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Contact Name
Purwanto
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+6289682151476
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Editorial Address
Perum Cluster G11 Nomor 17 Jl. Plamongan Indah, Kadungwringin, Pedurungan, Semarang, Provinsi Jawa Tengah, 50195
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INDONESIA
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri
ISSN : 30314992     EISSN : 30313996     DOI : 10.61132
Core Subject : Engineering,
1. Mechanical Engineering (and Other Mechanical Sciences) 2. Production Engineering (and or Manufacturing) 3. Chemical Engineering 4. Pharmaceutical (Industry) Engineering 5. Industrial Engineering 6. Aviation/Aeronautics and Astronautics 7. Textile Engineering (Textile) 8. Refrigeration Engineering 9. Biotechnology in Industry 10. Nuclear Engineering (and Or Other Nuclear Sciences) 11. Engineering Physics 12. Energy Engineering 13. Remote Sensing 14. Materials Engineering (Materials Science) 15. Other Industrial Engineering Fields That Have Not Been Listed
Articles 89 Documents
Pencetakan Injeksi Nylon PA66 Roda Gigi Pompa Minyak Motor 100cm3, Tahun 2004, Kapasitas 10 Biji/Jam Ricky Ibrahim Mubarok; Syamsul Hadi; Anggun Novita Sari; Prayogi Adi Asmara; Yahya Dwiatma Wiyoga
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1412

Abstract

The 100 cm3 motorcycle oil pump gear spare parts are no longer produced by the factory in 2004, so consumers have difficulty obtaining them as a problem faced. The purpose of printing is to obtain 100 cm3 motorcycle oil pump gear spare parts that match the original specifications. The printing method includes: 100 cm3 motorcycle oil pump gear design, 100 cm3 motorcycle oil pump gear mold design, selection of plastic material from Nylon PA66, injection of Nylon PA66 into the 100 cm3 motorcycle oil pump gear mold at a temperature of 260°C, a pressure of 80 MPa, an injection holding time of 5 seconds, a cooling duration of 25 seconds, product release from the mold, mold channel cutting and finishing, and quality and dimensional inspection. The printing results are in the form of a 100 cm3 motorcycle oil pump gear with 25 teeth, a diameter of 53 mm, a thickness of 13 mm, and a bolt hole diameter of 6 mm with a dimensional tolerance of IT8, a surface roughness of Ra 1.2 µm, a total production cost of IDR 70,000,-/unit, and a process duration of 360 seconds/unit which implies that the 100 cm3 motorcycle, year 2004 can be re-functioned or can still operate with the supply of spare parts available according to the original specifications.
Produksi Obeng Minus-Plus Panjang 160 mm dengan Pegangan Kunci Sok Busi M16, Kapasitas 5 Biji/Jam Azka Najahaan Arsadani; Syamsul Hadi; Muhammad Rafif Daffa Adz Dzakiru; Muhammad Yusuf Kurniawan; Nabil Iwandaka
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1414

Abstract

A pair of minus-plus screwdrivers with motorcycle spark plug socket wrench handles that are often lost/lost is a problem. The production objective is to obtain a pair of minus-plus screwdrivers with a length of 160 mm and an M16 spark plug socket wrench. The production objective is to obtain a pair of minus-plus screwdrivers with a length of 160 mm and an M16 spark plug socket wrench. The production method includes: design of a pair of minus-plus screwdrivers and spark plug socket wrenches; selection of minus-plus screwdriver materials with a diameter of 8 mm and a pipe with a diameter of 16 mm x 90 mm, a thickness of 2 mm for socket wrenches from AISI 1045; forming of plus-minus screwdriver bits; forging socket wrenches into hexagons from 16 mm diameter pipes; drilling through the end of 9 mm diameter pipes; making 20 mm long screwdriver shaft torque retainer; installation of torque retainer tightness on the end of 12 mm inner diameter pipes, finishing of screwdriver shafts and socket wrenches; hot-dip galvanization on screwdriver shafts and socket wrenches; quality inspection, dimensions, and open-close packaging. The production results are a pair of 160 mm long minus-plus screwdrivers, 8 mm diameter screwdriver shaft with M16 spark plug socket wrench, 2 mm thickness of AISI 1045 zinc-coated steel, total manufacturing cost of IDR 22,000/unit, manufacturing duration of 12 minutes/unit which has the impact that a pair of minus-plus screwdrivers and socket wrench can be used and can be stored back in the container.
Produksi Paku Diameter 5 mm, Panjang 50 mm, Tahan Karat Kapasitas 10 kg/Jam Muhammad Yazid Bustomy; Syamsul Hadi; Zanetta Al Azhar; Mohammad Sheva Firdaus; Yudhistira Satria Nugroho
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1415

