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Online since: June 2020
Authors: Tatyana Timokhina, Natalya Perunova, Olga Malyugina, Ilnara Khamitova, Marina Maslova
In this article there are presented materials regarding problems of infectious complications, that appear as the result of formation of microbial biofilms, which is especially actual in medical practice nowadays because of wide usage of different invasive materials in surgical and traumatological and orthopedical departments of clinics.
Accordingly, the demand has risen of plastic materials for replacement of different defects of posttraumatic and postsurgical complications [1].
In the process of study the search for publications in Russian was used in peer reviewed journals accomplished in electronic base of RSCI (Russian Science Citation Index) and scientific electronic library eLIBRARY.RU.
A review of molecular mechanisms and implications for biofilm-resistant materials.
Zaporozhe’s Medical Journal. 2013; 6 (81): 76-79
Online since: March 2014
Authors: José Jaime García, Laura Villegas, Gustavo Orozco
Janssen, «An environmental, economic and practical assessment of bamboo as a building material for supporting structures», Construction and Building Materials, vol. 20, pp. 648–656, nov. 2006
«Characterization of splitting behavior of bamboo culms»,Journal of Materials in Civil Engineering, ASCE 22, pp. 1195-1199, 2010
Ghavami, «Experiments with rings to determine the anisotropic elastic constants of bamboo», Construction and Building Materials, vol. 31, pp. 52–57, jun. 2012
[11] American Society for Testing and Materials ASTM D 143-94.
Stanzl-Tschegg, «Microstructure and fracture mechanical response of wood», International Journal of Fracture, vol. 139, pp. 495–508, 2006
Online since: December 2011
Authors: Jing Jie Guo, Xin Zhong Li, Hai Jun Gong, Xue Yi Fan, Da Ming Xu
Data-Conversion and Displaying for Numerical Simulation of EMCC with FEM-FVM-joint Method Haijun Gong1, a, Xinzhong Li1, b, Xueyi Fan1, c, Daming Xu1, d and Jingjie Guo1, e 1School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, Heilongjiang, China a331ghj@163.com, bhitlxz@163.com, cfan_xueyi@yahoo.com.cn, ddamingxu@hit.edu.cn, eguojj@hit.edu.cn Keywords: Electromagnetic field, ANSYS, FEM/FVM, Data-conversion, Post-processing, EMCC Abstract.
Introduction Electromagnetic processing of materials (EPM), such as electromagnetic constraint forming and electromagnetic continuous casting (EMCC) etc., are important realms at present [1].
EM-field calculations adopted a node-based method in ANSYS software, where SOLID97 element type and PLANE13 element type were selected for all materials except far-field air under 2-D and 3-D conditions respectively.
Acknowledgements This project was supported by the National Natural Science Foundation of China (Grants nos. 50801019 and 51071062), State Key Lab of Advanced Metals Materials (Grant no.2009ZD-06) and Project 973 (Grant no. 2011CB605504).
Vol. 1(2000), p. 191 [2] Yan Xu, Jinwu Kang, Tianyou Huang: Journal of Tsinghua University (Sci. & Tech.).
Online since: March 2014
Authors: Lauri Kollo, Jaana Kateriina Gomon, Renno Veinthal, Agus Pramono, Kaspar Kallip
It has specific properties such as being light weight, ductile and a lower melting point compared to many other common engineering materials.
Materials and Experimental Methods Starting AA7075 powder with average grain particle size of 70 µm was received from Aluminum Powder Company Ltd, ALPOCO.
Progress in Materials Science, 51 (7), (2006), 881-981
Journal of Alloys and Compounds, 509(40), (2011) 9589-9597
Journal of Alloys and Compounds 548 (25),(2012), 257-265
Online since: February 2015
Authors: Hong Xia Yu, Shi Yang Ding
Shanghai Ecological Demonstration Building (Figure 3) was constructed and put into use in September 2004, with a floor space of 905 m2 and a construction area of 1994 m2, located in Science & Technology Development Park, No. 568, Shenfu Road, Minhang District, Shanghai.
Figure 7 The solar chimney Figure 8 Solar photovoltaic power generation systems Summary In today’s rapid development of the building industry, though China’s building industry is booming, with high-tech and energy-saving materials emerging one after another, most of the buildings are not sustainable, and still less sustainable technologies are applied in architectural design.
