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Articles 5101 - 5130 of 16708
Full-Text Articles in Engineering
Effects Of Resin Chemistries On The Selective Removal Of Industrially Relevant Metal Ions Using Wafer-Enhanced Electrodeionization, Humeyra B. Ulusoy Erol, Christa N. Hestekin, Jamie A. Hestekin
Effects Of Resin Chemistries On The Selective Removal Of Industrially Relevant Metal Ions Using Wafer-Enhanced Electrodeionization, Humeyra B. Ulusoy Erol, Christa N. Hestekin, Jamie A. Hestekin
Chemical Engineering Faculty Publications and Presentations
Wafer-enhanced electrodeionization (WE-EDI) is an electrically driven separations technology that occurs under the influence of an applied electric field and heavily depends on ion exchange resin chemistry. Unlike filtration processes, WE-EDI can be used to selectively remove ions even from high concentration systems. Because every excess ion transported increases the operating costs, the selective separation offered by WE-EDI can provide a more energy-efficient and cost-effective process, especially for highly concentrated salt solutions. This work reports the performance comparison of four commonly used cation exchange resins (Amberlite IR120 Na+, Amberlite IRP 69, Dowex MAC 3 H+, and …
Real-Time Voluntary Motion Prediction And Parkinson's Tremor Reduction Using Deep Neural Networks, Anas Ibrahim, Yue Zhou, Mary E. Jenkins, Ana Luisa Trejos, Michael D. Naish
Real-Time Voluntary Motion Prediction And Parkinson's Tremor Reduction Using Deep Neural Networks, Anas Ibrahim, Yue Zhou, Mary E. Jenkins, Ana Luisa Trejos, Michael D. Naish
Mechanical and Materials Engineering Publications
Wearable tremor suppression devices (WTSD) have been considered as a viable solution to manage parkinsonian tremor. WTSDs showed their ability to improve the quality of life of individuals suffering from parkinsonian tremor, by helping them to perform activities of daily living (ADL). Since parkinsonian tremor has been shown to be nonstationary, nonlinear, and stochastic in nature, the performance of the tremor models used by WTSDs is affected by their inability to adapt to the nonlinear behaviour of tremor. Another drawback that the models have is their limitation to estimate or predict one step ahead, which introduces delay when used in …
Inventions Of Scientists, Engineers And Specialists From Different Countries In The Area Of Nanotechnologies. Part Ii, Leonid A. Ivanov, Li Da Xu, Zhanna V. Pisarenko, Qiang Wang, Petr S. Prokopiev
Inventions Of Scientists, Engineers And Specialists From Different Countries In The Area Of Nanotechnologies. Part Ii, Leonid A. Ivanov, Li Da Xu, Zhanna V. Pisarenko, Qiang Wang, Petr S. Prokopiev
Information Technology & Decision Sciences Faculty Publications
The article provides an abstract review of patents. The results of creative activity of scientists, engineers and specialists, including inventions in the field of nanotechnology and nanomaterials, being implemented, allow achieving a significant effect in construction, housing and community services, and related sectors of the economy. For example, the invention «Method for liquidphase synthesis of nanostructured ceramic material in the CeO2–Sm2O3 system to create a solid oxide fuel cell» can contribute to the active development of alternative, hydrogen energy. Fuel cells have a wide range of applications – from batteries in portable electronic devices to large-scale power generation and autonomous …
Monitoring Of Overhead Polymer Core Composite Conductors Under Excessive Mechanical Loads Using Fiber Bragg Grating Sensors, Daniel H. Waters
Monitoring Of Overhead Polymer Core Composite Conductors Under Excessive Mechanical Loads Using Fiber Bragg Grating Sensors, Daniel H. Waters
Electronic Theses and Dissertations
This combined experimental and numerical study addresses mechanical effects associated with static and dynamic loading of novel High Temperature Low Sag (HTLS) transmission line polymer core composite conductors. The developed methodology was successfully applied to ACCC® to explain the complex failure mechanisms associated with combined bending and tension loading. Furthermore, the use of Fiber Bragg Grating (FBG) sensors was investigated for the first time to monitor the ACCC® design during installation and in-service.
