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Online since: March 2015
Authors: Yu Tong Jiang, Mao Ye, Xiang Li He
Acknowledgement
This work is financially supported by the National Natural Science Foundation of China (Grant No. 51109212).
Journal of Engineering Mechanics, ASCE, 1991, 117(8): 1826-1837
Journal of Engineering Mechanics, ASCE, 1997, 123(4): 302-311
Journal of Tsinghua University, 2003, 43(8): 1112-1115.
Journal of Vibrat io n Eng ineering, 2006, 19(1): 124-127.
Journal of Engineering Mechanics, ASCE, 1991, 117(8): 1826-1837
Journal of Engineering Mechanics, ASCE, 1997, 123(4): 302-311
Journal of Tsinghua University, 2003, 43(8): 1112-1115.
Journal of Vibrat io n Eng ineering, 2006, 19(1): 124-127.
Online since: June 2013
Authors: Ronan Le Goff, Yvon Jarny, Alban Agazzi, Vincent Sobotka
The material of the part is a semi-crystalline PA 66 Technyl A218.
Qiao, A systematic computer-aided approach to cooling system optimal design in plastic injection molding, International Journal of Mechanical Sciences, 48(2006) 430-439 [5] L.
Manoochehri, A computer-aided optimization approach for the design of injection mold cooling systems, Journal of Mechanical Design, 120(1998) 165-174 [6] E.
Rond-Oustau, Automatic optimization of the cooling of injection mold based on the boundary element method, Materials processing and design: Modeling, Simulation and Applications-NUMIFORM-Proceeding of the 8th International Conference on Numerical Methods in Industrial Forming Process, vol. 712, no. 1, pp. 222-227, Colombus, Ohio, USA, 2004
Reeves, Functions minimization by conjugate gradients, The Computer Journal, 7(1964) 149-154
Qiao, A systematic computer-aided approach to cooling system optimal design in plastic injection molding, International Journal of Mechanical Sciences, 48(2006) 430-439 [5] L.
Manoochehri, A computer-aided optimization approach for the design of injection mold cooling systems, Journal of Mechanical Design, 120(1998) 165-174 [6] E.
Rond-Oustau, Automatic optimization of the cooling of injection mold based on the boundary element method, Materials processing and design: Modeling, Simulation and Applications-NUMIFORM-Proceeding of the 8th International Conference on Numerical Methods in Industrial Forming Process, vol. 712, no. 1, pp. 222-227, Colombus, Ohio, USA, 2004
Reeves, Functions minimization by conjugate gradients, The Computer Journal, 7(1964) 149-154
Online since: July 2011
Authors: Shi Pin Wu, Sen Li, Dong Po Wang, Qiu Lin Yang
Because the residual stress of the divested part was released, the residual stress of the surplus materials volume redistributed.
Ordnance Material Science Engineering (In Chinese), 2009, 9 32(5): 69-72 [5] Dongpo Wang, Lixing Huo, Yufeng Zhang, etc.
Chinese Journal of Mechanical Engineering, 2003, 39(9): 87-91
Chinese Journal of Mechanical Engineering, 2004, 17(4): 531-533
International Journal of Fatigue, 2003, 25: 1 239-1 247.
Ordnance Material Science Engineering (In Chinese), 2009, 9 32(5): 69-72 [5] Dongpo Wang, Lixing Huo, Yufeng Zhang, etc.
Chinese Journal of Mechanical Engineering, 2003, 39(9): 87-91
Chinese Journal of Mechanical Engineering, 2004, 17(4): 531-533
International Journal of Fatigue, 2003, 25: 1 239-1 247.
Online since: June 2020
Authors: Evelyn Evelyn, Chairul Chairul, Syaiful Bahri, Ella Awaltanova
Nipa sap is a potential raw material for renewable energy feedstock since nipa freely grows on swampy and sea adjacent land and deforestation caused by large clearing forest as in sugarcane and corn is not foreseen.
