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Online since: October 2014
Authors: Bing Sun, Yan Hua Pang, Ji Juan Cao
Materials and methods
Test apparatus
Test apparatus included FT-IR 550 Fourier transform infrared spectrometer (American Nicolet), CX31 optical microscope (Japan’s Olympus), DXY-2 biological toxicity test instrument (Nanjing Soil Research Institute of Chinese Academy of Sciences), SPX 250B intelligent illumination incubator (Shanghai Boxun industrial co., LTD.).
Test materials Calcium-based bentonite originated in Jilin was chosen: it was selectively floated and purified, and then modified with wet sodium, and then dried and grinded via 200-mesh sieve; cation exchange capacity (CEC) was tested using formaldehyde condensation [15] to be about 108mmol /100g; HDTMA+ was chosen as organic modification reagent; other reagents were analytical pure.
Photobacterium Phosphoreum T3 sp was provided by Chinese Academy of Sciences (Nanjing Soil Institute).
Science, 2000, 289:241
Journal of Dalian Maritime University, 2007, 33(2):58-62.
Test materials Calcium-based bentonite originated in Jilin was chosen: it was selectively floated and purified, and then modified with wet sodium, and then dried and grinded via 200-mesh sieve; cation exchange capacity (CEC) was tested using formaldehyde condensation [15] to be about 108mmol /100g; HDTMA+ was chosen as organic modification reagent; other reagents were analytical pure.
Photobacterium Phosphoreum T3 sp was provided by Chinese Academy of Sciences (Nanjing Soil Institute).
Science, 2000, 289:241
Journal of Dalian Maritime University, 2007, 33(2):58-62.
Online since: July 2014
Authors: Qiu Hua Guo, Shu Guang Shao
Secondly, the decentralization of implement science and technology resulted in low carbon target relates to each participant in the life cycle of the architecture, including architects, technology provider, makers of complementary products, professional manufacturers , construction organization and production and transportation of building materials.
The main cooperative factors not only include the traditional architectural design elements, such as the building ontologyones--- site, form, space, material, structure, equipment,but also include the expansion to more natural, energy, environment, landscape,ecological, low carbon science and other interdisciplinary elements.
First and foremost is capable of notably economizing on raw materials, fuel or energy emphasis on doing more work with less resources, natural ventilation and day lighting , the energy-saving design of the fender structure,installing water-saving sprinklers and a waste water filter to water flowers and trees , reusing products or recovering their re-usable materials.
The third is the combination of passive technologies and new materials.
Moreover, passive refrigeration technology based on the Suitable phase change materials for building structure provides the double function of geothermal system.
The main cooperative factors not only include the traditional architectural design elements, such as the building ontologyones--- site, form, space, material, structure, equipment,but also include the expansion to more natural, energy, environment, landscape,ecological, low carbon science and other interdisciplinary elements.
First and foremost is capable of notably economizing on raw materials, fuel or energy emphasis on doing more work with less resources, natural ventilation and day lighting , the energy-saving design of the fender structure,installing water-saving sprinklers and a waste water filter to water flowers and trees , reusing products or recovering their re-usable materials.
The third is the combination of passive technologies and new materials.
Moreover, passive refrigeration technology based on the Suitable phase change materials for building structure provides the double function of geothermal system.
Online since: December 2018
Authors: Brian Gabbitas, Ajit Pal Singh, Fei Yang, Rob Torrens, Leandro Bolzoni
Collings, Materials Properties Handbook: Titanium Alloys, ASM International, Materials Park, OH, 1994
Salishchev, Strength and ductility-related properties of ultrafine grained two-phase titanium alloy produced by warm multiaxial forging, Materials Science and Engineering A - Structural Materials Properties Microstructure and Processing 536 (2012) 190-196
Lütjering, Influence of processing on microstructure and mechanical properties of (α+ β) titanium alloys, Materials Science and Engineering A 243(1) (1998) 32-45
Guo, Microstructure-tensile properties correlation for the Ti-6Al-4V titanium alloy, Journal of Materials Engineering and Performance 24(4) (2015) 1754-1762
Kogut, The thermomechanical processing of titanium and Ti-6Al-4V thin gage sheet and plate, JOM: Journal of the Minerals, Metals and Materials Society 57(11) (2005) 58-61
Salishchev, Strength and ductility-related properties of ultrafine grained two-phase titanium alloy produced by warm multiaxial forging, Materials Science and Engineering A - Structural Materials Properties Microstructure and Processing 536 (2012) 190-196
Lütjering, Influence of processing on microstructure and mechanical properties of (α+ β) titanium alloys, Materials Science and Engineering A 243(1) (1998) 32-45
Guo, Microstructure-tensile properties correlation for the Ti-6Al-4V titanium alloy, Journal of Materials Engineering and Performance 24(4) (2015) 1754-1762
Kogut, The thermomechanical processing of titanium and Ti-6Al-4V thin gage sheet and plate, JOM: Journal of the Minerals, Metals and Materials Society 57(11) (2005) 58-61
Online since: December 2014
Authors: Na Min Xiao, Amir Abdollahpoor, Xiang Jun Chen, Michael Pereira, Bernard Rolfe
The thermo-mechanical properties of the tool material AISI H11 are reported in Table 1.