Transverse low-velocity impacts to the ACCC® conductor having either free or constrained end conditions and large axial tensile loads were performed. It was identified that the most …
Hydraulic Balsa Wood Rising Bridge, Kaitlyn Greenfield
Hydraulic Balsa Wood Rising Bridge, Kaitlyn Greenfield
All Undergraduate Projects
What is the solution to allowing tall vessels to navigate past a vehicle bridge that is less than 10 [ft] above the water? To answer this question, a balsa wood bridge was designed, constructed, and tested. The bridge needed to articulate by mechanical means, allow for travel through the bridge, and be able to withstand ample force while the main structure only being constructed of balsa wood and glue. The project was analyzed in sections. These sections include: the bridge structure and its members, the hydraulic lift, and the pins needed for the bridge and hydraulic lift to operate. The …
Atomic-Scale Simulation Of Dissipation And Adhesion During Interactions Between Mineral Surfaces, Baochi Doan
Atomic-Scale Simulation Of Dissipation And Adhesion During Interactions Between Mineral Surfaces, Baochi Doan
Electronic Theses and Dissertations, 2020-2023
Adhesion and dissipation during surface interactions are important phenomena with wide applications in materials science, including cold-spray technology for additive manufacturing and stiction in MEMS (Mircro ElectroMechanical Systems). In planet formation theories, energy dissipation in collisions between mineral grains is important to the formation of dust-grain aggregates and planetesimals. Early contact mechanics theories such as Hertz and Johnson-Kendall-Roberts have laid theoretical foundations for understanding these phenomena. Recently, there are breakthroughs in using non-equilibrium thermodynamics methods to elucidate dissipation. For example, the Green-Kubo method can calculate transport coefficients based on the Fluctuation-Dissipation theorem, and Jarzynski equality can be used to determine …
Processing Of 3d Porous Biomaterial Scaffolds To Enhance The In Vitro Breast Cancer Tumor Microenvironment, Zi Wang
Electronic Theses and Dissertations, 2020-2023
Tumors contain heterogeneous cell populations within the tumor microenvironment (TME). TME supports tumor progression and development via the function of multiple cell types and cell-extracellular matrix (ECM) interactions. 3D porous biomaterial scaffolds can be a type of in vitro tumor models to mimic TME ECM. Current tumor models lack structural complexity replicating tumor ECM, tunable mechanical properties, and have limited mass exchange between cells and their microenvironment. In this work, we firstly developed scaffolds with a hierarchical pore structure via the Freeze-FRESH(FF) fabrication technique that combines 3D printing and freeze-casting. Later, we studied the effect of varying processing parameters and …
Solidification Cracking In Binary Al-Cu Alloys Additively Manufactured Through Laser Powder Bed Fusion, Keegan Muller
Solidification Cracking In Binary Al-Cu Alloys Additively Manufactured Through Laser Powder Bed Fusion, Keegan Muller
Electronic Theses and Dissertations, 2020-2023
Laser Powder Bed Fusion (LPBF) is an additive manufacturing technique with growing relevance in industry. However, alloys with a high susceptibility to micro-cracking during solidification cannot be feasibly manufactured through LPBF, such as in selected high-strength Al-alloys. The cracking susceptibility (CS) of Al-alloys varies with composition, so modeling CS with respect to composition is crucial in designing compatible alloys for LPBF. In a theoretical modeling of solidification cracking based on the Scheil equation, the relative CS is taken as the maximum value of |dT/d(fs^1/2)| when solidification is near completion. However, experimental observations of the crack density in Al-alloys suggest that …
