Search Options

Sort by:

Sort search results by

Publication Type:

Publication Type filter

Open access:

Publication Date:

Periodicals:

Periodicals filter

Search results

Online since: May 2020
Authors: Xu Huang, Juan Li, Jian Ming Cai, Rui Duan
Leyens, Titanium alloys for aerospace applications, Advanced Engineering Materials 5(6) (2003) 419-427
Zhu, Research and Development of Advanced New Type Titanium Alloys for Aeronautical Applications [J], Aeronautical Science and Technology 1 (2012) 5-9
Erdogan, A critical analysis of crack propagation laws, Journal of basic engineering 85(4) (1963) 528-533
Soboyejo, An investigation of the effects of temperature on fatigue crack growth in a cast lamellar Ti–45Al–2Mn–2Nb+ 0.8 vol.% TiB2 alloy, Materials Science and Engineering: A 319 (2001) 618-624
Mizuhara, Effect of microstructure on fatigue crack growth in TiAl intermetallics at elevated temperature, Materials Science and Engineering: A 323(1-2) (2002) 62-69
Online since: May 2011
Authors: Jin Chen, Li Li Wang, Guang Cheng Yang, Zhi Qiang Qiao, Fu De Nie
Facile Fabrication of Flower-like LLM-105 Three-dimensional Microstructures Jin Chen a, LiLi Wang b, GuangCheng Yang c, ZhiQiang Qiao d, FuDe Nie e Institute of Chemical Materials, China Academy of Engineering Physics, Mianyang 621900, P.
X-ray powder diffraction (XRD) patterns of LLM-105 samples were obtained on a Bruker D8 Advance diffractometer using Cu Kα radiation (λ = 0.15406 nm).
Acknowledgements This work was financially supported by the Key Foundation of China Academy of Engineering Physics (Grant Nos. 2009A0302017 and 2010B03007) and a grant from the Institute of Chemical Materials, China (Grant No. 626010929).
Wu: Advanced Materials Research Vol. 148-149 (2011), p. 849 [14] CH.H.
Shao: Materials Science Forum Vol. 663-665 (2011), p. 982 [15] L.H.
Online since: March 2013
Authors: K.H. Zhang, Si Wei Zhang, Biao Xu, Wen Bing Xie
Research on Abrasive Flow Machining for the outer rotor of cycloidal pump Wenbing Xie 1, a, Kehua Zhang 2, b, Siwei Zhang 1, c and Biao Xu 1, d 1 XingZhi College of Zhejiang Normal University, JinHua, 321004, China 2 Precision Engineering Institute of Zhejiang Normal University, JinHua, 321004, China a453756941@qq.com, bmature@126.com, c451384561@qq.com, d591666681@qq.com Keywords: abrasive flow machining; outer rotor; shear force; surface roughness Abstract.
HAN: Mechanical Engineer.
Forum Vol. 11 (2009), p. 51-52 [4] J.
Kumar: The International Journal of Advanced Manufacturing Technology. 38 (2008), p. 1157-1164 [8] A.C.
He: Journal of Drainage and Irrigation Machinery Engineering. 29 (2011), p. 255-259
Online since: September 2018
Authors: Oluwole Daniel Makinde, R. Sivaraj, G. Kumaran
Sivaraj1,c* 1Department of Mathematics, School of Advanced Sciences, VIT, Vellore-632014, India. 2Faculty of Military Science, Stellenbosch University, Private Bag X2, Saldanha7395, South Africa.
Sandeep, Thermophoresis and Brownian motion effects on unsteady MHD nanofluid flow over a slendering stretching surface with slip effects, Alexandria Engineering Journal, (2017)
Adeboje, Efffects of Brownian motion and Thermophoresis on a nonlinearly stretching permeable sheet in a Nanofluid, Advanced inn Nanoparticles, 5 (2016) 123-134
Mohankrishna, Influence of non-uniform heat source/sink on MHD Nano fluid flow over a moving vertical plate in porous medium, International Journal of Science& Engineering.
Sandeep, Transpiration effects on stagnation-point flow of a Carreau nanofluid in the presence of thermophoresis and Brownian motion, Alexandria Engineering Journal, 55 (2016) 1151-1157
Online since: August 2013
Authors: Shi Feng Liu, Huiping Tang, Xiao Chen Ge, Xin Yang
Porous fiber metals are a kind of metallic materials which have a through-pore structure by forming and sintering.They have the advantages of light weight,high surface area and high specific strength.They are widely used in engineering field.This paper described the progress and application of porous fiber metals.And analysed the progresses of titanium fiber porous materials, nickel fiber porous materials,FeCrAl fibrous porous materials, copper fiber porous materials and stainless steel fiber porous materials, and prospected their further development.
References [1] Zhengping Xi, Huiping Tang: The sintered metal porous material (2009) [2] Bram M, Laptev A,Buchkremer H P: Materials Forum.Vol.29 (2005),p. 119 [3] Guofa Mi, Hongyu Li, Xiangyu Li: Materials for Mechanical Engineering.Vol.31(2007), p.13 [4] Tianjian Lu, Deping He, Changqing Chen: Advances In Mechanics.Vol.36(2006), p.517 [5] Chunming Zou, Erlin Zhang, Songyan Zeng.Porous Titanium by Fiber Sintering and Its Biomimetic Ca-P Coating (2007) [6] P.
