Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: April 2025
Authors: Majid Ali, Zeenat Khan
Innovative Building Insulation Solutions: Combating Global Warming with Advanced and Eco-Friendly Technologies
Zeenat Khan1,a*, Majid Ali2,b
1 Department of Biotechnology, Capital University of Science & Technology, Islamabad, Pakistan
2 Department of Civil Engineering, Capital University of Science & Technology, Islamabad, Pakistan
azeenatkhan2613@gmail.com, bmajid.ali@cust.edu.pk
Keywords: Building Insulation, CO2 Emissions, Energy Efficiency, Bio-insulation Materials, and Sustainable Construction.
The adaptability of insulation materials varies between developed and developing countries, with advanced materials being preferred in wealthier regions for their efficiency, and cost-effective, sustainable materials being utilized in less affluent areas [19].
It highlights emerging materials, particularly bio-based options, referenced from esteemed journals.
Fig. 4 Categories of Building Insulation Materials [18, 37]. 5.
Government incentives can further encourage the adoption of eco-friendly materials.
The adaptability of insulation materials varies between developed and developing countries, with advanced materials being preferred in wealthier regions for their efficiency, and cost-effective, sustainable materials being utilized in less affluent areas [19].
It highlights emerging materials, particularly bio-based options, referenced from esteemed journals.
Fig. 4 Categories of Building Insulation Materials [18, 37]. 5.
Government incentives can further encourage the adoption of eco-friendly materials.
Online since: July 2014
Authors: Bao Xiang Deng, Pei Pei Li
Science and Technology of Advanced Materials, 2013, 14(3)
Journal of Inorganic Materials, 2012, 27(6)
Journal of Inorganic Materials, 2011, 27(1)
Science and Technology of Advanced Materials, 2011, 12(4)
Journal of Inorganic Materials,2011,26(7)
Journal of Inorganic Materials, 2012, 27(6)
Journal of Inorganic Materials, 2011, 27(1)
Science and Technology of Advanced Materials, 2011, 12(4)
Journal of Inorganic Materials,2011,26(7)
Online since: February 2012
Authors: Jian Chun Zhang, Hua Zhang, Jian Yong Feng
Study on the tensile fracture characteristics of cars oil filter materials
FENG Jian-yong1,2,a, ZHANG Jian-chun2, ZHANG Hua2
1.Donghua University Textile Institute,ShangHai,China
2.The Quartermaster Research Institute of General Logistics Department of the PLA,Beijing,China
amydream1109@163.com
Keywords:automobile oil filter, filter used material, tensile fracture, macro characteristic, microscopic characteristics
Abstract.The oil filter materials are frequently subjected to abrading and all kinds of friction and making the materials suffered from damage,consequently,the property and service life of the filter materials is reduced.So the purpose of this thesis is to research the tensile performance of the automobile oil filter material and according to constant speed tensile test to measure the macro fracture characteristics,tensile property in the process of before and after tensile testing,tensile fracture form and the math expression.Then compared the breaking strength,breaking
elongation,elongation at break and breaking work of these ten oil filter materials.Hope that through the study on the tensile performance of the oil filter materials and summarizes the damage mechanism and tensile fracture form,in order to provides a new way to develop the new material.
Introduction There are many materials are used in the car oil filter,such as glass fiber filter paper,cotton wood pulp filter paper,the melting and spun-bonded polyester and polypropylene nonwoven filter material.The filter subject is matal deposits,solid particles and other impurities,meanwhile,the car engine oil filter material constantly exposed to brading,friction and other oil fluid force,so the oil filter materials often suffered from all kinds of problems and affected the service life and property.As a result,this paper mainly based on such a thought to research the wear fracture performance of car engine oil filter material and to see and to mater the wear performance.Simultaneously,it will provide a reliable basis for developing new filter material and trying to reduce wear fracture behavior,improving service life and reducing cost.
References [1]Sang Young Yeo,Dae young Lim,Sung Won Byun,et al.Design of filter bag media with high collection efficiency.Journal Matter Science,Vol.42,Issue.19,8040-8046,2007
[2]Young Ok Park,Hyun-seol Park,Seok Joo Park,et al.Development and evaluation of multilayer air filter media.Koeran Journal Chemical Engineer,Vol.18,Issue.6,1020-1024,2001.
elongation,elongation at break and breaking work of these ten oil filter materials.Hope that through the study on the tensile performance of the oil filter materials and summarizes the damage mechanism and tensile fracture form,in order to provides a new way to develop the new material.
Introduction There are many materials are used in the car oil filter,such as glass fiber filter paper,cotton wood pulp filter paper,the melting and spun-bonded polyester and polypropylene nonwoven filter material.The filter subject is matal deposits,solid particles and other impurities,meanwhile,the car engine oil filter material constantly exposed to brading,friction and other oil fluid force,so the oil filter materials often suffered from all kinds of problems and affected the service life and property.As a result,this paper mainly based on such a thought to research the wear fracture performance of car engine oil filter material and to see and to mater the wear performance.Simultaneously,it will provide a reliable basis for developing new filter material and trying to reduce wear fracture behavior,improving service life and reducing cost.