The Critical Role Of Dynamic Surface Tension Of Surfactants On The Impact Dynamics Of Water Droplets, Amir Esmaeili, Reza Mohammadi
The Critical Role Of Dynamic Surface Tension Of Surfactants On The Impact Dynamics Of Water Droplets, Amir Esmaeili, Reza Mohammadi
Graduate Research Posters
Due to their time-dependent surface tension, the addition of surface-active agents or surfactants to water for specific applications has made controlling the impact dynamics of these droplets a complex phenomenon. This work investigates the influence of the molecular weight, concentration, and ionic nature of the surfactants as well as the substrate surface characteristics on the impact dynamics of surfactant-laden droplets using a high-speed camera at 10000 frames per second. Sodium dodecyl sulfate, hexadecyltrimethylammonium bromide, and n-decanoyl-n-methylglucamine were used as anionic, cationic, and nonionic surfactants, respectively. We used hydrophilic glass slides, hydrophobic polytetrafluoroethylene, and superhydrophobic alkyl ketene dimer (AKD) as substrates. …
(Quinolin-8-Yl) Tin Synthons In Transmetalation Reactions With Transition Metals Yield Multimetallic Organometallic Molecules And Clusters, Arjun Chandra Bhowmick
(Quinolin-8-Yl) Tin Synthons In Transmetalation Reactions With Transition Metals Yield Multimetallic Organometallic Molecules And Clusters, Arjun Chandra Bhowmick
Dissertations and Theses
Transition metal (Hg, Ag, Pd, Ni, Sn, Cu) complexes and clusters form from the reaction of metal salts and QSnX (Q = quinolin-8-yl; X = Q or Cl) synthons. Our original intent was the use of Q2Hg, Q2Sn, or QSnCl as an ambiphilic ligand; however, we observed an apparent redox-trans metalation reaction in most of the cases. Bimetallic Hg-Ag complexes were prepared using Q2Hg as an ambiphilic ligand. Heterobimetallic (Ni-Sn and Pd-Sn) complexes were obtained from the reaction of NiCl2 (or PdCl2) with in situ generated QSnCl. Geometry and electronic configuration of the complexes were investigated using DFT methods. The …
Gas Pressure And Coating Distance For Nanohydroxyapatite Deposition On Stainless Steel 316l Using Flame Spray Technique, Angga Saputra, Utami Dyah Syafitri, Toto Sudiro, Gerald Ensang Timuda, Yessie Widya Sari
Gas Pressure And Coating Distance For Nanohydroxyapatite Deposition On Stainless Steel 316l Using Flame Spray Technique, Angga Saputra, Utami Dyah Syafitri, Toto Sudiro, Gerald Ensang Timuda, Yessie Widya Sari
Journal of Metals, Materials and Minerals
Metal implant coating engineering is needed to improve the surface biocompatibility properties of metals. For this, coating metal surfaces with bioactive and biocompatible biomaterials will be an option. Having high biocompatibility as well as similarity in chemical properties, nanohydroxyapatite may be a candidate as biomaterials for coating the metal implant. The key to the success of metal implant plating is the formation of pores which increase the bioactivity and biocompatibility properties of the implant. In this study, nanohydroxyapatite was used to be coated on stainless steel type 316L (SS316L). To ensure that the coating works properly on the surface, an …
Analysis Of The Impact Factors From The Friction Stir Welding Process For Dissimilar Butt Joints Between Semi-Solid Cast Aluminum 356 And Aisi 1018 Carbon Steel, Worapong Boonchouytan, Jaknarin Chatthong, Rommador Burapa
Analysis Of The Impact Factors From The Friction Stir Welding Process For Dissimilar Butt Joints Between Semi-Solid Cast Aluminum 356 And Aisi 1018 Carbon Steel, Worapong Boonchouytan, Jaknarin Chatthong, Rommador Burapa
Journal of Metals, Materials and Minerals
