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Online since: July 2021
Edited by: Dumitru Nedelcu, Mikkel K. Kragh

The 41st volume of the journal "Advanced Engineering Forum" contains peer-reviewed manuscripts presenting the engineering solutions and research results dealing with contemporary problems in materials science and processing technologies in mechanical engineering and environmental engineering, issues of hot corrosion of thermal power equipment, and control techniques in distributed power systems of renewable energy power generation.

Online since: February 2012
Authors: Xua Nang Hu, Dian Xin Jia, Yan Zhu, Dan Hua Ying, Jian Ge
Inheritance and Innovation of Ecological Materials from Traditional Buildings in Zhejiang, China Danhua Ying 1, a, Xuanang Hu 2,b , Jian Ge 3,c , Dianxin Jia 4,d, Yan Zhu 5,e 1-5 Department of Architecture, Zhejiang University, Hangzhou, 310058, China; Semitropical Archi-Science National Key Laboratory, South China University of Technology, Guangzhou, 510640, China; ayingdanhua1987@gmail.com, b hxa2011@zju.edu.cn , c gejian1@zju.edu.cn, djiadianxin@gmail.com , e yzhu@zju.edu.cn , Keywords:Zhejiang traditional building materials, advanced building materials,survey, inheritance,innovation,agricultural waste, plant fiber, industrial waste, synthetic materials, composite material Abstract:This article engages in a survey on the countryside’s building materials in Zhejiang province, and indicates problems in the new countryside construction during the early 1990s to 2005: on one side, rarely few new materials for energy-conservation is being used; on the other side, traditional materials
So a range of materials which make improvement or innovation on traditional or materials in Zhejiang rural areas are enumerated. 3.
Inheritance and innovation of ecological materials from traditional house 3.1 Inheritance and improvement of renewable recyclable organic eco-materials These materials are used widely in the dwellings in the past.
Journal of Zhejiang Wanli University. 2005: 53-56
Journal of Panzhihua University. 2010: 27-29
Online since: June 2010
Edited by: Akii Okonigbon Akaehomen Ibhadode
This periodical edition includes peer-reviewed papers based on results of scientific research and engineering solutions in different areas of modern engineering science.
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Online since: April 2012
Authors: Tao Lu, Kui Sheng Wang, Yong Wei Wang
Compared three cases with various metal materials, temperature differences between metal spheres and fluids are decreased because the thermal conductivity of three metal materials of copper, aluminum and steel decrease gradually.
The thermal conductivity of metal spheres had no significant effect on the flow in porous metal materials.
Lu, et al.: International Journal of Heat and Mass Transfer.
Jiang, et al.: Experimental Thermal and Fluid Science.
Wang, et al.: Advanced Materials Research.
Online since: February 2013
Authors: Yao Wen Hsu, Kai Way Li
This study investigates the influences of slopes on objective friction measurements of different floor materials.
Thus, COF measurements under different slopes, floor materials and surface conditions were conducted in this study.
Especially for glycerol-contaminated floor, COF may worsen to zero no matter what the floor and shoe materials are.
Then the three tested floor materials were placed on the horizontal surfaces and ramp respectively.
Journal of Electromyography and Kinesiology, Vol. 18 (2008), p. 205-217
Online since: December 2014
Authors: Pi Hua Wen, Ping Cao, Rui Wen Chen, Ri Hong Cao
In this work, combined with similar material testing and discrete element numerical method(PFC) to investigate the mechanical behavior and failure mode of the rock-like materials with multi-fissures.
Combined with similar material testing and discrete element numerical method(PFC), this paper investigate the mechanical behavior and failure mode of the rock-like materials with multi-fissures.
The mechanical properties of the rock-like materials is listed in Table 1.
Macro-mechanical properties of regular cracks body in rock-like materials under uniaxial compression[J].Journal of University Science and Technology Beijing, 2001, 23(3):199-203.
[5] Kulatilake P H S W, Malama B, Wang J.Physical and particle flow modeling of jointed rock behavior under uniaxial loading[J].International Journal of Rock Mechanics and Mining Sciences, 2001, 38(5): 641-657.
Online since: August 2022
Authors: Jing Wang, Dong Cui, Xiao Bao Zuo
Journal of Materials in Civil Engineering, 33.1 (2021)
Journal of Materials in Civil Engineering, 29.7 (2017): 04017020
Ed.: Materials Science Edition, 35.5 (2020)
Journal of Building Materials, 5 (2008): 626-630
Journal of materials chemistry.
Online since: October 2013
Authors: Wei Li Wang, Ying Zi Jiang, Lei Fu, Zhuang Qing Fan, Xue Feng Huang
The results showed that: G50 is the best performance penetrating material, slightly better than the 30CrMnSiNi2A materials.
Internal fuse, base, cover materials are aluminum 2A12.
Journal of PLA University of Science and Technology. 2006: 7(4): 356~359
Journal of Detection & Control. 2006: 28(1): 25~28
Ordnance Material Science and Engineering, 2009, 32 (1):10-13
Online since: July 2020
Authors: Dhyah Annur, Sugeng Supriadi, Bambang Suharno, Muhamad I. Amal, Muhammad Satrio Utomo, Talitha Asmaria, Daniel P. Malau, Yogi Prabowo, Ahmad Jabir Rahyussalim
Yet, developing implant materials is inseparable with the choice of suitable material.
All of the materials are considered isotropic and linearly elastic.
Thouas, Metallic implant biomaterials, Materials Science and Engineering: R: Reports 87 (2015) 1-57
Niinomi, Biocompatibility of Ti-alloys for long-term implantation, Journal of the Mechanical Behavior of Biomedical Materials 20 (2013) 407-415
Murr, Open-cellular metal implant design and fabrication for biomechanical compatibility with bone using electron beam melting, Journal of the mechanical behavior of biomedical materials 76 (2017) 164-177
Online since: January 2021
Authors: Chun Xiang Qian, Qin Wen Chen
A Novel Approach to Characterize the Quantity and Distribution of Microorganisms in Microbial Self-Healing Cementitious Materials Qinwen Chen1,2,3,a*, Chunxiang Qian1,2,3,b 1College of Materials Science and Engineering, Southeast University, Nanjing 211189, China 2Research Institute of Green Construction Materials, Southeast University, Nanjing 211189, China 3Key Laboratory of Microbial Technology in Building Materials Industry, Southeast University, Nanjing 211189, China achenqinwen9693@163.com, bqiancx@seu.edu.cn Keywords: Microbial cementitious materials; Extraction of microorganisms; Distribution characteristics of microorganisms Abstract.
Material and Methods Raw materials and instruments.
Journal of food protection, 82(12): 2088-2093
Journal of Proteomics,150 (6):141-148
Journal of Microbiological Methods, 116:66-79
Showing 551 to 560 of 97005 items