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Online since: January 2013
Authors: Tao Yi Zhou, Shi Hua Cao
Due to manpower and materials, small and medium hospitals only care about how to purchase medical equipment but lack of relevant equipment management knowledge.
System Components Medical equipment supply chain management system of hospitals includes sanitary materials, ordinary consumable materials, low-value consumption goods, and purchasing management, storage, application management and other business functions of fixed assets, meeting the needs of hospital materials management, combining closely various materials management of hospital, participating in actual work situation of sectors, and completing various work of hospital materials management standardized and orderly by closely centering on the key content of hospital materials management.
(3) Introduce innovated management ideas to optimize existing business processes, establish a unified materials online supply chain management platform, and realize distribution services of various types of materials directly to the clinical.
Figure 3 is the print of sanitary materials acceptance and storage sheet.
[6] Cao shihua,Zhao fang, The Design and Realization of 2.4G Micro Power Active RFID System[J],ShenYang Normal University Journal.2008(2)
System Components Medical equipment supply chain management system of hospitals includes sanitary materials, ordinary consumable materials, low-value consumption goods, and purchasing management, storage, application management and other business functions of fixed assets, meeting the needs of hospital materials management, combining closely various materials management of hospital, participating in actual work situation of sectors, and completing various work of hospital materials management standardized and orderly by closely centering on the key content of hospital materials management.
(3) Introduce innovated management ideas to optimize existing business processes, establish a unified materials online supply chain management platform, and realize distribution services of various types of materials directly to the clinical.
Figure 3 is the print of sanitary materials acceptance and storage sheet.
[6] Cao shihua,Zhao fang, The Design and Realization of 2.4G Micro Power Active RFID System[J],ShenYang Normal University Journal.2008(2)
Online since: August 2013
Authors: Fan Long Kong, Yue Li, Min Xi, Jian Min Wu, Qing Lei Zhang, Cheng Ren Dong, Xiu Feng Xie
Acknowledgements
This work was financially supported by the National Natural Science Foundation of China (No. 41101080), Shandong Natural Science Foundation (No.
And, thanks for the materials provided by local authorities of Shaanxi Province.
Bai: Journal for Nature Conservation.
Du: Procedia Environmental Sciences.
Yang: Progress in Natural Science.
And, thanks for the materials provided by local authorities of Shaanxi Province.
Bai: Journal for Nature Conservation.
Du: Procedia Environmental Sciences.
Yang: Progress in Natural Science.
Online since: March 2015
Authors: Li Li Tong, Hui Qi, Fathallah Elsayed, Mahmoud Helal
Material Property Requirements
The materials for underwater pressure vessels must not only be capable of withstanding very high external pressures.
The materials properties for HY100 and titanium alloys are as shown in Table 1.
Material strength constraint: In order to avoid materials yielding, the stress of the shell and stiffeners is considered to be less than its material yielding strength.
Ross, A novel submarine pressure hull design., Journal of Ship Research, 31 (1987) 186-188
Liu, Elasto-plastic stress analysis and burst strength evaluation of Al-carbon fiber/epoxy composite cylindrical laminates, Computational Materials Science, 42 (2008) 453-461
The materials properties for HY100 and titanium alloys are as shown in Table 1.
Material strength constraint: In order to avoid materials yielding, the stress of the shell and stiffeners is considered to be less than its material yielding strength.
Ross, A novel submarine pressure hull design., Journal of Ship Research, 31 (1987) 186-188
Liu, Elasto-plastic stress analysis and burst strength evaluation of Al-carbon fiber/epoxy composite cylindrical laminates, Computational Materials Science, 42 (2008) 453-461
Online since: November 2019
Authors: Mauricio Torres, Pedro González-García, Edgar A. Franco-Urquiza, Jorge Bárcena-Balderas, Saul Piedra, Tomas Madera-Santana, Rodrigo Melendrez-Amavizca, Patricia Quintana-Owen
This effort has probe that applying composite materials in current space missions is a reality.
Farhani, Aluminum and composite materials for satellite structures A comparison of thermal performance, Materials Research in India, 4 (1) (2007), 25-34
J. of Aeronautical Science & Aerospace Research, 1 (2014), 1-10
Journal of Geophysical Research: Space Physics, (2014) DOI: 10.1029/2018JA02596 [7] L.
Materials Today: Proceedings, 4 (2017), 9893-9897
Farhani, Aluminum and composite materials for satellite structures A comparison of thermal performance, Materials Research in India, 4 (1) (2007), 25-34
J. of Aeronautical Science & Aerospace Research, 1 (2014), 1-10
Journal of Geophysical Research: Space Physics, (2014) DOI: 10.1029/2018JA02596 [7] L.
