cover
Contact Name
Asep Bayu Dani Nandiyanto
Contact Email
nandiyanto@upi.edu
Phone
081394340884
Journal Mail Official
bumipublikasinusantara@gmail.com
Editorial Address
Kp, Jl. Gegerkalong Girang No.113, RT./RW/RW.002/006, Isola, Kec. Sukasari, Kota Bandung, Jawa Barat 40154
Location
Unknown,
Unknown
INDONESIA
ASEAN Journal for Science and Engineering in Materials
ISSN : 2828920X     EISSN : 28289951     DOI : -
The ASEAN Journal for Science and Engineering in Materials (AJSEM) promotes research in the broad field of Science and Engineering in Materials with particular respect to Indonesia, but not limited to authorship or topical coverage within the region. Contributions are expected from senior researchers, project managers, research administrators and PhD students at advanced stages of their research, representing both public organizations and private industry. Equally, the journal if intended for scholars and students, reseachers working at research organizations and government agencies, and also for enterprises undertaking applied R&D to lead innovations. The editorial contents and elements that comprise the journal include: Theoretical articles Empirical studies Practice-oriented papers Case studies Review of papers, books, and resources. As far as the criteria for evaluating and accepting submissions is concerned, a rigorous review process will be used. Submitted papers will, prior to the formal review, be screened so as to ensure their suitability and adequacy to the journal. In addition, an initial quality control will be performed, so as to ensure matters such as language, style of references and others, comply with the journal´s style. The editorial board welcomes innovative manuscripts from Science and Technology field. The scopes of this journal are Material Science and Engineering Materials relating to Agriculture Materials relating to Architecture and Civil Engineering Materials relating to Astronomy and Space Engineering Materials relating to Biology, Biological and Bio System Engineering Materials relating to Chemistry and Chemical Engineering Materials relating to Computer Science and Engineering Materials relating to Earth Science and Engineering Materials relating to Electric, Electronic, and Electrical Engineering Materials relating to Environment Science and Engineering Materials relating to Food Science and Engineering Materials relating in the Organization of Laboratories Material Science and Engineering relating to Education
Articles 103 Documents
Scientific Creativity in Materials Science Education among High School Students through Inquiry-Based Learning and Metacognitive Strategies Pathomphong Boonpratham; Bovornpot Choompunuch; Hisako Matsuo
ASEAN Journal for Science and Engineering in Materials Vol 6, No 1 (2027): AJSEM: Volume 6, Issue 1, March 2027
Publisher : Bumi Publikasi Nusantara

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Abstract

Materials science education requires high school students to connect abstract scientific concepts with the behavior and technological applications of materials. This study examined the effectiveness of inquiry-based learning integrated with metacognitive strategies in developing scientific creativity through electrostatics learning. A quasi-experimental two-group pretest–posttest design involved Grade 11 students assigned to experimental and control groups. The experimental group completed inquiry-based instruction incorporating planning, monitoring, and evaluating strategies, while the control group received conventional instruction. Scientific creativity was assessed through fluency, flexibility, and originality. ANCOVA results showed significantly higher adjusted posttest scores for the experimental group across all dimensions. The findings demonstrate the potential of inquiry–metacognition integration for fostering scientific creativity in materials science-oriented high school education.
Thermophysical-Mechanical Characterization of Date Palm Trunk Bark Powder Composites for Sustainable Insulation Applications: Bibliometric Analysis and Experimental Evaluation in Support of the Sustainable Development Goals (SDGs) Mini Jose Anand; Roslina Mohammad; Abdelgadir Mohamed Mahmoud; Ahmed Abdelrhman
ASEAN Journal for Science and Engineering in Materials Vol 5, No 3 (2026): AJSEM: Volume 5, Issue 3, December 2026
Publisher : Bumi Publikasi Nusantara

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Abstract

Agricultural waste can provide sustainable alternatives to building insulation while supporting the Sustainable Development Goals (SDGs). This study combines bibliometric analysis with experimental evaluation to investigate epoxy-bonded date palm trunk bark powder composites for insulation applications. Bibliometric data were used to identify trends and position the study within agricultural-waste-based insulation research. Composite panels with different filler loadings were fabricated and assessed through density, thermal conductivity, heat flux, water uptake, compressive strength, and scanning electron microscopy. The results showed a non-linear performance trend because porosity, particle packing, matrix continuity, and interfacial structure governed heat transfer and mechanical response. The optimum formulation achieved a combination of insulation efficiency, structural adequacy, and moisture resistance, demonstrating the potential of date palm waste for sustainable building applications.
Synergistic Effects of Microspheres, Microfibers, and A Phosphorus-Boron Modifier in Fire- and Heat-Resistant Ethylene-Propylene-Diene Rubber Composites V. G. Kochetkov; V. F. Kablov; N. A. Keibal; O. M. Novopolceva; D. A. Kryukova; D. A. Urzhumov; I. M. Myasnikov; S. V. Borisov; M. P. Spiridonova
ASEAN Journal for Science and Engineering in Materials Vol 5, No 3 (2026): AJSEM: Volume 5, Issue 3, December 2026
Publisher : Bumi Publikasi Nusantara

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Abstract

This study investigates fire- and heat-resistant elastomeric composites based on ethylene-propylene-diene rubber containing functionally active microheterogeneous structures composed of microspheres, microfibers, and a synthesized phosphorus-boron organic modifier. The modifier was synthesized from aminotrimethylene phosphonic acid, diethylene glycol, and boric acid, while low-temperature plasma treatment was applied to enhance its interaction with the microdispersed components. The resulting three-component structures improved the mechanical, thermal, adhesive, and fire-protective performance of the elastomeric composites. Their incorporation increased the heating time of the unheated surface, reduced the linear burning rate, increased coke residue, and strengthened the resulting coke layer while maintaining material density. These findings demonstrate the synergistic role of microspheres, microfibers, and the phosphorus-boron modifier in developing multifunctional elastomeric composites with enhanced resistance to high-temperature and fire exposure.

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