Abstract

Problems faced in the need for nails in the furniture industry, and various civil engineering works, which are uniform and standard sizes. The production objective is to obtain nails with a diameter of 5 x 50 mm, which are not easily rusted, with uniform and standard sizes. Production methods include: nail design with dimensions of 5 x 50 mm diameter; preparation of low carbon steel wire, AISI 1020, diameter 5 mm in the form of a coil with a diameter of 600 mm; straightening the steel wire coil through a die; cutting the tip of the pointed shape into a length of 50 mm; forming the nail head (haeding) with a head diameter of 8 mm and a head thickness of 1.5 mm; coating by dipping into molten zinc (hot dip galvanized) at a temperature of 500oC for 30 seconds; and quality control on shape, straightness, and dimensions. The production results are nails with a diameter of 5 x 50 mm which are rust-resistant, uniform and standard in size with a production cost of IDR 24,000/kg, a production process duration of 6 minutes/kg which has an impact on being used in construction, the furniture industry, and various civil engineering works wood, plastic, composites, thin metal plates, walls.
Manufaktur Sendok Makan SS304 Ukuran 180x42x1,5 mm, Cekungan 10 mm, Kapasitas 200 Biji/Jam Wildhan Helmi Nurhuda; Syamsul Hadi; Irwansyah Setiawan; Sovyan Bagus Rahmadhana; Syienda Zahwa Saputra
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1418

Abstract

Various viruses due to unhygienic spoon surfaces, especially those that are frequently used and repeated, if they do not meet health standards in mass washing have the potential to cause disease in subsequent users as a problem faced. The manufacturing objective is to obtain a tablespoon from stainless steel, SS304 measuring 180x42x1.5 mm, a concave depth of 10 mm, and a concave length of 55 mm. Manufacturing methods include: tablespoon design; selection of SS304 raw materials, 1.5 mm thick; cutting an oval spoon shape with a total length of 180 mm, for a concave length of 55 mm, a concave width of 42 mm, a handle width of 15 mm; curving the concave (deep drawing) to obtain a concave depth of 10 mm; engraving/stamping; punching a 3 mm diameter hole at the base of the spoon at a distance of 10 mm from the tip; chamfering on 2 sides of the hole; smoothing (finishing-polishing) on all edges of the spoon; quality and dimension inspection. The manufacturing results are in the form of stainless steel spoons made of SS304 measuring 180x42x1.5 mm, a concave depth of 10 mm, and a concave length of 55 mm, a handle width of 15 mm with a production cost of IDR 16,000/unit, and a process duration of 18 seconds/unit which implies that the spoon can be used to eat solid or soupy foods which afterward must be washed clean again and can be used repeatedly.
Manufaktur Panci SS304 Diameter 200 mm, Tinggi 150 mm, Tebal 1 mm, Kapasitas 24 Biji/Jam Hafizh Putra Pribadi; Syamsul Hadi; Maykhal Arifuddin Azhar; Galih Widhi Susanto; Faris Adi Pratama
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1419

Abstract

Rusting of cookware that has the potential to contaminate food that becomes unhealthy is a problem in cooking. The manufacturing objective is to obtain a 200 mm diameter, 150 mm height, 1 mm thickness SS304 pan. The manufacturing method includes: design of a pan measuring 200 mm diameter, 150 mm height, 1 mm thickness; making punches and dies for forming the pan; making punches and dies for forming the pan lid; cutting 1 mm thick SS304 material with a diameter of 400 mm for the pan; deep drawing for forming the pan; cutting 1 mm thick SS304 material with a diameter of 237 mm for the pan lid; deep drawing for forming the pan lid; making the pan lid handle; installing the pan lid handle with bolts and nuts; trimming the pan and its lid; making a pair of pan handles; installing a pair of pan handles with rivets; finishing the pan and its lid; and checking the quality-dimensions of the pan and its lid. The manufacturing results are in the form of an SS304 pan with a diameter of 200 mm, a height of 150 mm, a thickness of 1 mm along with a pair of handles and a lid along with its handle with a total production cost of IDR 126,700/unit, and a process duration of 2.5 minutes/unit which implies that the pan can be used to cook food with a total volume including liquid of 4 liters and is able to cook up to boiling water temperature.
Pembuatan Wadah Baterai LiFePO4 Dimensi 410x110x315 mm, 3,7 V, 250 mA, Kapasitas 0,69 Unit/Jam Devyna Lufhf Imtiyaaz; Syamsul Hadi; Dharma Indi; Muhammad Fauzan Hidayah; Daman Huri Abas; Auliya Kadzi
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1433

Abstract

LiFePO4 battery energy storage in the form of a container to drive an electric motorbike that requires 72 V and 11A for a distance of 42 km, and an average speed of 30 km/h as a problem faced in the field. The purpose of making a battery container is to be able to store 3.7 V, 250 mA energy with dimensions of 410 mm in length, 110 mm in width, 315 mm in height that can withstand a weight of 10.3 kg, a duration of 16 hours. The manufacturing method includes: preparation of 3 tensile test specimens and 3 flexural test specimens; tensile testing and flexural testing; design of a series of battery cell containers assembled with completeness of both hand grips; preparation of 3D printing ABS filament material; printing several containers, several clamps and several bolts with 3D printing; assembly with 3D printed clamps; stiffness and strength testing; and quality-dimensional inspection. The result of the manufacture is a LiFePO4 battery container with dimensions of 410 mm in length, 110 mm in width, 315 mm in height from ABS 3D printing, production costs of IDR 544,000.00/unit and a process duration of 87 minutes/unit, with a weight of 10.3 kg which means that the LiFePO4 battery container with dimensions of 410x110x315 mm, and specifications of 3.7, V 250 mA can be used well for certain types of electric motorbikes.
Pembuatan Peniti Kain, Panjang 50 mm, Diameter Kawat 0,5 mm, Kapasitas 30 Unit/Jam Kurnia Idris Maulana; Syamsul Hadi; Achmad Rio Ananta Pratama; Risky Nur Iswanto; Ahmad Firman Dani
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1434

