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Online since: February 2013
Authors: Tie Jun Ge, Wei He, Jing Wang
Experimental
Raw materials.
Composite Materials Reported, Vol. 17 (2000) No.(2), pp.16-19.
Mechanical Science and Technology, Vol. 22 (2003) No.(3).pp.468-470.
Materials Transactions, Vol. 45 (2004) No.2, pp.602-604
Journal of Inorganic Materials, Vol. 18 (2003) No.6, pp. 1320-1324.
Composite Materials Reported, Vol. 17 (2000) No.(2), pp.16-19.
Mechanical Science and Technology, Vol. 22 (2003) No.(3).pp.468-470.
Materials Transactions, Vol. 45 (2004) No.2, pp.602-604
Journal of Inorganic Materials, Vol. 18 (2003) No.6, pp. 1320-1324.
Online since: September 2013
Authors: Yi Ning Ding, Yun Xing Shi, Kun Ni, Shan Qi Fang, Zhong Nan Song, Yan Gang Zhang, Ji Chuan Geng
Introduction
Cellular ceramisite concrete is a lightweight material consisting of ceramisite aggregate and Portland cement paste with a pore structure created by entraining air in the form of small bubbles.
Raw materials The constituent materials used to produce cellular ceramisite concrete comprised of 42.5R early strength ordinary Portland cement conforming to GB 175-2007, clay-ceramisite (apparent density=550 kg/m3), silica fume conforming to GB/T 27690-2011, pulverized manufactured sand and foam produced by animal protein based foaming agent (dilution ratio 1:11 by weight) using indigenously fabricated foam generator with compressed air above 0.5MPa.
Wang: Construction and Building Materials Vol. 25 (2011) p. 705
Leite: Open Journal of Civil Engineering, Vol. 2 (2012), p. 53
Subramanian: Indian Journal of Engineering and Materials Sciences Vol. 14 (2007), p. 146.
Raw materials The constituent materials used to produce cellular ceramisite concrete comprised of 42.5R early strength ordinary Portland cement conforming to GB 175-2007, clay-ceramisite (apparent density=550 kg/m3), silica fume conforming to GB/T 27690-2011, pulverized manufactured sand and foam produced by animal protein based foaming agent (dilution ratio 1:11 by weight) using indigenously fabricated foam generator with compressed air above 0.5MPa.
Wang: Construction and Building Materials Vol. 25 (2011) p. 705
Leite: Open Journal of Civil Engineering, Vol. 2 (2012), p. 53
Subramanian: Indian Journal of Engineering and Materials Sciences Vol. 14 (2007), p. 146.
Online since: February 2013
Authors: Fu Sheng Niu, Jin Xia Zhang, Chen Miao
Raw Materials and Reagents
Raw Materials.
The test raw materials used Xuan Long-oolitic hematite, The main raw materials and size of the percentage in Table 1.
Chinese Engineering Science 2005(4):38-41
Solar Energy Materials & Solar Cells, 2002(71): 281-294
International Journal of Mineral Processing, 1998(21): 255-275
The test raw materials used Xuan Long-oolitic hematite, The main raw materials and size of the percentage in Table 1.
Chinese Engineering Science 2005(4):38-41
Solar Energy Materials & Solar Cells, 2002(71): 281-294
International Journal of Mineral Processing, 1998(21): 255-275
Online since: August 2013
Authors: Jie Kong, Peng Chen, Jun Chen, Qing Shu Liu, Zhen Ma
Supporting Technology
Whitewashing Materials for Supporting U-shed.
The distance of gunite position and the head of roadway is not more than 60m. ② Mixing materials must be tidal by workers that cement, sand and pebble should be cleaned bottom and turned mixed three times to mix well.
After shotcrete one time, the resilient material should be collected immediately and the mixed materials should be used up each shift.
Journal of Chongqing University (Natural Science Edition), 2007, 30 (10): 87-91
Study on Stability of Deep Rock Roadways in Coal Mines and their Support Measures [J].Chinese Journal of Rock Mechanics and Engineering, 2004, 23 (21): 3732-3237.
The distance of gunite position and the head of roadway is not more than 60m. ② Mixing materials must be tidal by workers that cement, sand and pebble should be cleaned bottom and turned mixed three times to mix well.
After shotcrete one time, the resilient material should be collected immediately and the mixed materials should be used up each shift.
Journal of Chongqing University (Natural Science Edition), 2007, 30 (10): 87-91
Study on Stability of Deep Rock Roadways in Coal Mines and their Support Measures [J].Chinese Journal of Rock Mechanics and Engineering, 2004, 23 (21): 3732-3237.
Online since: January 2006
Authors: Zong Xia Jiao, Xiao Dong Wang, Guo Ping Huang
Braids provide an ideal preform for textile composite materials while the structure of the braids is
restricted by the machine braiding procedure.
So far most applications have concerned metal parts and processes with only a limited number of works investigating composite materials.
The Young's modular, Poisson's ratio and all the other properties of the materials can be found and modified in the database.
