Analysis of Selection of Alternative Materials Outer Support Solar Water Heater

Main Article Content

Destri Muliastri
Aldi Alfares
Emsa Ayudia Putri

Keywords

Outer support, Solar water heater, Analytical hierarchy process, CES edupack

Abstract

In producing a product, the Manufacturing Industry always prioritizes safety, quality, and profit. One product that prioritizes these criteria is Outer Support on Solar Water Heaters. Currently, the material used in the outer support of the solar water heater is SS 304, the SS 304 material is considered too expensive, so the profits obtained by the manufacturing industry are very small. In addition, SS304 material from year to year is getting harder and harder to find. In this study, an analysis of the selection of alternative outer support materials for solar water heaters was carried out in order to obtain materials that can fulfill the outer support function at a relatively cheap price, do not reduce the outer support function and are easy to obtain or many on the market. The method used in this study uses the Analytical Hierarchy Process (AHP) and CES edupack software as the process of selecting materials. In this study, several tests of mechanical properties were carried out, namely tensile tests, hardness tests, and corrosion resistance tests to determine the mechanical properties of the material, and simulations of selected materials were carried out using Solidworks software, with the aim of knowing the maximum stress value and safety factor. The results obtained from this study obtained an alternative material, namely AISI 201 for the outer support. The results of the hardness test obtained the best hardness value in AISI 201 of 177.17 VHN. The results of the tensile test obtained a yield strength value of 390.35 MPa on AISI 201 material

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References

[1] Rahmat Junaidi, Teuku Zulfadli, Muhammad Yusuf, “Kajian Perpindahan Panas Pada Solar Water Heater Dengan Sudut Kemiringan Kolektor 40°,” J. Ilm. Tek. Unida, vol. 2, no. 2, pp. 28–33, 2021, doi: 10.55616/jitu.v2i2.186.
[2] R. Ikhsan, S. Soeparman, and M. Sasongko, “Studi Kinerja Solar Water Heater Double Plate dengan Aliran Zig-Zag Beralur Balok,” J. Rekayasa Mesin, vol. 8, no. 1, pp. 37–46, 2017, doi: 10.21776/ub.jrm.2017.008.01.6.
[3] Erwin, Akbar Ramandhan, and Ratih Diah Andayani, “Pemilihan Material Ring Pada Illizarov Ring External Fixation,” Tek. Mesin, vol. 2, no. 1, pp. 1–6, 2016.
[4] K. Ridwan, A. Syarif, and A. Buhori, “Kajian Rancang Bangun Solar Water Heater (Swh) Analisis Terhadap Koefisien Laju Konveksi Dan Efisiensi Pemanasan Air Design Study of Solar Water Heater (Swh) Analysis of Convection Rate Coefficient and Water Heating Efficiency,” J. Kinet., vol. 10, no. 03, pp. 9–13, 2019.
[5] L. A. N. Wibawa, “Pengaruh Pemilihan Material Terhadap Kekuatan Rangka Main Landing Gear Untuk Pesawat Uav,” J. Teknol. Dan Terap. Bisnis, vol. 2, no. 1, pp. 48–52, 2019, doi: 10.0301/jttb.v2i1.60.
[6] T. Wiradhani, “Rancang Bangun Pemanas Air Tenaga Surya Dengan Menggunakan Kolektor Surya Plat Datar,” Tugas Akhir-Tm 090340, pp. 1–85, 2012.
[7] R. D. Anjani, A. E. Nugraha, R. P. Sari, and D. T. Santoso, “Perancangan Alat Bantu Kerja Dengan Menggunakan Metode Antropometri Dan Material Selection,” J. Teknol., vol. 13, no. 1, pp. 15–24, 2021, [Online]. Available: https://dx.doi.org/10.24853/jurtek.13.1.15-24
[8] D. Satria, I. Setiawan, R. Lusiani, and Y. Pratama, “Desain Material Selection Untuk Frame Sepeda Listrik Hybrid,” Tek. J. Sains dan Teknol., vol. 12, no. 2, p. 413, 2016, doi: 10.36055/tjst.v12i2.6606.
[9] M. T. Hillery and V. J. Mccabe, “precessh g Materials Wire drawing at elevated temperatures using different die materials and lubricants IAVOmeter I Pyrometer l ~ ] k , k . a .. ~ N ,” J. Mater. Process. Technol., vol. 55, pp. 53–57, 1995.
[10] G. Sianturi, “Seleksi Material Menggunakan Metode Analytical Hierarchy Process Dan Pugh,” Ind. Res. Work. Natl. Semin., pp. 181–186, 2011.
[11] R. W. Saaty, “The analytic hierarchy process-what it is and how it is used,” Math. Model., vol. 9, no. 3–5, pp. 161–176, 1987, doi: 10.1016/0270-0255(87)90473-8.
[12] Syed Naseer Ahmed, M. Bhargava, and S. S. K V, “Material selection using knowledge-based expert system for racing bicycle forks,” Intell. Syst. with Appl., vol. 19, no. April 2022, p. 200257, 2023, doi: 10.1016/j.iswa.2023.200257.
[13] M. Saputra and L. Bachtiar, “Analisis Penerimaan Karyawan Pada Pt. Srikandi Diamond Indah Motors Sampit Dengan Metode Analitycal Hierarchy Process (Ahp) Dan Simple Additive Weighting (Saw),” J. Sisfokom (Sistem Inf. dan Komputer), vol. 10, no. 3, pp. 312–319, 2021, doi: 10.32736/sisfokom.v10i3.1239.
[14] M. Ivanco, G. Hou, and J. Michaeli, “Sensitivity analysis method to address user disparities in the analytic hierarchy process,” Expert Syst. Appl., vol. 90, pp. 111–126, 2017, doi: 10.1016/j.eswa.2017.08.003.
[15] N. Paramitha, E. Utami, N. Y. Mahendra, A. T. Prakoso, and I. Akbar, “Material Selection and Mechanical Properties in Leaf Spring Application : a Review,” vol. 14, no. 2, 2022.
[16] D. Muliastri, S. Sutjipto, and F. Fauziah, “Percentage reduction analysis of flow stress of steel AISI 1006 by finite element method,” 4Th Int. Conf. Mater. Metall. Eng. Technol. 2020, vol. 2384, no. December, p. 060003, 2021, doi: 10.1063/5.0071545.
[17] E. Prasetyo, R. Hermawan, M. N. I. Ridho, I. I. Hajar, H. Hariri, and E. A. Pane, “Analisis Kekuatan Rangka Pada Mesin Transverse Ducting Flange (TDF) Menggunakan Software Solidworks,” Rekayasa, vol. 13, no. 3, pp. 299–306, 2020, doi: 10.21107/rekayasa.v13i3.8872.
[18] A. A. Longaray, J. De Deus Rodrigues Gois, and P. R. Da Silva Munhoz, “Proposal for using AHP method to evaluate the quality of services provided by outsourced companies,” Procedia Comput. Sci., vol. 55, no. Itqm, pp. 715–724, 2015, doi: 10.1016/j.procs.2015.07.083.
[19] S. NǍdǍban, S. Dzitac, and I. Dzitac, “Fuzzy TOPSIS: A General View,” Procedia Comput. Sci., vol. 91, no. Itqm, pp. 823–831, 2016, doi: 10.1016/j.procs.2016.07.088.
[20] W. D. Callister and J. Wiley, Materials science, vol. 79, no. SUPPL. 2002.