This research aimed to study the impacts of three different rotation speeds of 710, 1000, and 1400 rpm and three welding speeds of 40, 56, and 80 mm·min-1, on dissimilar butt joints between semi-solid aluminum 356 and AISI 1018 carbon steel. Welding tools were made from tungsten carbide material, and the offset was 0 mm. It was found that an increase in the rotation speed and welding speed caused accumulated heat, which led to the appropriate changes in the metallurgical structure. The rotation speed and welding speed factors had the impact on the greater blending of the two metals at …
Laser Powder Bed Fusion Of Ti6al4v-Xcu: Process Parameters, Thywill Ccphas Dzogbewu
Laser Powder Bed Fusion Of Ti6al4v-Xcu: Process Parameters, Thywill Ccphas Dzogbewu
Journal of Metals, Materials and Minerals
The original intent of coating biomedical and surgical devices surface with antibacterial agents is to prevent infections. However, the difference in the material properties between the biomedical devices and the coating materials causes the coating material to spall from the biomedical devices. To address the situation, the current research focused on investigating the possibility of using laser powder bed fusion process a subset of additive manufacturing technology to in situ alloy 1 at% Cu with Ti6Al4V. In situ alloying 1 at% Cu with Ti6Al4V would lead to the production of medical and surgical devices with inbuilt antibacterial property. To determine …
Development Of Chemically Grafted Multiwall Carbon Nanotube Onto Cellulose Fiber Sheet And Polyurethane Based Resin Composite For An Active Paper, Siripassorn Sukhkhawuttigit, Sarute Ummartyotin, Yingyot Infahsaeng
Development Of Chemically Grafted Multiwall Carbon Nanotube Onto Cellulose Fiber Sheet And Polyurethane Based Resin Composite For An Active Paper, Siripassorn Sukhkhawuttigit, Sarute Ummartyotin, Yingyot Infahsaeng
Journal of Metals, Materials and Minerals
Cellulose fibers (CFs) and carbon nanotubes (CNTs) were successfully developed on polyurethane substrate as a flexible composite paper. With small amount of CNTs, the composite was prepared by a suction filtration method. The existence of CNT additive in cellulose matrix was investigated based on the correlation of mechanical properties, thermal stability, and electrical properties. Although the highly transparent cellulose sheets impregnated with polyurethane were successfully fabricated, the low transmittance was obtained as the increasing of CNT additive. However, the dielectric properties of composite were enhanced with an addition of CNTs in the composite paper. The electrical conductivity was increased from …
Influence Of Cooling Conditions On Microstructure And Mechanical Property Of Sn-0.3ag-0.7cu Lead-Free Solder, Prajak Jattakul, Tavee Madsa, Piyawan Sunasuan, Niwat Mookam
Influence Of Cooling Conditions On Microstructure And Mechanical Property Of Sn-0.3ag-0.7cu Lead-Free Solder, Prajak Jattakul, Tavee Madsa, Piyawan Sunasuan, Niwat Mookam
Journal of Metals, Materials and Minerals
This research has investigated the influence of cooling conditions on the microstructure and mechanical properties i.e., tensile strength and microhardness of Sn-0.3Ag-0.7Cu lead-free solder. In the experiments, casting was performed at 300℃ with comparison between copper and stainless steel molds under slow and fast cooled conditions. X-ray diffractometer confirmed the presence of Cu6Sn5 and Ag3Sn phases in the solder matrix. Lead-free solder solidified under slow cooled conditions exhibited -Sn matrix with larger grain growth as compared to the fast cooled solder. The eutectic area of intermetallic compound (IMC) was found to increase with cooling rate. The tensile strength of slow …
Automated Control System For The Remote-Controlled Torch Positioner, Christopher Ferguson, Anna Abate, Kyle Cramer, Alex Sabitsch, Jacob Stefanko
Automated Control System For The Remote-Controlled Torch Positioner, Christopher Ferguson, Anna Abate, Kyle Cramer, Alex Sabitsch, Jacob Stefanko
