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- 2.25Cr-1Mo steel; Inconel 625; Hot-wire TIG; Cladding; Corrosion behaviors (1)
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Articles 31 - 60 of 502
Full-Text Articles in Engineering Science and Materials
Fabrication Of A Chitosan‒Fe3o4/Activated Carbon/Tio2 Nanocomposite As A Pb(Ii) Heavy Metal Adsorbent, Berliantty Warim Putri, Arif Hidayat, Lya Rizka Herawati, Poppy Puspitasari, Nandang Mufti, Yap Wing Fen, Muhammad Safwan Abdul Aziz, Tahta Amrillah, Ahmad Taufiq
Fabrication Of A Chitosan‒Fe3o4/Activated Carbon/Tio2 Nanocomposite As A Pb(Ii) Heavy Metal Adsorbent, Berliantty Warim Putri, Arif Hidayat, Lya Rizka Herawati, Poppy Puspitasari, Nandang Mufti, Yap Wing Fen, Muhammad Safwan Abdul Aziz, Tahta Amrillah, Ahmad Taufiq
Journal of Metals, Materials and Minerals
Nowadays, water pollution by heavy metal Pb(II) is a significant issue in many countries, including Indonesia. To overcome this problem, a suitable and efficient waste treatment method is necessary. Therefore, in this work, Fe3O4/AC/TiO2 nanocomposite modified with chitosan (CS) for the treatment of Pb (II) waste were investigated. CS was used due to its OH and NH2 functional groups, which enable the formation of a new hybrid nanocomposite that can be used repeatedly. To reduce production costs, environmentally friendly, raw natural materials, such as iron sand, coconut shells, and shrimp shells, were employed. The XRD characterization results indicate that the …
Advanced Hemp-Based Hybrid Composites: A Study On The Influence Of Various Nanofillers On Mechanical And Morphological Properties, Velmurugan Ganesan, Jasgurpreet Singh Chohan, Muthukumar V., Nagaraj M., Lakshmi Narayana S.
Advanced Hemp-Based Hybrid Composites: A Study On The Influence Of Various Nanofillers On Mechanical And Morphological Properties, Velmurugan Ganesan, Jasgurpreet Singh Chohan, Muthukumar V., Nagaraj M., Lakshmi Narayana S.
Journal of Metals, Materials and Minerals
This study investigates the mechanical and microstructural attributes of epoxy composites with hemp fiber reinforcements and incorporated aluminum oxide (Al2O3), silicon dioxide (SiO2), and magnesium oxide (MgO) nanoparticles at different weight fractions of 0.5 wt%, 1.0 wt%, and 1.5 wt%. Nano-fillers remarkably improved the composite performance, as indicated by tensile and flexural tests conducted by ASTM D3039 and ASTM D790 standards. The composite containing 1.5 wt% Al2O3 outperformed other nano filled composites with a tensile strength of 64 MPa and tensile modulus of 3.6 GPa, versus 52 MPa and 3.0 GPa for the unfilled hemp/epoxy composite. In parallel, flexural strength …
Sintering Behavior And Mechanical Properties Of Ha-Ysz-Ti Composite Sintered By Spark Plasma Sintering, Seyed Mohsen Fatemi, Iman Mobasherpour, Leila Nikzad, Mansour Razavi
Sintering Behavior And Mechanical Properties Of Ha-Ysz-Ti Composite Sintered By Spark Plasma Sintering, Seyed Mohsen Fatemi, Iman Mobasherpour, Leila Nikzad, Mansour Razavi
Journal of Metals, Materials and Minerals
This research is aimed to determine the best composition of composite fabricated by Spark Plasma Sintering (SPS) to produce a suitable substituent for bone. The applied powder was prepared by the SPS method and comprises hydroxyapatite (HA), yttria-stabilized zirconia (YSZ), and titanium (Ti). Different percentages of components were used to fabricate the composite samples. X-ray diffraction was used to determine the structural phase of the sintered samples while field emission scanning electron microscopy (FE-SEM) was employed for microstructural analysis of the specimens. The behavior of the samples was investigated during sintering. The gas release, displacements, and porosity percentage of the …
Antibacterial Characterization Of Ciprofloxacin-Doped Electrospun Of Low Molecular Weight Polyethylene Oxide (Peo) And Sodium Alginate (Naalg) Nanofibers, Phuphinee Niyomchon, Treesukon Treebupachatsakul, Kasama Srirussamee
Antibacterial Characterization Of Ciprofloxacin-Doped Electrospun Of Low Molecular Weight Polyethylene Oxide (Peo) And Sodium Alginate (Naalg) Nanofibers, Phuphinee Niyomchon, Treesukon Treebupachatsakul, Kasama Srirussamee
Journal of Metals, Materials and Minerals
Producing nanofibers using the electrospinning technique is a developed method that is widely used and of significant interest nowadays. This technique can be applied using various types of polymers. This research aimed to investigate the antibacterial PEO-NaAlg nanofiber fabrication. The fiber fabrication was examined under various viscosities of electrospinning solution. The electrospun nanofiber fabrication focuses on blending polyethylene oxide (PEO) with a molecular weight of 200-300 kDa, mixed with sodium alginate (NaAlg) of three different viscosities: 150 cP, 300 cP, and 730 cP to study how the viscosity of the solution affects the morphology of electrospun nanofibers. The PEO-NaAlg electrospun …
