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Online since: August 2015
Authors: Sulhadi Sulhadi, Mahardika Prasetya Aji, Meiriani Ismu Savitri, Pradita Ajeng Wiguna, Muh. Afis Nur Said, Susanto Susanto
Engineering porous of this composites were controllable by varying heating times t= 1h, 2h, and 3h.
Ceramics International 39 (2013) 7089-7095
Functional glasses and glass-ceramics derived from iron rich waste and combination of industrial residues, Journal of Non-Crystalline Solids, 365 (2013): 63-74
Ceramics International 38 (2012) 2153-2157
Fabrication of ceramic components with hierarchical porosity, Journal of materials science 45 (2010) 5425-5455
Online since: June 2014
Authors: Li Fang Guo, Xing Li, You Zheng Yang
Erdogan: Engineering Fracture Mechanics 69 (2002), p.1729 [3] Y.
Zhang: International Journal of fracture 142 (2006), p.163 [4] L.
Zeng: International Journal of fracture 127(2004),p.21 [6] M.
Erdogan: Journal of Engineering Science 35 (1997), p.869 [7] S.
Watanabe: Engineering Fracture Mechanics 69 (2000), p. 1713 [14] I.
Online since: April 2015
Authors: Dong Lin, Chang Rui Zhang, Rong Jun Liu, Ying Bin Cao, Jing Wang
Influences of High Temperature Treatment of C/C on the mechanical properties of C/C-SiC composites Dong Lin1, a, Jin Wang1, 2, b, Changrui Zhang1, c, Yingbin Cao1, d* and Rongjun Liu1, e 1Science and Technology on Advanced Ceramic Fibers and Composites Laboratory, National University of Defense Technology, Changsha 410073, China 2Luoyang Hydraulic Engineering Technique Institute, Luoyang 471023, China alindonghero@163.com, bjwang07@163.com, cchangruizhang@nudt.edu.cn, dyingbincao@nudt.edu.cn, erongjunliu@nudt.edu.cn Keywords: C/C-SiC, High temperature treatment, coefficient of thermal expansion, low expansion.
SPIE7426, (2009), 74260K [5] Volkmer R., von der Lühe O. and Denker C.: Proc. of SPIE Vol. 7733 (2010), 77330K [6] Walter Krenkel, Bernhard Heidenreich and Ralph Renz: Adv Eng Mater, Vol. 4(7), (2002), p. 427-436 [7] Takao Y and Taya M.: Journal of Applied Mechanics, Vol. 52, (1985), p. 806-810 [8] Jun-Min Qian, Zhi-Hao Jin and Xiao-Wen Wang: Ceramics International, Vol.30, NO.6, (2004), p. 947-951 [9] Walter Krenkel: Ceramic Matrix Composites (the Federal Republic of Germany, Germany 2008)
Huang: Composites Science and Technology, Vol.71, No.5, (2011), p. 699-704 [11] ZHANG Qing, CHENG Laifei, ZHANG Litong and XU Yongdong: ACTA AERONAUTICA ET ASTRONAUTICA SINICA, Vol.25, No.5, (2004), p. 508-512 [12] LI Yan, CUI Hong, JI Alin, HUANG Jian and HUANG Hanxing: Materials Review, Vol.26, No.6, (2012), p. 25-28 [13] Wang Jiping, Lin Min, Xu Zhuo, Zhang Yonghui, Shi Zhongqi, Qian Junmin, Qiao Guanjun and Jin Zhihao: Journal of the European Ceramic Society.
Vol.29, No.14, (2009), p. 3091-3097 [14] Jingjiang Nie, Yongdong Xu, Litong Zhang, Shangwu Fan, Fang Xu, Laifei Cheng, Junqiang Ma and Xiaowei Yin: International Journal of Applied Ceramic Technology: Ceramic Product Development and Commercialization.
Vol.7, No.2, (2010), p. 197-206 [15] Zhuan Li, Peng Xiao and Xiang Xiong: International Journal of Minerals, Metallurgy and Materials.
Online since: June 2014
Authors: Cosme Roberto Moreira Silva, R.A. Muñoz, J.E. Rodriguez, A.C.M. Rodrigues, Paola Cristina Cajas
The software Search-Match was used to identify and to compare the crystal structure obtained in this work with the data available at International Centre for Diffraction Data (ICDD).
Prado, “Local atomic structure in tetragonal pure ZrO 2 nanopowders,” Journal of Applied Crystallography, vol. 43, no. 2, pp. 227–236, Feb. 2010
Synthesis and characterization of nanocrystalline zirconia by pechini method, using as a stabilizing additive a rare earth elements concentrate for use in oxygen sensors. 21st Brazilian Congress of Mechanical Engineering.