Williams Honors College, Honors Research Projects
The goal of this project is to design and implement a controls system for Dr. Morscher’s burner rig. The rig serves to simulate jet turbine conditions and test how materials, specifically ceramic matrix composites, react under high temperatures and stresses. Currently, the location of the torch relies solely on manual adjustments and has no automated control system. The improved design will automatically adjust the torch position based on the desired temperature of the sample being tested, therefore maintaining a steady environment for the sample. The current method of manual adjustments for regulating temperature is a crude solution that does not …
Harrisburg University’S Face Shield Response For Health Care Workers, Matthew A. Walters
Harrisburg University’S Face Shield Response For Health Care Workers, Matthew A. Walters
Experiential Learning Projects
This project was inducted into the Harrisburg University Digital Common's with a submittal event. The recording for this event can be accessed here: Harrisburg University’s Face Shield Response for Health Care Workers Submittal Event Recording
The pandemic has most definitely been a significant factor in how people operate throughout the past few years. The pandemic was first introduced at the end of 2019 and is still a current issue at the end of 2021. Close to the beginning of the pandemic, health care workers had found themselves with a shortage of protective gear to fight against the virus while working …
Material Analysis Of 3d Welded 5356 Aluminum Alloy, Ryan Fouts
Material Analysis Of 3d Welded 5356 Aluminum Alloy, Ryan Fouts
Electronic Theses and Dissertations
Metal 3D printing has been reserved for aerospace and high-end automotive industries because of its cost. A gas metal arc welder (GMAW) on a rugged 3D printer frame could make metal additive manufacturing an option for more industries and consumers. 3D welded aluminum has not been examined in depth as an option for additive manufacturing (AM). Extensive tests are necessary to determine the correct settings to use a metal inert gas (MIG) welder for AM. Porosity within the welded material must be evaluated to better understand the additive process. The material properties of 3D welded aluminum will be tested and …
Biomechanical Investigation Of Plant Vascular Tissue For Bio-Inspired Design And Flexible Composites, Mukesh Roy
Biomechanical Investigation Of Plant Vascular Tissue For Bio-Inspired Design And Flexible Composites, Mukesh Roy
Electronic Theses and Dissertations
Since the inception of evolution, nature has continuously optimized all the natural materials. These optimizations are so efficient that scientists and engineers have started taking inspiration from nature. Such inspiration-based solutions provide sustainable development of new materials with enhanced structural properties and functionalities (such as stiffness, stability, toughness, self-healing etc.). This variety of properties and functionalities is mainly due to the hierarchical organization of such components. Abstraction of the hidden cues of the hierarchical organization, principles and underlying structure-function relations are some of the critical approaches of bioinspired materials design. Inspiration from animals and plants has helped develop the design …
Development Of A High Strength Composite Material Using Large Scale 3d Printing Applications Using Waste Plastic And Steel, Naga Sri Madhavareddy
Development Of A High Strength Composite Material Using Large Scale 3d Printing Applications Using Waste Plastic And Steel, Naga Sri Madhavareddy
Electronic Theses and Dissertations