References [1] Terpant Guillaume, Krishnaswami Prakash and Wang Youqi: ASTM Special Technical Publication, n 1416, Composite Materilas: Testing, Design, and Acceptance Criteria, 2002, p188-199 [2] D'Amato, E: Composite Structures, v 54, n 4, December, 2001, p 467-475 [3] Zheng, Xi-Tao: Chinese Journal of Aeronautics, v 16, n 3, August, 2003, p 142-150 [4] Sun, Huiyu: Computers and Structures, v 81, n 20, August, 2003, p 2021-2027 [5] Li Jialu and Sun Ying: Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica, v 20, n 2, April, 2003, p 81-87 [6] Zeng Tao, Wu Lin-zhi and Guo Li-cheng: Composite Structures, v 64, n 3-4, June, 2004, p 399-404 [7] Kamiya Ryuta, Cheeseman Bryan A, Popper Peter and Chou Tsu-Wei: Composites Science and Technology, v 60, n 1, Jan, 2000, p 33-47 [8] Pickett A.K.: Applied Composite Materials, v 9, n 1, January, 2002, p 43-58 [9] De Araujo Mario, Fangueiro Raul and Hong Hu: Materials Science Forum, v 455-456, Advanced Materials Forum II:
Proceedings of the II International Materials Symposium: Materials 2003 and XI Encontro Sociedade Portugesa de Materials, 2003 ATERIAIS, 2004, p 787-791 [10] Kessels J.F.A. and Akkerman R.: Composites Part A: Applied Science and Manufacturing, v 33, n 8, Aug 1, 2002, p 1073-1081 [11] Sun W., Lin F., Hu, X.: Composites Science and Technology, v 61, n 2, Feb, 2001, p 289-299 [12] Potluri P., Rawal A., Rivaldi M. and Porat, I.: Composites Part A: Applied Science and Manufacturing, v 34, n 6 SPEC., June, 2003, p 481-492
So far most applications have concerned metal parts and processes with only a limited number of works investigating composite materials.
The Young's modular, Poisson's ratio and all the other properties of the materials can be found and modified in the database.
References [1] Terpant Guillaume, Krishnaswami Prakash and Wang Youqi: ASTM Special Technical Publication, n 1416, Composite Materilas: Testing, Design, and Acceptance Criteria, 2002, p188-199 [2] D'Amato, E: Composite Structures, v 54, n 4, December, 2001, p 467-475 [3] Zheng, Xi-Tao: Chinese Journal of Aeronautics, v 16, n 3, August, 2003, p 142-150 [4] Sun, Huiyu: Computers and Structures, v 81, n 20, August, 2003, p 2021-2027 [5] Li Jialu and Sun Ying: Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica, v 20, n 2, April, 2003, p 81-87 [6] Zeng Tao, Wu Lin-zhi and Guo Li-cheng: Composite Structures, v 64, n 3-4, June, 2004, p 399-404 [7] Kamiya Ryuta, Cheeseman Bryan A, Popper Peter and Chou Tsu-Wei: Composites Science and Technology, v 60, n 1, Jan, 2000, p 33-47 [8] Pickett A.K.: Applied Composite Materials, v 9, n 1, January, 2002, p 43-58 [9] De Araujo Mario, Fangueiro Raul and Hong Hu: Materials Science Forum, v 455-456, Advanced Materials Forum II:
Proceedings of the II International Materials Symposium: Materials 2003 and XI Encontro Sociedade Portugesa de Materials, 2003 ATERIAIS, 2004, p 787-791 [10] Kessels J.F.A. and Akkerman R.: Composites Part A: Applied Science and Manufacturing, v 33, n 8, Aug 1, 2002, p 1073-1081 [11] Sun W., Lin F., Hu, X.: Composites Science and Technology, v 61, n 2, Feb, 2001, p 289-299 [12] Potluri P., Rawal A., Rivaldi M. and Porat, I.: Composites Part A: Applied Science and Manufacturing, v 34, n 6 SPEC., June, 2003, p 481-492
Online since: January 2014
Authors: Lian Fu Yang
Introduction
With the development of vocational education technology, especially the innovation of new automobile maintenance technology education teaching, the contradictions are increasingly prominent in the traditional vehicle maintenance teaching or training, such as large student number and less equipment number, the contradiction of less number of teachers and large number of students, the abundant training time and the less time for individual students hands-on practice, In addition , the problem of increasing for training materials, and a lot of other problems, etc.
[2] Zhao qinping; False or true integration of collaborative work environment CAR-CA engineering technology research progress [J], China engineering science, 2009:25 to 31
[4] Zhang jianping; The actual fusion learning environment: the concept, characteristics and application [J], journal of distance education, 2013:3-9
Journal of automobile repair and maintenance, 2012, (6), pp. 99-101
Journal of Technology & Management, 2011, (4), pp. 72.
[2] Zhao qinping; False or true integration of collaborative work environment CAR-CA engineering technology research progress [J], China engineering science, 2009:25 to 31
[4] Zhang jianping; The actual fusion learning environment: the concept, characteristics and application [J], journal of distance education, 2013:3-9
Journal of automobile repair and maintenance, 2012, (6), pp. 99-101
Journal of Technology & Management, 2011, (4), pp. 72.
