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Pengaruh Parameter Proses terhadap Kuat Tarik Produk Hasil 3d Printing Menggunakan Filamen ASA (Acrylonitrile Styrene Acrylate) Wahyu Riyan Saputra; Zaldy Sirwansyah Suzen; Pristiansyah Pristiansyah
J-Proteksion Vol 7, No 2 (2023): J-Proteksion
Publisher : Universitas Muhammadiyah Jember

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32528/jp.v7i2.9285

Abstract

3D Printing is an additive manufacturing technique that can be used to convert computer aided design (CAD) data and then print it by adding material layer by layer to form a 3D product. The FDM system is used for a 3D testing system because it is easy to use, the FDM system is also used as a rapid prototyping for making prototypes with polymer as the material. In this study the filament used was ASA (Acrylonitrile Styrene Acrylate) filament, the method used in this research to optimize process parameters was the Taguchi L9 OA method. The process parameters used are nozzle temperature, bed temperature, print speed, colling speed. This study aims to determine the tensile test stress strength of 3D printing product materials made from ASA (Acrylonitrile Styrene Acrylate) filaments with different parameters using the taguchi method and to find out how influential they are in printing with ASA filaments. The results showed that the optimal parameters for the tensile test using ASA (Acrylonitrile Styrene Acrylate) filaments were: nozzle temperature (240°C), bed temperature (50°C), print speed (60mm/s), colling speed (50°C) .
MESIN PENCACAH PELEPAH DAN DAUN KELAPA SAWIT UNTUK PAKAN KAMBING DI DESA PUDING BESAR Pristiansyah Pristiansyah; Nanda Pranandita; Muhammad Haritsah Amrullah; Hasdiansah Hasdiansah
Jurnal Pengabdian Masyarakat Polmanbabel Vol. 3 No. 01 (2023): DULANG : Jurnal Pengabdian Kepada Masyarakat
Publisher : Pusat Penelitian dan Pengabdian Kepada Masyarakat

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33504/dulang.v3i01.284

Abstract

In the process of raising goats, one of the factors that affect the process of goat growth and development is the availability of feed in the surrounding environment. In an effort to meet this availability, it is necessary to have a food source that is always available and usually comes from plants that exist in nature, such as grass or leaves. The availability of animal feed is not immune from the influence of weather conditions and the level of availability of weeds around it which are needed in large quantities. To deal with this, some farmers use alternative feed sources, one of which has been used is palm fronds and leaves and other organic waste. With the size of the palm frond which is quite large, it is necessary to chop it up so that it can be consumed directly by goats (Latifa S, Anto A, David S, Jeni W, Alexander Y). Of course, manual counting can be done, but it is not very effective and requires a lot of time and energy. Based on these problems, it is necessary to mechanization of the midrib and leaf counting process in order to facilitate the process. The purpose of science and technology for the community in this goat farmer group in general is to improve the quality and capacity of livestock production. In addition, by helping the availability of goat feed through the use of alternative feed sources other than the sources that have been available so far and applying appropriate technology for the process of chopping palm fronds and other organic waste. This machine is capable of chopping palm fronds and leaves with a maximum size of 2 cm. Based on the results of interviews with farmers, this size is a size that can be chewed or processed by goats when eating. Then, through this IbM activity, it is expected to be able to establish cooperation between partners and proposers from educational institutions. Partners can develop their business because the need for animal feed is more fulfilled through animal feed chopper machines, while institutions can directly apply science and technology and apply their knowledge into appropriate technology and can introduce Polmanbabel educational institutions more broadly to the community.
Pengaruh Bentuk Infill Terhadap Kekuatan Lentur Produk 3D Printing Menggunakan Filamen Super Tough PLA Pristiansyah Pristiansyah; Hasdiansah Hasdiansah; Sugianto Sugianto; Naufal Rafiq Muhammad
JURNAL ILMIAH MOMENTUM Vol 19, No 1 (2023)
Publisher : Universitas Wahid Hasyim