This project focuses on developing a high strength composite material for largescale 3D printing applications using recycled materials like High-Density Polyethylene (HDPE) and Steel 430. This material has applications for in-space manufacturing (the Moon or Mars) as well as large-scale manufacturing on earth. In addition to creating a strong useful material, materials that are easily recycled, but are often not recycled, are used. Recycling plastic and metal reduces pollution, saves resources, reduces waste going to landfills, and prevents the destruction of habitats from the polymerization of new plastic and similarly mining new ore. The percentage of HDPE generated from recycled …
Effect Of Composition And Print Orientation On Thermal Conductivity Of 3d Printed Composites, Cory Jacques
Effect Of Composition And Print Orientation On Thermal Conductivity Of 3d Printed Composites, Cory Jacques
Electronic Theses and Dissertations
Additive manufacturing (AM) technologies have become widely used for rapid prototyping and are beginning to be used for end-use applications. Fused Deposition Modeling (FDM) is a type of 3D printing where molten thermoplastic is extruded layer by layer to create parts. There is an increasing need for improvement and diversification of material properties to further extend the use of AM parts. AM parts have not been commonly used in heat transfer applications due to the limited availability of information on thermal conductivity of materials and the effects of printing orientation. A special apparatus was designed and built to experimentally test …
Actin Cytoskeleton Dynamics And Organization Modulated By Macromolecular Crowding, Cation Interaction, And Nanomaterials, Jinho Park
Electronic Theses and Dissertations, 2020-2023
The assembly of actin, the essential cytoskeleton protein, into filaments and bundles/networks is important in various cellular processes including cell movement and morphogenesis. Actin bundle formation occurs in crowded intracellular environments with the aid of actin-crosslinking proteins. The role of actin-crosslinking proteins such as fascin and a-actinin in bundle formation has been investigated, however, how intracellular environments affect actin crosslinker-induced bundle formation is unknown. In the first two parts of this dissertation, we explore the effects of macromolecular crowding and cation interactions on the organization and mechanics of actin crosslinker-induced bundles. To determine how changing environmental conditions modulate actin bundling, …
Modeling And Optimization Of Process Parameters In Face Milling Of Ti6al4v Alloy Using Taguchi And Grey Relational Analysis, Al Mazedur Rahman, S M Abdur Rob, Anil K. Srivastava
Modeling And Optimization Of Process Parameters In Face Milling Of Ti6al4v Alloy Using Taguchi And Grey Relational Analysis, Al Mazedur Rahman, S M Abdur Rob, Anil K. Srivastava
Manufacturing & Industrial Engineering Faculty Publications
Titanium alloys are extensively used in aerospace, missiles, rockets, naval ships, automotive, medical devices, and even the consumer electronics industry where a high strength to density ratio, lightweight, high corrosion resistance, and resistance to high temperatures are important. The machining of these alloys has always been challenging for manufacturers. This article investigates the combined effect of radial depth, cutting speed and feed rate on cutting forces, tool life, and surface roughness during face milling of Ti6Al4V alloy. This study focuses on the significance of radial depth of cut on cutting force, tool life and surface roughness compared to that of …
Supercapacitors From Nitrogen And Sulfur Co-Doped Graphene/Nickel Cobalt Sulfide, Nutthapong Poompiew
Supercapacitors From Nitrogen And Sulfur Co-Doped Graphene/Nickel Cobalt Sulfide, Nutthapong Poompiew
Chulalongkorn University Theses and Dissertations (Chula ETD)
