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Full-Text Articles in Engineering

Corrosion Of Steel In Concrete And Its Prevention In Aggressive Chloride-Bearing Environments, Luca Bertolini, Maddalena Carsana, Matteo Gastaldi, Federica Lollini, Elena Redaelli Jun 2016

Corrosion Of Steel In Concrete And Its Prevention In Aggressive Chloride-Bearing Environments, Luca Bertolini, Maddalena Carsana, Matteo Gastaldi, Federica Lollini, Elena Redaelli

International Conference on Durability of Concrete Structures

This keynote paper deals with the durability of reinforced concrete (RC) structures exposed to aggressive environments characterized by high concentration of chloride ions, namely, marine environments or the use of de-icing salts. The mechanism of chloride-induced corrosion of steel in concrete is introduced, and its influence on the service life of RC structures is analyzed. Factors affecting the time to corrosion initiation are described with regard to both concrete properties and environmental exposure conditions. Design approaches available for achieving durability targets associated with the design service life are analyzed, focusing on studies carried out by the authors in recent years …


Friction Bit Joining Of Dissimilar Combinations Of Advanced High-Strength Steel And Aluminum Alloys, Lile P. Squires Jun 2014

Friction Bit Joining Of Dissimilar Combinations Of Advanced High-Strength Steel And Aluminum Alloys, Lile P. Squires

Theses and Dissertations

Friction bit joining (FBJ) is a new method that enables lightweight metal to be joined to advanced high-strength steels. Weight reduction through the use of advanced high-strength materials is necessary in the automotive industry, as well as other markets, where weight savings are increasingly emphasized in pursuit of fuel efficiency. The purpose of this research is twofold: (1) to understand the influence that process parameters such as bit design, material type and machine commands have on the consistency and strength of friction bit joints in dissimilar metal alloys; and (2) to pioneer machine and bit configurations that would aid commercial, …


Cyonyx - Advanced Performance Pipe, Purdue Ect Team Jan 2007

Cyonyx - Advanced Performance Pipe, Purdue Ect Team

ECT Fact Sheets

A highly corrosion-resistant composite pipe able to withstand impact in high-traffic areas. While some lined steel and metal alloy pipe are capable of withstanding critical fluids and providing necessary impact resistance, the cost, weight, and limited life expectancy are prohibitive. CYONYX pipe is derived from a new technology that imparts extremely high corrosion resistance, impact resistance approaching that of steel, low material and installation costs, and life expectancy exceeding lined steel and metal alloys.


T.O.C.S. : Hydrogen Sulfide Remission System, Purdue Ect Team Jan 2007

T.O.C.S. : Hydrogen Sulfide Remission System, Purdue Ect Team

ECT Fact Sheets

BioEnviroTech, Inc., (BET) developed Toxicity Odor Corrosion Sulfides (T.O.C.S.) Remission System for hydrogen sulfide reduction in municipal and industrial wastewater sewer, lift stations and force mains. This safe and cost effective biotreatment technology uses safe and natural bacteria to interrupt sulfide generation.


Chemical Cleaning Process For Porable Water Distrubution Pipe Systems, Purdue Ect Team Jan 2007

Chemical Cleaning Process For Porable Water Distrubution Pipe Systems, Purdue Ect Team

ECT Fact Sheets

Aging potable water distribution pipe systems are becoming a major concern throughout the world. Deterioration of water quality and service as a result of micro biological tuberculation and corrosion continues to increase. Major costs for replacement or rehabilitation of distribution systems are being faced by most communities. The chemical cleaning solution is an organic oxide scavenger which is mixed with a predetermined quantity of muriatic acid and circulated through an isolated section of the water main.


Mmfx Microcomposite Steel (Mmfx2), Purdue Ect Team Jan 2007

Mmfx Microcomposite Steel (Mmfx2), Purdue Ect Team

ECT Fact Sheets

One of the major problems facing the construction industry today is the effect of corrosion on steel, and the inherent structural weaknesses it causes in highways, bridges and buildings. MMFX 2 rebar was developed through the use of nanotechnology by Dr. Gareth Thomas, graduate school professor of materials science at Univ. of California, Berkeley. It is highly corrosion resistant and equal, or in many cases, far superior to existing conventional carbon steel in its properties of strength, energy absorption, toughness, brittleness, ductility, and formability.