{"id":1822,"date":"2020-09-01T13:26:38","date_gmt":"2020-09-01T13:26:38","guid":{"rendered":"https:\/\/grupoptg.com\/?page_id=1822"},"modified":"2020-09-02T14:01:46","modified_gmt":"2020-09-02T14:01:46","slug":"formulario-capacitacion-aws","status":"publish","type":"page","link":"https:\/\/grupoptg.com\/?page_id=1822","title":{"rendered":"Formulario Capacitaci\u00f3n AWS"},"content":{"rendered":"
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The AWS Welding Fundamentals Course provides a comprehensive overview of the basic principles of welding. Participants will learn the basic science and practical application of the most commonly utilized welding processes along with other essential topics, including welding terminology, weld design, welding safety, electrical theory, the weldability of metals, and welding quality control. Presented in short, easy-to-understand modules, this multimedia, online course is ideal for both students and professionals who want to expand their core competencies.<\/p>
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14 hours<\/p>
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MODULE 1 <\/strong>– What is Welding?<\/p> MODULE 2 <\/strong>– Welding Processes and Weld Types<\/p> MODULE 3 <\/strong>– Welding Hazards and Environmental Protection<\/p> MODULE 4 <\/strong>– Managing Hazards and Accident Prevention<\/p> MODULE 5 <\/strong>– Oxyfuel Welding: Basics of Combustion, Fuel Types, and Flame Characteristics<\/p> MODULE 6 <\/strong>– Oxyfuel Welding: Advantages, Disadvantages, and Equipment<\/p> MODULE 7 <\/strong>– The Science of Arc Welding: Basics of Electricity<\/p> MODULE 8 <\/strong>– The Science of Arc Welding: Electrical Polarity and Arc Welding Equipment<\/p> MODULE 9 <\/strong>– Shielded Metal Arc Welding: Process Characteristics and Electrodes<\/p> MODULE 10 <\/strong>– Shielded Metal Arc Welding: Operations, Equipment, and Process Variables<\/p> MODULE 11 <\/strong>– Gas Tungsten Arc Welding: Principles, Operations, and Equipment<\/p> MODULE 12 <\/strong>– Gas Tungsten Arc Welding: Shielding Gases, and Process Variables<\/p> MODULE 13 <\/strong>– Gas Metal Arc Welding: Principles, Equipment, and Metal Transfer Modes<\/p> MODULE 14 <\/strong>– Gas Metal Arc Welding: Consumables, Shielding Gases, Equipment, and Process Variables<\/p> MODULE 15 <\/strong>– Flux Cored Arc Welding: Principles, Equipment, and Consumables<\/p> MODULE 16 <\/strong>– Flux Cored Arc Welding: Shielding Gases, Equipment, and Process Variables<\/p> MODULE 17 <\/strong>– Submerged Arc Welding: Principles, Equipment, and Materials<\/p> MODULE 18 <\/strong>– Submerged Arc Welding: Electrodes, Flux, Equipment, and Process Variables<\/p> MODULE 19 <\/strong>– Basics of Welding Metallurgy: Atomic Structures and Properties of Metals<\/p> MODULE 20 <\/strong>– Basics of Welding Metallurgy: States of Matter, Alloys, and Heat Affected Zones<\/p> MODULE 21 <\/strong>– Welding Discontinuities and Their Causes: Process, Metallurgical, and Base Metal Discontinuities<\/p> MODULE 22 <\/strong>– Welding Discontinuities and Their Causes: Structural Discontinuities<\/p> MODULE 23 <\/strong>– Oxyfuel Cutting Basics and Equipment<\/p> MODULE 24 <\/strong>– Oxyfuel Cutting Flame Types, Gas Types, and Cutting Variables<\/p> MODULE 25 <\/strong>– Oxyfuel Cutting Quality Limitations and Safety<\/p> MODULE 26 <\/strong>– Carbon Arc Cutting Basics and