This research aims to develop high performance supercapacitors in term of capacitive efficiency, power density and long-term cycle stability. Supercapacitors are a kind of energy storages device which exhibit high power density when comparing with conventional batteries. However, most of them exhibits inefficient energy capacitance and long-term cycle stability. Thus, this research is focusing on development materials for using as supercapacitor electrodes. Thus, nitrogen and sulfur co-doped graphene and nickel cobalt compounds were synthesized using in situ hydrothermal process. This research is divided into two major parts (i) to sort out the optimum ratio of nickel and cobalt for the …
การเตรียมเซรามิกเซอร์โคเนียความหนาแน่นสูงจากเศษเจียระไนคิวบิกเซอร์โคเนีย, ณัชชา ปาลวัฒน์
การเตรียมเซรามิกเซอร์โคเนียความหนาแน่นสูงจากเศษเจียระไนคิวบิกเซอร์โคเนีย, ณัชชา ปาลวัฒน์
Chulalongkorn University Theses and Dissertations (Chula ETD)
ในแต่ละปีอุตสาหกรรมเจียระไนเครื่องประดับคิวบิกเซอร์โคเนียในประเทศไทยมีปริมาณเศษเจียระไนคิวบิกเซอร์โคเนียปริมาณมากหลายร้อยตันถูกทิ้งอย่างสูญเปล่า จึงเกิดแนวคิดในการศึกษาวิจัยเพื่อพัฒนากระบวนการผลิตเซรามิกเซอร์โคเนียความหนาแน่นสูงโดยใช้เศษเจียระไนคิวบิกเซอร์โคเนียจากอุตสาหกรรมเป็นวัตถุดิบหลักในการทดลอง ร่วมกับการใช้สารตัวเติมแคลเซียมไดไฮโดรเจนฟอสเฟตเพื่อช่วยทำให้โครงสร้างเกิดเฟสของเหลวในขั้นตอนการเผาผนึก โดยทำการเตรียมตัวอย่างจากการนำเศษเจียระไนมาผ่านการเผาแคลไซน์ที่อุณหภูมิ 1000 องศาเซลเซียส เป็นเวลา 1 ชั่วโมง เพื่อกำจัดสิ่งเจือปนที่มาจากขั้นตอนการผลิตเครื่องประดับ ก่อนนำไปทำการบดผสมกับแคลเซียมไดไฮโดรเจนฟอสเฟตในอัตราส่วนร้อยละ 5 และ 10 โดยน้ำหนัก บดผสมเป็นเวลา 24 และ 48 ชั่วโมง จากนั้นนำไปอัดขึ้นรูปที่ความดัน 50 MPa เพื่อให้ได้ชิ้นงานที่มีลักษณะเป็นแผ่นกลมขนาดเส้นผ่านศูนย์กลาง 20 mm และนำไปเผาผนึกที่อุณหภูมิ 1650 องศาเซลเซียส เป็นเวลา 1, 2 และ 4 ชั่วโมง และแบ่งการศึกษาเป็นการเปรียบเทียบการเผาผนึกแบบสถานะของแข็งที่ไม่มีการใช้เติมสารตัวเติม และการเผาผนึกแบบเฟสของเหลวที่มีการเติมสารตัวเติมช่วยในการเผาผนึก โดยจากผลการทดลองพบว่าเงื่อนไขที่ดีที่สุด คือ ชิ้นงานที่ผ่านกระบวนการบดผสมกับสารตัวเติมในอัตราส่วนร้อยละ 10 โดยน้ำหนัก บดผสมเป็นเวลา 24 ชั่วโมง และเผาผนึกเป็นเวลา 2 ชั่วโมง พบว่าได้ค่าความหนาแน่นสูงถึง 5.27 g/cm3 ค่าการดูดซึมน้ำร้อยละ 0.12 และมีค่าความแข็ง 6.72 GPa ดังนั้นจึงทำการเลือกเงื่อนไขนี้มาเตรียมเป็นชิ้นงานแท่งสี่เหลี่ยมขนาด 60x10x5 mm เพื่อนำไปทดสอบความแข็งแรงด้วยเทคนิค 3-point bending จากผลการทดสอบพบว่าค่าความต้านทานแรงดัดมีค่าเท่ากับ 90.66 MPa ซึ่งผลจากงานวิจัยนี้ชี้ให้เห็นว่าการใช้สารตัวเติมแคลเซียมไดไฮโดรเจนฟอสเฟตช่วยให้เกิดเฟสของเหลวในกระบวนการเผาผนึกที่ส่งผลต่อโครงสร้างทางจุลภาคและสมบัติทางกลของชิ้นงานเซรามิกเซอร์โคเนียความหนาแน่นสูง
Nature-Inspired Material Strategies Towards Functional Devices, Sayantan Pradhan
Nature-Inspired Material Strategies Towards Functional Devices, Sayantan Pradhan
Theses and Dissertations
Naturally sourced, renewable biomaterials possess outstanding advantages for a multitude of biomedical applications owing to their biodegradability, biocompatibility, and excellent mechanical properties. Of interest in this dissertation are silk (protein) and chitin (polysaccharide) biopolymers for the fabrication of functional biodevices. One of the major challenges restricting these materials beyond their traditional usage as passive substrate materials is the ability to combine them with high-resolution fabrication techniques. Initial research work is directed towards the fabrication of micropatterned, flexible 2D substrates of silk fibroin and chitin using bench-top photolithographic techniques. Research is focused on imparting electrochemical properties to silk proteins using conducting …
Using Machine Learning To Interpret Dice Rolls, Hunter Wimsatt, Aarohi Panzade, Kaaustaaub Shankar, Warren Campbell
Using Machine Learning To Interpret Dice Rolls, Hunter Wimsatt, Aarohi Panzade, Kaaustaaub Shankar, Warren Campbell
SEAS Faculty Publications