Effects Of Various Heat Treatment Cycles On Mechanical Properties And Wear Resistance Of 65mn Carbon Steel, Amir Abbas Mojahedi, Seyed Abdolkarim Sajjadi, Fatemehsadat Sayyedan
Effects Of Various Heat Treatment Cycles On Mechanical Properties And Wear Resistance Of 65mn Carbon Steel, Amir Abbas Mojahedi, Seyed Abdolkarim Sajjadi, Fatemehsadat Sayyedan
Journal of Metals, Materials and Minerals
The aim of the present study is to investigate the effect of various heat treatment cycles on mechanical properties and wear resistance of 65Mn carbon steel. For this purpose, five different heat treatment cycles including normalizing, austenitizing, quenching, and tempering were performed at different austenitization temperatures and tempering times. Subsequently, effects of the parameters on tensile strength, toughness, hardness, and wear resistance of the heat-treated samples were investigated. X-ray diffraction (XRD) and scanning electron microscopy (SEM) equipped with energy dispersive X-ray spectroscopy (EDS) were employed to analyze microstructure of heat-treated samples. To study the wear resistance of the samples after …
Two-Step Sputtering For Depositing Smooth And Thin Zno Films On Non-Heated, Non-Epiready Pet Substrates, Nattaya Tajina Yossapong, Annop Klamchuen, Kittipong Tantisantisom, Ekkaphop Ketsombun, Taworn Intaro, Sakuntam Sanorpim, Warakorn Yanwachirakul
Two-Step Sputtering For Depositing Smooth And Thin Zno Films On Non-Heated, Non-Epiready Pet Substrates, Nattaya Tajina Yossapong, Annop Klamchuen, Kittipong Tantisantisom, Ekkaphop Ketsombun, Taworn Intaro, Sakuntam Sanorpim, Warakorn Yanwachirakul
Journal of Metals, Materials and Minerals
Highly crystalline, smooth-surface, and thin zinc oxide (ZnO) films have been successfully deposited on flexible polyethylene terephthalate (PET) substrates using an optimized two-step RF magnetron sputtering technique at ambient temperature. The PET used in this study was a commercially available overhead projector film, which was not epiready-grade and had a lower melting point (~150℃). This issue made high-quality deposition more challenging. In the first step, a thin ZnO buffer layer was deposited at low RF power to provide a smooth and thermally stable surface. This layer served as both a structural template and a thermal barrier during the subsequent high-power …
Sodium Alginate/Aloe Vera/Mangosteen Peel Extraction Hydrogel Composite Films With Anti-Staphylococcal Properties As A Promising Alternative Material In Biomedical Applications, Pruss Chimwai, Poonyarat Apikarnsakulchai, Tirawit Jindaratanaporn, Witsanu Liangaumnuay, Thitima La-Ongthitirat, Purin Somnuake, Pattara Somnuake
Sodium Alginate/Aloe Vera/Mangosteen Peel Extraction Hydrogel Composite Films With Anti-Staphylococcal Properties As A Promising Alternative Material In Biomedical Applications, Pruss Chimwai, Poonyarat Apikarnsakulchai, Tirawit Jindaratanaporn, Witsanu Liangaumnuay, Thitima La-Ongthitirat, Purin Somnuake, Pattara Somnuake
Journal of Metals, Materials and Minerals
This study focuses on the development of alternative biodegradable hydrogel films from sodium alginate as a matrix and curing into a hydrogel by CaCl2. Thus, the aloe vera (AV) and the crude extract of mangosteen peels (MPE) were additionally blended. The polymer films were prepared using the casting film process, and their morphology, functional groups, water absorption, antibacterial, thermal, and mechanical properties were characterized using SEM, FTIR, water swelling test, disk diffusion method, DSC-TGA, and UTM. The results demonstrated the heterogeneity between the composites and the polymer matrix, and a lower polarity from the decreased %water swelling from 45% to …
Li5feo4 As A Cathode Prelithiation Additive : Doping Engineering And First-Principles Research, Zixiang Li, Zile Zou, Jialan Li, Chennan Ma, Jiarun Li, Xiaoyu Liu, Jin Yi, Jianhui Li
Li5feo4 As A Cathode Prelithiation Additive : Doping Engineering And First-Principles Research, Zixiang Li, Zile Zou, Jialan Li, Chennan Ma, Jiarun Li, Xiaoyu Liu, Jin Yi, Jianhui Li
Journal of Metals, Materials and Minerals
