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Full-Text Articles in Engineering Science and Materials

Impact Of Quenching Intensity Conditions On Using A Finite Element Model To Investigate The Microstructure And Hardenability Of Low-Alloy Steel, J. S. Alabi, E. Heidari, M. F. Buchely, K. Chandrashekhara, S. N. Lekakh, R. J. O'Malley, V. Athavale, A. Kumar Jan 2024

Impact Of Quenching Intensity Conditions On Using A Finite Element Model To Investigate The Microstructure And Hardenability Of Low-Alloy Steel, J. S. Alabi, E. Heidari, M. F. Buchely, K. Chandrashekhara, S. N. Lekakh, R. J. O'Malley, V. Athavale, A. Kumar

Materials Science and Engineering Faculty Research & Creative Works

Quenching is one of the primary processes to improve mechanical properties in steels, particularly hardness. Quenching is well established for different geometries of individually treated steel components; while in-steam quenching of large diameter continuously cast steel bar has several specific features which are difficult and costly to experimentally optimize. the end-quench Jominy test has been used extensively to study the hardenability of different steel grades. Different numerical, analytical, and empirical models have been developed to simulate the Jominy process and to understand quenching of steels. However, it is not straight forward to translate experimental data from Jominy test on instream …


A Concept Of Producing Aluminum In-Situ On The Moon Through Molten Salt Electrolysis, Jacob N. Ortega, Jeffrey Smith, Fateme Rezaei, David Bayless, William Schonberg, Daniel Stutts, Daoru Han Jan 2024

A Concept Of Producing Aluminum In-Situ On The Moon Through Molten Salt Electrolysis, Jacob N. Ortega, Jeffrey Smith, Fateme Rezaei, David Bayless, William Schonberg, Daniel Stutts, Daoru Han

Materials Science and Engineering Faculty Research & Creative Works

This paper presents a concept of producing aluminum in-situ on the lunar surface, namely, the Lunar In-Situ Aluminum Production through Molten Salt Electrolysis (LISAP-MSE) method developed at Missouri University of Science and Technology. This paper aims to demonstrate the use of electro-deoxidation to reduce aluminum oxide (i.e., alumina) into aluminum and oxygen gas via electrolysis in a molten salt bath for the production of aluminum on the Moon. It is shown that with a steady supply of hydrogen chloride, this in-situ resource utilization (ISRU) method could supply several necessary materials consumed in the electro-deoxidation process except hydrogen chloride to produce …


Short Strand Carbon Fiber Reinforced Polylactic Acid Filament For Additive Manufacturing, Dale Chenoweth, Lukas Seggi, Luke Phillips Jan 2024

Short Strand Carbon Fiber Reinforced Polylactic Acid Filament For Additive Manufacturing, Dale Chenoweth, Lukas Seggi, Luke Phillips

Williams Honors College, Honors Research Projects

In this design project, the additive manufacturing filament of short strand carbon fiber (SSCF) reinforced polylactic acid (PLA) composite was developed. The micro-size, precision cut SSCFs were mixed with the PLA pellets through a melting homogenization process. Through this process the composite material block is cut and divided into pieces for ease of pelletizing. The material block pieces are then pelletized to be fed through the single screw extruder to develop the SSCF-PLA composite filament. The SSCF-PLA filaments were manufactured with a varying amount of SSCF ranging from 0.5% to 10% of the material block's weight. Development of a 1% …


Functional Verification Of Additively Manufactured Metallopolymer Structures For Structural Electronics Design, Nathan D. Singhal Jan 2024

Functional Verification Of Additively Manufactured Metallopolymer Structures For Structural Electronics Design, Nathan D. Singhal

Honors Undergraduate Theses

As an attempt to improve the overall cost-effectiveness and ease of structural electronics manufacturing, this study characterizes the mechanical and electrical responses of structures which are fabricated from a novel metallopolymer composite material by fused deposition modeling as they are subjected to quasi-static, uniaxial mechanical tension. Baseline values of tensile properties and electrical resistivity were first obtained via ASTM D638-22 standard testing procedures and linear sweep voltammetry (LSV), respectively. A hybrid procedure to measure in-situ mechanically dependent electrical behavior was subsequently developed and implemented. The mechanical and electromechanical testing was followed by the derivation of stochastic values for several mechanical …


