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Analisis Kekuatan dan Ketahanan Kejut Material Safety Helmet sesuai Standar SNI ISO 3873:2012 Kusminah, Imah Luluk; Natsir A, Haidar; Wardani, Dianita; Dayanti, Tri
Jurnal ELEMENTER (Elektro dan Mesin Terapan) Vol 9 No 2 (2023): Jurnal Elektro dan Mesin Terapan (ELEMENTER)
Publisher : Politeknik Caltex Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35143/elementer.v9i2.5911

Abstract

Work accident is an undesirable and unexpected event that can cause human and/or property casualties (Permenaker No. 03/MEN/1998). In Indonesia, the number of work accidents in the construction sector is still relatively high. Based on BPJS Employment data, in 2019 there were 77,295 cases of work accidents in the construction sector. Based on this, Occupational Safety and Health in carrying out construction work is given great attention. One of the most important and always required PPE is a safety helmet. Based on the many needs for PPE helmets, many brands of safety helmets are sold on the market without knowing their advantages and materials, many accidents have occurred, and many helmets have broken and other failures. Based on this, research was carried out on the analysis of compressive strength and durability of SNI and non-SNI safety helmet materials. The aim of this research is to determine whether the compressive strength and shock resistance of safety helmet materials comply with standards. The research used a qualitative method by testing safety helmets. The test results showed that the SNI safety helmet passed the pressure and shock resistance tests, while the non-SNI safety helmet did not pass the pressure test but still met the shock resistance test. This value will be used as a reference for innovating safety helmet materials.
Perencanaan Emergency Rescue Procedure Berbasis Confined Space Risk Analysis pada Pekerjaan Pembersihan Pan Mixer Batching Plant Dayanti, Tri; Anindita, Galih; Choirul, Mochammad; Khasanah, Fujie Rizky Nur
Journal of Safety, Health, and Environmental Engineering Vol. 3 No. 2 (2025): Journal of Safety, Health, and Environmental Engineering
Publisher : Pusat Penelitian dan Pengabdian Masyarakat Politeknik Perkapalan Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35991/jshee.v3i2.84

Abstract

Proses produksi beton dilakukan dengan bantuan mesin dan alat yaitu batching plant yang memerlukan proses perawatan dan pembersihan secara rutin dari sisa-sisa produksi yang berkerak dengan memasuki ruang terbatas yang memiliki risiko yang tinggi. Penelitian ini dilaksanakan untuk merencanakan Emergency Rescue Procedure pada area confined space dengan mengidentifikasi bahaya dan menilai tingkat risiko menggunakan metode Confined Space Risk Analysis (CSRA). Hasil penelitian menunjukkan terdapat 3 potensi bahaya dengan risiko tinggi (high) dari 27 potensi bahaya pada pembersihan pan mixer batching plant. Dimana risiko yang masih tinggi diberikan rekomendasi pengendalian lanjutan sebagai pertimbangan perusahaan. Pembuatan Emergency Rescue Procedure sebagai bentuk rekomendasi mitigatif yang berdasarkan pada hasil analisis Confined Space Risk Analysis (CSRA) dan mengikuti beberapa tahapan yaitu pre-emergency preparation and planning, size up, developing action plan, control hazards and protect personnel, deploy and rig rescue equipment, perform rescue, dan terminate rescue operation.