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Online since: December 2013
Authors: Akenjiang Tuohuti, Alifujiang Xiamuxi, Akira Hasegawa
Material of steel tube was SS400 (Japanese Industrial standard: JIS).
Material Model for Simulation Concrete.
Material parameters for steel tube and reinforcements are used from material properties.
Du: Application of ADINA in nonlinear analysis of reinforced concrete structure, Science Technology and Engineering, Vol.14(2006), p.78-81
Hasegawa: A study on axial compressive behaviors of reinforced concrete filled tubular steel columns, Journal of Constructional Steel Research, JCSR, Vol. 76(2012), p. 144-154
Material Model for Simulation Concrete.
Material parameters for steel tube and reinforcements are used from material properties.
Du: Application of ADINA in nonlinear analysis of reinforced concrete structure, Science Technology and Engineering, Vol.14(2006), p.78-81
Hasegawa: A study on axial compressive behaviors of reinforced concrete filled tubular steel columns, Journal of Constructional Steel Research, JCSR, Vol. 76(2012), p. 144-154
Online since: February 2020
Authors: Cristian Copiluși, Nicolae Dumitru, Ionuţ Daniel Geonea, Alexandru Margine
The defined material properties were summary shown in Fig. 7, according with [9].
Materials propoerties applied for the analyzed human ankle joint virtual model Detailed informations regarding the material properties for component groups are defined in Table 1.
Ulster Medical Society Journal, 64–72. (2005) [7] CONTEMPLAS Motion Analysis Equipment user manual. 2010
New Trends in Mechanism Science.
Mechanisms and Machine Science, vol 5.
Materials propoerties applied for the analyzed human ankle joint virtual model Detailed informations regarding the material properties for component groups are defined in Table 1.
Ulster Medical Society Journal, 64–72. (2005) [7] CONTEMPLAS Motion Analysis Equipment user manual. 2010
New Trends in Mechanism Science.
Mechanisms and Machine Science, vol 5.
Online since: August 2008
Authors: R. Wichianrak, N. Thavarungkul, Nuchthana Poolthong, Ruangdaj Tongsri
Tongsri
2, d
1
Division of Materials Technology, Faculty of Energy, Environment, and Materials,
King Mongkut's University of Technology Thonburi, Bangkok 10140,Thailand
2
National Metal and Materials Technology Center, Pathum Thani 12120, Thailand
a
r_biwja@hotmail.com, bnandh.tha@kmutt.ac.th,
cnuchthana.poo@kmutt.ac.th,d ruangdt@mtec.or.th
Keywords: Copper powder extrusion, Feedstock, Pseudo-plastic, Debinding, Sintered properties
Abstract.
Acknowledgements This work was funded by the National Metal and Materials Technology Center (MTEC), Thailand, and supported by King Mongkut's University of Technology Thonburi.
German: Powder Metallurgy Science (MPIF, New Jersey 1994)
[6] C.Karatas and S.Saritas: Journal of Turkish Engineering and Environmental Sciences of TUBITAK.
Acknowledgements This work was funded by the National Metal and Materials Technology Center (MTEC), Thailand, and supported by King Mongkut's University of Technology Thonburi.
German: Powder Metallurgy Science (MPIF, New Jersey 1994)
[6] C.Karatas and S.Saritas: Journal of Turkish Engineering and Environmental Sciences of TUBITAK.
Online since: May 2011
Authors: Dong Ming Guo, Jing Zhao Zhuang, Yi Zhang, Yan Bin Wang, Ren Shu Yang
And triangle coal in the roof is hard to control, fall down easily and fill up hardly, easily lead to gas accumulation, a large security risk, materials consumed in large quantities top results, high cost [2].