Transitioning To A Lower Global Warming Refrigerant, A Performance Study Of R-513a And Hfc-134a In Commercial Chillers, Hossein Abedsoltan, Mark B. Shiflett Jan 2024

Transitioning To A Lower Global Warming Refrigerant, A Performance Study Of R-513a And Hfc-134a In Commercial Chillers, Hossein Abedsoltan, Mark B. Shiflett

Chemical and Biochemical Engineering Faculty Research & Creative Works

The performance of R-513A and HFC-134a refrigerants is compared in two identical chillers operating at the University of Kansas. R-513A is a more environmentally friendly refrigerant due to its lower global warming potential that can be used as a retrofit replacement for HFC-134a in chillers. This study investigates the performance comparison of transitioning from HFC-134a to R-513A. The chillers have been in operation for two years, and cooling capacity, coefficient of performance, and other operating parameters are compared under similar cooling conditions. Cooling capacities ranged from 100 to 500 kW for both chillers. Overall, the energy consumption and coefficient of …


Experimental Characterization And Quantification Of Deformation Behavior In A Porous Carbon Fiber Network, Robert N Quammen Jan 2024

Experimental Characterization And Quantification Of Deformation Behavior In A Porous Carbon Fiber Network, Robert N Quammen

Theses and Dissertations--Chemical and Materials Engineering

Due to their wide range of attractive functional properties (such as low thermal conductivity and low density) porous materials are utilized in a variety of applications. In order to characterize these properties and others, the intrinsically heterogeneous microstructures of these materials need to be taken into account. These microstructures result in interactions across multiple length scales spanning several orders of magnitude. This makes the creation of robust computational models and straight-forward predictions of mechanical properties difficult for porous materials. With this in mind, this dissertation aims to provide experimental mechanical and deformation information spanning the length scales of interest for …


Extrusion-Based Additive Manufacturing Of Magnetic Heat Exchange Structures For Caloric Applications, Vaibhav Sharma Jan 2024

Extrusion-Based Additive Manufacturing Of Magnetic Heat Exchange Structures For Caloric Applications, Vaibhav Sharma

Theses and Dissertations

Currently, the commercial building sector accounts for 18% of total U.S. end-use energy consumption, of which almost a third was from on-site combustion of fossil fuels for space and water heating. Magnetic heat pumping (MHP) technology is an energy-efficient, sustainable, environmentally-friendly alternative to conventional vapor-compression cooling technology. Several MHP designs today are predicted to be highly energy efficient, on condition that suitable working materials can be developed. This materials challenge has proven to be daunting due to issues associated with intricate synthesis/post-processing protocols and complications related to shaping the mostly brittle magnetocaloric alloys into thin-walled channeled regenerator structures to facilitate …


Investigating The Role Of Tesserae In Energy Absorption In Shark Cartilage, Molly Dobrow Jan 2024

Investigating The Role Of Tesserae In Energy Absorption In Shark Cartilage, Molly Dobrow

UNF Graduate Theses and Dissertations

Unlike mammals, shark endoskeletons are composed of cartilage, which is less stiff compared to bone. Despite this structural disadvantage, sharks have risen to become apex predators, with reported maximum posterior bite force estimates approximating 5914 N in bull sharks. Shark jaws are estimated to undergo high cycle loading within the organism’s lifecycle without evidence of failure. Fatigue resistance may relate to mineral distribution within a component of the endoskeletal system – tesserae. Tesserae are thin, roughly hexagonal tiles composed of calcium phosphate hydroxyapatite (HA) crystals and grow by accretion to eventually surround the hyaline cartilage core. Though tesserae dimensions are …


Corrosion Behavior Of Ysz And Ysz/Nico Coatings On Inconel 625 Exposed Alkali Chlorides, Resetiana Dwi Desiati, Eni Sugiarti, Bambang Hermanto, Gerald Ensang Timuda, Hubby Izzuddin, Fraya Aulia Salsabilla, Anawati Anawati Jan 2024