References [1]Sang Young Yeo,Dae young Lim,Sung Won Byun,et al.Design of filter bag media with high collection efficiency.Journal Matter Science,Vol.42,Issue.19,8040-8046,2007
[2]Young Ok Park,Hyun-seol Park,Seok Joo Park,et al.Development and evaluation of multilayer air filter media.Koeran Journal Chemical Engineer,Vol.18,Issue.6,1020-1024,2001.
Online since: February 2012
Authors: Wen Jun Meng, Tian Wei Hong, Hai Tao Bian
It could control the outflow of bulk materials by means of controlling the rotary of discharge arms, furthermore, it is easy to discharge the bulk materials automatically and improve operating efficiency of the whole logistics system.
6 Acknowledge
The project is subsidized by Natural Science Fund 201151075289, International (regional) Cooperation and Exchange Project of the National Natural Science Fund 201151110232, Shanxi Province Natural Science Foundation 2011011019-3, Research Foundation for Returning Scholar in 2009 of Shanxi Province, Dr.
East China University of Science and Technology Press.
Submitted to Journal of Liaoning Technical University(2007)
Submitted to Journal of Engineering Mechanics (1999)
Submitted to Journal of Cement Guide for New Epoch (2006).
East China University of Science and Technology Press.
Submitted to Journal of Liaoning Technical University(2007)
Submitted to Journal of Engineering Mechanics (1999)
Submitted to Journal of Cement Guide for New Epoch (2006).
Online since: January 2014
Authors: Jian Rong Chen, Jun Wu, Li Ning Yang, Na Song
Nanometer materials modified electrodes for detection of heavy metal ions by stripping voltammetry
Jun Wu1,a, LiningYang2 ,b, Na Song2 ,c, Jianrong Chen1,2 ,d
1 College of chemistry and life sciences, Zhejiang normal university, Jinhua 321004, China
2 College of geography and environmental sciences, Zhejiang normal university, Jinhua 321004, China
awjljsy@163.com, byanglining125@163.com, csongna_monkey@126.com, dcjr@zjnu.cn
Keywords: Nanometer Materials; Heavy Metal Ions; Detection
Abstract.
In addition that exploring new detection methods, selecting appropriate electrode materials and processing the data in a better chemometrics method are the prospects of the electrochemical methods.
Journal of trace elements and health research, 2011 28 (5) 64-66
Journal of Electroanalytical Chemistry, 2002 536 (1-2) 151-160
Chinese Journal of Chemistry, 2005 23(11) 1510 —1514
In addition that exploring new detection methods, selecting appropriate electrode materials and processing the data in a better chemometrics method are the prospects of the electrochemical methods.
Journal of trace elements and health research, 2011 28 (5) 64-66
Journal of Electroanalytical Chemistry, 2002 536 (1-2) 151-160
Chinese Journal of Chemistry, 2005 23(11) 1510 —1514
Online since: February 2015
Authors: Jing Lei Dou, Jing Feng Dou, Yu Juan Guo
On the site grouting test and compare the compressive strength of the stones of the body and the size of the diffusion radius, and compare the grouting materials with pure cement materials.
Through the comparative and analysis, the reasonable grouting materials are choosen.
Comparison analysis shows: The core compressive strength of pure cement materials and montmorillonite with cement mixing materials has little difference.
China safety science journal, Vol.16(2006), 42~46
Journal of mining and safety engineering, Vol.23(2006),320~323.
Through the comparative and analysis, the reasonable grouting materials are choosen.
Comparison analysis shows: The core compressive strength of pure cement materials and montmorillonite with cement mixing materials has little difference.
China safety science journal, Vol.16(2006), 42~46
Journal of mining and safety engineering, Vol.23(2006),320~323.
Online since: December 2004
Authors: Wan Sheng Zhao, Zhen Long Wang, Jing Zhi Cui, X.F. Liu
Materials Science Forum Vols. *** (2004) pp.784-789
online at http://scientific.net
2004 Trans Tech Publications, Switzerland
Mechanism of Electrode Material Removal in Short Pulse Time
Electric Discharge Machining
Z.L.
And the Power consumed in tool electrode can be described as [4]: Materials Science Forum Vols. *** 785 ( ) 0.532 0.348 c m O d on t P I U U t φ λ × = − × (1) Where, Im is current peak value, Ud is discharging voltage, ton is pulse duration, λ is medium downfall constant, Φ is the percent of valid discharging time in total machining time, U0 is plough voltage and t is discharging time.