Online since: July 2014
Authors: Punit Singh, G. Kumaresan, S. Venkatachalapathy
Specifications of heat pipe
Parameters
Material/dimensions
Parameters
dimensions
Tube & Wick material
Copper
Adiabatic section length
80 mm
Outer diameter
12 mm
Condenser section length
100 mm
Inner diameter
11 mm
Mesh size
300 µm
Length of heat pipe
330 mm
No. of strands
100 mesh/in
Evaporator section
150 mm
No. of layers
3
The evaporation section of heat pipe was thoroughly cleaned by sodium bicarbonate solution followed by rinsing with distilled water before starting the experiment.
Rose, Dropwise condensation of mercury, in: International Journal of Heat and Mass Transfer 15.7 (1972): 1431-1434
Wanniarachchi, Evaluation of organic coatings for the promotion of dropwise condensation of steam, in: International journal of heat and mass transfer, 29(8) (1986):1109-1117
Marto, The use of an organic self-assembled monolayer coating to promote dropwise condensation of steam on horizontal tubes, in: Journal of heat transfer, 122(2) (2000), 278-286
Irwansyah, Thermal performance of screen mesh wick heat pipes with nanofluids, in: Experimental Thermal and Fluid Science, 40 (2012), 10-17.
Rose, Dropwise condensation of mercury, in: International Journal of Heat and Mass Transfer 15.7 (1972): 1431-1434
Wanniarachchi, Evaluation of organic coatings for the promotion of dropwise condensation of steam, in: International journal of heat and mass transfer, 29(8) (1986):1109-1117
Marto, The use of an organic self-assembled monolayer coating to promote dropwise condensation of steam on horizontal tubes, in: Journal of heat transfer, 122(2) (2000), 278-286
Irwansyah, Thermal performance of screen mesh wick heat pipes with nanofluids, in: Experimental Thermal and Fluid Science, 40 (2012), 10-17.
Online since: August 2013
Authors: Yan Zhen Huang, Shao Kun Ma, Xiao Bing Zhou, Xin Chen, Jian Xing He
Then the material properties of the pile was assigned and. the horizontal load was applied on pile top
Meanwhile, the material parameters of grouting layer and tunnel ling were changed.
Acknowledge This research project was funded by the National Natural Science Foundation of China (51068002) and Guangxi Key Laboratory of Geomechanics and Geotechnical Engineering (10-046-14-1).
Journal of Yangtze River Scientific Research Institute. 2012(11) (in Chinese) [3] WANG Xiaobing, WEN Songlin.
Journal of Yangtze River Scientific Research Institute, 2012(03).
Meanwhile, the material parameters of grouting layer and tunnel ling were changed.
Acknowledge This research project was funded by the National Natural Science Foundation of China (51068002) and Guangxi Key Laboratory of Geomechanics and Geotechnical Engineering (10-046-14-1).
Journal of Yangtze River Scientific Research Institute. 2012(11) (in Chinese) [3] WANG Xiaobing, WEN Songlin.
Journal of Yangtze River Scientific Research Institute, 2012(03).
Online since: January 2009
Authors: Xue Gang Luo, Jian Zhou
It can be realized that the key point to utilize lignin in polymer material is to
obtain effective intermediate to improve the compatibility between lignin and polymer materials [5].
In the present work, we choose a new intermediate LDPE-g-MAH (MAH: maleic anhydride) as compatibilizer in lignin filled with LDPE/EVA polymer materials and the rheological properties, and FT-IR is used to characterize its processing and intermolecular interactions. 2.
Experimental Material.
COMPOSITES Part A: applied science and manufacturing, 35 (2004): 395-400 [2] G.
Journal of Applied Polymer Science, 729 (1999):1321-1326
In the present work, we choose a new intermediate LDPE-g-MAH (MAH: maleic anhydride) as compatibilizer in lignin filled with LDPE/EVA polymer materials and the rheological properties, and FT-IR is used to characterize its processing and intermolecular interactions. 2.
Experimental Material.
COMPOSITES Part A: applied science and manufacturing, 35 (2004): 395-400 [2] G.
Journal of Applied Polymer Science, 729 (1999):1321-1326
Online since: January 2012
Authors: Meng Xi Zhang, Jun Li Gao
Acknowledgements
This work was financially supported by the National Natural Science Foundation of China (No. 40972192).
Seed: submitted to Journal of Geotechnical Engineering (1990)
Miura: submitted to Journal of Material Cyeles and Waste Management (2002)
Lu: submitted to Chinese Journal of Geotechnical Engineering (2008) (In Chinese)
Zhang: submitted to Chinese Journal of Geotechnical Engineering (2005) (In Chinese)
Seed: submitted to Journal of Geotechnical Engineering (1990)
Miura: submitted to Journal of Material Cyeles and Waste Management (2002)
Lu: submitted to Chinese Journal of Geotechnical Engineering (2008) (In Chinese)
Zhang: submitted to Chinese Journal of Geotechnical Engineering (2005) (In Chinese)