Karakteristik Mekanik Komposit Polyester E-Glass dengan Stacking Sequences [0°, 90°, 0°]



DOI: https://doi.org/10.25077/metal.3.2.94-100.2019

Author(s)

Ilhamdi Ilhamdi (Universitas Andalas)
Dony Hidayat (LAPAN)
Fadli Febriyan (Universitas Andalas)

Abstract


There is one fact that lead composite material to be a unique material among others. Its properties could be settable or flexible with arrangement of composition, orientation and production procedure. Meanwhile other materials seemed to have fixed set after fabrication. Nowadays, one of the widely developed structural composite is polymer based composite with inorganic reinforcement. It is useful in automotive or aircraft component because reasonable strength and much lower density compare to metal. 

In this study, e-glass fibers were manually laminated with polyester resin in open die using brush. This method is widely known as hand lay up. Fibers were set in stacking sequences of 0o, 90o, and 0o, means a fiber is in perpendicular direction to its neighbor fibers. After complete dried up, composite panel is cut of accordingly to ASTM standard for tensile and compressive testing specimen. In order to examine hole effect, center of gage length specimen was drilled off. Namely, specimen will be distinguished as no hole specimen and open hole specimen.   

Results showed tensile strength of 200.58 MPa and 155.22 MPa, compressive strength of 335.73 MPa and 254.1 MPa, for no hole and open hole specimen respectively. Introducing open hole reduces mechanical strength of composite both tensile and compressive. It could be mechanical consideration for safety design of material composite application. Failure mechanism of composite is also influenced by existence of open hole. When no hole specimen will experience failure at near to grip (LAT), open hole specimen has fracture line propagate from hole into width (LGM).

Keywords


Komposit hand lay up; Sequences 0o, 90o, 0o; Tensile; Compressive; Failure mode

Full Text:

PDF

References


C.O. Ijagbemi et al., “Design and simulation of fatigue analysis for a vehicle suspension system (VSS) and its effect on global warming,” Procedia Engineering, Vol. 159 pp. 124 – 132, 2016

A.N. Oumer et al., “Bio-based liquid fuels as a source of renewable energy: A review,” Renewable and Sustainable Energy Reviews, Vol. 88, pp. 82-98, 2018

W.D. Callister, “Materials science and engineering : an introduction,”John Wiley & Sons, Inc., 2007

A.S. Budiyantara et al., “Engineering Development of Lapan Surverillance UAV-02 (LSU-02),” APISAT-2013.

Ilhamdi et al. “Karakteristik Fisik dan Mekanik Komposit Polyester Serat E-Glass dengan Keberadaan Open Hole pada Center,” Penelitian Mandiri JTM FT-Unand, 2019.

K. Diharjo, “Kajian Pengaruh Teknik Pembuatan Lubang Terhadap Kekuatan Tarik Komposit Hibrid Serat Gelas Dan Serat Karung Plastik,” Universitas Sebelas Maret, SOLO Vol. 11, 2006.

S.M. Kumar et al., “Development of E-Glass Woven Fabric / Polyester Resin Polymer Matrix Composite and Study of Mechanical Properties,” Materials Today: Proceeding Vol. 5 Issue 5 part 2 pp 13367-13374, 2018.

M. Tanoglu et al., “Compressive mechanical behaviour of E-glass/polyester composite laminates tailored with a thermoplastic preforming binder,” Materials Science and Engineering: A Vol. 363, Issues 1–2, pp. 335-344, 2003


StatisticsArticle Metrics

This article has been read : 194 times
PDF file viewed/downloaded : 111 times

Copyright (c) 2020 Ilhamdi Ilhamdi, Dony Hidayat, Fadli Febriyan

 


View METAL's Stats

 

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.