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Online since: January 2013
Authors: Soo Jin Tan, A.G. Supri, Pei Leng Teh
Experiment Materials The fresh water hyacinth fibers were obtained from Local River in Perlis, Malaysia.
Houston: JOM Journal of the Minerals, Metals and Materials Society Vol. 58 (2006), p. 80 [5] A.
Wang: Journal of Forestry Research Vol. 18 (2007), p. 203 [17] I.
Carter: Journal of Chemical Education Vol. 73(1996), p. 1160 [22] F.
Xiong: Journal of Materials Science Vol. 42 (2007), p. 3398
Online since: December 2024
Authors: Luthfi Luthfi
In this study, SPW is tested for use as a sound-absorbing material by first converting it into composite materials.
These days, the investigation of sound-absorbing materials in the literature has centered on composite materials that are often made from waste products.
Unsaturated polyester resin was used for manufacturing the composite materials.
Materials and Methods Sago pith waste (SPW) used for manufacturing the composite materials in this study was obtained from a nearby sago processing factory in Lhokseumawe, Aceh, Indonesia (Fig.1(a)).
X., and Lawai, V., “Production of Fire-Retardant Sound-Absorbing Panels from Sago Waste,” Journal of Tropical Forest Science, Vol. 25, No. 4, 2013, pp. 510–515.
Online since: June 2021
Authors: Jun Xie, Na Li, Shao Peng Wu, Yin Huai Ma, Li Guo
Materials and Methods Materials.
Wang, Emission profiles, ozone formation potential and health-risk assessment of volatile organic compounds in rubber footwear industries in China, Journal of Hazardous Materials 375 (2019) 52-60
Cui, Inhibiting effect of Layered Double Hydroxides on the emissions of volatile organic compounds from bituminous materials, Journal of Cleaner Production 108 (2015) 987-991
Zhou, VOCs reduction and inhibition mechanisms of using active carbon filler in bituminous materials, Journal of Cleaner Production 181 (2018) 784-793
Cui, Using Activated Carbon to Reduce the Volatile Organic Compounds from Bituminous Materials, Journal of Materials in Civil Engineering 29(10) (2017)
Online since: September 2016
Authors: Evgeniy V. Ageev, A.Y. Altukhov, S.S. Gulidin
Materials and methods For producing a powder from a solid alloy wastes by the electroerosion dispersing unit for EED of conductive materials, developed by the authors [10 – 11], and the ball-bearing steel wastes are used.
Bibik, Forecasting of hard-alloyed cutting tool resistance based on thermal diffusivity, Materials Science Forum. 762 (2013) 777-781
Murty, Nanocomposites and an extremely hard nanocrystalline intermetallic of al-fe alloys prepared by mechanical alloying, Materials Science and Engineering: A. 527 (2010) 2370-2378
Horyakova, Preparation of Copper Electroerosion Nanopowders from Waste of Aquatic Medium and its Validation by Physicochemical Methods, Applied Mechanics and Materials. 770 (2015) 23-27
Novikov, Electroerosive Powder Obtained from Alloy VK8 Waste into Butanol, Journal of nano- and electronic physics. 7 (2015) 04080(3).
Online since: January 2006
Authors: K.S. Lee, Ming Fang Lu, Chia Ming Yen, Jui Chang Lin, Shen Yung Lin
Wang, CAD of Mold cooling in injection Mold Using a Three-dimension Numerical Simulation, Journal of Manufacturing Science and Engineering, 144, p.p. 213-221, 1992
Wang, CAD of Mold cooling in injection Mold Using a Three-dimension Numerical Simulation, Journal of Manufacturing Science and Engineering, 144, p.p. 213-221, 1992
Park, Thermal and Design Sensitivity Analyses for Cooling System of Injection Mold, Part I: Thermal Analysis, Journal of Manufacturing Science and Engineering, 120, p.p. 287-295, 1998
Tai, J.C Lin, The optimal position for the injection gate of a die-casting die, Journal of Materials Processing Technology, 86, pp.87-100, 1999
Tai, J.C Lin, A runner-optimization design study of a die-casting die, Journal of Materials Processing Technology, 84, pp.1-12, 1998
Online since: June 2017
Authors: Xiao Rong Li, A.Q. ZHANG, Xing Qi Huang, Da Wei Zhang, Chang Jun Xue
The cement, sand, aggregates, fillers and water-reducing agent were used as the important raw materials for the concrete.
Ozel, An investigation on the concrete properties containing colemanite, International Journal of Physical Sciences, 5(2010)216-225
Wild, Influence of superplasticizers on workability of concrete, Journal of materials in civil engineering, 11(1999)151-157
Ou, A study on mechanical and pressure-sensitive properties of cement mortar with nanophase materials, Cement and Concrete research, 34(2004)435-438
Kicaite, The effect of cement type and plasticizer addition on concrete properties, Construction and building materials, 45(2013)324-331.
Online since: September 2019
Authors: Ye Gu, Cai Qi Zhao, Yong Yang, Wei Ran Zhao
Progress in Research Work of Light Materials, J.
Journal of Southeast University (Natural Science). 2014, 44(3): 626-630
Journal of Materials Processing Technology. 2014, 214(1):81-86
Construction & Building Materials. 1999, 13(3):109-116
Journal of Space Science. 2002(10), 142-148
Online since: October 2014
Authors: Ping He, Yan Yi, Bo Li Zhai
For example, superconducting materials, ceramic materials, materials, nonlinear optical materials, surface coating treatment.
ITO transparent conductive film preparation methods and research progress of materials science and engineering college.
ITO thin films and the direction of the development of materials science and Engineering.
Xian building university of science and technology journals (2004)
Materials Review (2005)
Online since: April 2014
Authors: Da Tong Zhang, Yuan Yuan Li, Lei Lu
References [1] T.M.Yue, Journal of Materials Processing Technology 6(1997)179-185
Journal of Materials Science 34 (1999) 1873-1883
Vikhrov, Journal of Materials Processing Technology, 101, (2000) 1-9
Shafyei, Materials Science and Engineering A428 (2006) 135-140
Kim etal, Materials Science and Engineering A304–306 (2001) 721-726
Online since: April 2014
Authors: Chong Wen He, Pan Pan Hu, Hai Hong Zhu
Journal of Materials Processing Technology. 140(2003) 314-317
Journal of Materials Processing Technology. 195(2008) 321-326
Materials Science and Engineering A. 383(2004) 191-200
Journal of Materials Processing Technology. 170(2005) 516-523
Materials Science Forum. 631(2010) 253-258
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