Long, BUILDING SCIENCE, Vol. 23(2007) No.2 [3] J.Y.Hu, Taiyuan Science & Technology, Vol.6 (2011) No.4, p.26-28
Xie, Anhui Architecture, Vol.11 (2012) No.6 [5] Information on http:// image.baidu.com [6]B.He, W.He and J.B.Xie, Science & Technology Progress and Policy, Vol.3(2003) No.3 [7]H.Bao, X.K.Dong, Journal of Architecture and Civil Engineering, Vol.22(2005)No.2 [8]Z.Z.Wei, MIN YING KE JI,Vol.34(2009)No.9 [9]Y.Q.Lv, SHANXI Architecture, Vol. 36 (2010) No.4 [10]Z.F.Chen,  Technology Wind,Vol.10(2010)No.10 [11]D.W.Hu and J.Tang, Journal of Dalian University of Technology (Social Sciences), Vol.27(2006) No.2, p. 12-16 [12]Q.Zhao: Strategy Research on Solar Architecture Integrated Design (Ph.D., Harbin Institute of Technology ,China 2008) [13]Y.Wang: The Research on Development Model and Assessment System of Ecological Modernization of Construction Industry in China (Ph.D., Dalian University of Technology, China 2008) [14]C.J.Yin: Design Strategies for the Passive Building Design (PBD) used in regions of hot in summer and cold in winter——based on the design of Wuhan artists village(M.S
., Huazhong University of Science and Technology, China 2007) [15]Z.Yu: Research of Multiple Original Solar Technologies Applied on Demonstration Building (Ph.D., University of Science and Technology of China, China 2014) [16]Q.Y.Zhang: Integration Design Countermeasures for Solar Water heating System in Residential Buildings(M.S., Harbin Institute of Technology ,China 2007) [17]Y.Xing: Research of the Relation Between the Scientific and Technical Properties (M.S., Hefei University of Technology, China 2005) [18] Information on http://www.cnepaper.com/sjdsb/html/2013-12/06/content_10_1.htm [19] Information on http://health.oeeee.com/html/201311/04/31624.html [20] Information on http://www.nipic.com/show/5743622.html [21] Information on http://www.shzgh.org/shxwb/jzfw/node179/node355/userobject1ai5530.html
Online since: August 2015
Authors: Stanisław Mroziński, Michał Piotrowski
Journal Pressure Vessel Technology, Trans.
ASME, Journal of Pressure Vessel Technology, 110, 1988, pp. 35-41 [8] Łagoda T., Fatigue life energy models of structural materials under uniaxial and multiaxial random load, Opole University of Technology, Monography 121, 2001.
Journal Materials 5, 1970, pp. 767-776
[12] Mroziński S., Piotrowski M., About fatigue tests end criterion in elevated temperatures, Key Engineering Materials Vol. 598 (2014) pp. 153-159
Influence of temperature change on fatigue properties of P91 steel, Materials Research Innovations, Volume 18 Issue S2 (may 2014), pp.504-508.
Online since: March 2015
Authors: Hai Xia Chen
Typically, the acoustic load (impedance) is a complex quantity, refers to acoustic wave device and the acoustic load entire load at the interface, attachment is not a material constant related to the characteristic impedance confused.
Figure.3 Load impedance of QCM with frequency Thus, closely related to the acoustic load material properties change with sheer mass deposition, the deposition process or quality, changes in material properties or by the chemical adsorption, physical effects.
Acknowledgements The authors thank the funding from Department of Science and Technology Foundation in Jilin Province (20140101198JC).
Dėdinaitė Quartz Crystal Microbalance with Dissipation (QCM-D) studies of the viscoelastic response from a continuously growing grafted polyelectrolyte layer, Journal of Colloid and Interface Science, Vol.408 (2013), p.229-234 [3] E.
Say: Development of a highly sensitive MIP based-QCM nanosensor for selective determination of cholic acid level in body fluids, Materials Science and Engineering: C, Vol.42 (2014), p.436-442 [7] D.
Online since: August 2009
Authors: Ying Chun Liang, Hong Min Pen, Qing Shun Bai
Ye et al [8] studied the effect of temperature on material removal, chip formation, material defects and frictional forces in the nanoscale machining of single crystal copper and found that nanometric cutting consists of two steps: material removal and relaxation of the work material.
Initially, the workpiece material atoms are deformed under the forces of tool and other material atoms.
On the other hand, when the shear stress in workpiece material get to the critical shearing stress of single crystal copper, some dislocations are generated in the workpiece material as shown in Fig. 2a.
Chen: Journal of Tianjin University(Science and Technology) Vol.33(5) (2000), p. 652-656 10 Gpa 8 GPa 6 GPa 4 GPa 2 GPa 0 GPa -2 GPa -4 GPa -6 GPa -8 GPa -10 GPa [13] X.
Jin: Chinese Journal of Mechanical Engineering Vol.42(6) (2006), p. 50 [14] E.
Online since: September 2011
Authors: Wu Ming Leng, Xi Ling Liu, Zong Wei Deng
Although there have several other materials (such as timber, steel, and plastics) used for sheet-piles, reinforced concrete sheet-piles are the most common one in retaining walls.
This is the cause of filling materials used for construction are graded broken stones with short construction time, and the compactness of deep filling material is hard to reach the ideal state in such a short time.
Journal geotechnical engineering 1995,121(9):629-35
China Railway Science, 2006, 27(6): 37-41.
Canada Geotechnical Journal 2008, 45(2):147-60
Online since: August 2022
Authors: Jeremie Viguie, Jerachard Kaima, Robert Peyroux, Cecile Sillard, Evelyne Mauret, Pawarut Jongchansitto, Itthichai Preechawuttipong
Material and Method Raw Materials.
Materials Science and Engineering C. 2009; 29: 1375-1379 [4] Haiyang Zhang, Jin Liu, Zhiqiang Wang, Xiaoning Lu.
Fibrous Materials. 2016 [12] Diana P.
Materials Science and Engineering. 2020; 886: 012061 [14] Eylem D.
Materials Science Forum. 2022; 1067:113–8. https://doi.org/10.4028/p-8oo3r9.