Equipment<\/p> MODULE 27 <\/strong>– Carbon Arc Cutting Operating Procedures & Safety<\/p> MODULE 28 <\/strong>– Plasma Arc Cutting Basics and Equipment<\/p> MODULE 29 <\/strong>– Plasma Arc Cutting Variables, Metallurgical Effects, Secondary Functions, and Safety<\/p><\/li> The AWS Welding Fundamentals II Course provides a comprehensive overview of resistance welding, plasma arc welding, electron beam welding, and laser beam welding, cutting, and drilling. Participants will learn about the science, equipment, consumables, process variables, safety precautions, and advantages and disadvantages inherent to each process. Click on the Course Modules tab below to see a list of the topics covered.<\/p> <\/p> 7 hours<\/p> <\/p> MODULE 1 – <\/strong>Resistance Welding I: History & Science<\/p> MODULE 2 – <\/strong>Resistance Welding II: Equipment<\/p> MODULE 3 – <\/strong>Resistance Welding III: Consumables & Materials<\/p> MODULE 4 – <\/strong>Resistance Welding IV: Variables<\/p> MODULE 5 – <\/strong>Resistance Welding V: Safety<\/p> MODULE 6 – <\/strong>Resistance Welding VI: Spot & Projection Welding<\/p> MODULE 7 – <\/strong>Resistance Welding VII: Seam Welding & Advantages-Disadvantages<\/p> MODULE 8 – <\/strong>Plasma Arc Welding I: History, Science & Equipment<\/p> MODULE 9 – <\/strong>Plasma Arc Welding II: Variables & Advantages-Disadvantages<\/p> MODULE 10 – <\/strong>Electron Beam Welding I: History & Science I<\/p> MODULE 11 – <\/strong>Electron Beam Welding II: Science II<\/p> MODULE 12 – <\/strong>Electron Beam Welding III: Equipment I<\/p> MODULE 13 – <\/strong>Electron Beam Welding IV: Equipment II<\/p> MODULE 14 – <\/strong>Electron Beam Welding V: Variables & Safety<\/p> MODULE 15 – <\/strong>Electron Beam Welding VI: Advantages & Disadvantages<\/p> MODULE 16 – <\/strong>Laser Beam Processes I: History & Science<\/p> MODULE 17 – <\/strong>Laser Beam Processes II: Equipment, Consumables & Materials<\/p> MODULE 18 – <\/strong>Laser Beam Processes III: Cutting & Drilling<\/p> MODULE 19 – <\/strong>Laser Beam Processes IV: Variables<\/p> MODULE 20 – <\/strong>Laser Beam Processes V: Safety<\/p> MODULE 21 – <\/strong>Laser Beam Processes VI: Advantages & Disadvantages<\/p><\/li> In this course, participants learn the basic science and practical application of the most commonly utilized brazing and soldering processes. These processes include torch, furnace, dip, and induction brazing, as well as iron, torch, furnace, dip, and wave soldering. Presented in short, easy-to-understand modules, this multimedia course covers the science, equipment,<\/p> consumables, process variables, safety precautions, and advantages and disadvantages inherent to each process.<\/p> <\/p> 5 hours<\/p> <\/p> MODULE 1 – <\/strong>Brazing: Introduction<\/p> MODULE 2 – <\/strong>Brazing: Equipment<\/p> MODULE 3 – <\/strong>Brazing: Process Variations<\/p> MODULE 4 – <\/strong>Brazing: Materials 1<\/p> MODULE 5 – <\/strong>Brazing: Materials 2<\/p> MODULE 6 – <\/strong>Brazing: Materials 3<\/p> MODULE 7 – <\/strong>Brazing: Variables<\/p> MODULE 8 – <\/strong>Brazing: Safety & Advantages\/Disadvantages<\/p> MODULE 9 – <\/strong>Soldering: Introduction<\/p> MODULE 10 – <\/strong>Soldering: Equipment<\/p> MODULE 11 – <\/strong>Soldering: Process Variations<\/p> MODULE 12 – <\/strong>Soldering: Materials 1<\/p> MODULE 13 – <\/strong>Soldering: Materials 2<\/p> MODULE 14 – <\/strong>Soldering: Variables<\/p> MODULE 15 – <\/strong>Soldering: Safety & Advantages\/Disadvantages<\/p><\/li> <\/p> Destructive testing is an essential part of ensuring the integrity and performance of the welds used to manufacture everything from cars, planes, and ships to bridges, buildings, and pipelines. Destructive testing methods are also used for applications such as welding procedure qualification, welder performance qualification testing, and material verification. This engaging online course describes the material properties of metals that can be evaluated with destructive testing, as well as the principles and performance of the most common destructive tests used in the welding industry. Click on the Course Modules tab below to see a list of the topics covered.<\/p> <\/p> 10 hours<\/p> <\/p> MODULE 1 <\/strong>– Introduction to Destructive Testing<\/p> MODULE 2 <\/strong>– Strength<\/p> MODULE 3 <\/strong>– Ductility<\/p> MODULE 4 <\/strong>– Strength Testing I<\/p> MODULE 5 <\/strong>– Strength Testing II<\/p> MODULE 6 <\/strong>– Strength Testing III<\/p> MODULE 7 <\/strong>– Hardness<\/p> MODULE 8 <\/strong>– Hardness Testing<\/p> MODULE 9 <\/strong>– Toughness<\/p> MODULE 10 <\/strong>– Toughness Testing<\/p> MODULE 11 <\/strong>– Fatigue I<\/p> MODULE 12 <\/strong>– Fatigue II<\/p> MODULE 13 <\/strong>– Fatigue Testing<\/p> MODULE 14 <\/strong>– Soundness<\/p> MODULE 15 <\/strong>– Chemical Properties<\/p> MODULE 16 <\/strong>– Corrosion Testing<\/p> MODULE 17 <\/strong>– Metallographic Testing<\/p><\/li> <\/p> This course describes welding discontinuities and the science and application of visual testing (VT), penetrant testing (PT), magnetic particle testing (MT), radiographic testing (RT), and ultrasonic testing (UT). Topics include discontinuities and their causes, as well as the role of vision, capillary action, magnetism, radiation, and sound in VT, PT, MT, RT and UT respectively. The Science of Non-Destructive Testing is perfect for both students and welding professionals involved in inspection, supervision, or quality control.<\/p> <\/p> 6 hours<\/p> <\/p> MODULE 1 <\/strong>– Introduction to Nondestructive Testing and Discontinuities<\/p> MODULE 2 <\/strong>– Common Discontinuities and Their Causes<\/p> MODULE 3 <\/strong>– The Science of Sight<\/p> MODULE 4 <\/strong>– How to Perform a Visual Test<\/p> MODULE 5 <\/strong>– The Science of Capillary Action<\/p> MODULE 6 <\/strong>– How Capillary Action Works in Penetrant Testing<\/p> MODULE 7 <\/strong>– The Science of Magnetism<\/p> MODULE 8 <\/strong>– How Magnetism Works in Magnetic Particle Testing<\/p> MODULE 9 <\/strong>– The Science of Radiation<\/p> MODULE 10 <\/strong>– Radiation Safety<\/p> MODULE 11 <\/strong>– How Radiation Works in Radiographic Testing<\/p> MODULE 12 <\/strong>– The Science of Sound<\/p> MODULE 13 <\/strong>– How Sound Works in Ultrasonic Testing<\/p><\/li> The AWS Fabrication Math I course provides a comprehensive introduction to basic math skills. The engaging, multimedia, format offers clear, step-by-step verbal and visual explanations that<\/p> make each mathematical concept easy to understand and remember. Topics include place value, simplification, estimation, measurement and the addition, subtraction, multiplication and division of whole numbers, fractions, decimals and mixed numbers.