ANALYSIS FRAME OF HUSKER MACHINE TYPE LM-24 USING SOLIDWORKS SOFTWARE 2018

Authors

  • Ariyanto Universitas Gunadarma
  • Tati Noviati Universitas Gunadarma

DOI:

https://doi.org/10.56127/ijst.v1i1.3

Keywords:

Rice husker machine, Support frame design, Von misses,  Displacement, Safety factor.

Abstract

Rice is a strategic commodity that directly affects the lives of the majority of the Indonesian population, therefore the program to increase rice production gets a top priority from the government to achieve food security and farmers' welfare. The work of farmers in order to increase domestic rice production, for example is the Rice Milling Unit (RMU). The technology that is usually used in producing grain into rice, one of which is a husker (husker) machine. grains of rice, in the rice mill there is a husker machine weighing 115 kg which is only based on the floor so the machine requires a support or foundation so as not to cause vibrations that can damage the structure of the building around it, therefore it is necessary to make a design the support frame is sturdy and also flexible. To determine the strength of the frame, it is necessary to analyze the calculation of the frame simulation which includes the simulation of Von misses, Displacement and Safety factor, the simulation is carried out at a load of 1127 N which produces a Von misses max value of 102,486 MPa, with the highest displacement value of 0.274 mm and the lowest value of 0. mm, and produces a safety factor value of 2,439. with the value of the safety factor, it can be said that the frame construction is safe.

References

Araullo, E.V., D.B. de Padua, and M. Graham. 1976. Rice Post Harvest Technology.Internationa Development Research Center, Ottawa. Dalam Rathoyo, 1981.IPB, Bogor

Firmansyah, Rian. 2016. Desain Dan Analisa Pemprosesan Limbah Infeksitus Menggunakan Software Autodesk Inventor. Jakarta : skripsi Universitas Gunadarma.

Mulyawan, D. P., Iqbal, I., & Munir, A. 2018. Uji Kinerja Mesin Pemecah Kulit Gabah (Husker) Tipe Rol Karet pada Penggilingan Gabah Kecil. Jurnal Agritechno, 40-48.

Nurpalah AM. 2017. Perancangan, Konstruksi Atap, Motor DC, Pulley, Sensor Hujan, Sensor Cahaya (LDR), Arduino, Software Pendukung Berupa Arduino Software (IDE) Solidwoks dan SimWise 4D.Bandung : Universitas Pasundan.

Sumiyarso, B. 2017. Rancang Bangun Mesin Penggiling Gabah dan Pemutih untuk Skala Rumah Tangga dengan Kapasitas 30 Kg/Jam. Jurnal Rekayasa Mesin, 10(1).

Sugiyanto, W. 2020. Modifikasi Alat Penggiling Padi Dan Pemoles Tipe Friksi Skala Rumah Tangga Kapasitas 200 Kg/Jam. (Doctoral dissertation, 021008 Universitas Tridinanti).

Sulistiaji, K. 2007. Alat dan Mesin Panen dan Perontokan Padi di Indonesia. Syarat Mutu dan Cara Uji (SNI 7600: 2010). Jakarta (ID): Badan.

Downloads

Published

2022-03-31

How to Cite

Ariyanto, & Tati Noviati. (2022). ANALYSIS FRAME OF HUSKER MACHINE TYPE LM-24 USING SOLIDWORKS SOFTWARE 2018. International Journal Science and Technology, 1(1), 19–26. https://doi.org/10.56127/ijst.v1i1.3

Similar Articles

1 2 3 4 > >> 

You may also start an advanced similarity search for this article.

Most read articles by the same author(s)

Obs.: This plugin requires at least one statistics/report plugin to be enabled. If your statistics plugins provide more than one metric then please also select a main metric on the admin's site settings page and/or on the journal manager's settings pages.