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Online since: January 2026
Authors: Taoufik Hachimi, Fatima Majid, Fouad Ait Hmazi, Rajaa Rhanim
Khan, Evaluation of the effect of infill pattern on mechanical stregnth of additively manufactured specimen, in: Materials Science Forum, Trans Tech Publ, 2017: pp. 128–132
Boejang, Analysis on fused deposition modelling performance, Journal of Zhejiang University-Science A 11 (2010) 972–977
Tuck, Effect of the build orientation on the mechanical properties and fracture modes of SLM Ti–6Al–4V, Materials Science and Engineering: A 616 (2014) 1–11
Elahinia, Anisotropic tensile and actuation properties of NiTi fabricated with selective laser melting, Materials Science and Engineering: A 724 (2018) 220–230
Singh, Investigation of the effect of built orientation on mechanical properties and total cost of FDM parts, Procedia Materials Science 6 (2014) 1625–1630
Online since: January 2012
Authors: Yu Ling Liu, Xiao Wei Gan, Jia Xi Wang, Yan Gang He, Wei Juan Li
Abstract: With low-k dielectric materials taking the place of oxide dielectrics as the primary dielectric materials, the low-k dielectric materials and interconnection Cu metals during Chemical Mechanical Planarization (CMP) is becoming a critical surface quality issue as well.
However, the mechanical strength of porous low-k dielectric materials is worse than that of dense materials.
Chang’s paper which published in Thin Solid Films [4], alkaline slurry is harmful for low-k dielectric materials, for example, its k value obviously increase and Cu2+ can involve in porous low-k dielectric materials and lead to further pollution.
Acknowledgment This work was financially supported by the National Significant Science and Technology Special Projects, China (2009ZX02308).
Journal of Hebei University of Technology, 2009, 38(2): 1-8 [2] Yair Ein-Eli, David Starosvetsky.
Online since: August 2014
Authors: Ting Song Zou, Yue Shan Huang, Wei Jie Zeng, Yong Hua Lao
In many external fixation materials, low-temperature thermoplastic material has obvious advantages, not only consistent with light quality, has a good waterproof and intensity, and can be reused or adjust many times in different shape.
Materials and methods Material.
Huang: Orthopedic Journal of China, Vol. 17(2009)No.20, p.1578
Stephen, et al: Polymer Materials Science & Engineering, Vol. 22 (2006) No.3, p.231
Yao, et al: Journal of Functional Materials, Vol. 17 (2013) No.44, p. 2451.
Online since: September 2014
Authors: Yong Qing Wang, B. Hou, Q. Ma, H.B. Liu, Xian Jun Sheng
Acknowledgements The authors would like to gratefully acknowledge the financial support from the National Basic Research Program of China (No.2014CB046604), the National Nature Science Foundation of China (No.51305062), China Postdoctoral Science Foundation Grant (No.2013M540220).
Journal of mechanical science and technology, 2012, 26(7): 2087-2091
Advanced Materials Research, 2011, 148: 399-405
Journal of Materials Processing Technology, 2009, 209(5): 2453-2463
International Journal of Machine Tools and Manufacture, 2005, 45(6): 641-648.
Online since: August 2014
Authors: Hai Yan Zhang, Xue Min Hu
Preparation of Cool Wool Natural Energy Storage Material Haiyan Zhang1, a,XueminHu1, b 1School of Textile & Garments, Hebei University of Science & Technology, Shijiazhuang, Hebei, China azhanghaiyan5858@sina.com, bhuxuemin518@126.com Keywords:Natural Energy Storage Materials, Cool Wool, Scale Stripping,Phase Change Material, Resin Finishing Abstract. 
Slenderizing and adding energy storage materials are also the effective methods.
It can retain the original physical mechanical properties of materials So far as possible. 
Phase change material (PCM - Phase Change Material) is a kind of special functional materials.
Yu,Journal of Textile Research.26,7(2005)
Online since: January 2012
Authors: Hong Xia Cai, Wen Wei Wu
Nowadays, the inventory control is inclined to adopt different policies to different materials [1].