Material and Methods Raw Material.
Nigam, Continuous ethanol production from pineapple cannery waste using immobilized yeast cells, Journal of Biotechnology 80 (2000) 189-193
Tan, An novel immobilization method of Saccharomyces cerevisiae to sorghum bagasse for ethanol production, Journal of Biotechnology 129 (2007) 415-420
Ivanova, Behaviour and properties of released and in calcium alginate gel immobilized cells of Saccharomyces cerevisiae in continuous culture, 4th European Congress on Biotechnology, Elsevier Science Publishers Amsterdam, 1987, pp. 107-109.
Material and Methods Raw Material.
Nigam, Continuous ethanol production from pineapple cannery waste using immobilized yeast cells, Journal of Biotechnology 80 (2000) 189-193
Tan, An novel immobilization method of Saccharomyces cerevisiae to sorghum bagasse for ethanol production, Journal of Biotechnology 129 (2007) 415-420
Ivanova, Behaviour and properties of released and in calcium alginate gel immobilized cells of Saccharomyces cerevisiae in continuous culture, 4th European Congress on Biotechnology, Elsevier Science Publishers Amsterdam, 1987, pp. 107-109.
Online since: May 2023
Authors: Séverin Rouchier, Julie Widiez, Audrey Chapelle, Enrica Cela, Walter Schwarzenbach, Sam Shahidi, Prasant Parangi, Ramesh Shrestha, Gavin Simpson, Nicolas Daval
As illustrated in Fig. 1 and Fig. 2, SmartSiCTM is a bi-layer SiC engineered substrate composed of a thin layer of 4H-SiC material, ranging from 700 nm to 350 nm, transferred to a specific handle wafer.
4H-SiC 350 nm to 700 nm
Handle material ≥350 µm
Fig. 1.Typical SmartSiCTM stack.
Baierhofer et al., Material Science in Semiconductor Processing, vol 140 (2022), 106414 [4] T.
Kimoto, Japanese Journal of Applied Physics, vol 54 (2015), 040103 [5] H.
Sridhara et al., Materials Science and Engineering, B61–62 (1999), pp. 229-233 [7] R.
Weingärtner et al., Materials Science and Engineering, B80 (2001), pp. 357-361
Baierhofer et al., Material Science in Semiconductor Processing, vol 140 (2022), 106414 [4] T.
Kimoto, Japanese Journal of Applied Physics, vol 54 (2015), 040103 [5] H.
Sridhara et al., Materials Science and Engineering, B61–62 (1999), pp. 229-233 [7] R.
Weingärtner et al., Materials Science and Engineering, B80 (2001), pp. 357-361
Online since: June 2013
Authors: Bao Dong Shao, Li Feng Wang, He Ming Cheng
Optimization results and discussion
The material of heat sink is silicon, which is directly attached on the back of the chip.
Acknowledgements The work would not have been possible without the financial support of Yunnan Basic Application Research Emphases Item (No. 2007A0015Z) and Yunnan Education Science Research Fund (No. 2010Y382).
Peterson, 3-Dimensional numerical optimization of silicon-based high performance parallel micro-channel heat sink with liquid flow, International Journal of Heat and Mass Transfer, Vol. 50, (2007), pp. 2895-2904 [3] Shao, B.D.
,Sun, Z.W. and Wang, L.F., Optimization design of micro-channel cooling heat sink, International Journal of Numerical Methods for Heat and Fluid Flow, Vol. 17, No. 6, (2007),pp. 628-637 [4] Shao, B.D., Wang, L.F.
P., and Cheng P., Three-dimensional analysis of heat transfer in a micro-heat sink with single phase flow, International Journal of Heat and Mass Transfer, Vol. 47, (2004), pp. 4215-4231
Acknowledgements The work would not have been possible without the financial support of Yunnan Basic Application Research Emphases Item (No. 2007A0015Z) and Yunnan Education Science Research Fund (No. 2010Y382).