<\/p> This self-paced, online course is ideal for both beginners and welding professionals who want to learn or refamiliarize themselves with the basic principles behind many of the measurements and calculations used in the welding industry.<\/p> <\/p> 18 hours<\/p> <\/p> MODULE 1 <\/strong>– Introduction to Whole Numbers<\/p> MODULE 2 <\/strong>– Addition of Whole Numbers<\/p> MODULE 3 <\/strong>– Subtraction of Whole Numbers<\/p> MODULE 4 <\/strong>– Multiplication of Whole Numbers<\/p> MODULE 5 <\/strong>– Division of Whole numbers<\/p> MODULE 6 <\/strong>– Introduction to Fractions: Identifying and Simplifying Fractions<\/p> MODULE 7 <\/strong>– Introduction to Fractions: Mixed Numbers and Improper Fractions<\/p> MODULE 8 <\/strong>– Addition of Fractions: Adding Like and Unlike Denominators<\/p> MODULE 9 <\/strong>– Addition of Fractions: Adding Unlike Denominators and Mixed Numbers<\/p> MODULE 10 <\/strong>– Subtraction of Fractions and Mixed Numbers<\/p> MODULE 11 <\/strong>– Multiplication of Fractions and Mixed Numbers<\/p> MODULE 12 <\/strong>– Division of Fractions and Mixed Numbers<\/p> MODULE 13 <\/strong>– Introduction to Decimal Numbers<\/p> MODULE 14 <\/strong>– Addition of Decimal Numbers<\/p> MODULE 15 <\/strong>– Subtraction of Decimal Numbers<\/p> MODULE 16 <\/strong>– Multiplication of Decimal Numbers<\/p> MODULE 17 <\/strong>– Division of Decimal Numbers<\/p> MODULE 18 <\/strong>– Conversion of Decimal Numbers and Fractions<\/p><\/li> The AWS Fabrication Math II course builds upon the lessons learned in Fabrication Math I to explain the concepts, equations, and formulas that welders, welding foremen, welding supervisors and other welding professionals require to estimate, plan, and produce quality welds. The same type of audio narration, animated graphics, examples, and practice problems found in Math I make these more advanced concepts just as easy to understand and remember. Topics include unit conversions, percentages and ratios, and the calculation of area and volume. Please see the course curriculum for a complete list of topics.<\/p> <\/p> 15 hours<\/p> <\/p> MODULE 1 <\/strong>– Introduction<\/p> MODULE 2 <\/strong>– Percentages and Ratios<\/p> MODULE 3 <\/strong>– Rates and Ratios<\/p> MODULE 4 <\/strong>– Exponents and Scientific Notation<\/p> MODULE 5 <\/strong>– Order of Operations<\/p> MODULE 6 <\/strong>– Unit Conversions: Metric\/U.S. Standard Characteristics<\/p> MODULE 7 <\/strong>– Unit Conversions: Temperature and Time<\/p> MODULE 8 <\/strong>– Lines and Angles<\/p> MODULE 9 <\/strong>– Rectangles and Squares<\/p> MODULE 10 <\/strong>– Area of Right Triangles<\/p> WELDING FUNDAMENTALS II <\/h4>
A COMPREHENSIVE OVERVIEW<\/h3>
OF COMMON<\/h3>
WELDING TECHNIQUES <\/h3>
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Duración<\/h3>
WELDING FUNDAMENTALS III <\/h4>
A COMPREHENSIVE OVERVIEW<\/h3>
OF BRAZING AND SOLDERING <\/h3>
<\/h2>
Duración<\/h3>
DESTRUCTIVE TESTING <\/h4>
THE PRINCIPLES AND<\/h3>
PERFORMANCE OF<\/h3>
COMMONLY<\/h3>
USED DESTRUCTIVE TESTS <\/h3>
Duración<\/h3>
THE SCIENCE OF NONDESTRUCTIVE TESTING <\/h4>
THE PRINCIPLES AND<\/h3>
PERFORMANCE<\/h3>
OF THE MOST COMMON<\/h3>
NONDESTRUCTIVE<\/h3>
Duración<\/h3>
FABRICATION MATH I <\/h4>
INTRODUCTION TO BASIC<\/h3>
<\/h2>
Duración<\/h3>
FABRICATION MATH II <\/h4>
THE MATH SKILLS REQUIRED<\/h3>
TO PLAN AND PRODUCE<\/h3>
QUALITY WELDS <\/h3>
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Duración<\/h3>