Corrosion Behavior Of Ysz And Ysz/Nico Coatings On Inconel 625 Exposed Alkali Chlorides, Resetiana Dwi Desiati, Eni Sugiarti, Bambang Hermanto, Gerald Ensang Timuda, Hubby Izzuddin, Fraya Aulia Salsabilla, Anawati Anawati

Journal of Metals, Materials and Minerals

Alkali chloride attack on boiler pipe walls is considered the main problem of corrosion in the waste-to-energy (WTE) industry, even though uses superalloy. Electrophoretic deposited (EPD) yttria-stabilized zirconia (YSZ) coating is carried out to protect the Inconel 625 substrate. YSZ is deposited directly both on the Inconel 625 substrate and NiCo-Inconel 625. Corrosion resistance was conducted using the 3.5% NaCl electrochemical test and the hot salt corrosion test at 600°C in alkaline salt media such as NaCl, KCl, and CaCl2. The potentiodynamic polarization curve shows that the YSZ coating deposited on the substrate (single-layer) has a corrosion rate of 0.065 …


Study Of Titanium Alloy Ti–Al–Zr–Nb–V During Heating Under Deformation And Its Phase Transformation Features, Aidar Kenzhegulov, Axaule Mamaeva, Aleksander Panichkin, Akerke Imbarova, Balzhan Kshibekova, Rashida Aubakirova, Nazgul Toiynbaeva Jan 2024

Study Of Titanium Alloy Ti–Al–Zr–Nb–V During Heating Under Deformation And Its Phase Transformation Features, Aidar Kenzhegulov, Axaule Mamaeva, Aleksander Panichkin, Akerke Imbarova, Balzhan Kshibekova, Rashida Aubakirova, Nazgul Toiynbaeva

Journal of Metals, Materials and Minerals

An alloy based on Ti–Al–Zr–Nb–V was prepared and its deformation behavior at elevated temperatures was studied. The microstructure and phase of the alloys were characterized by optical microscopy, scanning electron microscopy, thermal analysis, and mechanical testing. The results showed that the Ti–Al–Zr–Nb–V alloy, when stretched, exhibits a superplasticity effect in the range of  975℃ to 1100℃, with an elongation of up to 400%. It was found that superplasticity develops in the temperature region of the α+β→β transition and is accompanied by a change in grain size and redistribution of alloying elements among phases.


One-Pot Microwave-Assisted Approach Of Polydiacetylene/Zinc Oxide Nanocomposite For Reversible Thermochromic, Chanita Khanantong, Thanutpon Srinopkun, Thitirut Boonmak, Jintana Siriboon Jan 2024

One-Pot Microwave-Assisted Approach Of Polydiacetylene/Zinc Oxide Nanocomposite For Reversible Thermochromic, Chanita Khanantong, Thanutpon Srinopkun, Thitirut Boonmak, Jintana Siriboon

Journal of Metals, Materials and Minerals

This study introduces a new technique to fabricate the reversible poly(PCDA/ZnO) nanocomposites thermochromism. Our preparation process is the solution-mixing method, which is supported by microwave synthesis time instead of ultrasonic bath or stirrer. The presence of ethanol molecules in aqueous media in the solution-mixing method induces dipolar polarization. In addition, the presence of Zn2+ leaking out of the ZnO can produce ionic polarization. These factors affect the shape of poly(PCDA/ZnO) nanocomposites based on their thermochromic properties. The optical properties of poly(PCDA/ZnO) nanocomposite were determined through UV-Vis absorption spectroscopy. The morphology of this nanocomposite was examined by scanning electron microscopy, and …


Green Synthesis Of Carbon Dots From Mangosteen Peel For Fluorescent Cancer Cells, Supaluck Amloy, Tanachporn Lukprang, Monthon Lertworapreecha, Pakorn Preechaburana Jan 2024

Green Synthesis Of Carbon Dots From Mangosteen Peel For Fluorescent Cancer Cells, Supaluck Amloy, Tanachporn Lukprang, Monthon Lertworapreecha, Pakorn Preechaburana