The material of bolt in roof is common round steel(Q235), diameter of bolt in roof Ф=22mm, length of bolt in roof L=2200mm, spacing of row and column in roof is 800mm×800mm; diameter of cable in roof Ф=15.24mm, length of cable in roof L=7000mm, spacing of row and column in roof is 1800mm×2100mm;the diamond metal mining used mesh in roof is made by iron wire, feature size of mesh holes is 30mm, the wide of mesh netting is 1000mm; The material of bolt in two sides is equal strength thread steel, diameter of bolt in two sides Ф=22mm, length of bolt in two sides L=2500mm, spacing of row and column in two sides is 700mm×700mm;steel strip similar to W is used both in roof and two sides.
Reference [1] Tan guowen, Zhao hui: Coal Technology, 2007,26(12):51-53(In Chinese) [2] Hu zhongfu, Tao yonglin: Coal Technology, 2004,23(1):39-41(In Chinese) [3] Wei Sijiang, He xue ke, Gou pan feng: Journal of Xi an University of Science & Technology, 2004,24(1):28-30(In Chinese) [4] Wang Jinhua: Journl of China Coal Society, 2007, 32(2)114(In Chinese) [5] Zhang Miaofeng, Wang jun,Wu yong ping: Journal of Xi an University of Science & Technology, 2000,20(2):97-100(In Chinese) [6] Group of bolt support in Ministry of Coal Industry.Technical specification of blot support of roadway in coal seam[S] .1997.08.
The material of bolt in roof is common round steel(Q235), diameter of bolt in roof Ф=22mm, length of bolt in roof L=2200mm, spacing of row and column in roof is 800mm×800mm; diameter of cable in roof Ф=15.24mm, length of cable in roof L=7000mm, spacing of row and column in roof is 1800mm×2100mm;the diamond metal mining used mesh in roof is made by iron wire, feature size of mesh holes is 30mm, the wide of mesh netting is 1000mm; The material of bolt in two sides is equal strength thread steel, diameter of bolt in two sides Ф=22mm, length of bolt in two sides L=2500mm, spacing of row and column in two sides is 700mm×700mm;steel strip similar to W is used both in roof and two sides.
Reference [1] Tan guowen, Zhao hui: Coal Technology, 2007,26(12):51-53(In Chinese) [2] Hu zhongfu, Tao yonglin: Coal Technology, 2004,23(1):39-41(In Chinese) [3] Wei Sijiang, He xue ke, Gou pan feng: Journal of Xi an University of Science & Technology, 2004,24(1):28-30(In Chinese) [4] Wang Jinhua: Journl of China Coal Society, 2007, 32(2)114(In Chinese) [5] Zhang Miaofeng, Wang jun,Wu yong ping: Journal of Xi an University of Science & Technology, 2000,20(2):97-100(In Chinese) [6] Group of bolt support in Ministry of Coal Industry.Technical specification of blot support of roadway in coal seam[S] .1997.08.
Online since: October 2013
Authors: Jin Rui Shang
Study on the Application Results of
"Dry Cleaning" Mode in Port Dust Control
Jinrui Shang1, a
1 College of Environmental Science and Engineering, Ocean University of China
ashangjr@rzport.com
Key Words: Dry Cleaning Mode, Port, Dust Control.
Clear work division of the dust control in environmental sector, technology research and development department, equipment, materials procurement departments, as well as all production and logistics departments, make sure linkage, defense and joint control.
Hebei University of Science and Technology, 2011 (In Chinese) [3] Qingxin Lv, Ningning Hong.
Journal of Waterway and Harbor, 2008 (29) (In Chinese) [4] Shan Guo, Shuifen Zhan.
Journal of Waterway and Harbor, 2006 (27) (In Chinese) [5] Weiping Wu.
Clear work division of the dust control in environmental sector, technology research and development department, equipment, materials procurement departments, as well as all production and logistics departments, make sure linkage, defense and joint control.
Hebei University of Science and Technology, 2011 (In Chinese) [3] Qingxin Lv, Ningning Hong.
Journal of Waterway and Harbor, 2008 (29) (In Chinese) [4] Shan Guo, Shuifen Zhan.
Journal of Waterway and Harbor, 2006 (27) (In Chinese) [5] Weiping Wu.
Online since: September 2012
Authors: Ming Xing Huang, Xiao Qian Yu, Yun Ye
Materials and methods
Materials.