Peterson, 3-Dimensional numerical optimization of silicon-based high performance parallel micro-channel heat sink with liquid flow, International Journal of Heat and Mass Transfer, Vol. 50, (2007), pp. 2895-2904 [3] Shao, B.D.
,Sun, Z.W. and Wang, L.F., Optimization design of micro-channel cooling heat sink, International Journal of Numerical Methods for Heat and Fluid Flow, Vol. 17, No. 6, (2007),pp. 628-637 [4] Shao, B.D., Wang, L.F.
P., and Cheng P., Three-dimensional analysis of heat transfer in a micro-heat sink with single phase flow, International Journal of Heat and Mass Transfer, Vol. 47, (2004), pp. 4215-4231
Online since: July 2013
Authors: Mirko Djelosevic, Ilija Tanackov, Milan Kostelac, Vladeta Gajic, Jovan Tepic
Journal of Construction Steel Research, vol. 64 (2008), pp.755-65
Journal of Construction Steel Research, vol. 66 (2010), pp.139-49
Journal of Construction Steel Research, vol 59 (2003), pp.1119-46
Journal of Construction Steel Research, vol 39 (1996), pp.87-119
Journal of Construction Steel Research, vol. 32 (1995), pp.69-105
Journal of Construction Steel Research, vol. 66 (2010), pp.139-49
Journal of Construction Steel Research, vol 59 (2003), pp.1119-46
Journal of Construction Steel Research, vol 39 (1996), pp.87-119
Journal of Construction Steel Research, vol. 32 (1995), pp.69-105
Online since: September 2014
Authors: Yu Ying Huang, Yeng Horng Perng
Material and method
The information of fire accidents was recorded when fire brigades were notified of a fire.
Fire Safety Journal, Vol. 41 (2006), p. 2-14 [5] F.
Safety Science, Vol. 50 (2012), p. 1490-1494 [6] S.
Safety Science, Vol. 50 (2012), p. 1019-1033 [7] R.
Fire Safety Journal, Vol. 43 (2008), p. 71-76
Fire Safety Journal, Vol. 41 (2006), p. 2-14 [5] F.
Safety Science, Vol. 50 (2012), p. 1490-1494 [6] S.
Safety Science, Vol. 50 (2012), p. 1019-1033 [7] R.
Fire Safety Journal, Vol. 43 (2008), p. 71-76
Online since: September 2013
Authors: Li Zhang, Yi Gang Ding, Jun Ji, Chang Yan Yang, Yuan Xin Wu
Acknowledgements
We are grateful to National Natural Science Foundation of China (No. 51074114) for financial support for this project.
M., “Dispersion and hold-up in bubble columns-comparison of rigid and flexible spargers”, The Canadian Journal of Chemical Engineering, 59(6), 677-687(1981)
Part 1: the modeling of residence time distribution in a laboratory column flotation cell”, International Journal of Mineral Processing, 31, 97-113(1991)
G., “RTD studies in an industrial flotation column: use of radioactive tracer technique”, International Journal of Mineral Processing, 36, 81-91(1992)
G., Diaz, F., Rodriguez, J., “Mixing characteristics of industrial flotation equipment”, Chemical Engineering Science, 60(8-9), 2273-2282(2005)
M., “Dispersion and hold-up in bubble columns-comparison of rigid and flexible spargers”, The Canadian Journal of Chemical Engineering, 59(6), 677-687(1981)
Part 1: the modeling of residence time distribution in a laboratory column flotation cell”, International Journal of Mineral Processing, 31, 97-113(1991)
G., “RTD studies in an industrial flotation column: use of radioactive tracer technique”, International Journal of Mineral Processing, 36, 81-91(1992)
G., Diaz, F., Rodriguez, J., “Mixing characteristics of industrial flotation equipment”, Chemical Engineering Science, 60(8-9), 2273-2282(2005)