Studi Perbandingan Nilai Konduktivitas Termal Gypsum dan Sandwich Panel Sebagai Material Dinding Paint Dry Room
I will put the dimension here
Abstract
PT. XYZ is a company engaged in manufacturing guitar musical instruments. One of the processes in making guitars is the process of painting the guitar body which aims to give color to the guitar body and protect the guitar body from damage to external elements. After the painting, the guitar body must be dried at a certain temperature to get a nice and shiny color result. To fulfill these results, a paint dry room is needed to maintain a room temperature of 42.1°C - 42.5°C, but also does not have a heat impact on the outdoor environment. Currently, there is no standard wall material that can be used as a paint dry room wall. This study uses an experimental method to determine the thermal conductivity of gypsum and sandwich panels, then calculates the thermal conductivity and simulates a comparison with the software. The calculation result based on the thermal conductivity formula is that gypsum has a thermal conductivity of 0.059 [W/m°C] and a sandwich panel thermal conductivity of 0.142 [W/m°C]. This proves that gypsum has better insulating properties than sandwich panels. This study found that gypsum walls are more profitable to be used as paint dry room wall materials.
References
[2] B. S. Ardana, A. Akbar, and Y. S. Pramesti, “Rancang Bangun Alat Konduktivitas Thermal Logam,” Semin. Nas. Inov. Teknol., vol. 5, no. 3, pp. 182–187, 2021.
[3] A. Mursadin and R. Subagyo, “Perpindahan Panas I Hmkk 453,” Progr. Stud. Tek. Mesin Fak. Tek. Univ. Lambung Mangkurat, pp. 1–51, 2016.
[4] J. A. (2019). Putra, A. P., Nugroho, I. I., Putra, R. M., & Km, “PERANCANGAN UNIT CUTTING FIBER PADA MESIN PEMBUAT GYPSUM ( DRYWALL ) DENGAN MEKANISME CAM Program Studi Teknik Perancangan Mekanik dan Mesin , Politeknik ATMI Surakarta Abstrak Mesin pembuat gypsum dirancang untuk membantu beberapa proses yang masih manua,” pp. 1–15, 2019.
[5] R. Sihotang, B. Muhamad Suherlan, and D. Rahmawaty, “Analisis Perbandingan Penggunaan Gypsum, Grc, Acp, Panel Anyaman Rotan Sintetis Dalam Interior Rumah Dan Gedung,” J. Rekayasa Teknol. Nusa Putra, vol. 7, no. 2, pp. 43–54, 2021, doi: 10.52005/rekayasa.v7i2.132.
[6] R. Pratama, M. Dirhamsyah, and . Nurhaida, “SIFAT FISIK DAN MEKANIK PAPAN GIPSUM DARI LIMBAH KAYU AKASIA (Acacia mangium Willd) BERDASARKAN KADAR GIPSUM DAN UKURAN SERBUK KAYU,” J. Hutan Lestari, vol. 7, no. 1, pp. 305–315, 2019, doi: 10.26418/jhl.v7i1.31800.
[7] A. Setiawan, S. Setiono, and I. H. Prasetyo, “Analisis Value Engineering Pada Pelaksanaan Pekerjaan Pasangan Dinding Bata Merah Dan Sandwich Panel,” Matriks Tek. Sipil, vol. 11, no. 3, p. 314, 2024, doi: 10.20961/mateksi.v11i3.71869.
[8] P. W. Budiarti, “Thermal Signature Manusia Pada Saat Aktifitas Jogging Thermal Signature Analysis of Human Face During Jogging Activity With,” 2016.
[9] E. D. D. Rianti, “Pemanfaatan Sinar Infra Merah Terhadap Kesehatan Manusia,” J. Ilm. Kedokt. Wijaya Kusuma 2, pp. 1–12, 2022.
Copyright (c) 2024 Rizka Hazizah, Yudhi Chandra Dwiaji
This work is licensed under a Creative Commons Attribution 4.0 International License.