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Full-Text Articles in Engineering

Role Of Salt On Coating Failure, Kyle Krause Jan 2017

Role Of Salt On Coating Failure, Kyle Krause

Williams Honors College, Honors Research Projects

It is important to understand the role of salt in the coating failure because it may influence the coating degradation mechanism that is related to coating performance. This project will study the role of salt on two types of organic coatings under two different immersion environment. The environment selected was 3.5% by weight sodium chloride solution and deionized (DI) water. The two coatings were Neorez 1080 (a waterborne polyurethane) and Joncryl 587-AC (a solvent borne polyurethane). Each coating was tested in each environment using electrochemical impedance spectroscopy (EIS) measurement which presented a total of four data sets. The equivalent circuit …


Controlled Humidity Chambers To Maintain Red Roses’ Freshness And Improve Their Shelf Life, Rima Vasudevan Jan 2017

Controlled Humidity Chambers To Maintain Red Roses’ Freshness And Improve Their Shelf Life, Rima Vasudevan

Williams Honors College, Honors Research Projects

Floriculture is the third largest agricultural crop in the United States of America. Flowers are usually transported in pots of mud or with the roots still submerged in water to increase their shelf life and ensure freshness during long hours of transport. This not only increases the weight of the transport materials but also makes the process expensive.

The research conducted provides the first stages of an alternative packaging material that can lower the weight of transport materials and maintain the freshness of the flowers. The experiments conducted in this work support the hypothesis that using controlled high (>60%) …


Corrosion Resistance Of Silane Coatings On Aluminum And Magnesium Alloys, John Demopoulos Jan 2017

Corrosion Resistance Of Silane Coatings On Aluminum And Magnesium Alloys, John Demopoulos

Williams Honors College, Honors Research Projects

The purpose of this project was to increase the corrosion resistance of aluminum and magnesium alloys by coating the coupons with a silane on the surface. Four different silanes: 3-aminopropyltriethoxysilane (APTES), Bis(triethoxysilylpropyl)amine (Bis), (Heptadecafluoro-1,1,2,2-tetrahydrodecyl)trichlorosilane (FTS), and (Heptadecafluoro-1,1,2,2-tetrahydrodecyl)triethoxysilane (non Cl FTS) will be used and compared to see which silane would give the best corrosion resistance. Each silane solution was coated on the coupons by using a solution method in which the coupon was submerged for 24 hours and then thermally cured for another 24 hours. Once the coating was applied, the water contact angle and the thickness of the coating …


Chemical Modification Of Crumb Rubber To Increase Its Bonding With Concrete, Mary T. Mccannon, Kendall J. Sweitzer Jan 2017

Chemical Modification Of Crumb Rubber To Increase Its Bonding With Concrete, Mary T. Mccannon, Kendall J. Sweitzer

Williams Honors College, Honors Research Projects

The hydrophilicity of crumb rubber was increased with wet chemical modification and added to concrete to increase its adhesion with concrete, consequently the compressive strength relative to that of concrete with untreated rubber. Other modification methods were tested on crumb rubber and rubber sheets to yield an increase in hydrophilicity. Certain tests were less reliable for powder testing or tedious and time consuming and concrete materials and rubber may not be homogeneous.

For wet chemical modification, several approaches were attempted. First, crumb rubber was soaked in 5% sodium hydroxide, 5% potassium permanganate and saturated sodium bisulfite, tested for hydrophilicity using …


Titanium Nanoparticles Synthesized Via Hydrothermal Reaction, Kyle W. Hodge Jan 2017

Titanium Nanoparticles Synthesized Via Hydrothermal Reaction, Kyle W. Hodge

Williams Honors College, Honors Research Projects

The main goal of this project was to determine if increasing the time and temperature of a hydrothermally reacted titanium nanotube would increase the size of the nanotubes. Five experiments were conducted while varying the time and temperature of the reaction: 120°C for 24 hours, 120°C for 48 hours, 150°C for 24 hours, 180°C for 24 hours, and 180°C for 48 hours. Following the synthesis of all of these samples x-ray diffraction (XRD), scanning electron microscopy (SEM), and energy-dispersive spectroscopy (EDS) analyses were performed. The XRD analysis revealed anatase titanium nanoparticles formed in the 120°C and 150°C samples, this could …