During the initial charge-discharge cycle, irreversible loss of active lithium (~ 5% to 15%) severely affects the battery energy density and shortens cycle life of lithium‑ion batteries (LIBs). Prelithiation strategy has gradually become an effective approach to compensate for the irreversible loss of active lithium. Lithium ferrate (Li5FeO4, LFO) is considered to be a promising cathode prelithiation additive due to its high theoretical capacity (867 mAh·g‒1), suitable delithiation potential (3.5 V to 4.1 V), and competitive raw material. However, the application of LFO is limited by the its properties including poor air stability, low electronic conductivity, and incomplete delithiation. Currently, …
Synergistic Adsorption–Photocatalysis Of Activated Carbon/Titanium Dioxide Composite Derived From Rice Husk Ash Under Ultraviolet-C Irradiation, Bang-Tam Thi Dao, Do Trung Nguyen, Nhien Hon Le, Chi-Nhan Ha-Thuc
Synergistic Adsorption–Photocatalysis Of Activated Carbon/Titanium Dioxide Composite Derived From Rice Husk Ash Under Ultraviolet-C Irradiation, Bang-Tam Thi Dao, Do Trung Nguyen, Nhien Hon Le, Chi-Nhan Ha-Thuc
Journal of Metals, Materials and Minerals
Rice husk ash (RHA), an abundant biomass residue, was employed as a sustainable precursor for synthesizing activated carbon (AC) and its TiO2-based photocatalyst composite. AC was produced via ultrasonication-assisted NaOH activation of KOH-impregnated biochar, yielding a highly porous material with a large surface area. Titanium dioxide nanoparticles were synthesized from titanium (IV) isopropoxide (TTIP) and subsequently immobilized onto AC to form the AC/TiO2 composite. Structural and textural analyses (XRD, FT-IR, BET, SEM–EDS) confirmed the presence of anatase TiO2 uniformly distributed within the AC framework while preserving its porous architecture. The photocatalytic activity of the composite was assessed using Basic Blue …
Role Of Alkali And Alkaline-Earth Doped In Zeolite A-Derived From Industrial Waste Toward Direct Ethanol Dehydrogenation To Acetaldehyde, Darunee Sukchit, Malee Prajuabsuk, Chan Inntam, Saisamorn Lumlong, Bongkochawan Pakamwong, Auradee Punkvang, Duangkamol Gleeson, Pantita Trongjitraksa, Paramasivam Shanmugam, Supakorn Boonyuen, Niramol Juntarachat, Sasijuta Wattanarach, Parjaree Thavorniti, Bunjerd Jongsomjit, Pornpan Pungpo
Role Of Alkali And Alkaline-Earth Doped In Zeolite A-Derived From Industrial Waste Toward Direct Ethanol Dehydrogenation To Acetaldehyde, Darunee Sukchit, Malee Prajuabsuk, Chan Inntam, Saisamorn Lumlong, Bongkochawan Pakamwong, Auradee Punkvang, Duangkamol Gleeson, Pantita Trongjitraksa, Paramasivam Shanmugam, Supakorn Boonyuen, Niramol Juntarachat, Sasijuta Wattanarach, Parjaree Thavorniti, Bunjerd Jongsomjit, Pornpan Pungpo
Journal of Metals, Materials and Minerals
In this study, a sustainable catalytic route for converting ethanol into value-added acetaldehyde was developed using alkali- and alkaline earth-modified zeolite A synthesized from sugarcane bagasse ash (SCBA). Zeolite A was first prepared via alkaline fusion followed by hydrothermal crystallization and subsequently doped with 1 wt% K+ or Ca2+ using incipient wetness impregnation. Comprehensive physicochemical characterization (X-ray fluorescence (XRF), X-ray diffraction (XRD), scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM-EDX), Fourier transform infrared spectroscopy (FTIR), nitrogen physisorption (N2 physisorption), ammonia temperature-programmed desorption (NH3-TPD), and carbon dioxide temperature-programmed desorption (CO2-TPD)) confirmed the formation of a highly crystalline LTA framework with tunable …
Graphene-Based Materials From Liquid Phase Exfoliation Of Graphite Using Mangosteen-Peel Extract : Experiments And Molecular Simulation, Piyaphat Thepphot, Narissara Karakate, Panu Danwanichakul
Graphene-Based Materials From Liquid Phase Exfoliation Of Graphite Using Mangosteen-Peel Extract : Experiments And Molecular Simulation, Piyaphat Thepphot, Narissara Karakate, Panu Danwanichakul
Journal of Metals, Materials and Minerals
The conventional Hummers method for graphene production requires large quantities of hazardous chemicals, causing environmental impacts and sustainability concerns. This study investigated mangosteen-peel extract as a natural alternative in liquid phase exfoliation of graphite, exploiting the structural similarity between condensed tannins and graphite, which enables π−π interactions. Four exfoliation processes were studied: shear force via a homogenizer (9,500 rpm and 14,000 rpm for 41 min), sonication using an ultrasound bath (200 W and 400 kHz) for 2 h and 3 h at 50℃ and their sequential combinations. The results confirmed successful graphite exfoliation yielding samples with I2D/IG ratios of 0.51 …