Materials Today: Proceedings, 4 (2017), 9893-9897
Online since: January 2013
Authors: Zhi Hao Ma, Bin Xu, Ying Chao, Lei Li, Xin Xu, Fan Hua Ma
The range of the carbon materials for the first-order Raman spectrum was record from 1000 to 1800 cm−1 .
Raman micro spectroscopy of soot and related carbonaceous materials: Spectral analysis and structural information [J].
Raman microprobe studies on carbon materials [J].
Raman spectroscopic characterization of some commercially available carbon black materials [J].
Journal of Aerosol Science. 1999, 30(Supplement 1): S907-S908
Raman micro spectroscopy of soot and related carbonaceous materials: Spectral analysis and structural information [J].
Raman microprobe studies on carbon materials [J].
Raman spectroscopic characterization of some commercially available carbon black materials [J].
Journal of Aerosol Science. 1999, 30(Supplement 1): S907-S908
Online since: September 2016
Authors: Jan Červenka, Radomír Pukl, Tereza Sajdlová, Vladimir Červenka
FRC Material Models.
The resistance is calculated by a nonlinear analysis using design values of the material parameters , where are characteristic values and partial safety factors of materials.
Acknowledgement The presented results are based on the research performed within projects TA03011564 "Computer model for FRC material" from Czech technological agency and P105-14-10930S "SPADD - Spatial variability degradation and damage in reliability analysis of concrete structures" by the Czech Science Foundation (GA CR).
[2] Cervenka, V., Reliability-based non-linear analysis according to fib Model Code 2010, Structural Concrete, Journal of the fib, Vol. 14, March 2013, ISSN 1464-4177, (2013) 19-28, DOI: 10.1002/suco.201200022
Available at: http://bauwesen.htwk-leipzig.de/nc/de/fakultaet-bauwesen/personen/name/slowik/ [11] Kolísko, J., Tichý, J., Kalný, M., Huňka, P., Hájek, P. & Trefil, V., Development of ultra-high performance concrete (UHPC) on the basis of raw materials available in the Czech Republic.
The resistance is calculated by a nonlinear analysis using design values of the material parameters , where are characteristic values and partial safety factors of materials.
Acknowledgement The presented results are based on the research performed within projects TA03011564 "Computer model for FRC material" from Czech technological agency and P105-14-10930S "SPADD - Spatial variability degradation and damage in reliability analysis of concrete structures" by the Czech Science Foundation (GA CR).
[2] Cervenka, V., Reliability-based non-linear analysis according to fib Model Code 2010, Structural Concrete, Journal of the fib, Vol. 14, March 2013, ISSN 1464-4177, (2013) 19-28, DOI: 10.1002/suco.201200022
Available at: http://bauwesen.htwk-leipzig.de/nc/de/fakultaet-bauwesen/personen/name/slowik/ [11] Kolísko, J., Tichý, J., Kalný, M., Huňka, P., Hájek, P. & Trefil, V., Development of ultra-high performance concrete (UHPC) on the basis of raw materials available in the Czech Republic.
Online since: July 2014
Authors: Jian Bo Hu
Introduction of the high-tech industry, basic raw materials industries and service work should be combined with the adjustment of industrial structure in Guizhou and modern enterprise system reform.
Acknowledgments We thank Project Supported by MOE (Ministry of Education in China) Project of Humanities and Social Sciences (Grant No.13YJC790045) , National Statistical Science Project of National Bureau of Statistics in China (Grant No.2013LY104), Project of Science & Technology Department of Guizhou Provice(Grant No.
,Cardak,B.A.The determinants of FDI: an extreme bounds analysis [J].Journal of Multinational Financial Management, 2006(16): 199-211
[5] Girma S,Gorg H,Pisu M.ExPorting,linkages and productivity spillovers from FDI[J].Canadian Journal of Eeonomies,2008,41(l):320-340
[6] Basu &Guariglia.FDI,inequality,and growth[J].Journal of Macroeconomics,2007,29(4): 824-839.
Acknowledgments We thank Project Supported by MOE (Ministry of Education in China) Project of Humanities and Social Sciences (Grant No.13YJC790045) , National Statistical Science Project of National Bureau of Statistics in China (Grant No.2013LY104), Project of Science & Technology Department of Guizhou Provice(Grant No.
