.Zhang, X.L.
Yoshikawa: Journal of Materials Processing Technology Vol. 132(2003), p. 353 [4] S.
Scattergood: Journal of Engineering for Industry Vol.113(1991), p. 184 Fig.4 SEM picture of chips in wire-sawing(2000x) Fig.3 SEM picture of granite in wire-sawing(10x) Advances in Materials Manufacturing Science and Technology 196 [6] J.X.
Online since: February 2016
Authors: M.A. Guler, M. Ozturk, A. Kucuksucu
Kucuksucua,c
aDepartment of Mechanical Engineering, TOBB University of Economics and Technology,
Ankara 06560, Turkey
bDepartment of Mechanical Engineering and Mechanics, Lehigh University, 19 Memorial Drive West, Bethlehem, PA 18015, U.S.A.
Ciavarella, Contact mechanics, International Journal of Solids and Structures 37 (2000) 29–43
Point force solution, International Journal of Solids and Structures 34 (1997a) 2357-2392
Axisymetric indenter, International Journal of Solids and Structures 34 (1997b) 2393-2428
Bakirtaş, The contact problem of an orthotropic non-homogeneous elastic half-space, International Journal of Engineering Science 2 (1984) 347-359
Ciavarella, Contact mechanics, International Journal of Solids and Structures 37 (2000) 29–43
Point force solution, International Journal of Solids and Structures 34 (1997a) 2357-2392
Axisymetric indenter, International Journal of Solids and Structures 34 (1997b) 2393-2428
Bakirtaş, The contact problem of an orthotropic non-homogeneous elastic half-space, International Journal of Engineering Science 2 (1984) 347-359
Online since: December 2011
Authors: Yun Feng Peng, Chun Guang Han, Zhen Zhong Wang, Yin Biao Guo, Xiao Hui Lin, Tao Jiang
Effect of Grinder Guiding Error on the Machining Precision of Large Scale Surface Workpiece
PENG Yunfeng1,a, LIN Xiaohui1,b, JIANG Tao1,c, HAN Chunguang2,d, WANG Zhenzhong1,e and GUO Yinbiao1,f
1Department of Mechanical and Electrical Engineering, Xiamen University, China
2School of Mechanical and Electrical Engineering, Ningbo Dahongying University, China
ashuimufox@hotmail.com, b lxhgogle@gmail.com, c todd_xmu@163.com, d hancg66@163.com ewangzhenzhong@xmu.edu.cn, fguoyb@xmu.edu.cn
Keywords: large scale, grinding, guiding error, form accuracy.
Abstract: Nowadays, the demands of large scale surface devices are becoming popular in engineering fields.
Today, the demands of large scale devices is now becoming popular in the engineering fields, such as engineering ceramics, advanced optics [3].
But the final form accuracy is still failed to meet the engineering’s high requirements, the condition also deteriorates with the increasing size of the workpiece.
Read: The International Journal of Advanced Manufacturing Technology.
Abstract: Nowadays, the demands of large scale surface devices are becoming popular in engineering fields.
Today, the demands of large scale devices is now becoming popular in the engineering fields, such as engineering ceramics, advanced optics [3].
But the final form accuracy is still failed to meet the engineering’s high requirements, the condition also deteriorates with the increasing size of the workpiece.
Read: The International Journal of Advanced Manufacturing Technology.
Online since: January 2005
Authors: D.H. Jang, Beong Bok Hwang, Sun Keun Hwang, Kyung Hoon Min, Hyoung Jin Choi
Choi1,e
1
Department of Automation Engineering, Inha University, Inchon 402-751, Korea
2
School of Mechanical Engineering, Inha University, Inchon 402-751, Korea
a
wayan@chollian.net, bbbhwang@inha.ac.kr, csubzero77@daum.net, dynoil200@hanmail.net,
e
choi1233@korea.com
Keywords: Finite Element Method, Frictional Contact Model, Rigid-Plastic FEM, Elasto-Plastic FEM,
Rivet Setting, Shank, Rivet Head
Abstract.
Hwang: Metals and Materials International Vol. 5, No. 1 (1999), p. 85 [4] S.W.
Lee: Metals and Materials International Vol. 8, No. 1 (2002), p. 15 [5] I.
Numerical Metrhods in Engineering Vol. 40 (1997), p. 3359 [7] P.
Oudin: Engineering computations Vol. 8 (1991), p.291 [8] SFTC: DEFORM 2-D Ver. 8.0 Users Manual, (SFTC, USA 2003)
Hwang: Metals and Materials International Vol. 5, No. 1 (1999), p. 85 [4] S.W.
Lee: Metals and Materials International Vol. 8, No. 1 (2002), p. 15 [5] I.
Numerical Metrhods in Engineering Vol. 40 (1997), p. 3359 [7] P.
Oudin: Engineering computations Vol. 8 (1991), p.291 [8] SFTC: DEFORM 2-D Ver. 8.0 Users Manual, (SFTC, USA 2003)
Online since: June 2006
Authors: Vytautas Ostaševičius, Minvydas Ragulskis, Arvydas Palevicius, Norm Gitis, Sigitas Tamulevičius
Producing the microswitch on high resistance
semiconductor (Si, GaAs, InP) substrate enables its incorporation into semiconductor integrated
circuits for switching high power signals, while usage of dielectric (quartz, ceramics) substrate
allows to integrate the microswitch into hybrid microelectronic devices.
Optical Full-Field Techniques for MEMS Analysis Different full-field fringe based optical techniques can be exploited for the analysis of displacements of engineering structures.
Petitgrand: Characterization of the static and dynamic behavior of M(O)EMS by optical techniques: status and trends (Journal of Micromechanics and Microengineering, No. 13, 2003), p. 23-33 [4] Z.
Grigaliunas: Hybrid numerical - experimental approach for investigation of dynamics of micro cantilever relay system (Optics and Lasers in Engineering, Vol. 43-1, 2005), p. 63-73
Ragulskis: Plotting Holographic Interferograms for Visualization of Dynamic Results from Finite-Element Calculations (International Journal for Numerical Methods in Engineering, Vol. 56, 2003), p. 1647-1659
Optical Full-Field Techniques for MEMS Analysis Different full-field fringe based optical techniques can be exploited for the analysis of displacements of engineering structures.
Petitgrand: Characterization of the static and dynamic behavior of M(O)EMS by optical techniques: status and trends (Journal of Micromechanics and Microengineering, No. 13, 2003), p. 23-33 [4] Z.
Grigaliunas: Hybrid numerical - experimental approach for investigation of dynamics of micro cantilever relay system (Optics and Lasers in Engineering, Vol. 43-1, 2005), p. 63-73
Ragulskis: Plotting Holographic Interferograms for Visualization of Dynamic Results from Finite-Element Calculations (International Journal for Numerical Methods in Engineering, Vol. 56, 2003), p. 1647-1659