Thermal and environmental analyses of epoxy-based composites

被引:9
作者
Murugan, S. [1 ]
Thyla, P. R. [2 ]
Mahendrakumar, N. [2 ]
Manojkumar, K. N. [2 ]
Siddarth, A. [2 ]
机构
[1] Directorate Tech Educ, Dept Mech Engn, Seshasayee Inst Technol Tiruchirappalli, Chennai, Tamil Nadu, India
[2] Anna Univ, PSG Coll Technol Coimbatore, Dept Mech Engn, Chennai, Tamil Nadu, India
关键词
Pebble stone; Epoxy; Thermal conductivity; Water absorption; Porosity; MACHINE-TOOL; PERFORMANCE; CONCRETE; CONDUCTIVITY; OPTIMIZATION; TAGUCHI;
D O I
10.1007/s13726-020-00876-8
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This study aims to obtain pebble and epoxy composites with low thermal conductivity, low water absorption and minimal porosity. The effects of filler size, weight percentage of pebble and epoxy, aggregate size and curing time of the composites were evaluated. The ANOVA ofS/Nratio was also performed to determine the effect of thermal conductivity, water absorption and porosity of the composites. The experiments were designed as per the Taguchi L27 orthogonal array. The results indicated that the effect of thermal conductivity improved slightly with 35% (wt) of epoxy resin present in the composite and the higher thermal conductivity was observed in the composite with 15% (wt) of epoxy resin. Water absorption and porosity results were found which showed that this composite with 15% (wt) epoxy resin content yielded better results when compared to the composite with 35% (wt) epoxy resin content. The embedded composites were characterized using Fourier transform infrared (FTIR) spectra to study the effect of chemical treatment of pebble/epoxy composite. The morphological studies of the fractured surfaces of the epoxy composites were performed by scanning electron microscopy.
引用
收藏
页码:93 / 103
页数:11
相关论文
共 37 条
[1]   Measurements of thermal properties of insulation materials by using transient plane source technique [J].
Al-Ajlan, Saleh A. .
APPLIED THERMAL ENGINEERING, 2006, 26 (17-18) :2184-2191
[2]   Ultra-thin electrospun nanofibers for development of damage-tolerant composite laminates [J].
An, D. ;
Lotfian, S. ;
Mesbah, D. ;
Ayre, D. ;
Yoosefinejad, A. ;
Thakur, V. K. ;
Nezhad, H. Yazdani .
MATERIALS TODAY CHEMISTRY, 2019, 14
[3]  
[Anonymous], 2014, INT J MECH ENG ROBOT
[4]   Optimisation of parameters affecting surface roughness of Co28Cr6Mo medical material during CNC lathe machining by using the Taguchi and RSM methods [J].
Asilturk, Ilhan ;
Neseli, Suleyman ;
Ince, Mehmet Alper .
MEASUREMENT, 2016, 78 :120-128
[5]  
Badiea A., 2016, APPL SCI TECHNOL, V16, P1, DOI DOI 10.9734/BJAST/2016/25779
[6]   Transient plane source measurements of the thermal properties of hydrating cement pastes [J].
Bentz, D. P. .
MATERIALS AND STRUCTURES, 2007, 40 (10) :1073-1080
[7]   Thermal properties of high-volume fly ash mortars and concretes [J].
Bentz, D. P. ;
Peltz, M. A. ;
Duran-Herrera, A. ;
Valdez, P. ;
Juarez, C. A. .
JOURNAL OF BUILDING PHYSICS, 2011, 34 (03) :263-275
[8]   Hard turning of an alloy steel on a machine tool with a polymer concrete bed [J].
Bruni, C. ;
Forcellese, A. ;
Gabrielli, F. ;
Simoncini, M. .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2008, 202 (1-3) :493-499
[9]   Effect of Functionalized Graphene with Modified Clay on Flammability of Copper Clad Laminated Novolac Cured Epoxy Composites [J].
Bunekar, Naveen ;
Tsai, Tsung-Yen ;
Huang, Hsien-Ping .
POLYMER-PLASTICS TECHNOLOGY AND MATERIALS, 2019, 58 (05) :547-559
[10]   Assessment of structure effects on the thermal conductivity of two-phase porous geomaterials [J].
Cote, Jean ;
Konrad, Jean-Marie .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2009, 52 (3-4) :796-804