In the aircraft manufacturing industry, many materials can only be procured from one company and some materials are imported abroad, so it is more common that material can not be procured easily.
The Civil aircraft is manufactured in single-piece, so some materials are used only in one aircraft.
European Journal of Operational Research, Vol. 105 (1998), p.29–37
Journal of Operations Management, Vol. 9 (1990), p.574–98
Online since: February 2019
Authors: Md. Naimul Islam, Farhana Islam, Harun Ar-Rashid, Nanda Karmaker, Farjana A. Koly, Jumana Mahmud, Kamrun N. Keya, Ruhul Amin Khan
Composite materials are manufactured by combining two dissimilar materials into a new material which is better suited for a particular application than either of the original material alone.
At present, modern technologies require materials with unusual combination of properties that cannot be met by the conventional materials.
Materials and Methods 2.1 Materials E-glass fiber woven was purchased from Saint-Gobain Vetrotex India Limited.
Eco-challenges of bio-based polymer composites, Journal of Composite Materials Materials , Vol. 2, 911-925
Journal of Composite Materials,Vol. 39, No. 17, 1577-1589
Online since: June 2014
Authors: Yan Dan Huang, Ying Bin Lin, Zhi Gao Huang
Ying, et al., Optimized LiFePO4–Polyacene Cathode Material for Lithium-Ion Batteries, Advanced Materials, 18 (2006) 2609-2613
Yang, Developments of lithium-ion batteries and challenges of LiFePO4 as one promising cathode material, Journal of materials science, 44 (2009) 2435-2443
Xu, Enhanced electrochemical performance of LiFePO4 coated with Li0.34La0.51TiO2.94 by rheological phase reaction method, Materials Science and Engineering: B, 178 (2013) 1503-1508
Feng, The preparation and electrochemical performances of LiFePO4 multiwalled nanotubes composite cathode materials for lithium ion batteries, Materials Chemistry and Physics, 121 (2010) 302-307
Zhou, et al., Electrochemical performance of LiFePO4/Si composites as cathode material for lithium ion batteries, Materials Chemistry and Physics, 138 (2013) 313-318.
Online since: February 2012
Authors: Xiao Sun, Qi Gen Zhong, Bin Liu, Gui Qi Wang
Modeling for Dynamic Topology of Equipment Support Information Network with Certain Equipment Materials Xiao Sun1,2, a, Bin Liu1,b, Guiqi Wang1,c and Qigen Zhong1,d 1 Ordnance Engineering College, Shijiazhuang, Hebei, 050003 2 Science and Technology on Complex Systems Simulation Laboratory, Beijing, 100101 a xsunxiao@hotmail.com, bliubin957@163.com, c275770622@163.com, dgigenzh34@163.com Keywords: Equipment Support; Information Network; Dynamic; Behavior; Modeling;Equipment Materials Abstract.
Acknowledgement Supported by National Natural Science Foundation of China (60904071) Reference [1] Repair and maintenance contracts for aircraft supporting coalition forces in Afghanistan, Iraq, and Kuwait[R].
International Journal of Manufacturing Technology and Management. 2007, 10(1): 41-56
Journal of System Simulation, 2007, 19(5):1165-1169
Computer Science, 2009,36(10):5-10
Online since: September 2012
Authors: Yan Gao, Jing Hui Ma
The aim of the present study is to clarify the actual conditions of indoor thermal environment with building materials, which built after 1980 years in urban areas of Zhejiang Province.
The results show that the wall materials of the most residential buildings are clay solid bricks, the most windows type is aluminum alloy, and the most buildings are uninsulated.
Fig.5 shows the wall materials of the investigated residential buildings.
The wall materials of the most buildings were clay solid bricks, and the ratio of perforated brick to all is about 20%.
Acknowledgements The current study is supported by Science Technology Department of Zhejiang Province, under the contract no. 2010C33067.
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