Abstract

Import of fabric safety pin products is still a problem faced in the market. The purpose of manufacturing is to obtain safety pins from low carbon steel wire measuring 50 mm in length and 0.5 mm in diameter and a circular curve with a diameter of 6 mm. The manufacturing method includes: design of wire bending equipment and equipment for forming the pinhead plate and the base of the pinhead, selection of raw materials of AISI1045 steel wire and pinhead steel plate, making the pointed tip with automatic sanding, bending the pinhead and forming the pinhead plate with a thickness of 0.5 mm, cutting the base of the wire, clamping between the base of the pinhead and the clamping head plate where the part that holds the end of the wire must be positioned correctly, electroplating black chromium on the assembled pinhead, checking the quality of dimensions, symmetry, and evenness of the nickel layer, packaging and labeling. The manufacturing results are medium carbon steel wire pins measuring 50 mm in length and 0.5 mm in diameter coated with black chromium, production costs of IDR 250,-/unit, and a process duration of 2 minutes/unit which implies that the binding between 2 pieces of cloth with the pin can be tied quite strongly.
Fabrikasi Kabel Tunggal NYA Diameter 2 mm, Bahan Tembaga, Kapasitas 120 m/Jam Muhammad Rafli Hakim Azizi; Syamsul Hadi; Rizky Dwi Alvian Saputra; M. Dawam El Hakim; Tegar Prayoga
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1435

Abstract

The short circuit is a single electrical cable made of copper, also known as a non-standard NYA type type electrical cable, which endangers safety as a problem faced in the field. The fabrication objective is to obtain a single NYA cable with a diameter of 2 mm, from copper material that meets standards, SNI 04-2698-1999 or SNI 04-6629.3-2006. Fabrication methods include: design and manufacture of single cable molds (die) diameters 7, 6, 5, 4, 3, 2 mm; selection includes purchasing pure Copper cable materials in accordance with standards; gradual reduction in diameter from 8 mm to 2 mm; preparing extrusion machines with PVC type plastic material for single cable insulation; manufacture of standard single NYA cables with a diameter of 2 mm using a simultaneous extrusion machine by running a copper wire with a diameter of 2 mm followed by winding the cable every 50 m; and quality-dimensional-packaging inspection. The fabrication results are in the form of a standard NYA type single cable, SNI 04-2698-1999 or SNI 04-6629.3-2006 with a diameter of 2 mm with a total production cost of IDR 5,500/m, and a production duration of 0.5 minutes/m, which means that the NYA type cable can be used for a maximum power flow of 4,400 W.
Pembuatan Lengan Senapan Angin 300x100x30 mm, Kaliber 4 mm, Komposit Sabut Kelapa, Kapasitas 0,67 Pasang/Jam Lazuardi Lazuardi; Syamsul Hadi; Nundiah Zuhrohfi Immaroh; Muhammad Akhlis Rizza; Sugeng Hadi Susilo; Maryono Maryono
Manufaktur: Publikasi Sub Rumpun Ilmu Keteknikan Industri Vol. 4 No. 2 (2026): Manufaktur : Publikasi Sub Rumpun Ilmu
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/manufaktur.v4i2.1436

Abstract

The weight of the 4 mm caliber air rifle arm (hand grip) with an initial weight of 450 g and the abundance of underutilized coconut fiber are the problems faced. The purpose of the manufacture is to obtain an air rifle arm measuring 300x100x30 mm, 4 mm caliber from coconut fiber composite material with an air rifle arm weight of around 250 g. The manufacturing method includes: air rifle arm design; selection of coconut fiber material with a diameter of 0.3-0.6 mm with drying at a temperature of 80°C for 2 hours; making a left and right pair of air rifle arm molds; molding coconut fiber composites with polyester resin and 0.5% hardener with a random fiber arrangement with a length of 10 mm and a volume fraction of 20%; natural hardening (curing) for 24 hours; making a standard specimen of coconut fiber composite with the composition for impact tests with three replications; analysis of impact test results data; quality and dimension inspection of the air rifle arm composite. The result of the manufacturing process is an air rifle arm weighing 238 g, with a specific impact strength of 0.087 J/mm², with a total production cost of IDR 157,000/pair, and a production duration of 90 minutes/pair, which results in the total weight of the rifle decreasing from 6.5 kg to 6.3 kg.