Sustainable Lightweight Foams From Hazardous Aluminum Dross, Chayapat Weerapakdee, Makoto Nanko, Yen-Ling Kuo, Sukasem Watcharamaisakul, Kaito Suzuki, Seiryu Suzuki, Siriwan Chokkha
Sustainable Lightweight Foams From Hazardous Aluminum Dross, Chayapat Weerapakdee, Makoto Nanko, Yen-Ling Kuo, Sukasem Watcharamaisakul, Kaito Suzuki, Seiryu Suzuki, Siriwan Chokkha
Journal of Metals, Materials and Minerals
Aluminum dross is a hazardous byproduct from aluminum industry that causes environmental problems and high disposal cost. This work presents a sustainable route to upcycle secondary aluminum dross into lightweight ceramic foams for insulating refractory applications. Secondary aluminum dross powder was blended with polyethylene (PE) pore-forming agents (30 vol% to 70 vol%) and polyvinyl alcohol (PVA) binder added as a 7.5 wt% aqueous solution (binder contents: 1 vol% and 3 vol%), followed by pressing and sintering at 1400℃. Increasing PE systematically reduced bulk density and increased open porosity. At 70 vol% PE, the foams reached a bulk density of 0.94 …
Magnetocaloric Effect Of Gdtbdyerpr Rare-Earth High-Entropy Alloy, Yu Liu, Lei Gao, Jun Peng, Haitao Guo
Magnetocaloric Effect Of Gdtbdyerpr Rare-Earth High-Entropy Alloy, Yu Liu, Lei Gao, Jun Peng, Haitao Guo
Journal of Metals, Materials and Minerals
In this study, a GdTbDyErPr rare-earth high-entropy alloy (RE HEA) was successfully synthesized and its magnetic properties and magnetocaloric effect (MCE) were systematically investigated. The results indicate that the as-cast GdTbDyErPr RE HEA exhibits a single-phase hexagonal close-packed (HCP) structure with lattice parameters of a = 3.609 Å and c = 5.734 Å. Based on large parameter Ω, high mixing entropy (ΔSmix), and small parameters δ and εi, it can be inferred that the GdTbDyErPr alloy forms a disordered solid solution. The GdTbDyErPr RE HEA undergoes a first-order magnetic transition near about 143 K. The parameters |∆ |, RC, and …
Investigating The Effects Of Lamno. On The Morphology, Structural And Optical Properties Of Epoxy-Based Plastic Scintillators, Yeni Febrianti, Airine Hijrah Handayani, Marzuki Naibaho, Phahul Zhemas Zul Nehan, Zulkarnain -, Arbi Dimyati, Budhy Kurniawan
Investigating The Effects Of Lamno. On The Morphology, Structural And Optical Properties Of Epoxy-Based Plastic Scintillators, Yeni Febrianti, Airine Hijrah Handayani, Marzuki Naibaho, Phahul Zhemas Zul Nehan, Zulkarnain -, Arbi Dimyati, Budhy Kurniawan
Journal of Metals, Materials and Minerals
Plastic scintillators are widely used in radiation detection due to their low cost, fast response, and ease of fabrication, although their performace is often limited by low density, low atomic number, make them less efficient for applications requiring high-energy radiation. In this study, LaMnO3 was synthesized using the hydrothermal method and employed as a dopant to enhance the optical and scintillation properties of epoxy-based plastic scintillators. Structural, morphological, and optical characterizations of LaMnO3 were carried out using X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), scanning electron microscope (SEM), energy-dispersive spectroscopy (EDS), UV-Vis and photoluminescence (PL) spectroscopy. The results confirm that …
Effect Of Mgo On Crawling And Physical Properties In Ceramic Glazes, Thongpanchang Timclub, Pathitta Anuraksombat, Thatree Muangkaew, Niti Yongvanich
Effect Of Mgo On Crawling And Physical Properties In Ceramic Glazes, Thongpanchang Timclub, Pathitta Anuraksombat, Thatree Muangkaew, Niti Yongvanich
Journal of Metals, Materials and Minerals
This study attempted to seek and verify the scientific aspects responsible for crawling in ceramic glazes. The selected additive was magnesium oxide (MgO). The glazes were applied on porcelain biscuits and fired between 1100℃ and 1300℃. The degree of crawling was enhanced with increasing amount of MgO, which was accompanied by formation of forsterite (Mg2SiO4) as a major phase. Complete island separation was achieved with 10 wt% MgO with good wettability and shiny surface. The morphology of the glaze demonstrated this phase as small crystals within the glaze layer. Addition of MgO resulted in a continuous decrease in the thermal …
Enhancing Aqueous Solubility Of A Psoralen Derivative Via Cyclodextrin Inclusion Complexation : In Silico And In Vitro Study, Gulzaib Basharat, Saba Ali, Pattharamon Chaikhun, Choosak Jaroenrit, Kuakarun Krusong, Thanthapatra Bunchuay, Tanatorn Khotavivattana, Thanyada Rungrotmongkol
