THE EFFECT OF ARALDITE, COAL TAR, AND EPOXY RESIN SURFACE COATING ON BAMBOO REINFORCED BEAM

Satmoko, Xenia Adelynn (2021) THE EFFECT OF ARALDITE, COAL TAR, AND EPOXY RESIN SURFACE COATING ON BAMBOO REINFORCED BEAM. S1 thesis, Universitas Atma Jaya Yogyakarta.

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Abstract

Steel is one of the main materials that are often used for reinforced concrete, but lately, steel has had an expensive price. Also, the use of steel is very limited in the construction industry. Therefore, the selection of alternative materials was carried out. One of the interesting materials to use is bamboo. Bamboo is one of the natural materials that is often used as a construction material in developing countries. With low prices and the availability of bamboo which is easily found in Indonesia, bamboo can be an alternative to reinforced concrete. For make bamboo stronger, admixture or special treatment for bamboo can be done. One of the methods used in this research is to apply a surface coating to bamboo. The surface coating that is used for this research consists of araldite, coal tar, and epoxy resin. In this research, a flexural strength test was carried out for each bamboo reinforced beam. From the test, the result obtained for the deflection and the loads up to the first crack, for bamboo reinforced beams without surface coating or plain can withstand 43.145 kN with a deflection of 165 mm, for bamboo reinforced beams with araldite surface coating can withstand 54.912 kN with a deflection of 192 mm, for bamboo reinforced beams with epoxy resin coating can withstand 49.028 kN with a deflection of 165 mm, and for bamboo reinforced beams with coal tar coating it can only withstand 25.495 kN with a deflection of 64 mm.

Item Type: Thesis (S1)
Uncontrolled Keywords: Bamboo, Bamboo Reinforced Beam, Surface Coating, Flexural Strength
Subjects: Civil Engineering > Structure
Divisions: Fakultas Teknik > Teknik Sipil Internasional
Depositing User: Editor 3 uajy
Date Deposited: 29 Sep 2022 11:55
Last Modified: 29 Sep 2022 11:55
URI: http://e-journal.uajy.ac.id/id/eprint/27520

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