Experimental Study on The Effect of Epoxy Zinc and Thinner Ratio on Platform Structure Coating Quality
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Abstract
Paint serves as a coating material that provides aesthetic value, adhesive strength, and protection to surfaces from environmental corrosion. The one of critical aspect is the paint and thinner ratio, which can influence adhesive strength and the performance of protection. This experimental study investigates the effect of varying ratios of epoxy zinc paint (Avantguard 750) and thinner (08450) on adhesion strength and drying rate. Paint was mixed with thinner at 10%, 20%, 30%, 40%, and 50% of the paint's volume. Steel plates were used as test specimens, coated via spray method. Adhesion quality was assessed using the “X–Cut Test” and “Cross Cut Tape Test” based on ASTM D3359 Methods A and B and the adhesion tests showed excellent results with a rating 5, indicating no peeling. Drying quality was evaluated using the “Solvent Rub” method according to ASTM D4752-20. Dry tests also have positive results with a rating 5 within 6 to 24 hours. The findings suggest that variations in thinner concentration do not significantly affect adhesion strength or drying time.
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Accepted 2025-07-20
Published 2025-07-29
References
[1] ASTM International, "ASTM D3359 – 17: Standard Test Methods for Rating Adhesion by Tape Test,"
ASTM International, West Conshohocken, PA, 2017.
[2] ASTM D4417 – method C. Standard Test Methods for Field Measurement of Surface Profile of Blast
Cleaned Steel. America: The United States of America Legally Binding Document.
[3] ASTM International, "ASTM D4752 – 20: Standard Test Method for Measuring MEK Resistance of
Ethyl Silicate (Inorganic) Zinc-Rich Primers by Solvent Rub," ASTM International, West
Conshohocken, PA, 2020.
[4] Buntarto. “Pengecatan Ulang Bodi Kendaraan”. Cetakan Pertama. Yogyakarta:Pustaka baru press,
2016.
[5] Darmawan. “Studi Perbandingan Three Coat System dan Two Coat System pada Pengecatan di
Lingkungan Laut”. Skripsi. Jurusan Teknik Perkapalan. Institut Teknologi Sepuluh November.
Surabaya, 2007.
[6] Gunadi. “Dasar-Dasar Teknik Pengecatan”. Jakarta: Gramedia Pustaka Utama, 2008.
[7] N. J. Habibie, "Pengaruh Perbandingan Campuran Cat dan Thinner terhadap Kualitas Hasil Pengecatan,"
Undergraduate Thesis, Department of Mechanical Engineering, Institut Teknologi Sepuluh Nopember,
Surabaya, 2014.
[8] Irawan, D.A. “Pengaruh Jarak Penyemprotan Spray Gun dan Perbandingan Campuran Cat dengan
Thinner terhadap Kualitas Hasil Pengecatan”. Jurnal Teknik Mesin 04(03): 55-61, 2016.
[9] ISO 8501-1:2007, Preparation of Steel Substrates Before Application of Paints and Related Products
— Visual Assessment of Surface Cleanliness — Part 1: Rust Grades and Preparation Grades of
Uncoated Steel Substrates and of Steel Substrates After Overall Removal of Previous Coatings,
International Organization for Standardization, Geneva, 2007.
[10] Noor, R.A.M. dan E. Tarmedi. “Pengaruh Ketebalan Lapisan Terhadap daya Lekat Cat”. Penelitian
Mandiri. Jurusan Pendidikan Teknik Mesin. Universitas Pendidikan Indonesia. Bandung, 2007.
[11] Pratama, R.A. dan S. Kromodiharjo. “Studi Eksperimen Pengaruh Tebal Cat dan Kekasaran pada Pelat
Baja Karbon Rendah terhadap Kerekatan Cat dan Biaya Proses di PT. Swadaya Graha”. Jurnal Teknik
ITS 05(02): 311-315, 2016.
[12] Said, S.R. “Pengaruh Jenis Cat dan Jenis Wahana terhadap Daya Lekat, Kekerasan dan Elastisitas Cat”.
Jurnal Pendidikan Teknik Mesin 20(01): 118-140, 2011.
[13] Saputra, A. R., & Yohan, Y. “Analisa Pengaruh Kekuatan Bonding Terhadap Waktu Pengeringan dan
Ketebalan Lapisan Cat Pada Plat Baja Karbon”. Piston: Journal of Technical Engineering, 6(2), 35–43,
2023.
[14] Stoye dan Freitag. Paints Coating and Solvent. Edisi 2. Federal Republik of Germany: WILEY-VCH,
1998.
[15] SSPC: The Society for Protective Coatings. 2002. SSPC-VIS 1 - Guide and Reference Photographs for
Steel Surfaces Prepared by Dry Abrasive Blast Cleaning. The Society for Protective Coatings