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36499/jim.v19i1.7819

Abstract

Penelitian tentang produk cetak dengan menggunakan 3D Printing berteknologi Fused DepositionModelling (FDM) telah banyak dilakukan oleh para peneliti. Salah satunya adalah penelitian tentang kekuatan lentur atau flexural strength dengan menggunakan standar ASTM D790, baik dengan filamen ABS, PLA, Nylon, maupun material maju lainnya seperti komposit. Penelitian ini menggunakan filamen Super Tough PLA dengan setting parameter proses pada slicing software dan menggunakan mesin 3D Printer Anycubic 4Max dengan nozzle diameter 0,4mm, layer thickness 0,28mm, Top solid Layer 1, Bottom Solid Layer 1, Vertical shell 1, Fill density 100%, printing speed 60 mm/s, bed temperature 60 °C, cooling speed 100%, dan flowrate 100%, Spesimen uji Standar ASTM D790 diaplikasikan pada penelitian ini. Penelitian ini hanya memvariasikan bentuk infill pattern. Sebanyak dua belas variasi infill pattern yang digunakan pada penelitian ini. Penelitian ini telah menghasilkan kekuatan lentur specimen uji ASTM D790 dengan perbedaan sebesar 59,17%. Kekuatan lentur dengan nilai terendah rata-rata sebesar 27,10MPa, dan nilai kekuatan lentur tertinggi rata-rata sebesar 45,80MPa.
OPTIMASI PARAMETER PROSES 3D PRINTING TERHADAP KEKUATAN TARIK FILAMEN PLA FOOD GRADE Muhammad Habib Bari Bari; Pristiansyah Pristiansyah; Fajar Aswin
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 1 (2021): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Rapid prototyping technology, especially in three-dimensional printing, has been successfully used in many aspects. One of the rapid prototyping technologies that are often found in the market today is the type of FDM technology. FDM is a 3D printing technique for printing products using filament as a material. The filament used is food grade Polylactic Acid (PLA). This study aims to obtain optimal parameters to produce FDM printed objects in terms of tensile strength. The method used in the process of optimizing the parameters of this process is the Taguchi method L9 (33) OA. The process parameters used in this research are Temperature Nozzle, Layer Height, and Print Speed. The results showed that the optimal process parameter values ​​for tensile tests using food grade PLA filaments were Temperature Nozzle (210°C), Layer Height (0.1 mm) and Print Speed ​​(65 mm/s).
OPTIMASI PARAMETER PROSES 3D PRINTING FDM TERHADAP KEKUATAN TARIK FILAMENT ABS CCTREE MENGGUNAKAN METODE TAGUCHI L9 ade Ferdiansyah; Pristiansyah Pristiansyah; Boy Rollastin
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 1 (2021): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

3D Printing is an additive manufacturing technique that can be used to convert computer aided design (CAD) data and then print it by adding material layer by layer to form a 3D product. One technique or method that is often used in 3D Printing technology is FDM (Fused Deposition Modeling), because this technique is the easiest to use and the cheapest. The purpose of this study was to obtain the optimal process parameters on 3D Printing FDM to the resulting tensile strength. This study uses the Taguchi method with an experimental design used L9 (34) OA. The material used in this research is ABS CCTREE. The process parameters used in this research are nozzle temperature (°C), table temperature (°C), layer thickness (mm) and print speed (mm/s). The strongest tensile strength value is 41 Mpa. Parameters that produce the strongest quality are performed at table temperature (92 °C), nozzle temperature (237 °C), layer thickness (0.22 mm) and Print speed (42 mm/s).
Cover, Editor, Committee, Reviewer, Keynote Speaker, Kata Pengantar, Daftar Isi, dan Rundown Acara snitt_polmanbabel snitt_polmanbabel
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 1 (2021): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Tema: Inovasi Teknologi di Era Industri 4.0 Tempat dan Waktu Seminar: Sungailiat- Bangka, 2 Agustus 2021 Keynote Speaker: Muhammad Rizky, M.M (Direktur SDM PT. Timah Tbk) Steering Committee: I Made Andik Setiawan, Ph.D Muhammad Subhan, M.T Eko Sulistyo, M.T Editors: Irwan, Ph.D Dr. Sukanto Dr. Ilham Ary Wahyudie Ramli, Ph.D Heru Riva’i Linda Fujiyanti, M.Kom Reviewers: Indra Dwisaputra, M.T Boy Rollastin, M.T Angga Sateria, M.T Ocsirendi, M.T Pristiansyah, M.Eng M. Iqbal Nugraha, M.Eng Desain Grafis: Muhammad Zenda Rud Panitia Pelaksana: Abde Fattahwa Amel Anggi Azzam Barkah Bunga aprilia arianto Dea Amanda Dinny Hilyati Fikri Irfan Fadlullah Jessica Aulia Gani Muhammad Ahlan Maulidiansyah Muhammad Dzuljalali Razila Kullaha Sulistiana Rachmadini Tim IT dan Fasilitas Umum: Riki Afriansyah Ronald Satria Marsidin
OPTIMASI PARAMETER PROSES 3D PRINTING TERHADAP KEKUATAN TARIK FILAMENT POLYETHYLENE TEREPHTHALET GLYCOL Rovi Avriansah; Pristiansyah Pristiansyah; Erwanto Erwanto
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 01 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