Gamers use polyhedral dice that come with 4 sides (D4), 6 sides (D6), 8 sides (D8), 10 sides (D10), 12 sides (D12) and 20 sides (D20). All dice are unfair, some more than others. The goal of this project was to develop a machine learning and computer vision solution for the interpretation of dice rolls. When combined with an automated dice roller it would facilitate the study of dice unfairness. In the machine learning literature, Convolutional Neural Networks (CNNs) are the preferred method of computer classification of images. The CNN convolves images with different weights and biases through multiple layers …
Modeling Of Rare Earth Solvent Extraction Process For Flowsheet Design And Optimization, Vaibhav Kumar Srivastava
Modeling Of Rare Earth Solvent Extraction Process For Flowsheet Design And Optimization, Vaibhav Kumar Srivastava
Theses and Dissertations--Mining Engineering
The separation and purification of rare earth elements (REEs) into individual products has been a topic of significant interest for researchers and engineers for many decades. The prime reason for such sustained interest is due to REEs’ demand and application in modern technology, as well as the challenges associated with their separation and purification. The chemical similarity of rare earth group elements is responsible for difficult separability which makes purification of individual elements challenging. Despite associated complications, processes such as solvent extraction (SX) and ion-exchange have been successfully utilized in the separation and production of REEs on pilot and commercial …
Damage Assessment Of Glass Fiber Composites Using Dielectric Spectroscopy And Thermally Stimulated Depolarization Current, Bryan Durham, Gayathri Kola, Mohammadkian Mahroumi, Vamsee Vadlamudi, Rassel Raihan, Kenneth Reifsnider, Minhazur Rahman, Monjur Morshed Rabby, Partha Pratim Das, Muthu Ram Prabhu Elenchezhian
Damage Assessment Of Glass Fiber Composites Using Dielectric Spectroscopy And Thermally Stimulated Depolarization Current, Bryan Durham, Gayathri Kola, Mohammadkian Mahroumi, Vamsee Vadlamudi, Rassel Raihan, Kenneth Reifsnider, Minhazur Rahman, Monjur Morshed Rabby, Partha Pratim Das, Muthu Ram Prabhu Elenchezhian
Institute of Predictive Performance Methodologies (IPPM-UTARI)-Archive
A composite is generally defined as a material composed of two or more separate sub-materials that complement each other's characteristics when combined. Composites are widely used in several major industries due to their low density, high strength, and relatively predictable chemical and electrical properties. One of the significant challenges of integrating composites into more diverse fields is the ability to accurately and consistently test for damages. Due to the myriad number of microscopic structures available in composite materials, a single-use testing system is a large contributor to current research. One approach to the non-destructive testing of composites lies in exploiting …
Lightning Strike Response Of Composite Structures: A Review, Akhileshwar Pandey, Ashutosh Kumar Upadhyay, Karunesh Kumar Shukla
Lightning Strike Response Of Composite Structures: A Review, Akhileshwar Pandey, Ashutosh Kumar Upadhyay, Karunesh Kumar Shukla
Journal of Metals, Materials and Minerals
Wind turbines and aircraft are generally made of less conductive carbon/glass composites. Significant damages may occur to these materials if they are struck by high energy lightning strikes. Damage and structural response of composites is essentially a multiphysics domain, involving thermal, electrical, magnetic and structural analysis. In this article, the fundamental physics of lightning, multiphysics analysis, numerical implementation and experimental studies about composite materials are reviewed. The relevant international standards and possible characterization methods of lightning strike damage are also reproduced in this article. In addition to this, the current and prospective technologies, to protect composite from lightning strikes are …