Enhancing Aqueous Solubility Of A Psoralen Derivative Via Cyclodextrin Inclusion Complexation : In Silico And In Vitro Study, Gulzaib Basharat, Saba Ali, Pattharamon Chaikhun, Choosak Jaroenrit, Kuakarun Krusong, Thanthapatra Bunchuay, Tanatorn Khotavivattana, Thanyada Rungrotmongkol
Journal of Metals, Materials and Minerals
N-(4-Bromobenzoyl)-8-methoxypsoralen-4-amine (BNB) is a psoralen derivative with potent cytotoxic activity against breast cancer cells but with limited pharmaceutical application and therapeutic potential due to its extremely low aqueous solubility. To overcome this limitation, β-cyclodextrin (βCD) and its derivatives dimethyl-βCD (DMβCD), hydroxypropyl-βCD (HPβCD), and sulfobutylether-βCD (SBEβCD) were investigated as carriers to enhance BNB's aqueous solubility via cyclodextrin inclusion complexation. A combined computational–experimental strategy was employed, integrating molecular docking, 500-ns all-atom molecular dynamics simulations in quintuplicate runs (2.5 µs in total), and experimental validation by phase solubility analysis, scanning electron microscopy (SEM), and differential scanning calorimetry (DSC). Docking and simulations revealed …
The Performance Of The Heat Affected Zone Of 9% Ni Steel Narrow Gap Joint Performed By The Gmaw Process With Rotating Electrode, Jorge Carlos Ferreira Jorge, Jeferson Frederico Monteiro Costa, Matheus Campolina Mendes, Luís Felipe Guimarães De Souza, Hiron Akira Yamada Magalhães, Leonardo Sales Araújo
The Performance Of The Heat Affected Zone Of 9% Ni Steel Narrow Gap Joint Performed By The Gmaw Process With Rotating Electrode, Jorge Carlos Ferreira Jorge, Jeferson Frederico Monteiro Costa, Matheus Campolina Mendes, Luís Felipe Guimarães De Souza, Hiron Akira Yamada Magalhães, Leonardo Sales Araújo
Journal of Metals, Materials and Minerals
This work investigates the mechanical properties and microstructural evolution of the heat-affected zone of 9% Ni steel narrow-gap welded joints produced by the GMAW process with a rotating electrode, since no literature on this subject is available. This process is an innovation of the GMAW process, which permits narrow gap welding because the circular motion of the electrode overcomes the main issue of the sidewall's lack of fusion observed in the conventional process. However, the rotation movement of the electric arc imposes a higher peak temperature at the heat affected zone, which can negatively affect the mechanical properties. The joints …
Synthesis And Characterization Of New Graft Copolymers Based On Ozonized Polyethylene: Comparative Approach Between Mass And Solution Grafting, Mostapha Karaoui, Samira Kharchouf, Houda El Yakoubi, Kaouthar Boumane, Mohammed Assouag
Synthesis And Characterization Of New Graft Copolymers Based On Ozonized Polyethylene: Comparative Approach Between Mass And Solution Grafting, Mostapha Karaoui, Samira Kharchouf, Houda El Yakoubi, Kaouthar Boumane, Mohammed Assouag
Journal of Metals, Materials and Minerals
New graft copolymers were developed from low-density polyethylene (LDPE) and high-density polyethylene (HDPE) following an initial ozonation step to introduce reactive functional groups onto the polymer backbone. Among the two polymers, LDPE demonstrated superior susceptibility to ozonation, making it the preferred substrate for subsequent grafting. Grafting was then performed primarily on ozonized LDPE using various functional monomers, including acrylic acid (AA), 4-vinylpyridine (4VP), acrylonitrile (AN), chloromethylstyrene (CMS), as well as copolymers such as AA–vinylphosphonic acid (AA-co-VPA) and AN–vinylphosphonic acid (AN-co-VPA). Grafting was carried out using both solution and melt techniques. The resulting materials were characterized by elemental analysis and Fourier …
Enhanced Red Emission Of Gd2moo6:Eu Phosphor-In-Glass Embedded In Sio2-Teo2-Na2o-Bao Matrix For Solid-State Lighting, Patarawagee Yasaka, Winut Wongwan, Seubsakun Khondara, Jakrapong Kaewkhao
Enhanced Red Emission Of Gd2moo6:Eu Phosphor-In-Glass Embedded In Sio2-Teo2-Na2o-Bao Matrix For Solid-State Lighting, Patarawagee Yasaka, Winut Wongwan, Seubsakun Khondara, Jakrapong Kaewkhao
Journal of Metals, Materials and Minerals
Gd2MoO6:Eu3+ phosphor-in-glass (PIG) composites were synthesized by a microwave-assisted melting technique using a 50SiO2:20TeO2:15Na2O:15BaO glass matrix containing 0.00 wt% to 10.00 wt% phosphor. Their structural, optical, and luminescent properties were systematically investigated. X-ray diffraction confirmed the formation of crystalline Gd2MoO6 phases, which became prominent at 5.00 wt% and 10.00 wt%, indicating partial crystallization within the glass network. The density and refractive index increased from 3.621 g∙cm‒3 to 3.774 g∙cm‒3 and 1.535 to 1.692 with higher phosphor loading, suggesting a more compact structure. Absorption spectra showed four characteristic Eu3+ bands at 464 nm, 534 nm, 2088 nm, and 2203 nm, while …