The thermo-mechanical properties of the tool material AISI H11 [4].
The resulting hardness of the material was calculated using the rule of mixtures.
[2] Oldenburg, M., Lindkvist, G., Tool thermal conditions for tailored material properties.
Journal of Heat Treatment and Materials ,6(2011) 329-334 [3] Ertürk, S., Sester, M., Selig, M., Feuser, P., Roll, K., A Thermo-Mechanical-Metallurgical FE Approach for Simulation of Tailored Tempering, 3rd International Conference on Hot Sheet Metal Forming of High-Performance Steel, Kassel, Germany, (2011) 447-454
The thermo-mechanical properties of the tool material AISI H11 [4].
The resulting hardness of the material was calculated using the rule of mixtures.
[2] Oldenburg, M., Lindkvist, G., Tool thermal conditions for tailored material properties.
Journal of Heat Treatment and Materials ,6(2011) 329-334 [3] Ertürk, S., Sester, M., Selig, M., Feuser, P., Roll, K., A Thermo-Mechanical-Metallurgical FE Approach for Simulation of Tailored Tempering, 3rd International Conference on Hot Sheet Metal Forming of High-Performance Steel, Kassel, Germany, (2011) 447-454
Online since: September 2013
Authors: Hai Xia Li, Rui Yun Zhang
We should pay attention to the collection of survey material[5].
Journal of Clinical Psychology , 2002(8): 307-321 [3] Werner , E. , &Smith , R.
Advances in Psychological Science, 2005(5):445-446
Journal of Adolescence , 2003(26) : 10-11 [7] Liu Zhaorong, Li Xixi.
Beijing: Science Press, 2007:67-69
Journal of Clinical Psychology , 2002(8): 307-321 [3] Werner , E. , &Smith , R.
Advances in Psychological Science, 2005(5):445-446
Journal of Adolescence , 2003(26) : 10-11 [7] Liu Zhaorong, Li Xixi.
Beijing: Science Press, 2007:67-69
Online since: December 2014
Authors: Yan Yu Wang
Digital audio water marking technology research
Yanyu Wang
WeiFang university of Science and Technology, Shou Guang, 262700, China
Keywords:Digital audio watermarking; Incomprehensibility; Can be detected; The protection of intellectual property rights
Abstract:The basic concept of digital audio watermarking technology prompt digital audio watermarking techniques as evidence of legal products used for protection of intellectual property rights.
Science press, 2004.14 ~ 65
Journal of electronic science. 2009
Journal of computer research and development. 2006
Journal of xi 'an diatoms university. 2003.37 (4) 354 ~ 358.
Science press, 2004.14 ~ 65
Journal of electronic science. 2009
Journal of computer research and development. 2006
Journal of xi 'an diatoms university. 2003.37 (4) 354 ~ 358.
Online since: July 2013
Authors: Fang Ye, Hang Guo, Long Yun Xu, Wei Zhang, Shuo Wu, Jian Fu Zhao, Chong Fang Ma
To be on the safe side, every part of the system is fixed and protected with elastic material.
Acknowledgement This work is supported by the National Natural Science Foundation of China (Grant Nos.: 50976006, 11102005), Program for New Century Excellent Talents in University (Grant No.: NCET-10-0006), and Opening project of national microgravity laboratory, the Chinese Academy of Sciences.
Journal of Power Sources. 158 (2006) 1256–1261
International journal of hydrogen energy. 34 (2009) 6902-6916
Journal of Power Sources. 164 (2007) 549–554
Acknowledgement This work is supported by the National Natural Science Foundation of China (Grant Nos.: 50976006, 11102005), Program for New Century Excellent Talents in University (Grant No.: NCET-10-0006), and Opening project of national microgravity laboratory, the Chinese Academy of Sciences.
