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Online since: January 2014
Authors: Na Zhao, Wen Chen, Tao Yan
Although the research and application of scaffold materials for tendon tissue engineering has achieved some success, but the application materials or the presence of biocompatibility, degradation problems or have poor mechanical properties, machining molding defects, there is still a big gap between the ideal scaffold materials.
At present, domestic and foreign scholars are from two aspects of basic and applied widely on the research and development of polylactic acid shows, with the gradual combination of research of biomedicine and materials science, poly lactic acid materials in medical field will become more and more widely used.
Therefore, the development of synthetic materials and modified natural materials, make it become accord with the requirements of ideal scaffold material is an important research direction of tendon tissue engineering.
With the continuous development of life science, material science and cooperate closely, the in vivo tissue engineering will make an ideal tendon substitutes, treatment of sports injuries has become more and more simple, it will be many athletes of the gospel.
The Journal of Foot and Ankle Surgery, Volume 49, Issue 2, March–April 2010, Pages 128-134
At present, domestic and foreign scholars are from two aspects of basic and applied widely on the research and development of polylactic acid shows, with the gradual combination of research of biomedicine and materials science, poly lactic acid materials in medical field will become more and more widely used.
Therefore, the development of synthetic materials and modified natural materials, make it become accord with the requirements of ideal scaffold material is an important research direction of tendon tissue engineering.
With the continuous development of life science, material science and cooperate closely, the in vivo tissue engineering will make an ideal tendon substitutes, treatment of sports injuries has become more and more simple, it will be many athletes of the gospel.
The Journal of Foot and Ankle Surgery, Volume 49, Issue 2, March–April 2010, Pages 128-134
Online since: December 2004
Authors: Jing Sun, Jun Wang, Chuan Zhen Huang, Han Lian Liu
Experimental
Raw Materials.
The compositions of the two developed tool materials are shown in Table 1.
Advances in Materials Manufacturing Science and Technology 244 Fabrication of the Ceramic Materials.
Gui, et al: Nanostructured Materials, Vol. 10 (1998), p. 947 [8] S.
Mou: Nanometer Materials (Liaoning Science and Technology Press, China 1994).
The compositions of the two developed tool materials are shown in Table 1.
Advances in Materials Manufacturing Science and Technology 244 Fabrication of the Ceramic Materials.
Gui, et al: Nanostructured Materials, Vol. 10 (1998), p. 947 [8] S.
Mou: Nanometer Materials (Liaoning Science and Technology Press, China 1994).
Online since: August 2016
Authors: Mikuláš Šveda, Radomír Sokolař
The properties of the raw materials mixture (mixing water content, drying shrinkage, strength of green body) and fired body at different temperatures (strength, porosity) were tested.
Building ceramics in history received no stronger use as a ceramic composite, on which this paper focuses, but this may change with the advent of modern advanced materials, such as nanofibers.
Acknowledgements This work was financially supported by the Czech Science Foundation, research project No.
Bal.: Review, Journal of Minerals and Materials Characterization and Engineering, Vol. 7 (2008), p. 355-370
Vilarinho: Materials Letters, vol. 90, (2013), p. 165-168
Building ceramics in history received no stronger use as a ceramic composite, on which this paper focuses, but this may change with the advent of modern advanced materials, such as nanofibers.
Acknowledgements This work was financially supported by the Czech Science Foundation, research project No.
Bal.: Review, Journal of Minerals and Materials Characterization and Engineering, Vol. 7 (2008), p. 355-370
Vilarinho: Materials Letters, vol. 90, (2013), p. 165-168
Online since: January 2012
Authors: Yun Ying Wang, Jiang Yan Meng
Wang Y.Y, et al.[3] discussed how the oil-resistance of rubber materials might be improved.
Journal of Aeronautical Materials, vol. 27, no.6, p79-82. (2007) [11] Zuzana C P.
Journal of material science,37: p5141–5151. (2002) [13]Andreas T.
Chemical Propellant and Polymer Materials, 06, p44-48. (2004) [17] Zhong J N, Zhong Q M, Chen Y B.
Synthetic Materials: Aging and Applications,1, p1-4. (1998) [18] Shen D Y, Qian R Y.
Journal of Aeronautical Materials, vol. 27, no.6, p79-82. (2007) [11] Zuzana C P.
Journal of material science,37: p5141–5151. (2002) [13]Andreas T.
Chemical Propellant and Polymer Materials, 06, p44-48. (2004) [17] Zhong J N, Zhong Q M, Chen Y B.
Synthetic Materials: Aging and Applications,1, p1-4. (1998) [18] Shen D Y, Qian R Y.
Online since: October 2011
Authors: En Bo Wang, Yu Qin Guo, Wei Chen, Yu Fang Chen
Journal of Materials Processing Technology, 2008, 207: 1-12
Journal of Mechanical Engineering, 2009, 45 (4): 183-186
Materials Science and Engineering: A, 2001, 302(2): 206-214
Ultrafine-grained ferrite steel with dispersed cementite particles [J].Journal of Materials Processing Technology, 2001, 117(3): 329-332
Materials Science and Technology, 1994, 2(2): 27-29.
Journal of Mechanical Engineering, 2009, 45 (4): 183-186
Materials Science and Engineering: A, 2001, 302(2): 206-214
Ultrafine-grained ferrite steel with dispersed cementite particles [J].Journal of Materials Processing Technology, 2001, 117(3): 329-332
Materials Science and Technology, 1994, 2(2): 27-29.
Online since: April 2014
Authors: Xiao Xia Li, Yu Xiang Guo, De Yue Ma, Li Yang, Ji Jin Zhao
Since exfoliated graphite has a certain infrared/millimeter-wave extinction performance, a lower density, and a good suspension property, it may be used as a kind of passive interference materials in military [5].