Hybrid Interface Effect Of G-C3n4/Zno Nanocomposites On The Photoelectrochemical Cathodic Protection Of 304 Stainless Steel In Chloride Solution, Htet Yadanar Soe, Thanate Na Wichean, Jularpar Sunttiprapar, Parichart Chaum, Gasidit Panomsuwan, Oratai Jongprateep, Ratchatee Techapiesancharoenkij
Hybrid Interface Effect Of G-C3n4/Zno Nanocomposites On The Photoelectrochemical Cathodic Protection Of 304 Stainless Steel In Chloride Solution, Htet Yadanar Soe, Thanate Na Wichean, Jularpar Sunttiprapar, Parichart Chaum, Gasidit Panomsuwan, Oratai Jongprateep, Ratchatee Techapiesancharoenkij
Journal of Metals, Materials and Minerals
The development of efficient and environmentally friendly corrosion protection systems for metals in aggressive environments has become a critical area of research, particularly for stainless steel used in marine and industrial applications. In this study, a series of graphitic carbon nitride (g-C3N4) and zinc oxide (ZnO) composites with varying g-C3N4 weight ratios (10 wt% and 30 wt%), are integrated to form heterojunction structures with enhanced charge separation and interfacial activity. The g-C3N4/ ZnO (ZCN) composite thin films were prepared using a facile thermal mixing method and were characterized using XRD, SEM, BET, FTIR, UV-Vis, and PL to confirm their structural, …
Mechanical And Microstructural Characterization Of Tib2/Zro2 Reinforced Al5052 Nanocomposites For Structural Applications, Saumy Agarwal, Satnam Singh
Mechanical And Microstructural Characterization Of Tib2/Zro2 Reinforced Al5052 Nanocomposites For Structural Applications, Saumy Agarwal, Satnam Singh
Journal of Metals, Materials and Minerals
This study investigates the fabrication and mechanical characterization of Al5052 composites reinforced with nanosized TiB2 and ZrO2 particles via stir casting. Al5052 was chosen for its high strength-to-weight ratio and corrosion resistance, making it suitable for marine and automotive applications. The addition of hard ceramic reinforcements aimed to enhance mechanical properties without severely affecting ductility. Composite samples were tested as per ASTM standards. SEM analysis confirmed sound metallurgical bonding and generally uniform particle distribution. Density tests showed slight differences between theoretical and experimental values, with porosity generally increasing with reinforcement addition, attributed to particle agglomeration at higher loadings. Mechanical testing …
Green Synthesis And Optimized Annealing Temperature Effects On Zinc Oxide Nanoparticles Using Mango Peel Extract, Supamas Wirunchit, Natchayaporn Sakulpeeb, Woradech Meedech, Sutee Chutipaijit, Wantana Koetniyom
Green Synthesis And Optimized Annealing Temperature Effects On Zinc Oxide Nanoparticles Using Mango Peel Extract, Supamas Wirunchit, Natchayaporn Sakulpeeb, Woradech Meedech, Sutee Chutipaijit, Wantana Koetniyom
Journal of Metals, Materials and Minerals
This study presents the green synthesis of zinc oxide nanoparticles (ZnO-NPs) using mango peel extract (MgE) as a natural reducing and stabilizing agent. Phytochemical extraction was performed with deionized water, ethanol, and methanol for 1 h to 5 h, with deionized water at 4 h yielding the highest flavonoid content. Using zinc nitrate as a precursor, 25 mL of MgE successfully facilitated the synthesis of ZnO-NPs (ZnO-25MgE). It was found that annealing temperature at 400℃ for 6 h produced pure ZnO. The obtained nanoparticles were characterized by X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FT-IR), and field emission scanning electron microscopy …
The Effect Of Granule Composition On The Densification And Strength Of Two Different Compacted 92% Aluminas, Ryan Mccuiston, Kritkaew Somton
The Effect Of Granule Composition On The Densification And Strength Of Two Different Compacted 92% Aluminas, Ryan Mccuiston, Kritkaew Somton
Journal of Metals, Materials and Minerals
High-alumina (Al2O3) ceramics are an important, but sometimes overlooked industrial material. Two 92% alumina spray-dried granules, which contained different sintering aid compositions, were studied. The two alumina granules, called MT and JP, were die compacted to form bend bars and heated at temperatures from 200℃ to 1600℃. The effect of the sintering aid composition on the shrinkage, density, and fracture strength of samples were investigated. It was found that MT samples had a lower density than the JP samples up to 1100℃, due to a greater weight loss following binder removal. However, between 1200℃ to 1600℃, the MT samples had …