Journal of Power Sources. 158 (2006) 1256–1261
International journal of hydrogen energy. 34 (2009) 6902-6916
Journal of Power Sources. 164 (2007) 549–554
Online since: March 2013
Authors: Guo Fu Xu, Zheng Dong Deng, Fei Fan Deng, Guo Bin Liu
Table.2 Parameters of the explosives detonation products
Density(kg/m3)
E(GJ/m3)
A(Gpa)
B(Gpa)
R1
R2
ω
1630
6.00
371
3.23
4.15
0.95
0.30
Air material model is simulated by the MAT NULL.
Nanjing: PLA University of Science & Technology, 2000 [2] Fan Junyu.
Internati -onal journal of Impact Engineering(2006),doi:1016(10).2006 [5] Siskind D E, Stagg M S, Wiegand J E, Schulz D L.
Journal of Engineering Blasting, 2006,2(2):19-23 [7] Liu Jianmin, Chen Wentao.
Journal of Engineering Blasting, 2008,2(14):20-24
Nanjing: PLA University of Science & Technology, 2000 [2] Fan Junyu.
Internati -onal journal of Impact Engineering(2006),doi:1016(10).2006 [5] Siskind D E, Stagg M S, Wiegand J E, Schulz D L.
Journal of Engineering Blasting, 2006,2(2):19-23 [7] Liu Jianmin, Chen Wentao.
Journal of Engineering Blasting, 2008,2(14):20-24
Online since: September 2013
Authors: Ruo Meng Chen, Wurikaixi Aiyiti, Juan Wang
After that, the CT value of each unit corresponding to was accurately calculated with material module and then the elastic modulus of each unit was calculated.
Acknowledgement This paper is supported by the National Nature Science Foundation of China under Grant 51165044.
Wan: Chinese Journal of Clinical and Basic Orthopaedic Research, Vol. 2 (2010) No.2, pp.137-139.
Li and P.Dong: Journal of Forensic Medicine, Vol. 27 (2011) No.4, pp.241-245.
Wei et.al: Practical Journal Of Bone, Vol. 9 (2003)No.3, pp.230-233(In Chinese) [8] G.X.
Acknowledgement This paper is supported by the National Nature Science Foundation of China under Grant 51165044.
Wan: Chinese Journal of Clinical and Basic Orthopaedic Research, Vol. 2 (2010) No.2, pp.137-139.
Li and P.Dong: Journal of Forensic Medicine, Vol. 27 (2011) No.4, pp.241-245.
Wei et.al: Practical Journal Of Bone, Vol. 9 (2003)No.3, pp.230-233(In Chinese) [8] G.X.
Online since: July 2014
Authors: Ying Sheng Huang, Rong Geng Lin, Hua Jian Zhou, Juan Liao, Shi Min Zhang, Xin Quan Wang
Acknowledgements
This material is based upon work funded by Zhejiang Provincial Natural Science Foundation of China under Grant No.
LQ12E09002; Project(51308497) supported by National Natural Science Foundation of China; Project(2012H63) supported by the Science and Technology Project of Zhejiang Province Communication Department.
[4] Yingdong Tang, Yuanqun Feng: Wavelet analysis of dynamic test signal of a pile( Journal of Vibration and Shock,China 2010)
[6] Dongzi Pan, Shengming Cheng and Yingdong Tang: Application of wavelet and neural network to defect diagnosing of pile(Journal of Vibration, Measurement and Diagnosis,China 2006)
[7] Jingyi Zhang, Longzhu Cheng and Fei Gao: Pile-side excitation integrity testing for existing foundation based on wavelet transform(Journal of GuiLin university of Technology,China 2012).
LQ12E09002; Project(51308497) supported by National Natural Science Foundation of China; Project(2012H63) supported by the Science and Technology Project of Zhejiang Province Communication Department.
[4] Yingdong Tang, Yuanqun Feng: Wavelet analysis of dynamic test signal of a pile( Journal of Vibration and Shock,China 2010)
[6] Dongzi Pan, Shengming Cheng and Yingdong Tang: Application of wavelet and neural network to defect diagnosing of pile(Journal of Vibration, Measurement and Diagnosis,China 2006)
[7] Jingyi Zhang, Longzhu Cheng and Fei Gao: Pile-side excitation integrity testing for existing foundation based on wavelet transform(Journal of GuiLin university of Technology,China 2012).