Effect on dynamic, quasi-static elastic moduli of glass fiber laminates

被引:3
作者
Villalon, Mario [1 ]
Salas-Zuniga, Roberto [1 ,2 ]
Reyes-Zamora, Ulises [3 ]
Radillo, Rodolfo [4 ]
Luis Reyes-Araiza, Jose [5 ]
Manzano-Ramirez, Alejandro [6 ]
机构
[1] Univ Aeronaut Queretaro, Tequisquiapan, Mexico
[2] Ctr Ingn & Tecnol, Santiago De Queretaro, Mexico
[3] Secretaria Def Nacl, Fuerza Aerea Mexicana, Zumpango, Mexico
[4] Grp Carolina SA CV, Naucalpan De Juarez, Mexico
[5] Univ Autonoma Queretaro, Fac Ingn, Direcc Invest & Posgrad, Queretaro, Mexico
[6] Inst Politecn Nacl, Ctr Invest & Estudios Avanzados, Queretaro, Mexico
关键词
composite materials; hybrid materials; mechanical properties; EPOXY NOVOLAC COMPOSITES; MECHANICAL-BEHAVIOR; COIR; PERFORMANCE;
D O I
10.1680/jgrma.15.00020
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The use of natural fibers has attracted great interest due to their damping properties, low density and moderate strength. The effect of incorporating chopped natural fibers, as disperse-reinforced phase, on the dynamic or the quasi-static elastic modulus of glass fiber (GF) laminates is presented. The experimental set-up allowed the comparison of adding either coir or extra epoxy when preparing hybrid composite materials using the vacuum bag technique. Squares of 32 cm(2) plain weave GF pre-impregnated with epoxy resin were used in a stacking sequence [0](4). The volume fraction of the natural fiber was 30%, and 254-mm-long and 25.4-mm-wide samples were cut and tested at vibration conditions in a cantilever beam arrangement. The vibration frequency was measured by an ADXL335 accelerometer at the z axis, perpendicular to the sample test plane; the elastic modulus was estimated by the cantilever model. The results showed that the samples with coir fiber had an increase in the dynamic elastic modulus value of between 150% and 171% with regard to that of the GF samples without fiber; higher volumes of epoxy improved the coir fiber adhesion preventing delamination, although this lowered the dynamic elastic value. The tensile test confirmed that 30% epoxy addition increased the stiffness of glass/coir lowering their dynamic and quasi-static Young's modulus.
引用
收藏
页码:113 / 119
页数:7
相关论文
共 18 条
  • [1] [Anonymous], 2014, Test Method for Tensile Properties of Orientation Fiber Reinforced Polymer Matrix Composite Materials
  • [2] Coir Fiber Reinforced Polypropylene Composite Panel for Automotive Interior Applications
    Ayrilmis, Nadir
    Jarusombuti, Songklod
    Fueangvivat, Vallayuth
    Bauchongkol, Piyawade
    White, Robert H.
    [J]. FIBERS AND POLYMERS, 2011, 12 (07) : 919 - 926
  • [3] Effect of Fiber Length on Mechanical Behavior of Coir Fiber Reinforced Epoxy Composites
    Biswas, Sandhyarani
    Kindo, Sanjay
    Patnaik, Amar
    [J]. FIBERS AND POLYMERS, 2011, 12 (01) : 73 - 78
  • [4] Dynamic mechanical behavior of short coir fiber reinforced natural rubber composites
    Geethamma, VG
    Kalaprasad, G
    Groeninckx, G
    Thomas, S
    [J]. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2005, 36 (11) : 1499 - 1506
  • [5] Physico-mechanical properties of chemically treated palm and coir fiber reinforced polypropylene composites
    Haque, Md. Mominul
    Hasan, Mahbub
    Islam, Md. Saiful
    Ali, Md. Ershad
    [J]. BIORESOURCE TECHNOLOGY, 2009, 100 (20) : 4903 - 4906
  • [6] Mechanical property evaluation of natural fiber coir composite
    Harish, S.
    Michael, D. Peter
    Bensely, A.
    Lal, D. Mohan
    Rajadurai, A.
    [J]. MATERIALS CHARACTERIZATION, 2009, 60 (01) : 44 - 49
  • [7] Harris Cyril M., Harris' Shock and Vibration Handbook, V5th
  • [8] Islam N, 2010, COMPOS PART A-APPL S, V41, P192
  • [9] Effect of glass hybridization and staking sequence on mechanical behaviour of interply coir-glass hybrid laminate
    Jayabal, S.
    Natarajan, U.
    Sathiyamurthy, S.
    [J]. BULLETIN OF MATERIALS SCIENCE, 2011, 34 (02) : 293 - 298
  • [10] Influence of fiber parameters on tensile, flexural, and impact properties of nonwoven coir-polyester composites
    Jayabal, S.
    Natarajan, U.
    [J]. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2011, 54 (5-8) : 639 - 648