Semuel M.J.S Tuny
Jurusan Teknik Mesin Politeknik Negeri Ambon

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Optimalisasi Kekerasan Baja ST-42 Melalui Karburasi Ramah Lingkungan Berbasis Biokarbonat Cangkang Kepiting dan Modulasi Suhu Tempering Semuel M.J.S Tuny; H. S. Latumaerissa; Erwin B Pattikayhatu; Nevada Nanulaitta; Graciadiana I Huka
Journal Mechanical Engineering Vol. 3 No. 3 (2025): Journal Mechanical Engineering
Publisher : Department of Mechanical Engineering

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31959/jme.v3i3.3871

Abstract

ST-42 low-carbon steel inherently possesses limitations in its surface mechanical properties, particularly regarding hardness and wear resistance. This study aims to enhance the material's functionality through pack carburizing and tempering heat treatments, utilizing the innovation of crab shell waste which is rich in Calcium Carbonate (CaCO3) as a biogenic catalyst to replace the toxic synthetic Barium Carbonate (BaCO3). The carburizing process utilized a mixture of walnut shell charcoal and 30% crab shell powder, followed by rapid quenching in SAE 20-50 oil, and subsequent tempering at varying temperatures from 200°C to 600°C. Hardness was evaluated using the Rockwell (HRC) method. The results demonstrated that the integration of the crab shell catalyst accelerated the Boudouard reaction via massive CO2 emissions, significantly increasing the surface hardness by 22.80% to an average of 138.34, compared to a mere 10.49% increase achieved without a catalyst. During the tempering phase, heating within the 200°C – 400°C range resulted in a marginal hardness decrease due to the formation of fine carbide particles that maintained wear resistance while relaxing residual stresses. Conversely, extreme heating at temperatures between 500°C – 600°C caused a drastic hardness reduction down to 125.325, driven by the dissolution of the rigid martensite structure into a ductile ferrite phase, accompanied by carbon spheroidization. In conclusion, crab shells are highly effective as an eco-friendly energizer that drastically boosts carbon diffusion, while modulating the tempering temperature provides precise control over the material's hardness-to-ductility balance. Keyword : St-42 low-carbon steel, pack carburizing, crab shell, tempering, Rockwell (HRC) method
THE EFFECT OF VARIATION PERCENTAGE ALKALIZATION (NAOH) ON THE MECHANICAL PROPERTIES ANALYSIS AND WATER ABSORPTION BEHAVIOUR IN BIOCOMPOSITE WITH CASSAVA RUBBER STARCH Semuel M.J.S Tuny; Nevada J.M Nanulaitta; Graciadiana I Huka
Journal Mechanical Engineering Vol. 4 No. 2 (2026): Journal Mechanical Engineering
Publisher : Department of Mechanical Engineering

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31959/jme.v4i2.4101

Abstract

Maluku as one of the provinces in Indonesia has a lot of potential sago plants, which is the basis for conducting research using sago fiber and rubber cassava starch as a base material for making composites that have good mechanical value and are environmentally friendly. Composites are made using natural ingredients namely sago fiber and cassava rubber starch as the matrix. The making of composites is expected to get good bending strength, impact strength, and water absorption rate. Composites are made using the hand lay-up method with a variation of the matrix. The variation of the volume fraction of sago pith fibers is 1:1 and 7:3 using NaOH liquid and distilled water in the alkali process with a percentage ratio of 0%, 5%, 10%, 15%, and 20% soaking time in NaOH liquid for 120 minutes. The results of this study were found to be the best impact value on composites with 1:1 fiber volume variation with 15% alkaline NaOH liquid process. The highest value of the energy absorbed by the composite was 7.5479 J with an impact strength of 0.0755 J·mm-2. At a variation of 7:3 the highest absorption energy is 5.7430 J, while the impact strength is 0.0574 J·mm-2 at 15% of NaOH liquid percentage. The highest bending strength is 226.035 MPa at 1:1 volume fraction variation with 15% NaOH liquid percentage. In 7:3 fiber volume fraction variation, the highest value reaches 206.199 MPa at 15% NaOH liquid percentage. The best water absorption rate is at 8.82% that occurs in 1:1 fiber volume fraction variation, with 15% percentage of the NaOH alkaline process. In the other side, water absorption rate is 9.16% in the 7:3 fiber volume fraction variation with 15% NaOH liquid in the alkalization process. Keynote : sago pith fiber, cassava rubber starch, NaOH, hand lay up method, bending strength, impact strength and water absorption rate