[9] Zhengping Xi, Jian Zhang:Rare Metal Materials and Engineering.Vol.28(1999), p.371-373 [10] Jiansheng Ge, Lixing Lu, Yazhen Wang:Battery Bimonthly.Vol.26(1996), p. 216-217 [11] Jianfeng Li, Yong Lu, Mingyuan He:Micro Heat Exchanger with a Novel Sintered Ni Microfibrous Structured Wick and Its Performance.(2007) [12] Jie Tang, Xiankun Liu:Nuclear Electronics and Detection Technology.Vol.27(2007), p.1142 [13] Wei Fang, Weiwen Shu:Journal of Filtration and Separation.Vol.17 (2007), p.34-36 [14] Z.H.Wang, H.W.
Vol.A 471 (2007),p.28 [16] Zuomin Wang,Wuzhou Yu: Technical Acoustics.Vol.24 (2005), p.183-185 [17] Xiangzhang Zhong, Fangshuo Mo, Peisheng Zhu:Audio Engineering.Vol.1 (2001), p.12-17 [18] Dong Han, Junying Zhang, Ying Zhang:Light Metal Materials.Vol.12 (2007), p.67-70 [19] Ying Xu, Yufeng Ren, Chenxi Li:Study on Absorption Performance of Thin Micro-perforated Panel Penetrated with Copper Fiber (2011) [20] Wei Zhou, Yong Tang:Materials Science and Engineering.Vol.525 (2009), p.133 [21] Qingbo Ao, Jilei Zhu:Piezoelectrics and Acoustooptics.Vol.32 (2010),p.849-851 [22] Morgenthal I, Andersen O :Advanced Metallic Materials (2003) [23] Jianyong Wang, Jilei Zhu, Jichao Qiao:.Powder Metallurgy Technology.Vol.27(2009),p.323 [24] Barrabés M, Sevilla P, Planell J.A:Materials Science and Engineering.Vol.28 (2008), p.23
Online since: October 2010
Authors: Toshiki Miyazaki
Development of Bone-integrating Hybrid Materials Useful for Hard Tissue Repair Your Paper's Title Starts Here: Please Center use Helvetica (Arial) 14 FULL First AuthorToshiki Miyazaki1, a, FULL Second Author2,b and Last Author3,c 1Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology 2-4, Hibikino, Wakamatsu-ku, Kitakyushu 808-0196, Japan Full address of first author, including country 2Full address of second author, including country 3List all distinct addresses in the same way aemail, bemail, cemailtmiya@life.kyutech.ac.jp Keywords: Organic-inorganic hybrid, Apatite, Bone substituteList the keywords covered, Simulated body fluid (SBF), Carboxyl group in your paper.
In addition, porous hybrids are promised materials for scaffolds in the field of tissue engineering.
The author should indicate on the checklist if he wishes to have them printed in full color and make the necessary payments in advance.
Forum Vol. 83-87 (1992), p. 119 [2] C.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Online since: February 2014
Authors: T. Paul Chow
Acknowledgement The author would like to acknowledge the support of NSF ERC on Smart Lighting (EEC-0812056), GE and Advanced Power Device Association.
Harris, Properties of Silicon Carbide, Institution of Engineering and Technology, 1995
Wetzel, Properties, Processing and Applications of Gallium Nitride and Related Semiconductors, Institution of Engineering and Technology, 1999
Pensl, Silicon Carbide: Recent Major Advances, Springer, 2003
Jones, Materials Science Forum, 483-485 (2005) 893
Online since: April 2018
Authors: Rohitha Keerthiwansa, Jan Kledrowetz, Pavel Nekoksa, Jakub Javořík
In this study, the most common, which an advanced FEM software as MSC Marc, Abaqus or Ansys offer, were used.
[3] Module for Plane stress and Plane strain Analysis. https://engineering.ucsb.edu/~hpscicom/projects/stress/introge.pdf (accessed Sept 11, 2017)
Materials Science Forum. 904. 142-145. 10.4028/www.scientific.net/MSF.904.142. remberg.
Materials Science Forum. 899. 65-70. 10.4028/www.scientific.net/MSF.899.65
Online since: June 2018
Authors: Martina Drdlová, René Čechmánek, Miloslav Popovič
TE02000162 - Centre of advanced materials and technologies for protection and safety enhancement, for financial support.
Yao: Quasi-static and dynamic compressive mechanical properties of engineered cementitious composite incorporating ground granulated blast furnace slag, Mater.
Forum, Vol. 865 (2016), p. 135-140
Forum, Vol. 908 (2017), p. 72-82
Online since: January 2015
Authors: Darya Nemova, Elisaveta Reich, Svetlana Subbotina, Faina Khayrutdinova
Comprehensive method of energy efficiency of residential house (2014) Advanced Materials Research, pp. 1570-1577
Increase of energy efficiency of the building of kindergarten (2014) Advanced Materials Research, 953-954, pp. 1537-1544
Methods of calculating depreciation expenses of construction machinery (2012) Journal of Applied Engineering Science, 1 (10), pp. 43-48
Increase of energy efficiency for educational institution building (2014) Advanced Materials Research, 953-954, pp. 854-870
Tests results strength and thermophysical properties of aerated concrete block wall samples with the use of polyurethane adhesive (2014) Advanced Materials Research, pp. 786-799