Advances in Materials Manufacturing Science and Technology 786 We apply ANSYS to solve this problem, and the following figures are the analyzing results.
Van.Dijck, W.L .Dutré: Journal of Physics D: Applied Physics Vol. 7 (1974), p. 899 Materials Science Forum Vols. *** 789 [2] A.
Ghosh: International Journal of Machine Tools & Manufacture Vol. 39 (1999), p. 669 [3] M.
And the Power consumed in tool electrode can be described as [4]: Materials Science Forum Vols. *** 785 ( ) 0.532 0.348 c m O d on t P I U U t φ λ × = − × (1) Where, Im is current peak value, Ud is discharging voltage, ton is pulse duration, λ is medium downfall constant, Φ is the percent of valid discharging time in total machining time, U0 is plough voltage and t is discharging time.
Advances in Materials Manufacturing Science and Technology 786 We apply ANSYS to solve this problem, and the following figures are the analyzing results.
Van.Dijck, W.L .Dutré: Journal of Physics D: Applied Physics Vol. 7 (1974), p. 899 Materials Science Forum Vols. *** 789 [2] A.
Ghosh: International Journal of Machine Tools & Manufacture Vol. 39 (1999), p. 669 [3] M.
Online since: April 2015
Authors: Yong Lv, Chong Ji, Quan Min Xie, Huai Zhi Zhang, Chang Xiao Zhao, Fang Qian
However, the influence of liner materials on the formation of MEFP has not been carried out correlation research.
This paper chooses copper, aluminum, iron, tantalum and tungsten five common liner materials as the MEFP liner materials.
Journal of PLA University of Science and Technology(Natural Science Edition), 2012,13(5): 559-564
Journal of battlefield technology, 2001, 4(3):2-11 [9] Alistar Doig.
Journal of battlefield technology, 1998, 1(1):1-9.
This paper chooses copper, aluminum, iron, tantalum and tungsten five common liner materials as the MEFP liner materials.
Journal of PLA University of Science and Technology(Natural Science Edition), 2012,13(5): 559-564
Journal of battlefield technology, 2001, 4(3):2-11 [9] Alistar Doig.
Journal of battlefield technology, 1998, 1(1):1-9.
Online since: October 2015
Authors: Siti Noorbaini Sarmin
Geopolymer, the alkali-activation cement-based materials have been proven can be used to produce lightweight materials.
Australian Journal Basic & Applied Sciences 5, no 9 (2011) 441-449
Corrosion Science 59 (2012): 213-221
International journal of molecular sciences 13, no. 6 (2012) 7186-7198
Journal of Materials Science 49 no. 6 (2014) 2548-2558
Australian Journal Basic & Applied Sciences 5, no 9 (2011) 441-449
Corrosion Science 59 (2012): 213-221
International journal of molecular sciences 13, no. 6 (2012) 7186-7198
Journal of Materials Science 49 no. 6 (2014) 2548-2558
Online since: March 2007
Authors: Leszek Adam Dobrzański, Marcin Adamiak, Anna Włodarczyk-Fligier
Adamiak
1, c
1, Division of Materials Processing Technology and Computer Techniques in Materials Science,
Institute of Engineering Materials and Biomaterials, Silesian University of Technology,
Konarskiego St. 18a, 44-100 Gliwice, Poland
a
leszek.dobrzanski@polsl.pl, banna.wlodarczyk@polsl.pl, cmarcin.adamiak@polsl.pl
Keywords: Aluminium alloy, composite materials, powder metallurgy, mechanical properties,
Ti(C,N) particles
Abstract: Investigations of composite materials based on EN AW-Al Cu4Mg1(A) aluminum alloy
reinforced with the Ti(C,N) particles with various weight ratios of 5, 10 and 15% are presented.
Yuan, Ch.H Peng: Materials Science and Engineering A252 (1998), p. 212 [4] L.A.
Adamiak: 11th International Scientific Conference on the Contemporary Achievements in Mechanics, Manufacturing and Materials Science CAM3S'2005, Gliwice-Zakopane, 2005, p. 289-295 [6] C.H.
Kim, C.G.Kang, B.M.Kim: International Journal of Mechanical Scinces 43 (2001), p.1507 [9] P.B.
Torallba: Journal of Materials Processing Technology, 155-156 (2004), p. 2002 [12] A.
Yuan, Ch.H Peng: Materials Science and Engineering A252 (1998), p. 212 [4] L.A.
Adamiak: 11th International Scientific Conference on the Contemporary Achievements in Mechanics, Manufacturing and Materials Science CAM3S'2005, Gliwice-Zakopane, 2005, p. 289-295 [6] C.H.
Kim, C.G.Kang, B.M.Kim: International Journal of Mechanical Scinces 43 (2001), p.1507 [9] P.B.
Torallba: Journal of Materials Processing Technology, 155-156 (2004), p. 2002 [12] A.