Perancangan Mekanisme Pengaduk Kompos Sampah Organik dengan CAD/CAE

Authors

  • Budi Basuki Deaprtemen Teknik Mesin, Sekolah Vokasi, Universitas Gadjah Mada
  • Andhi Akhmad Ismail Departemen Teknik Mesin, Sekolah Vokasi, Universitas Gadjah Mada
  • Sugiyanto Departemen Teknik Mesin, Sekolah Vokasi, Universitas Gadjah Mada
  • Dani Anggoro Hasan Departemen Teknik Mesin, Sekolah Vokasi, Universitas Gadjah Mada
  • Muhammad Alif Departemen Teknik Mesin, Sekolah Vokasi, Universitas Gadjah Mada

DOI:

https://doi.org/10.30588/jeemm.v8i2.2000

Keywords:

organic waste, mixer, CAE

Abstract

The management of organic waste into compost is one of the important solutions in an effort to reduce the negative impact of organic waste on the environment. A compost mixer is one of the technologies that can be used to speed up the process of decomposing and forming compost from organic waste. This research aims to continue previous research that has succeeded in making organic waste shredding machines. The methods used in this study include a literature survey on the basic principles in organic waste management, available technologies, and the design of stirring machine mechanisms that have been carried out previously. Based on the literature analysis, some factors in the design of the compost mixer machine are the material and shape of the composting blade, adequate construction strength, the need for sufficient rotation to achieve organic waste homogenization, and the ease of operation and maintenance. The design process utilizes CAD/CAE software to compile 3D models and simulate various operational conditions. The result of this research is the design of an efficient compost mixing machine mechanism. In addition, special attention is paid to the selection of materials and the shape of the stirring blades that are resistant to wear and corrosion. This design also takes into account the ease of access for routine cleaning and maintenance.

References

Fanny A., (2022). Rancang Bangun Alat Pengaduk Pupuk Organik. “Smart Cuty and Sustainable Development”, Prosiding Semastek 2022.

Khurmi,R.S, & Gupta, J.K. (2002). Machine Design, New Delhi: S.C Had & Company LTD. Ram Nagar.

Popov, E.P. (1995). Mekanika Teknik (Machine of Material), Jakarta, Erlangga.

Rafi, T.F., (2023). Rancang Bangun Mesin Pengaduk Sampah Organik Berkapasitas 50 Kilogram/Menit., Prosiding SEMNAS INOTEK.

Rizsky A.F, Azharuddin, Sairul E., 2023, Analisa Pengaruh Kecepatan Pada Mesin Pengaduk Bahan untuk Pupuk Organik terhadap Durasi Pengadukan, Machinery Jurnal Teknologi Terapan, Volume 4, Nomor 3, Oktober 2023.

Rizqi P.M., 2017, Kajian Permasalahan Pengelolaan Sampah dan Dampak Lingkungan di TPA, Jukung Jurnal Teknik Lingkungan, Volume 3, hal 66-74.

Sistem Informasi Pengelolaan Sampah Nasional (SIPSN), Kementerian Lingkungan Hidup dan Kehutanan. Diakses pada 4 April 2024 dari https://sipsn.menlhk.go.id/sipsn/

Sularso. (2004). Dasar Perencanaan dan Pemilihan Elemen Mesin. Jakarta: PT. Pradnya Paramita.

Xiangru Chen, Machine learning approach for a circular economy with waste recycling in smart cities, Energy Reports 8 (2023) 3127–3140, journal homepage: www.elsevier.com/locate/egyr

Xin Liu a,b , Yuancheng Xie a,b , Hu Sheng b,. Green waste characteristics and sustainable recycling options. Environment and Sustainability 11 (2023) 100098, journal homepage: www.elsevier.com/locate/resenv

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Published

2024-12-02

How to Cite

Budi Basuki, Andhi Akhmad Ismail, Sugiyanto, Dani Anggoro Hasan, & Muhammad Alif. (2024). Perancangan Mekanisme Pengaduk Kompos Sampah Organik dengan CAD/CAE . Jurnal Engine: Energi, Manufaktur, Dan Material, 8(2), 200–205. https://doi.org/10.30588/jeemm.v8i2.2000

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