Pengaruh Variasi Suhu Curing Pada Komposit Berpenguat Serat Karbon Forged Menggunakan Metode Hand Lay Up dan Vaccum Bag Terhadap Pengujian Bending

Muhidin, Ilhan (2026) Pengaruh Variasi Suhu Curing Pada Komposit Berpenguat Serat Karbon Forged Menggunakan Metode Hand Lay Up dan Vaccum Bag Terhadap Pengujian Bending. Undergraduate thesis, Politeknik Negeri Jember.

[img] Text (Abstract)
Abstract.pdf - Submitted Version
Available under License Creative Commons Attribution Share Alike.

Download (312kB)
[img] Text (Bab 1 Pendahuluan)
Bab 1 Pendahuluan.pdf - Submitted Version
Available under License Creative Commons Attribution Share Alike.

Download (219kB)
[img] Text (Daftar Pustaka)
Daftar Pustaka.pdf - Submitted Version
Available under License Creative Commons Attribution Share Alike.

Download (431kB)
[img] Text (Laporan Lengkap)
Laporan Lengkap.pdf - Submitted Version
Restricted to Registered users only

Download (2MB) | Request a copy

Abstract

With the rapid growth of industrial and technological sectors, the demand for higher-performance materials is also increasing. This is driving materials research with the aim of developing materials that meet the diverse requirements of modern industry and possess the optimal composition. One such possibility is composite materials. The aim of this study is to investigate the relationship between the curing temperature and the flexural strength of forged carbon fiber composites. The samples were produced using hand lay-up and vacuum bagging processes with epoxy resin as the matrix and forged carbon fibers as reinforcement. The curing process was carried out for one hour at three temperatures (60 °C, 80 °C, and 100 °C) to determine the changes in mechanical properties. Bending tests were performed according to the three-point bending method as per ASTM D790. The results show that increasing the curing temperature leads to a decrease in flexural strength in both manufacturing processes. In hand layup, the highest average stress value was 175.70 MPa at 60 °C and 118.27 MPa at 100 °C. In vacuum bagging, the highest average stress value was 185.30 MPa at 60 °C and the lowest was 160.33 MPa at 100 °C. The decrease in flexural strength is due to excessively rapid resin curing, which leads to brittleness and impairs the adhesion between the fiber and matrix. Furthermore, vacuum bagging produces a higher composite quality than hand layup because it reduces air inclusions and allows for a more uniform resin distribution

Item Type: Thesis (Undergraduate)
Contributors:
ContributionContributorsNIDN/NIDK
Thesis advisorBudiprasojo, AzamataufiqNIDN0011088402
Uncontrolled Keywords: Karbon forged
Subjects: 410 - Rumpun Ilmu Teknik > 430 - Ilmu Keteknikan Industri > 431 - Teknik Mesin (dan Ilmu Permesinan Lain)
410 - Rumpun Ilmu Teknik > 430 - Ilmu Keteknikan Industri > 445 - Teknik Material (Ilmu Bahan)
Divisions: Jurusan Teknik > Prodi D4 Mesin Otomotif > Tugas Akhir
Depositing User: Ilhan Muhidin
Date Deposited: 11 Jun 2026 00:43
Last Modified: 11 Jun 2026 00:43
URI: https://sipora.polije.ac.id/id/eprint/56277

Actions (login required)

View Item View Item