Journal of Metals, Materials and Minerals

Recently, carbon dots (CDs) have received significant attention owing to their outstanding optical properties, good solubility, and low toxicity. In this research, CDs were synthesized by a hydrothermal method based on an environmentally friendly and straightforward strategy, using only mangosteen peel and deionized water. The synthesized CDs had an average size of 3.09 ± 0.38 nm. The absorbance spectrum peak for the CDs was seen at 282 nm, and the central wavelength of fluorescence emission was observed at 433 nm under an excitation wavelength of 355 nm. An aqueous solution of CDs exhibited bright green fluorescence when observed with the …


Fabrication Of Porous Geopolymers Utilizing Aluminum Wastes As Foaming Agent, Siriwan Chokkha, Jiratchaya Ayawanna, Anurat Poowancum, Thanasak Singlaem, Pusit Mitsomwang Jan 2024

Fabrication Of Porous Geopolymers Utilizing Aluminum Wastes As Foaming Agent, Siriwan Chokkha, Jiratchaya Ayawanna, Anurat Poowancum, Thanasak Singlaem, Pusit Mitsomwang

Journal of Metals, Materials and Minerals

Porous geopolymers (PG) are attractive due to their simple fabrication and diverse applications. This work presents a method for fabricating PG by using aluminum salt slag (ASS) as a foaming agent and metakaolin (MK) as the precursor. Sodium silicate (Na2SiO3) and sodium hydroxide (NaOH) are used as alkali activator solutions. The results show that the PG is fabricated by using the sequence mixing method. ASS was milled to a size of 4 µm, then mixed with an NaOH solution for 30 min. After that, MK and Na2SiO3 solution were added. The weight ratio of Na2SiO3/NaOH and solid/liquid was 2.0 and …


Influence Of Annealing Times For W Films On The Structure And Electrochromic Properties Of Anodized Wo3 Films, Watcharaporn Thongjoon, Kamon Aiempanakit, Montri Aiempanakit, Chantana Aiempanakit Jan 2024

Influence Of Annealing Times For W Films On The Structure And Electrochromic Properties Of Anodized Wo3 Films, Watcharaporn Thongjoon, Kamon Aiempanakit, Montri Aiempanakit, Chantana Aiempanakit

Journal of Metals, Materials and Minerals

WO3 films were prepared from annealed W films by anodization and annealing at 450℃ for 1 h. The sputtered W films were annealed before anodization at different times for 0.5 h to 2 h, followed by immediate removal from the furnace (quenching) or slow cooling (cool-down). The WO3 films exhibited a different preferred orientation between the (200) and (222) planes. The morphological structure of the WO3 films depended on the annealing time and cooling features of the W films. The WO3 films for the cool-down condition had smaller grains and more pores than the quenching condition. The WO3 films prepared …


Fabrication And Characterization Of Sb-Doped Mxene Prepared By Hydrothermal Method For Use As A Sensing Electrode For Heavy Metal Detection, Siranaree Phoohadsuan, Thitima Maturos Daniels, Mati Horprathum, Nichaphat Thongsai, Eakkasit Punrat Jan 2024

Fabrication And Characterization Of Sb-Doped Mxene Prepared By Hydrothermal Method For Use As A Sensing Electrode For Heavy Metal Detection, Siranaree Phoohadsuan, Thitima Maturos Daniels, Mati Horprathum, Nichaphat Thongsai, Eakkasit Punrat

Journal of Metals, Materials and Minerals

MXene, a two-dimensional material with favorable physicochemical characteristics, has demonstrated outstanding efficiency in a wide range of applications because of their superior properties, such as higher surface area and conductivity, and facile surface modification. In this study, antimony (Sb) doped MXenes were synthesized via a simple hydrothermal method, employing various Sb concentrations ranging from 5%w/w to 25%w/w. The successful preparation of the Sb-doped MXene (Sb@MXene) was confirmed by an X-ray diffraction (XRD) method. Physical morphologies examined through field-emission scanning electron microscopy (FE-SEM) depict the presence of Sb nanoparticles with the size of about 80 nm on the surface and interlayer …


Realizing Fast Plating/Stripping Of High-Performance Zn Metal Anode With A Low Zn Loading, Zhuo Li, Tamene Tadesse Beyene, Kai Zhu, Dianxue Cao Jan 2024

Realizing Fast Plating/Stripping Of High-Performance Zn Metal Anode With A Low Zn Loading, Zhuo Li, Tamene Tadesse Beyene, Kai Zhu, Dianxue Cao