Electrophoresis followed the method of Laemmli [10] using the electrophoresis cell of DYCZ-24DN (Beijing WoDelife Sciences Instrument Company, China).
Acknowledgement This work was supported by the key science and technology projects of Haikou, “novel agent for cardiovascular disease——The construction of engineering strain with fibrinolytic enzyme of yellow mealworm and the activity analysis of expressed product” (NO. 2011-0044).
Journal of Clinical Investigation, Vol. 88 (1991), p.1067
Journal of Clinical Pathology, Vol. 25 (1972), p.335
Electrophoresis followed the method of Laemmli [10] using the electrophoresis cell of DYCZ-24DN (Beijing WoDelife Sciences Instrument Company, China).
Acknowledgement This work was supported by the key science and technology projects of Haikou, “novel agent for cardiovascular disease——The construction of engineering strain with fibrinolytic enzyme of yellow mealworm and the activity analysis of expressed product” (NO. 2011-0044).
Journal of Clinical Investigation, Vol. 88 (1991), p.1067
Journal of Clinical Pathology, Vol. 25 (1972), p.335
Online since: October 2020
Authors: Bernd Breidenstein, Berend Denkena, Sascha Beblein, Arnd Heckemeyer
Based on this assumption, Jawahir et al. [5] attribute the increase in energy transport into the chip to a reduction in the thermal conductivity of the cutting material or coating.
As workpiece material the chromium molybdenum alloy steel AISI4140 was used.
The grooves were produced at a defined distance from the rake face by laser material processing.
Bobzin, High performance coatings for cutting tools, CIRP Journal of Manufacturing Science and Technology, Vol 18, 2017, pp. 1-9
Altan, Computer simulation of orthogonal cutting using a tool with multiple coatings, Machining Science and Technology 8, 2004, pp. 305-326
As workpiece material the chromium molybdenum alloy steel AISI4140 was used.
The grooves were produced at a defined distance from the rake face by laser material processing.
Bobzin, High performance coatings for cutting tools, CIRP Journal of Manufacturing Science and Technology, Vol 18, 2017, pp. 1-9
Altan, Computer simulation of orthogonal cutting using a tool with multiple coatings, Machining Science and Technology 8, 2004, pp. 305-326
Online since: October 2023
Authors: Javier Díez-González, Alberto Gil-Cuadrado, Paula Verde, Rubén Ferrero-Guillén, Hilde Perez, Alberto Martínez-Gutiérrez
Pons, “Comparative Analysis of Human Operators and Advanced Technologies in the Visual Inspection of Aero Engine Blades,” Applied Sciences 2022, Vol. 12, Page 2250, vol. 12, no. 4, p. 2250, Feb. 2022, doi: 10.3390/APP12042250
Wang, “Quality inspection of clinched joints of steel and aluminum,” International Journal of Advanced Manufacturing Technology, vol. 76, no. 5–8, pp. 1393–1402, Feb. 2015, doi: 10.1007/S00170-014-6362-X/METRICS
Milewski, “Metallurgy, mechanistic models and machine learning in metal printing,” Nature Reviews Materials 2020 6:1, vol. 6, no. 1, pp. 48–68, Oct. 2020, doi: 10.1038/s41578-020-00236-1
Kang et al., “Smart Manufacturing: Past Research, Present Findings, and Future Directions,” INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING-GREEN TECHNOLOGY, vol. 3, no. 1, pp. 111–128, 2016, doi: 10.1007/s40684-016-0015-5
Pobozniak, “Automation of CNC Machine Tool Programming Using STEP-NC (ISO 14649),” Applied Mechanics and Materials, vol. 656, pp. 206–214, 2014, doi: 10.4028/WWW.SCIENTIFIC.NET/AMM.656.206
Wang, “Quality inspection of clinched joints of steel and aluminum,” International Journal of Advanced Manufacturing Technology, vol. 76, no. 5–8, pp. 1393–1402, Feb. 2015, doi: 10.1007/S00170-014-6362-X/METRICS
Milewski, “Metallurgy, mechanistic models and machine learning in metal printing,” Nature Reviews Materials 2020 6:1, vol. 6, no. 1, pp. 48–68, Oct. 2020, doi: 10.1038/s41578-020-00236-1
Kang et al., “Smart Manufacturing: Past Research, Present Findings, and Future Directions,” INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING-GREEN TECHNOLOGY, vol. 3, no. 1, pp. 111–128, 2016, doi: 10.1007/s40684-016-0015-5
Pobozniak, “Automation of CNC Machine Tool Programming Using STEP-NC (ISO 14649),” Applied Mechanics and Materials, vol. 656, pp. 206–214, 2014, doi: 10.4028/WWW.SCIENTIFIC.NET/AMM.656.206
Online since: October 2025
Authors: Fajar Buyung Permadi, Fierman Ariefiansyah Singagerda, Totok Riswanto, Nurrohmat Widjajanti
Material and Methods
Research Area.