3D printing technology is the latest technology in the field of Additive layer manufacturing (AM). One of the AM that is currently being developed is Rapid Prototyping (RP) based on FDM, the FDM type uses polymer melted by heating then extruded through a nozzle as ink and deposited on the printer table to produce 3D objects layer by layer (layer by layer). In this research, the filament used is PETG (Polyethylene terephthalate Glycol) filament. In this study, the taguchi L9 () OA method was used. This study aims to determine the effect of the process parameters used in tensile testing in accordance with the process parameters used, namely Nozzel Temperature, Bed Temperature, Wall Thicknes, and Infill Speed. The results showed that the parameters that greatly influenced the tensile test using PETG filament were Bed Temperature (70°C), Nozzle Temperature (230°C), Wall Thickness (0.8 mm), and Infill Speed ​​(40 mm/s).
PENGARUH PARAMETER PROSES 3D PRINTING TERHADAP AKURASI DIMENSI FILAMENT PETG(Polyethylene terephthalate Gylacol) Mawar Lestari; Subkhan Subkhan; Pristiansyah Pristiansyah
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 01 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

3D printing is a manufacturing technology that is widely developed to make prototypes in accordance with the desired design, one of which is FDM (Fused Deposition Modeling). FDM technology is a printing technique used to print products using fibrous materials, some filaments that are often used in 3D printing including polylactic acid (PLA), acrylonitrile butadiene styrene (ABS), nylon, polyethylene terephthalate glycol (PETG) and polycarbonate (PC). This research aims to get the parameters that most affect the print of FDM 3D printing machines. In this study to print the filament test object used petg filament (Polyethylene terephthalate Gylacol) and using taguchi L27 OA method. The parameters used are Nozzel Temperature, Bed Temperature, Flowrate, Prin Speed, Layer Thiknes, Infill Overlap, Infill Density, and Infill Speed. The results of the study that has been done showed that the most influential parameters for the height of specimens are research no. 4 and 11 with a value of 19.99 while the lowest value is at number 26 with a value of 19.73 mm. And the most influential process parameters in a row are Nozzel Temperature (235°C), Bed Temperature (100°C), Infill Density (25%), Infill Overlap (10%), Layer Thickness (30mm), Printing Speed (40mm/s), Infill Speed (40mm/s), Flowrate (90%).
PENGARUH PARAMETER PROSES TERHADAP UJI IMPAK PADA 3D PRINTING MATERIAL ABS Rully Febriansyah; Adhe Anggry; Pristiansyah Pristiansyah
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 01 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Technology 3D printing is also known as Additive Layer Manufacturing. One of the most well-known 3D printing technologies is Fused Deposition Modelling (FDM). The working principle of FDM is by means of thermoplastic extrusion through the nozzle at the melting temperature then the product is printed perlapis layer. This research filament used is ABS (Acrylonitrile Butadiene Styrene) because mechanically this filament is very strong and has resistance to high temperatures, for the factors used namely Infill Layer Thickness, Printing Speed, Wall Thickness, Print Temperature, Bed Temperature, Fan Speed Wall Printing Speed, Infill Overlap, While in this study the method used is Taguchi and this study has the aim to get optimal process parameters on Printing impact tests were conducted with a 3D printing machine Creality Ender 3 printed as many as 81 specimens. Then the impact test was conducted so that the average score of the highest impact test result was in experiment number 27 with a value of 0.00392 joules and for the lowest impact test value was in experiment number 1 with a value of 0.00291 Joule.
PENGARUH CHAMBER PADA MESIN 3D PRINTING FDM TEHADAP HASIL PRODUK DENGAN MENGGUNAKAN FILAMEN ABS zailani hamzah; Pristiansyah Pristiansyah; Dedy Ramdhani
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 01 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