Journal of Metals, Materials and Minerals

Zn metal batteries and capacitors (ZMBs/ZMCs) are gaining significant attention due to their low cost, high safety, and high theoretical capacity. However, the low utilization of Zn metal decreases the coulombic efficiency. Here, we present a novel approach to enhance the conductivity of host materials by utilizing a 3D conductive structural network of copper mesh. The 3D copper mesh serves as a high-conductive matrix and additionally coating it with Zn serves as a Zn source. Finally, a flexible reduced graphene oxide (rGO) was deposited on the Zn-coated copper mesh as an anode protective layer. The conductive copper mesh renders a …


The Effects Of The Crystallinity Index Of Cellulose On The Flexural Properties Of Hybrid-Cellulose Epoxy Composites, Nathawat Poopakdee, Warut Thammawichai Jan 2024

The Effects Of The Crystallinity Index Of Cellulose On The Flexural Properties Of Hybrid-Cellulose Epoxy Composites, Nathawat Poopakdee, Warut Thammawichai

Journal of Metals, Materials and Minerals

This work investigated the effects of the crystallinity index (CI) of cellulose on the flexural properties of hybrid-cellulose epoxy composites. The CI was varied by combining cellulose microfibrils (CMF) and microcrystalline cellulose (MCC), extracted from coir and eucalyptus, respectively, in various mixing ratios. From the XRD analysis, it was shown that the CI values and the CMF/MCC content follow a parabolic-fitting pattern, reaching a maximum value of 82.06% for the CMF/MCC of 30/70. The composites with cellulose of different CI values were fabricated and the flexural properties were measured. The results showed that the flexural strength increased as the CI …


Maintenance Of The Deteriorated Infrastructure In Thailand, Pakawat Sancharoen, Sothyrak Rath, Dong Viet Phuong Tran, Pitichon Klomjit, Somnuk Tangtermsirikul Jan 2024

Maintenance Of The Deteriorated Infrastructure In Thailand, Pakawat Sancharoen, Sothyrak Rath, Dong Viet Phuong Tran, Pitichon Klomjit, Somnuk Tangtermsirikul

Journal of Metals, Materials and Minerals

Infrastructure has been aged and deteriorated by various causes. Maintenance of its safety and serviceability are crucial and many countries have raised concerns about the existing infrastructure. Infrastructure in Thailand has been also aged. This paper shows results of studies relating to maintenance of infrastructure in Thailand. Inspection of the existing infrastructure in Bangkok was conducted by both visual and non-destructive testing (NDT) showing many deteriorations, and damages. Most of the deteriorations are caused by low concrete covering depth and water leakage. While in marine environment, chloride attack is the main cause. Evaluation criteria for NDT results are studied and …


Properties Of Acrylonitrile-Butadiene-Styrene Nanocomposites Adding Ammonia Plasma Treated Carbon Nanotubes/Graphene Nanoplatelets For Electronic Discharge Application, Sorawit Duangsripat, Pajaera Patanathabutr, Nattakarn Hongsriphan Jan 2024

Properties Of Acrylonitrile-Butadiene-Styrene Nanocomposites Adding Ammonia Plasma Treated Carbon Nanotubes/Graphene Nanoplatelets For Electronic Discharge Application, Sorawit Duangsripat, Pajaera Patanathabutr, Nattakarn Hongsriphan

Journal of Metals, Materials and Minerals

Carbon-based nanofillers have been applied in various products, especially electrical and electronic products. It could be used to modify electrical conductivity of the integrated circuit (IC) polymeric packaging in order to prevent electrostatic discharge that would damage electronic integrity. This research reported the influence of ammonia plasma functionalization and its concentration on electrical, mechanical and thermal properties of Acrylonitrile-Butadiene-Styrene (ABS) reinforced with a mixture of CNTs and GNPs. Nanocomposites were successfully compounded using a twin-screw extruder, which firstly the masterbatch was prepared and then mixed with neat polymer into various concentrations (2 wt%, 4 wt%, 6 wt%, and 8 wt%). …


Adhesive Wear Characteristics Of Mono And Hybrid Cf/Ep Composite With Nano-Hap Filler, Divya Gurkar Somashekar, Naveena Bettahalli Eswaregowda, Suresha Bheemappa Jan 2024

