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Materials Degradation in Mechanical Design: Wear, Corrosion, Fatigue, and Their Interactions Web Course RePlay

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Materials degradation from environmental conditions is a common factor that will often occur in mechanical equipment used in every type of environment. These processes can frequently materialize in unpredicted and harmful ways, especially when they interact and lead to early component damage or failure. Captured from five, two-hour sessions, this course summarizes the mechanisms that cause materials and mechanical components to degrade in service through exposure to deleterious mechanical and environmental conditions.
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Metals Bundle

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Almost 75% of all elements are metals. Metals can be classified as either ferrous or non-ferrous and generally conduct electricity and heat well. Most metals are malleable and ductile and are, in general, heavier than other elemental substances. The following six eLearning courses are included in the Materials bundle. Each course is approximately one-hour in duration. See topics/outline for additional details. Introduction to Metals, Ferrous Metals, Nonferrous Metals, Classification of Steel, Essentials of Heat Treatment of Steel Exotic Alloys
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Accident Reconstruction Microlearning Library - A/R in CVs

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Join accident reconstruction experts from Mecanica Scientific Services as they delve into accident reconstruction with commercial vehicles. Video topics include which Bendix modules house data, and what data can be imaged of Isuzu, V-MAC III, V-MAC IV, V-MAC IV+, and Volvo trucks.
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Hardness Testing

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This eLearning course focuses on Rockwell and Brinell hardness testing and Vickers and Knoop microhardness testing. Participants will learn about how the tests are performed, test sample requirements, test parameter selection, and testing requirements. The course can be completed in 30 minutes.
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High Temperature Materials Bundle

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Metals and alloys have different melting ranges depending on their chemistry. High temperature metals are much harder at room temperature, have exceptionally high melting points (usually above 2000 degree Celsius), and are resistant to wear, corrosion and deformation. The following five eLearning courses are included in the High Temperature Materials bundle.  Each course is approximately one-hour in duration. See Topics/Outline for additional details.
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Metallurgy of Steel: Principles

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Getting the strength and hardness you need in your steel requires knowledge of the effects of alloy composition and heat treating on steel properties. With knowledge of steel metallurgy you’ll be better able to: Select the most appropriate alloy and heat treating process for your application Evaluate suppliers Develop manufacturing processes Solve quality problems A good understanding of what can be done to modify the properties of steel is critical for being more productive and profitable.
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Accident Reconstruction Microlearning Library - ADAS in A/R

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Examine the role of Advanced Driver Assistant Systems (ADAS) in accident reconstruction in this series from accident reconstruction expert Alan Moore. Video topics include what is ADAS, including the limitations of certain systems, which vehicles have ADAS, and how to reconstruct an ADAS crash, including accessing and downloading data from a crashed vehicle.
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Ferrous Metals Bundle: Steel and Cast Iron

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Ferrous metals contain iron and are prized for their tensile strength and durability. Most are magnetic and contain a high carbon content which generally makes them, with the exception of wrought iron and stainless steel, vulnerable to rust. The following seven eLearning courses are included in the Ferrous Materials Bundle: Steel and Cast Iron. Each course is approximately one-hour in duration. Modules include: Introduction to Physical Properties, Introduction to Mechanical Properties, Introduction to Metals, Hardness Testing, Ferrous Metals, Classification of Steel, Essentials of Heat Treatment of Steel.
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Accident Reconstruction Microlearning Library Full Collection

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The Accident Reconstruction MicroLearning Library is a collection of 25 concise videos on different topics related to crash scene investigation. These videos provide practical, applicable knowledge that you will immediately be able to use in the field. Whether you have a need to know about ADAS systems, tires, or commercial vehicles, these videos touch on a wide range of instructional areas and are taught by experts in the field.
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Accident Reconstruction Microlearning Library - Photography for A/R

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From lenses to composition, these videos cover everything you need to know when photographing accident reconstruction. Join accident reconstruction expert Tom Vadnais as he demonstrates how to photograph trucks, passenger vehicles, and accident sites, as well as a looks at must-have photography equipment.
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Additive Manufacturing Bundle

