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All Journal Serambi Engineering
Iman Dirja
Program Studi Teknik Mesin, Universitas Singaperbangsa Karawang, Indonesia

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Pengaruh Variasi Sandwich Panel Struktur Honeycomb dan Banana Tree Trunks Menggunakan Board Paper Diperkuat Polmeric Foam Terhadap Kekuatan Mekanik Muhammad Eza Firmansyah; Rizal Hanifi; Iman Dirja
Jurnal Serambi Engineering Vol. 9 No. 3 (2024): Juli 2024
Publisher : Faculty of Engineering, Universitas Serambi Mekkah

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Abstract

This research uses board paper as the main material for the sandwich panel structure, which is filled with polymeric foam in the sandwich panel, which will then be subjected to mechanical testing, namely bending and compression, to determine the strength of the sandwich panel structure. The test results according to the ASTM C393 M-16 standard show that the bending strength for the honeycomb shape is 11.93 kN, while for the banana tree trunk core shape the bending strength value is 12.34 (kN). Based on the results of the compression test according to the ASTM C365 M-16 standard. The compressive stress strength value obtained was 6,009 N/mm2 for the honeycomb core shape and for the banana tree trunks core shape, the compressive stress strength value was 7,356 N/mm2. It is necessary to use strengthening methods that are stronger and resistant to delamination and shifting on the strength and durability of the material.
Analisis Kekuatan Rangka Mesin Padi Menggunakan Software Solidwork 2022 Dafa Intifada; Reza Setiawan; Iman Dirja
Jurnal Serambi Engineering Vol. 9 No. 3 (2024): Juli 2024
Publisher : Faculty of Engineering, Universitas Serambi Mekkah

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Strength analysis of rice machine frames using SolidWorks 2022 software is a study that aims to evaluate the structural strength of rice machine frames using computer simulation methods. SolidWorks 2022 is used as a platform to perform strength analysis by considering the operational loads applied to the machine during the use process. This research involved detailed 3D modeling of the rice machine frame and load simulations to predict its structural response. Factors such as load distribution, torque, and forces applied to various parts of the frame are explored to understand potential points of failure or deformation that may occur. The analysis results are expected to provide insight into the structural integrity of the rice machine frame in the face of different operational conditions. By utilizing SolidWorks 2022 technology, this research also aims to improve the overall rice machine design, increase operational efficiency, and reduce the risk of failure which can affect machine performance and reliability in the field