Adhesive Wear Characteristics Of Mono And Hybrid Cf/Ep Composite With Nano-Hap Filler, Divya Gurkar Somashekar, Naveena Bettahalli Eswaregowda, Suresha Bheemappa

Journal of Metals, Materials and Minerals

Composites materials with more than two reinforcing materials are called hybrid composites.  Tailoring the composites by hybridizing fillers, fibers and matrix will yield better properties compared to mono-composites. Hence, an effort has been made in the current research work to develop carbon fiber epoxy hybrid nanocomposites, comprising different weight percentage of Hydroxyapatite (HAP) to evaluate the potential effects on tribological properties using two body sliding wear method. Taguchi technique (L27 array) has been adopted to investigate the impact of parameters such as filler inclusion (0%, 1.5%, and 3%), load (30, 45, and 60 N), sliding velocity (1, 2, and 3 …


Effects Of Oleylamine Concentration On The Synthesis Of Formamidinium Lead Halide Perovskite Nanocrystals And Physical-Optical Properties, Kunlasatree Kunsaeng, Yingyot Infahsaeng Jan 2024

Effects Of Oleylamine Concentration On The Synthesis Of Formamidinium Lead Halide Perovskite Nanocrystals And Physical-Optical Properties, Kunlasatree Kunsaeng, Yingyot Infahsaeng

Journal of Metals, Materials and Minerals

Perovskite nanocrystals (PNCs) has been extensively interested owing to their distinctive properties for applications in optoelectronics and energy harvesting. The properties of these nanocrystals, including optical and energy characteristics, can be tuned by adjusting the particle size using different synthesis techniques. Among these, the ligand-assisted reprecipitation (LARP) method has become popular for its simplicity and scalability. Nevertheless, it is vital to understand that the growth of PNCs is extremely sensitive to the conditions of synthesis, highlighting the importance of recognizing the factors that limit the formation and properties of PNCs. In this study, PNCs based on formamidinium lead bromide (FAPbBr3) …


Synthesis And Visible Light Photocatalytic Activity Of Silver Zinc Phosphates, Rina Kanemoto, Hiroaki Onoda Jan 2024

Synthesis And Visible Light Photocatalytic Activity Of Silver Zinc Phosphates, Rina Kanemoto, Hiroaki Onoda

Journal of Metals, Materials and Minerals

Currently, photocatalytic materials in common use mainly use ultraviolet light, but the amount of ultraviolet light contained in sunlight is limited and their energy efficiency is known to be low. Therefore, there is a need for a compound that shows photocatalytic activity in visible light, and silver phosphate matches this requirement, but it is relatively expensive. In this study, photocatalytic materials that could use visible light and were relatively inexpensive were attempted to be prepared. Specifically, samples were prepared by changing the silver/zinc molar ratio (Ag/Zn = 100/0, 90/10, 80/20, 70/30, 60/40), and each sample was evaluated and examined from …


Fabrication And Characterization Of Zinc Anode On Nickel Conductive Cloth For High-Performance Zinc Ion Battery Applications, Tanapoom Mawintorn, Kittima Lolupiman, Napat Kiatwisarnkij, Pattaraporn Woottapanit, Manickavasakam Karnan, Suwimon Saneewong Na Ayuttay, Xinyu Zhang, Panyawat Wangyao, Jiaqian Qin Jan 2024

Fabrication And Characterization Of Zinc Anode On Nickel Conductive Cloth For High-Performance Zinc Ion Battery Applications, Tanapoom Mawintorn, Kittima Lolupiman, Napat Kiatwisarnkij, Pattaraporn Woottapanit, Manickavasakam Karnan, Suwimon Saneewong Na Ayuttay, Xinyu Zhang, Panyawat Wangyao, Jiaqian Qin

Journal of Metals, Materials and Minerals

The development of advanced materials for energy storage is critical to addressing global energy challenges. Zinc-ion batteries offer a promising solution due to their safety, cost-effectiveness, and environmental friendliness. In this study, we enhanced the conductivity of cotton by coating it with electroless nickel, followed by zinc electroplating, to create a flexible material suitable for zinc-ion battery applications. Cotton was coated with electroless nickel at temperatures ranging from 40°C to 60°C for 1 min to 13 min. Subsequently, zinc electroplating was performed with current densities of 0.02 A·cm‒2 for 60 min, 0.03 A·cm‒2 for 40 min, and 0.04 A·cm‒2 for …