Eco-Friendly Pva-Walnut Shell-Based Triboelectric Nanogenerator For Biomechanical Energy Harvesting And Self-Powered Touch Sensing, Sabita Tripathy, Gayatri Mohapatra, Arjun Kumar, Manoj Kumar Debnath
Eco-Friendly Pva-Walnut Shell-Based Triboelectric Nanogenerator For Biomechanical Energy Harvesting And Self-Powered Touch Sensing, Sabita Tripathy, Gayatri Mohapatra, Arjun Kumar, Manoj Kumar Debnath
Journal of Metals, Materials and Minerals
The growing demand for sustainable power in wearable electronics necessitates eco-friendly energy harvesting alternatives. Herein, a polyvinyl alcohol-walnut shell (PVA-WS) composite was developed as a biodegradable triboelectric active layer for a single-electrode triboelectric nanogenerator (TENG). Walnut shell powder, a lignocellulosic agricultural byproduct, was incorporated into PVA at an optimised 3 wt%, enhancing surface micro-roughness and charge trapping capability as confirmed by SEM and XRD analyses. The fabricated device yielded a peak output voltage of 130 V, short-circuit current of 390 nA, and maximum power of 20 μW at 500 MΩ under 1 Hz excitation, while also successfully harvesting biomechanical energy …
Surface Characteristics Of Montmorillonite Reinforced Cellulose Membranes Derived From Pineapple Waste, Naufal Rizky Amasda, Heru Suryanto, Aminnudin Aminuddin, Uun Yanuhar, Nanda Lidya Cinta Aulia Sari, Agus Suyetno, Komarudin Komarudin, Fajar Nusantara, Gaguk Jatisukamto, Aulia Surya Ramadhan
Surface Characteristics Of Montmorillonite Reinforced Cellulose Membranes Derived From Pineapple Waste, Naufal Rizky Amasda, Heru Suryanto, Aminnudin Aminuddin, Uun Yanuhar, Nanda Lidya Cinta Aulia Sari, Agus Suyetno, Komarudin Komarudin, Fajar Nusantara, Gaguk Jatisukamto, Aulia Surya Ramadhan
Journal of Metals, Materials and Minerals
This study aims to investigate the effect of montmorillonite on the surface characteristics and porosity of bacterial nanocellulose (BNC) membranes derived from pineapple peel waste. The bacterial cellulose was synthesized using Acetobacter xylinum using pineapple peel extract as medium component. Bacterial nanocellulose membrane (BNC) was obtained by crushing and homogenizing bacterial cellulose in a high-pressure homogenizer. BNC membrane was reinforced with montmorillonite content of 2 wt% to 8 wt%. The membrane was characterized for its properties using SEM, FTIR, surface roughness tester, tensile tester, water holding capacity test, and BET analysis. The results showed that montmorillonite was well-dispersed within BNC …
Development Of Microfluidic Device To Monitor The Contamination In Drinking Water Using Impedance Spectroscopy, Pornpipat Oupchan
Development Of Microfluidic Device To Monitor The Contamination In Drinking Water Using Impedance Spectroscopy, Pornpipat Oupchan
Chulalongkorn University Theses and Dissertations (Chula ETD)
Microplastic contamination is a growing concern, as microplastics have been found in brain tissue and can enter the body through consumption. The objective of this research is to develop a microfluidic device to monitor microplastic particles by using electrical impedance spectroscopy principles. The device operates based on a flow-through principle. The configuration of electrode consists of copper-based cylindrical electrode with diameter of 300 micrometer and a center-to-center spacing of 2000 micrometer. The electrodes are designed to be replaceable. The microchannel has a rectangular cross-section with a width of 2000 micrometer and a height of 1000 micrometer. The microfluidic device was …
การทำความเย็นส่วนบุคคลโดยใช้วัสดุเปลี่ยนสถานะสำหรับบุคลากรที่สวมใส่ชุดป้องกันการติดเชื้อส่วนบุคคล, พรพุทธ วิสุทธิวัชรกุล
การทำความเย็นส่วนบุคคลโดยใช้วัสดุเปลี่ยนสถานะสำหรับบุคลากรที่สวมใส่ชุดป้องกันการติดเชื้อส่วนบุคคล, พรพุทธ วิสุทธิวัชรกุล
Chulalongkorn University Theses and Dissertations (Chula ETD)