3D printing technology using the Fused Deposition Modeling (FDM) system is one of the manufacturing processes currently being developed. The rapid prototyping process makes it easier for academics in research. Acrylonitrile Butadiene Styrene (ABS) filament material is the type of material used in this research. The purpose of this study was to determine the effect of the use of the chamber on the 3D printing machine DIY (Do It Yourself) FDM type Cartesian ender model on the quality of product dimensional accuracy results. The method used in this research is experimental by using a chamber on a 3D printing machine and using process parameters. The results of the research by testing and measuring, it is found that the chamber affects the accuracy of the product dimensions with the heat bed temperature (80 ℃), nozzle temperature (230 ℃), print speed (40 mm/s), infill density (40%) and the use of layer thickness. (0.20 mm) shows a significant result of product dimensional accuracy.
Co-Authors Abda Abda Achmad Rusdy Ade Ferdiansyah ade Ferdiansyah Adhe Anggry Afriansyah, Soni Ahadiatullah, Wassi AJI, BAYU Aldo Firnando Alvianto, Luthfi Maulana Aprilia, Silvy Ariansyah , Ariansyah Ariansyah Ariansyah, Ariansyah Ariyani, Yang Fitri Ariyanto Arzela Tanjung Ampera Aswin , Fajar Aswin, Fajar Bayu Anggara Brilian, Idola Cindy Vena Ariesta Dedy Ramdhani Harahap Delfiana Octora Dika Qomara Sari Dino Arisandi Durrani Irdin, Afiq Dwi Ranti Safitri Edwin Aldrin Erwansyah, Erwansyah Esya Abinda, Azora Fadzila Septia Falah Yudha Hanafi Fatjri Novianti Fatra, Fatra Ferdian, Ferdian Feriadi, Indra Ferninda Putri, Sherin Ferzy Ersandy Firnando, Aldo Haafizh Arrahman, Amar Ma’ruf Hafiz Fadhil Haritsah A, M. Harwadi, Harwadi Hasdiansah, Hasdiansah Herianto , Herianto Herianto Herianto Husman Husman I Ketut Suada Idiar, Idiar Ilham Ary Wahyudie Ilham Nur Dimas Yahya Indun Indun, Indun Irdin, Afiq Durrani Iswanto Juanda Krisna Raden MALINDA CHRISTILIANA Masdani, Masdani Maulana A, Luthfi Mawar Lestari Meri, Andi Meriatun, Meriatun Muhamad Aris Muhammad H Amrullah Muhammad Habib Bari Bari Muhammad Haritsah Amrullah MUHAMMAD SUBHAN Muhammad Subhan Muhammad Yunus Nanda Pranandita Naufal Rafiq Muhammad Oktavianto, Mario Oktriadi, Yudi Omardo, Masria Padilah, Rifky Pakpahan, Binsar Maruli Tua Pranata, Yogi Pratama , Jhasua Rahman Saputra, Rahman Ramli Ramli Rivaldi, Muhammad Rizqi Ilmal Yaqin Rizqi ilmal yaqin, Rizqi ilmal Robert Napitupulu Rohman, Habibu Rollastin, Boy Rosa, Rosalina Rovi Avriansah Rully Febriansyah S Suzen, Zaldy Saputra, M. Aji Soni Afriansyah Subkhan Subkhan Sugianto Sugianto Sugianto Sugianto Sugiyarto Sugiyarto Sugiyarto Sugiyarto Sukanto , Sukanto Suzen, Zaldy Sirwansyah Syamsul Arifin Tuparjono . Viniolita , Thala Viniolita Viniolita, Thala Wahyu Riyan Saputra Wahyudi Wahyudi Wardiyah, Atikah Araminta Wulandari, Sawitri Yeyen, Yeyen Yoga Alvero Yudha Bika Pratama Yudha Pirmansyah, Sandika Yuliyanto Yuliyanto zailani hamzah Zaldy Kurniawan Zaldy S Suzen Zulfitriyanto, Zulfitriyanto Zulkarnein, Faruq Akbar