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Many companies are starting to recognize the benefits additive manufacturing (AM) offers in terms of speed, simplicity, reliability, and cost. Additive manufacturing is a process in which a three-dimensional computer model design s built into a physical object by joining thin layers of material. AM is a versatile field that encompasses a variety of methods, materials, and applications. The one-hour courses in this bundle explain the fundamental concepts of additive manufacturing, including the main principles behind AM and the safety precautions to take during the process.
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Polymers Bundle

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This course discusses the properties and applications of thermoplastics, including an overview of the amorphous and semi-crystalline molecular regions found in thermoplastics, and describes common processing methods for thermoplastics, such as injection molding and extruding. Thermosets This course introduces participants to the key characteristics and types of thermosets as well as common processing methods. Courses listed above are available only as part of a TooliingU bundle.  Custom bundles of any five or more ToolingU courses are available upon request as a Corporate Learning Solution.
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Nonferrous Metals Bundle

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Nonferrous materials are malleable, are non-magnetic, and have no iron content which gives them higher resistance to rust and corrosion. The following five eLearning courses are included in the Nonferrous Metals bundle.  Each course is approximately one-hour in duration. See Topics/Outline for additional details. Introduction to Physical Properties  This course provides an an overview of manufacturing materials and their physical properties, including thermal, electrical, and magnetic properties and introduces volumetric characteristics, such as mass, weight, and density.
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Introduction to Materials Bundle

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The following six eLearning courses are included in the Introduction to Materials bundle.  Each course is approximately one-hour in duration. See Topics/Outline for additional details. Introduction to Physical Properties  This course provides an an overview of manufacturing materials and their physical properties, including thermal, electrical, and magnetic properties and introduces volumetric characteristics, such as mass, weight, and density.
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FEA Beyond Basics: Nonlinear Analysis Web Course RePlay

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Finite Element Analysis (FEA) has been an indispensable tool for design simulation for several decades but this wide spread use has been limited to simple types of analyses. Relatively recently, more advanced analyses have given easy-to-use interfaces enabling design engineers to simulate problems formerly reserved for analysts. FEA Beyond Basics targets the FEA users who wish to explore those advanced analysis capabilities. It will demonstrate how to move past the ubiquitous linear structural analysis and solve structural nonlinear problems characterized by nonlinear material, large displacements, buckling or nonlinear connectors.
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Accident Reconstruction Microlearning Library - Tires

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Take an in-depth look at the critical role of tires in accident reconstruction. Join accident reconstruction expert Tom Vadnais as he explains the components of commercial and passenger vehicle tires, how to read the information on tire sidewalls, and what to look for on truck tires during an inspection.
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Managing Cybersecurity Risks Using ISO/SAE 21434

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Applying the new ISO/SAE 21434 Standard? This introductory course outlines the methods specified to assess cybersecurity risk to a road vehicle product in the context of ISO/SAE 21434. This risk-based methodology is a modular component of additional topics in the standard and a necessary concept to comprehend. Managing Cybersecurity Risks Using ISO/SAE 21434 explains the methods and logic behind the standard and focuses on risk assessment as a basic principle that must be applied in all other areas of 21434.
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Materials to Electrodes

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This course provides a deep yet simple explanation of the operational principles of a rechargeable battery. The course spotlights the importance and discusses the fundamentals of the ‘electrochemical cell’ which is the heart of any battery system independent of the storage size. A direct link is set forth between the chemical nature of the cell components and the storage properties of interest such as ‘electromotive force’ and gravimetric & volumetric capacities. Specific attention is directed towards lithium-ion batteries by presenting more details about the materials of choice for the anode/cathode together with their synthesis methods.
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Drones for Mapping Accident Reconstruction Sites

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Participants learn what a drone is and how this tool can aid them in producing an orthomosaic map of an accident scene/location. Participants will learn basic drone safety, operations, and best practices, and will understand how to address airspace basic steps to achieve their Part 107 federal aviation administration (FAA) certification.
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Driver Distraction from Electronic Devices: Insights and Implications Web Course RePlay

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Although many have an idea of what the term “driver distraction” means, there is no common definition within the research community. Additionally, there are many studies that have investigated the topic, but with varying and sometimes conflicting results. What should be made of these discrepancies? This four-hour course will provide an overview of driver distraction (predominantly electronic devices): the problem; how to define it; the current state of research and how to critically evaluate that research to make informed decisions; and the effectiveness of state laws and fleet policies to reduce it.
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