ชุดป้องกันส่วนบุคคล (PPE) เป็นอุปกรณ์สำคัญที่ช่วยลดความเสี่ยงในการติดเชื้อของบุคลากรทางการแพทย์ อย่างไรก็ตาม การสวม PPE เป็นเวลานาน โดยเฉพาะในสภาพอากาศร้อนและชื้นอย่างประเทศไทย มักนำไปสู่การกักเก็บความร้อนในร่างกาย การระบายความร้อนลดลง และเกิดความไม่สบาย ความเหนื่อยล้า รวมถึงภาวะเครียดจากความร้อน งานวิจัยนี้จึงได้พัฒนาแบบจำลองชีวความร้อนอย่างง่าย (simplified bioheat model) โดยอ้างอิงโครงสร้างแบบจำลองแบบ passive ของ Fiala และเสริมด้วยการตอบสนองทางสรีรวิทยาแบบ active ที่จำเป็น เพื่อใช้ทำนายอุณหภูมิของร่างกายและประเมินความสบายทางความร้อนเมื่อสวม PPE ร่วมกับการระบายความร้อนด้วยวัสดุเปลี่ยนสถานะ (Phase Change Material: PCM) ผลการตรวจสอบความถูกต้องเทียบกับแบบจำลองอ้างอิงของ Fiala แสดงให้เห็นว่าแบบจำลองที่พัฒนาขึ้นมีความแม่นยำดี โดยมีความคลาดเคลื่อนของอุณหภูมิอยู่ภายใน ±0.2°C นอกจากนี้ผลการจำลองยังพบว่า PCM สามารถลดความเครียดจากความร้อนและเพิ่มความสบายทางความร้อนอย่างมีนัยสำคัญในช่วง 60 นาทีแรกของการทำงาน แม้ว่าประสิทธิภาพจะลดลงเมื่อ PCM หลอมละลายเต็มที่ก็ตาม ข้อจำกัดของงานวิจัยนี้ คือ แบบจำลองตั้งอยู่บนสมมติฐานของสภาวะอากาศร้อน (เริ่มต้นที่ 30°C) ทำให้ยังไม่สามารถแทนสภาวะอากาศเย็นได้อย่างสมบูรณ์ อีกทั้งไม่ได้พิจารณาการตอบสนองทางสรีรวิทยาระยะยาว เช่น ภาวะขาดน้ำ ความเหนื่อยล้า หรือความเครียดเชิงกลจากน้ำหนัก PCM ที่เพิ่มขึ้น ถึงแม้จะมีข้อจำกัดดังกล่าว แบบจำลองนี้ยังคงสามารถทำนายอุณหภูมิร่างกายและค่าความรู้สึกทางความร้อนแบบพลวัต (DTS) ได้อย่างมีประสิทธิภาพก่อนการใช้งานจริง จึงสามารถนำไปใช้เป็นเครื่องมือช่วยวางแผนระยะเวลาการทำงานที่ปลอดภัย และช่วยกำหนดปริมาณ รวมถึงตำแหน่งการติดตั้ง PCM ที่เหมาะสม ผลลัพธ์จากงานวิจัยนี้สามารถเป็นฐานข้อมูลสำคัญสำหรับการออกแบบชุด PPE ที่ปลอดภัย และช่วยลดภาระความร้อนสำหรับบุคลากรทางการแพทย์ในสภาพแวดล้อมร้อนชื้นได้ดียิ่งขึ้น
Photocatalytic Performance Of Ba₀.₈Ca₀.₂Tio₃ Composite For Norfloxacin Removal In Aqueous Solutions, Raj Mohanty, Swayam Aryam Behera, Asima Subhadarshini, Binita Nanda, P. Ganga Raju Achary
Photocatalytic Performance Of Ba₀.₈Ca₀.₂Tio₃ Composite For Norfloxacin Removal In Aqueous Solutions, Raj Mohanty, Swayam Aryam Behera, Asima Subhadarshini, Binita Nanda, P. Ganga Raju Achary
Journal of Metals, Materials and Minerals
This study investigates the degradation of norfloxacin using a Ba0.8Ca0.2TiO3 (BCTO) perovskite composite synthesized via a simple solid-state method. Variety of characterization techniques, including photoluminescence spectra, powder X-Ray Diffraction, UV-Vis Diffuse Reflectance Spectra, FE-SEM and Fourier-Transform Infrared spectra confirm the structural and optical properties of BCTO. Electrical characterization further elucidates its conductive properties. The BCTO composite demonstrates an impressive 87% degradation rate of norfloxacin, attributed to its reduced electron-hole recombination, enhanced light harvestation, and improved charge carrier mobility. Kinetic studies indicate that the degradation process adheres to a pseudo-first-order model, with BCTO outperforming both pure BaTiO3 and conventional photocatalysts. These …
Improving The Mechanical Performance Of 45s5 3d Scaffolds Through The Particles Of Barium Titanate Ceramics, Surirat Yotthuan, Usanee Pantulap, Nuttawan Sawangboon, Ornuma Tungsanguan, Ekarat Meechoowas, Kansiree Kaewmorakot, Nathaporn Uthaichai, Theerachai Bongkarn
Improving The Mechanical Performance Of 45s5 3d Scaffolds Through The Particles Of Barium Titanate Ceramics, Surirat Yotthuan, Usanee Pantulap, Nuttawan Sawangboon, Ornuma Tungsanguan, Ekarat Meechoowas, Kansiree Kaewmorakot, Nathaporn Uthaichai, Theerachai Bongkarn
Journal of Metals, Materials and Minerals
Bioglass® 45S5 is widely used in bone tissue engineering due to its excellent bioactivity. However, its low mechanical strength remains a major limitation. In this study, 25 wt% barium titanate (BaTiO3; BT) was incorporated into 45S5 scaffolds to improve mechanical performance and modulate bioactivity. The 3D scaffolds were fabricated using the foam replication method and exhibited interconnected porosity, with average pore sizes of 471 ± 94 μm (45S5) and 598 ± 58 μm (45S5/BT25), closely resembling human bone. The addition of BT increased the density and compressive strength of the scaffolds to 2.89 ± 0.18 g∙cm‒3 and 2.0 ± 0.2 …
Synthesis And Characterization Of Silica Nanoparticles From Solar Panel Glass Cullet, Pathomporn Ussawanawachat, Nithiwach Nawaukkaratharnant, Apirat Theerapapvisetpong
Synthesis And Characterization Of Silica Nanoparticles From Solar Panel Glass Cullet, Pathomporn Ussawanawachat, Nithiwach Nawaukkaratharnant, Apirat Theerapapvisetpong
Journal of Metals, Materials and Minerals
The rapid growth of solar energy as a renewable resource has led to a significant increase in discarded solar panels. Recycling their glass components, especially fine cullet fragments, remains a major challenge due to impurity levels and processing limitations. This study proposes a sustainable approach to recycle solar panel glass cullet into high-purity silica nanoparticles using alkali fusion followed by acid precipitation. Process conditions including cullet to NaOH ratio, fusion temperature, and surfactant addition were optimized. The highest silica yield of 60.26% was achieved at a 1:1.4 cullet to NaOH ratio and 500℃. Polyethylene glycol (PEG 1000) was used as …