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RANCANG BANGUN 3D PRINTER

ADHIATMA, ARDIANSYAH BAGAS and PUJIATI, MUTIARA (2022) RANCANG BANGUN 3D PRINTER. Undergraduate thesis, Universitas Diponegoro.

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Abstract

Proses Perancangan dan pembuatan 3D Printer menunjukkan bahwa pada proses
perancangan 3D printer didapatkan hasil berupa area kerja 30 cm x 30 cm x 35 cm
yang terbagi atas rangka bawah, rangka atas, serta rangka utama, Pembuatan 3d
printer yaitu Merancang desain 3D Printer terlebih dahulu menggunakan software
Autocad, Menyiapkan komponen dan jenis bahan sesuai desain yang telahbuat,
merakit komponen hingga menjadi mesin 3D Printer, Pengujian mesin 3D Printer
diuji dengan menggunakan bahan PLA, Pengujian dilakukan dengan
membandingkan parameter kesesuaian hasil cetak mesin 3D Printer dan
Menganalisis hasil cetak 3D Printer. Kemudian pengujian 3D printer dilakukan
dengan menggunakan aplikasi Cura. Penggunaan aplikasi Cura mudah dimengerti
dan banyak sumber tutorial yang dapat diakses. Hasil pengujian 3D printer yang
dilakukan ternyata membuktikan terdapat masalah pada hasil cetak terdapat
stringing. Munculnya benang plastik yang tipis yang seharusnya tidak dicetak oleh
print head harusnya hanya melintas dari satu area ke area yang lain. Oleh karena
itu harus menyesuaikan retraksi dan suhu temperatur secara optimal agar tidak
terjadi stringing pada hasil cetak 3D Printer.
Kata kunci : DAFTAR PUSTAKA
A. Elkaseer, S. Schneider, and G. Scholz, 2020, Applied sciences experiment-based
process modeling and optimization for high-quality and resource-Efficient,
Appl. Sci..
Agarwala, Mukesh K. 1996, Structural quality of parts processed by fused
deposition, Rapid Prototyping Journal, Emerald Insight, University of
Dayton, Ohio, USA
Amri. A.A.N, dan Sumbodo. W, 2018, Perancangan 3D Printer Tipe Core XY
Berbasis Fused Deposition Modeling (FDM) Menggunakan Software
Autodesk Inventor, Jurnal Dinamika Vokasional Teknik Mesin. 3(2), 110-
115.
Dede Sumantri, 2012, Peningkatan Kinerja Mesin Rapid Prototyping Berbasis
Fused Deposition Modelling, Universitas Indonesia
Excell, Jon, 2013, The rise of additive manufacturing. The Engineer.
Jacobs, Paul Francis, 1992, Rapid Prototyping & Manufacturing: Fundamentals of
Stereolithography. Society of Manufacturing Engineers.
Joan Horvath, 2014, Mastering 3D Printing Modeling, Printing, and Protyping
with Reprap-Style 3D Printer, Pasadena, California, USA.
Masood, S.H., 2014, Advances in Fused Deposition Modeling. Comprehensive
Materials Processing.
Muliyawan, M.D., Pramono, G.E., dan Sumadi, 2017, Rancang Bangun Konstruksi
Rangka Mesin 3D Printer Tipe Cartesian Berbasis Fused Deposition
Modeling (FDM). Jurnal Teknik Mesin (JTM). 6(4), 252-257
N. Li, Y. Li, danS. Liu, 2016, Rapid prototyping of continuous carbon fiber59
reinforced polylactic acid composites by 3D printing, J. Mater. Process.
Technol., vol. 238.
Rahim, T. N. A. T., Abdullah, A. M., dan Md Akil, H, 2019, Recent Developments
in Fused Deposition Modeling-Based 3D Printing of Polymers and Their
Composites. Polymer Reviews, 1–36.
R. Melnikova, A. Ehrmann, dan K. Finsterbusch, 2014, 3D printing of textile-based
structures by Fused Deposition Modelling (FDM) with different polymer
materials, IOP Conf. Ser. Mater. Sci. Eng., vol. 62, no. 1, doi: 10.1088/1757-
899X/62/1/012018.
Setiawan, A. 2017. Pengaruh Parameter Proses Ekstrusi 3D Printer Terhadap
Sifat Mekanis Cetak Komponen Berbahan Filament Pla (Poly Lactide Acid).
Jurnal Teknika STTKD. 4(2), 20-27.
Setyoadi, Y., Carsoni, Amiruddin, M., dan Harjanto, I. 2015. Perancangan dan
Manufaktur Printer 3 Dimensi Tipe Fused Deposition Modeling (FDM),
Proceeding, Semarang: Seminar Nasional Hasil Penelitian (SNHP-V),
ISBN:978‐ 602‐0960‐29‐6, pp.547- 551.
Taufik,I., 2018, Model-model3D Printer, https://3dprinting.ft.ugm.ac.id/2018
/10/09/model-model-3d-printer, diakses pada 5 Juli 2022