Materials Science and Engineering, 2002, 20(4): 487-489
Journal of Materials Science and Engineering, 2003, 21(3): 350-352
Chinese Journal of Energetic Material, 2004, 12(5): 273-276
Chinese Journal of Atomic and Molecular Physics, 1994, 11(4): 337-347.
Materials Science and Engineering, 2002, 20(4): 487-489
Journal of Materials Science and Engineering, 2003, 21(3): 350-352
Chinese Journal of Energetic Material, 2004, 12(5): 273-276
Chinese Journal of Atomic and Molecular Physics, 1994, 11(4): 337-347.
Online since: April 2010
Authors: Maryam Jokar, Russly Abdul Rahman, Nor Azowa Ibrahim, Luqman Chuah Abdullah, Tan Chin Ping
In fact, reducing the particle size of materials is an efficient and trustworthy tool for improving their biocompatibility [1].
Materials and Methods Preparation of Silver Nanoparticles.
coli as a model for Gram-negative bacteria Journal of Colloids and Interface Science 2004. 275: p. 177-182. 7.
Materials Chemistry and Physics, 2009. 115(1): p. 296-302. 11.
Journal of Food Science, 2004. 9(8): p. 379-383. 15.
Materials and Methods Preparation of Silver Nanoparticles.
coli as a model for Gram-negative bacteria Journal of Colloids and Interface Science 2004. 275: p. 177-182. 7.
Materials Chemistry and Physics, 2009. 115(1): p. 296-302. 11.
Journal of Food Science, 2004. 9(8): p. 379-383. 15.
Online since: August 2013
Authors: Ping Li, Yan Liang, Chao Liu, Tong Lu Li
aliangyan66888@163.com, b6013302@qq.com, cdcdgx08@chd.edu.cn, ddcdgx07@chd.edu.cn
Keywords: materials, caves, prevention, landslides, safety factor, statistics, failure analysis.
It is important to study filling materials of caves and fissures in loess tableland and effect of filling quality on loess slope stability in rainfall and irrigation.
Conclusions First, safety factor of loess slope sliding from the caves filled with different materials (or non-filled) in irrigation is calculated.
Chinese Journal of Geotechnical Engineering, 2007, 29 (10):1493~1499.
The Chinese Journal of Geological Hazard and Control, 2008, 19(2): 32~35.
It is important to study filling materials of caves and fissures in loess tableland and effect of filling quality on loess slope stability in rainfall and irrigation.
Conclusions First, safety factor of loess slope sliding from the caves filled with different materials (or non-filled) in irrigation is calculated.
Chinese Journal of Geotechnical Engineering, 2007, 29 (10):1493~1499.
The Chinese Journal of Geological Hazard and Control, 2008, 19(2): 32~35.
Online since: April 2009
Authors: Tatsuki Ohji, Yoshitake Masuda, Kazumi Kato, Xiu Lan Hu
Growth of Highly Orientated and Well-aligned ZnO Nanowhiskers using
Aqueous Solutions
Xiulan Hu1,a, Yoshitake Masuda1,b, Tatsuki Ohji1,c and Kazumi Kato1,d
1
National Institute of Advanced Industrial Science and Technology (AIST), 2266-98 Anagahora,
Shimoshidami, Moriyama-ku, Nagoya 463-8560, Japan
a
xiualan-hu@aist.go.jp,
b
masuda-y@aist.go.jp,
ct-ohji@aist.go.jp,
d
kzm.kato@aist.go.jp
Keywords: Nanowhiskers; Growth from solution; Semiconducting materials; ZnO; Morphology
Abstract Length-tailored, monodisperse, highly orientated, single-crystalline hexagonal and aligned
ZnO nanowhiskers were grown onto F-doped SnO2 conductive glass (FTO) substrate at 88 C using
an aqueous solution.
Control of the size, morphology and orientation of ZnO crystallites on the substrates such as nanostructure arrays is thus a prerequisite for the creation of materials having high specific surface area for various fields of industry and high-technology application including photovoltaic and optoelectronic devices[8, 9].
Whang, Materials Chem.
Ballman, The Journal of Physical Chemistry Vol. 64 (1960) p. 688
Que, The Journal of Physical Chemistry B Vol. 108 (2004) p. 3955.
Control of the size, morphology and orientation of ZnO crystallites on the substrates such as nanostructure arrays is thus a prerequisite for the creation of materials having high specific surface area for various fields of industry and high-technology application including photovoltaic and optoelectronic devices[8, 9].
Whang, Materials Chem.
Ballman, The Journal of Physical Chemistry Vol. 64 (1960) p. 688
Que, The Journal of Physical Chemistry B Vol. 108 (2004) p. 3955.
Online since: July 2012
Authors: Siti Yasmine Zanariah Zainuddin, Ishak Ahmad, Hanieh Kargarzadeh
The aim of this research is to prepare biodegradable plastics which are made from the natural materials.
The best known materials capable of making this green plastic are starch and cellulose [1].
Material and Methods Material.
The rough surface shown by this alkali treated kenaf is relatively due to the removal of most hemicelluloses, some lignin and waxy materials that covering the peripheral surface of the fiber cell wall [8, 11].
Satyanarayan: submitted to Journal Polymer Environment (2007) [9] Y.
The best known materials capable of making this green plastic are starch and cellulose [1].
Material and Methods Material.
The rough surface shown by this alkali treated kenaf is relatively due to the removal of most hemicelluloses, some lignin and waxy materials that covering the peripheral surface of the fiber cell wall [8, 11].
Satyanarayan: submitted to Journal Polymer Environment (2007) [9] Y.