Research area Data source: spatial data analysis by researchers, 2024 Study Equipment and Materials.
The research equipment consists of hardware and software, including (1) a Geodetic GNSS receiver and measuring tape as measuring tools for field supplementation (comparative materials that are considered correct) and (2) ArcGIS 10.8.2 and AutoCAD Map 2021 as software for spatial data processing, analysis, and evaluation of land parcel spatial data.
P. & Aditya, T.: Desain Sistem Kadaster Multiguna (Studi Kasus Kecamatan Serengan, Kota Surakarta), JGISE: Journal of Geospatial Information Science 5(2), 71-90 (2022). https://doi.org/10.22146/jgise.75657
The Case of Uganda, African Journal of Land Policy and Geospatial Sciences, 3(1), 213-225 (2020). https://revues.imist.ma/index.php/AJLP-GS/issue/view/1172
Research area Data source: spatial data analysis by researchers, 2024 Study Equipment and Materials.
The research equipment consists of hardware and software, including (1) a Geodetic GNSS receiver and measuring tape as measuring tools for field supplementation (comparative materials that are considered correct) and (2) ArcGIS 10.8.2 and AutoCAD Map 2021 as software for spatial data processing, analysis, and evaluation of land parcel spatial data.
P. & Aditya, T.: Desain Sistem Kadaster Multiguna (Studi Kasus Kecamatan Serengan, Kota Surakarta), JGISE: Journal of Geospatial Information Science 5(2), 71-90 (2022). https://doi.org/10.22146/jgise.75657
The Case of Uganda, African Journal of Land Policy and Geospatial Sciences, 3(1), 213-225 (2020). https://revues.imist.ma/index.php/AJLP-GS/issue/view/1172
Online since: September 2014
Authors: Er Long Jiao, Chun Di Gao, Wei Xiao Wang, Shi Xin Fan, Hao Li
Material and methods
Experimental equipment and wastewater This experiment was used SBR, which was made of organic glass.
This research was supported by the Beijing Natural Science Foundation (8122006), National Natural Science Foundation of China (51108005), and Beijing Municipal Commission of Education Science and Technology Planning Project (KM201410005009).
Yang: Chinese Journal of Chemical Engineering, 22 (2014), p. 447-454 [4] D.W.
Seyfried: Water Science and Technology, 26 (1992), p. 1007-1015 [6] Y.
Li: Environmental science, 34 (2013), p. 1416-1420 [7] APHA: Standard Methods for Examination of Water and Wastewater, 20th ed.
This research was supported by the Beijing Natural Science Foundation (8122006), National Natural Science Foundation of China (51108005), and Beijing Municipal Commission of Education Science and Technology Planning Project (KM201410005009).
Yang: Chinese Journal of Chemical Engineering, 22 (2014), p. 447-454 [4] D.W.
Seyfried: Water Science and Technology, 26 (1992), p. 1007-1015 [6] Y.
Li: Environmental science, 34 (2013), p. 1416-1420 [7] APHA: Standard Methods for Examination of Water and Wastewater, 20th ed.