Huang, “Preparation and characterization of Ce0.8M0.2O2−δ (M=Y, Gd, Sm, Nd, La) solid electrolyte materials for solid oxide fuel cells,” International Journal of Hydrogen Energy, vol. 35, no. 2, pp. 745–752, Jan. 2010
Journal of the European Ceramic Society 29 (2009) 2537–2547
Online since: May 2014
Authors: Joseph W. Newkirk, F. Frank Liou
FGM materials can be divided into ceramic-ceramic, ceramic-metal, and metal-metal.
Wong and Aldo Hernandez, Mechanical Engineering, vol. 2012, Article ID 208760, 10 pages, 2012
Wohlers, Manufacturing Engineering, vol. 148, no. 4, pp. 55–56, 2012
Weidong, Rare Metal Materials and Engineering, 2009, 38(4): 0574−0578
Chinese Journal of lasers 2005,32(4):567-570
Online since: October 2010
Authors: Bing Hai Lv, Ju Long Yuan, Hong Wei Fan, Q.F. Deng, W.F. Yao
Yao 1 1 The Key Laboratory of Special purpose equipment and advanced processing technology, Ministry of Education, Zhejiang University of Technology, Hangzhou 310014, China 2 National Engineering Research Center for High Efficiency Grinding, Hunan University, Changsha 410082, China a hongwei613263@163.com, b lu-bt@sohu.com, c jlyuan@zjut.edu.cn Keywords: Porous self-generating, Super-hard abrasive tool, Soluble filler, Dressing dissolvent.
And it has a broad development prospects on communication, energy, mechanical engineering in industry fields, and the structural functional properties, process technology in scientific area [1].
Weissenberger-Eibl: Journal of the European Ceramic Society Vol. 29 (2009), p. 1549-1560 [2] J.L.
Xiao: Chinese Journal of Mechanical Engineering Vol. 42 (2005), p. 12-17 [4] T.
Shin: International Journal of Machine Tools & Manufacture Vol. 42 (2002), p.825-835 [8] M.
Online since: February 2018
Authors: Xi Bin Wang, Hong Wei Li, Guo Ping Li, Li Bo Guo, Feng Hua Luo, Si Tao Wang
Journal of cemented carbide, 20 (2003) 197-199
Journal of heat treatment, 23 (2008) 12-15
Ceramics International, 41(3) (2014) 4223-4226
Ceramics International, 29(8) (2003) 919-925
International Journal of Refractory Metals & Hard Materials, 30(1) (2012) 107-113.
Online since: October 2010
Authors: Yong Zou, Zeng Da Zou, Xu Wei Dong, Gui Hua Li
Zuo: Materials Science Engineering A, Vol. 241(1-2)( 1998) p.259-263
ZOU: Journal of Iron and Steel Research, International.
SHI: China Surface Engineering, Vol: 21(2) (2008), p.26-30.
JING: Laser Journal, Vol: 29(5)(2008), p.69-71.
ZHAO: Chinese Journal of Lasers, Vol: 35(8) (2008), p.1260-1264.
Online since: July 2014
Authors: A. Vimala Juliet, A. Priya Rathi
Abstract A three-dimensional microfluidic biosensor has been successfully designed using a low temperature co-fired ceramic (LTCC) technology.
But a three-dimensional microchannel can be easily realized using a low-temperature co-fired ceramic (LTCC) technology.
In this paper, a 3-dimensional microfluidic cell counter has been successfully designed using a low-temperature co-fired ceramic (LTCC) technology.
[8] P.Sangeetha, A.Vimala Juliet, Simulation of MEMS Based Sensors for Bimolecular Recognition, AICERA, Vol: 123, ISBN: 978-81-921320-0-6, (2011) [9] P.Sangeetha and A.Vimala Juliet, Biosensor for Tuberculosis detection using MEMS device, 3rd International Conference on Electronics, Biomedical Engineering and its Applications ICEBEA'2013), Hong Kong, (2013)
[10] V.Manonmani, Vimala Juliet and Gowtham Thirunavukkarasu , Synthesis and conjugation of magnetic nanoparticles with fluorescent probes for Staphylococcus aureus pathogenic detection, ISSN 2250-1800 E-Journal of Life Sciences (EJLS) www.e-journal.in, 1 (1), 145-1483 (2013)
Online since: February 2022
Authors: Abderrahmane Younes, Amirouche Bouamer
Key Engineering Materials 280-283 (2007)1655-1658
Komvopoulos, Enhancement of the photoprotection and nanomechanical properties of polycarbonate by deposition of thin ceramic coatings, Journal of Applied Physics 99 (104310) (2006)1- 7
Wu, Study on the Preparation and Characterization of Biodegradable Polylactide/SiO2–TiO2 Hybrids, Polymer-Plastics Technology and Engineering 47(2008) 887-894
IOP Conference Series.: Material Science Engineering 461(2018) 1-6
Noori, Effect of Nano SiO2 on Some Mechanical Properties of Biodegradable Polylactic Acid, International Journal of Mechanical Engineering and Technology 5(2014) 1-7
Showing 1281 to 1290 of 7216 items