Tin, Silver, And Copper Sulfate Compound Extraction From Lead-Free Solder Dross By Reduction With Petroleum Coke, Electrorefining, Cementation, And Crystallization Process, Sakhob Khumkoa, Natthicha Ma-Ud, Tapany Patcharawit, Tanongsak Yingnakorn Jan 2024

Tin, Silver, And Copper Sulfate Compound Extraction From Lead-Free Solder Dross By Reduction With Petroleum Coke, Electrorefining, Cementation, And Crystallization Process, Sakhob Khumkoa, Natthicha Ma-Ud, Tapany Patcharawit, Tanongsak Yingnakorn

Journal of Metals, Materials and Minerals

Solder dross, a waste by-product from the electronic component dipping bath, contains significant quantities of valuable metals. This study presents a four-step process for recovering tin, silver, and copper from lead-free Sn-Ag-Cu solder dross. The process involves the initial reduction of the dross using petroleum coke to produce an anode plate, followed by electrorefining to extract tin from the anode plate. Selective leaching of silver and copper from the residual anode slime and cementation techniques are employed to recover silver powder. The rest of the copper solution was used to synthesize copper sulfate crystals. Experimental results demonstrate optimal conditions for …


Optimization Of Ultrasound-Assisted Anthocyanin Extraction From Agricultural Waste Purple Corn Silk For Multifunctional Hemp Finishes, Benjamas Klaykruayat, Nattaya Vuthiganond, Pisutsaran Chitichotpanya Jan 2024

Optimization Of Ultrasound-Assisted Anthocyanin Extraction From Agricultural Waste Purple Corn Silk For Multifunctional Hemp Finishes, Benjamas Klaykruayat, Nattaya Vuthiganond, Pisutsaran Chitichotpanya

Journal of Metals, Materials and Minerals

The utilization of agricultural wastes for textile dyeing has gained popularity due to their safe and environmentally friendly properties, as well as the resource sustainability. Natural dye extraction is usually achieved through solvent extraction, which is time-consuming, requires a lot of solvent, and degrades desired compounds at high temperatures. Thus, this study investigated ultrasound-assisted anthocyanin extraction from agricultural waste purple corn silk as natural functional colorants for hemp finishes, given the numerous health benefits associated with anthocyanin. In order to optimize the extraction processes and evaluate the synergistic impact of these conditions, response surface methodology was implemented. The optimum conditions …


Controlling Titanium Incorporation In Hydrogenated Amorphous Carbon Films Via Closed-Loop Feedback In Reactive High Power Impulse Magnetron Sputtering, Pornthip Ratchayotee, Artit Chingsungnoen, Phitsanu Poolcharuansin Jan 2024

Controlling Titanium Incorporation In Hydrogenated Amorphous Carbon Films Via Closed-Loop Feedback In Reactive High Power Impulse Magnetron Sputtering, Pornthip Ratchayotee, Artit Chingsungnoen, Phitsanu Poolcharuansin

Journal of Metals, Materials and Minerals

A closed-loop feedback approach has been developed to control titanium incorporation in hydrogenated amorphous carbon (a-C:H) films during reactive high-power impulse magnetron sputtering (R-HiPIMS). The average discharge current measured at the magnetron target is used as the primary feedback signal to regulate the target coverage state. Hence, the titanium concentration in the films can be controlled. Significant changes were observed in the film microstructure and properties as the target state evolved with increasing target coverage. This causes the film transition from metallic titanium to a-C:H films with decreasing titanium concentration. For example, the XRD and Raman analyses indicated a microstructural …


In-Situ Embedding Of Nanocylindrical Bi25feo40 Into Scaffold-C3n4 For Enhanced Z-Scheme Photocatalytic Degradation, Yile Wang, Yuhui Ma, Liang Chu, Xing'ao Li Jan 2024

