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Contact Name
Ainur Komariah
Contact Email
ainurkomariah.ak@gmail.com
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Journal Mail Official
japtiunivetbantara@gmail.com
Editorial Address
Jalan Letjen. S. Humardani, No. 1, Sukoharjo
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INDONESIA
Jurnal Aplikasi Ilmu Teknik Industri (JAPTI)
ISSN : 27221539     EISSN : 27223795     DOI : http://dx.doi.org/10.32585/japti.v1i1.621
Core Subject : Engineering,
Jurnal Aplikasi Ilmu Teknik Industri (JAPTI) merupakan jurnal ilmiah berskala nasional yang dikelola oleh Universitas Veteran Bangun Nusantara. JAPTI terbit berkala 6 bulanan, atau 2 kali dalam setahun, yakni bulan Maret dan September. JAPTI menerima naskah artikel yang belum pernah dipublikasikan sebelumnya, baik pada jurnal maupun media publikasi lain.
Articles 103 Documents
Analisis Human Error dengan Metode Sherpa dan Heart pada Produksi Barecore PT. Pundi Alam Perkasa Dewi Safitri; Andung Jati Nugroho
Jurnal Aplikasi Ilmu Teknik Industri (JAPTI) Vol. 6 No. 2 (2025)
Publisher : Universitas Veteran Bangun Nusantara

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

Abstract

Kecelakaan kerja dalam industri pengolahan kayu umumnya disebabkan oleh kesalahan manusia. PT Pundi Alam Perkasa, produsen Barecore, mengalami sejumlah insiden kecelakaan, terutama pada tahap produksi. Studi ini memiliki tujuan untuk menemukan kemungkinan kesalahan manusia, menyelidiki faktor-faktor penyebabnya, serta menawarkan saran perbaikan demi meningkatkan keselamatan dalam lingkungan kerja. Metode yang digunakan adalah SHERPA untuk mengidentifikasi jenis kesalahan berdasarkan aktivitas kerja, dan HEART untuk menghitung probabilitas kesalahan (HEP) pada aktivitas berisiko tinggi. Data diperoleh melalui observasi, wawancara, dan dokumentasi selama Februari–Maret 2025. Hasil penelitian menunjukkan aktivitas dengan nilai HEP tertinggi terjadi saat pengoperasian mesin Crosscut tanpa dimatikan (HEP = 0,279), memasukkan kayu ke mesin Gangrip (HEP = 0,264), serta memasukkan tangan ke mesin Double Planner dan Jump Crosscut tanpa pengecekan pengaman (HEP = 0,216). Faktor utama penyebab kesalahan adalah kurangnya pelatihan, beban kerja tinggi, dan ketidakpatuhan terhadap prosedur. Rekomendasi perbaikan mencakup pemasangan sensor pengaman, penyusunan dan sosialisasi SOP, serta peningkatan pelatihan dan pengawasan. Penerapan metode SHERPA dan HEART terbukti efektif dalam mengidentifikasi serta menurunkan risiko human error, sehingga mendukung peningkatan keselamatan dan efisiensi kerja di industri pengolahan kayu.
Pemaknaan Karyawan terhadap Corporate Social Responsibility dan Sustainable Development pada Perusahaan Manufaktur dan Jasa Emma Budi Sulistiarini; Imaduddin Bahtiar Efendi; Uyun Nadzirotul Faidah; Chindy Alvionita Bana Pah
Jurnal Aplikasi Ilmu Teknik Industri (JAPTI) Vol. 7 No. 1 (2026)
Publisher : Universitas Veteran Bangun Nusantara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32585/japti.v7i1.8219

Abstract

This study examines how employees in manufacturing and service firms interpret Corporate Social Responsibility (CSR) and Sustainable Development in their organizational context. The study is motivated by the continuing debate on whether CSR and Sustainable Development are understood as identical, different, or overlapping concepts in business practice. A descriptive qualitative approach was employed. Data were collected through semi-structured interviews with 11 employees working in manufacturing, service, and construction-related service contexts in East Java, Indonesia. The data were analyzed using descriptive thematic analysis, including data reduction, coding, categorization, interpretation, and conclusion drawing. The findings show that employees interpret CSR and Sustainable Development in different ways. Some employees understand CSR mainly as charity or social donation. Others interpret CSR as part of Sustainable Development, especially when company programs are related to environmental preservation, education, health, and community empowerment. The study also finds that internal communication and employee involvement play important roles in shaping employees’ understanding of the relationship between CSR and Sustainable Development. These findings imply that companies need not only to implement CSR programs, but also to communicate them clearly and align them with long-term sustainability objectives so that employees can understand and support them as internal stakeholders.
Pengembangan Blade Pemotong Berbasis PLA Hasil 3D Printing dengan Penguat Plat Stainless untuk Meningkatkan Konsistensi Dimensi Pelet pada Mesin Produksi Pakan Ikan Rian Prasetyo; Ainur Komariah; Suprapto Suprapto; Maria Puspita Sari
Jurnal Aplikasi Ilmu Teknik Industri (JAPTI) Vol. 7 No. 1 (2026)
Publisher : Universitas Veteran Bangun Nusantara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32585/japti.v7i1.8250

Abstract

The cutting blade used in pellet production machines directly affects the dimensional consistency of produced pellets. Polymer-based blades manufactured using 3D printing offer advantages in production cost and fabrication flexibility, but still have limitations in mechanical durability under repeated use. This study aimed to develop a cutting blade made of PLA (Polylactic Acid) using 3D printing technology with a 2 mm stainless steel reinforcement at the blade tip, and to evaluate its effect on pellet length stability in a pellet production machine. The blade was designed using SolidWorks and fabricated using Fused Deposition Modeling (FDM) with a 0.4 mm nozzle, 0.22 mm layer height, 100% infill, 60°C bed temperature, 210°C extruder temperature, and 4500 mm/min printing speed. Testing was conducted using a pellet machine operating at 70 rpm for 6 cycles, with 200 g of feed material per cycle and 8 pellet samples measured in each cycle. The results showed that the full PLA blade experienced an increase in average pellet length from 4.99 mm to 7.05 mm, while the hybrid blade only increased from 3.78 mm to 4.22 mm. One-Way ANOVA results indicated that testing cycles significantly affected pellet length in both the full PLA blade (F = 365.015; p < 0.001) and the hybrid blade (F = 61.255; p < 0.001). The study concludes that stainless steel reinforcement resulted in more stable pellet dimensions during repeated testing, compared to full PLA blades.

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