Item Type: Thesis (Undergraduate)
Uncontrolled Keywords: DAFTAR PUSTAKA A. Elkaseer, S. Schneider, and G. Scholz, 2020, Applied sciences experiment-based process modeling and optimization for high-quality and resource-Efficient, Appl. Sci.. Agarwala, Mukesh K. 1996, Structural quality of parts processed by fused deposition, Rapid Prototyping Journal, Emerald Insight, University of Dayton, Ohio, USA Amri. A.A.N, dan Sumbodo. W, 2018, Perancangan 3D Printer Tipe Core XY Berbasis Fused Deposition Modeling (FDM) Menggunakan Software Autodesk Inventor, Jurnal Dinamika Vokasional Teknik Mesin. 3(2), 110- 115. Dede Sumantri, 2012, Peningkatan Kinerja Mesin Rapid Prototyping Berbasis Fused Deposition Modelling, Universitas Indonesia Excell, Jon, 2013, The rise of additive manufacturing. The Engineer. Jacobs, Paul Francis, 1992, Rapid Prototyping & Manufacturing: Fundamentals of Stereolithography. Society of Manufacturing Engineers. Joan Horvath, 2014, Mastering 3D Printing Modeling, Printing, and Protyping with Reprap-Style 3D Printer, Pasadena, California, USA. Masood, S.H., 2014, Advances in Fused Deposition Modeling. Comprehensive Materials Processing. Muliyawan, M.D., Pramono, G.E., dan Sumadi, 2017, Rancang Bangun Konstruksi Rangka Mesin 3D Printer Tipe Cartesian Berbasis Fused Deposition Modeling (FDM). Jurnal Teknik Mesin (JTM). 6(4), 252-257 N. Li, Y. Li, danS. Liu, 2016, Rapid prototyping of continuous carbon fiber59 reinforced polylactic acid composites by 3D printing, J. Mater. Process. Technol., vol. 238. Rahim, T. N. A. T., Abdullah, A. M., dan Md Akil, H, 2019, Recent Developments in Fused Deposition Modeling-Based 3D Printing of Polymers and Their Composites. Polymer Reviews, 1–36. R. Melnikova, A. Ehrmann, dan K. Finsterbusch, 2014, 3D printing of textile-based structures by Fused Deposition Modelling (FDM) with different polymer materials, IOP Conf. Ser. Mater. Sci. Eng., vol. 62, no. 1, doi: 10.1088/1757- 899X/62/1/012018. Setiawan, A. 2017. Pengaruh Parameter Proses Ekstrusi 3D Printer Terhadap Sifat Mekanis Cetak Komponen Berbahan Filament Pla (Poly Lactide Acid). Jurnal Teknika STTKD. 4(2), 20-27. Setyoadi, Y., Carsoni, Amiruddin, M., dan Harjanto, I. 2015. Perancangan dan Manufaktur Printer 3 Dimensi Tipe Fused Deposition Modeling (FDM), Proceeding, Semarang: Seminar Nasional Hasil Penelitian (SNHP-V), ISBN:978‐ 602‐0960‐29‐6, pp.547- 551. Taufik,I., 2018, Model-model3D Printer, https://3dprinting.ft.ugm.ac.id/2018 /10/09/model-model-3d-printer, diakses pada 5 Juli 2022
Subjects: Engineering
Divisions: School of Vocation > Diploma in Mechanical Engineering
Depositing User: Oktavia Perpus Vokasi
Date Deposited: 11 Aug 2023 03:34
Last Modified: 23 Oct 2023 02:01
URI: https://eprints2.undip.ac.id/id/eprint/12734

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