,Cardak,B.A.The determinants of FDI: an extreme bounds analysis [J].Journal of Multinational Financial Management, 2006(16): 199-211
[5] Girma S,Gorg H,Pisu M.ExPorting,linkages and productivity spillovers from FDI[J].Canadian Journal of Eeonomies,2008,41(l):320-340
[6] Basu &Guariglia.FDI,inequality,and growth[J].Journal of Macroeconomics,2007,29(4): 824-839.
Online since: August 2010
Authors: Yong Bo Wu, Wen Xiang Zhao, Xi Bin Wang, Zhi Qiang Liang
As a promising processing technique of hard and brittle materials, ultrasonic assisted grinding
(UAG) can enhance the machining efficiency and improve the surface integrity [4].
Moreover, ultrasonic vibration also leads to an increase in shear stress strength, and the deformation and movement of dislocation of materials are easily caused.
Once a wheel depth of cut ap is given to the workpiece and a feed motion is provided to the worktable at a rate of Vw, the grinding wheel rotating at a speed of Vs will interfere with the workpiece to remove the work-materials.
Wu, et al.: Journal of the Japan Society for Abrasive Technology, Vol. 47 (10) (2003), p. 550-555.
Liang, et al.: Materials Science Forum, Vol. 626-627 (2009), p. 35-40
Moreover, ultrasonic vibration also leads to an increase in shear stress strength, and the deformation and movement of dislocation of materials are easily caused.
Once a wheel depth of cut ap is given to the workpiece and a feed motion is provided to the worktable at a rate of Vw, the grinding wheel rotating at a speed of Vs will interfere with the workpiece to remove the work-materials.
Wu, et al.: Journal of the Japan Society for Abrasive Technology, Vol. 47 (10) (2003), p. 550-555.
Liang, et al.: Materials Science Forum, Vol. 626-627 (2009), p. 35-40
Online since: March 2004
Authors: Beong Bok Hwang, B.D. Ko, Joong Yeon Lim, D.H. Jang, Hyoung Jin Choi
The shear deformation of an
amount of 0.5 was concentrated at the corner of the DCAP-channel where the abrupt change in the
direction of material flow occurred.
Equal channel angular pressing (ECAP) is a processing procedure in which a material is subject to an intense plastic strain through simple shear.
Likewise ECAP, repeated shear deformation by DCAP provides the formation of UFG materials, in particular, for various aluminum alloy sheets.
In terms of effective strain distribution, the Route B pass is strongly recommended for uniform strain distribution, which may lead to uniform material properties of the workpiece.
R01-2001-00261 from the Korean Science and Engineering Foundation and by Dongguk University.
Equal channel angular pressing (ECAP) is a processing procedure in which a material is subject to an intense plastic strain through simple shear.
Likewise ECAP, repeated shear deformation by DCAP provides the formation of UFG materials, in particular, for various aluminum alloy sheets.
In terms of effective strain distribution, the Route B pass is strongly recommended for uniform strain distribution, which may lead to uniform material properties of the workpiece.
R01-2001-00261 from the Korean Science and Engineering Foundation and by Dongguk University.
Online since: December 2007
Authors: Ming Chen, Gang Liu, Dong Jin Zhang, X. Sun
The nickel-based superalloy GH4169 is a typical difficult-to-cut material, but it has been
used in a good many kinds of aeronautical key structures because of its high yield stress and
anti-fatigue performance at the temperature below 650°C.
Introduction As a result of its superior mechanical prosperities, the nickel-based superalloy GH4169 is an important material for aero-engine, gas turbine engines, nuclear reactors and other high-temperature applications [1].
But nickel-based superalloy GH4169 is also one of extremely difficult-to-cut materials because of some characteristics which are responsible for its poor machinability [2~4].
Acknowledgement This research is supported by the National Natural Science Foundation of China (No. 50675134), New Century Excellent Talent Project (NCET-04-0384) and Shanghai High Education Excellent Talent Project (04YQHB178).
Shinozuka: Seimitsu Kogaku Kaishi/Journal of the Japan Society for Precision Engineering, Vol.69 (2003)No.1, pp.105-109
Introduction As a result of its superior mechanical prosperities, the nickel-based superalloy GH4169 is an important material for aero-engine, gas turbine engines, nuclear reactors and other high-temperature applications [1].
But nickel-based superalloy GH4169 is also one of extremely difficult-to-cut materials because of some characteristics which are responsible for its poor machinability [2~4].
Acknowledgement This research is supported by the National Natural Science Foundation of China (No. 50675134), New Century Excellent Talent Project (NCET-04-0384) and Shanghai High Education Excellent Talent Project (04YQHB178).
Shinozuka: Seimitsu Kogaku Kaishi/Journal of the Japan Society for Precision Engineering, Vol.69 (2003)No.1, pp.105-109