In-Situ Embedding Of Nanocylindrical Bi25feo40 Into Scaffold-C3n4 For Enhanced Z-Scheme Photocatalytic Degradation, Yile Wang, Yuhui Ma, Liang Chu, Xing'ao Li

Journal of Metals, Materials and Minerals

The development of Z-scheme heterojunctions has emerged as an effective approach for boosting the photocatalytic activity. Herein, we fabricated of a direct Z-scheme heterojunction between scaffold-like C3N4 and nanocylindrical Bi25FeO40, which exhibits enhanced photocatalytic activity and dye adsorption capacity. The in-situ embedding of Bi25FeO40 within scaffold C3N4 promotes photogenerated carrier separation, leading to an optimized degradation rate of 0.0205 min−1 and a contaminant removal efficiency of 85.3%. This work paves a new path for the development of high-efficiency photocatalytic degradation.


Investigated The Ion Energy And The Microstructure Properties Of Tetrahedral Amorphous Carbon Film Produced By Pulsed Filtered Cathodic Vacuum Arc Combined With Plasma Biasing Technique, Nopphon Saowiang, Phitsanu Poolcharuansin, Artit Chingsungnoen, Nitisak Pasaja Jan 2024

Investigated The Ion Energy And The Microstructure Properties Of Tetrahedral Amorphous Carbon Film Produced By Pulsed Filtered Cathodic Vacuum Arc Combined With Plasma Biasing Technique, Nopphon Saowiang, Phitsanu Poolcharuansin, Artit Chingsungnoen, Nitisak Pasaja

Journal of Metals, Materials and Minerals

The purpose of this work is to demonstrate that operations using the plasma biasing technique in pulsed filtered cathodic vacuum arc (PFCVA) enable an energy-enhanced in deposition process for the high quality of tetrahedral amorphous carbon (ta-C) thin films (high sp3 content, denser, and very low surface roughness). The effect of anode bias potential on the energy distribution function of C+ ions, including the topography, microstructure, chemical state, and density of ta-C films, was systematically investigated. It was found that the plasma biasing technique can increase the average energy of C+ ions, but nevertheless, the ion …


Single Electrode Mode Triboelectric Nanogenerator For Recognition Of Animal Sounds, Archana Panda, Kunal Kumar Das, Kushal Ruthvik Kaja, Mohamed Belal, Basanta Kumar Panigrahi Jan 2024

Single Electrode Mode Triboelectric Nanogenerator For Recognition Of Animal Sounds, Archana Panda, Kunal Kumar Das, Kushal Ruthvik Kaja, Mohamed Belal, Basanta Kumar Panigrahi

Journal of Metals, Materials and Minerals

This research presents an innovative and sustainable solution by designing triboelectric nanogenerators (TENGs) for energy harvesting. The fabrication process of TENGs includes PDMS and aluminum. The two single electrode mode TENG was designed one is plain PDMS/Al and the other is porous PDMS/Al TENG devices. The porous PDMS/Al TENG device generated a voltage and current of 7 V and 5 nA for 2 cm ´ 2 cm device area. Moreover, the TENG system was employed to successfully charge capacitors, and recognize various animal sounds. This study underscores the promising potential of harvesting energy from body movements and powering of devices, …


Photoluminescent Carbon Nanodots For Artificial Photosynthesis, Rajie A. Medina, Michael E. Franco, Lyn Marie De Juan-Corpuz, Ryan D. Corpuz Jan 2024

Photoluminescent Carbon Nanodots For Artificial Photosynthesis, Rajie A. Medina, Michael E. Franco, Lyn Marie De Juan-Corpuz, Ryan D. Corpuz

Journal of Metals, Materials and Minerals

The emerging field of carbon dots (CDs), a type of carbon nanostructure that has gained significant attention due to its unique properties and potential applications. CDs possess remarkable attributes, including photoluminescence, electrochemical potential, compatibility with living organisms, solubility in water, chemical stability, and versatile surface properties. The chemical structure, particle size, and surface functionalities of CDs all have an impact on their photoluminescent properties, which are the focus of this review. The photoluminescence mechanism in CDs is discussed, highlighting their amorphous structure, and comparing them to graphene quantum dots. The paper delves into the application of CDs in artificial photosynthesis, …