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Leak tests, Non-destructive testing, Test equipment, Selection, Performance, Pressure measurement (fluids)
A comprehensive standard work and important resource for both students and professionals in research and industry who need detailed knowledge of the theory and applications. Many numerical examples and numerous illustrations visualize the theoretical issues, backed by many useful tables and charts, plus over 500 illustrations. The Handbook discusses the latest developments in vacuum measurement techniques and leak detection in vacuum systems, as well as the connection of vacuum systems to computerized control systems.
This book describes technical and practical aspects of pipeline damage. It summarizes the phenomena, mechanisms and management of pipeline corrosion in-service. The topics discussed include pipelines fracture mechanics, damage mechanisms and evolution, and pipeline integrity assessment. The concept of acceptable risk is also elucidated and the future application of new knowledge management tools is considered.
Based on the very successful German edition and a seminar held by the German Engineers` Association (VDI) on a regular basis for years now, this English edition has been thoroughly updated and revised to reflect the latest developments. It supplies in particular the special aspects of vacuum technology, applied vacuum pump types and vacuum engineering in the chemical, pharmaceutical and process industry application-segments. The text includes chapters dedicated to latest European regulations for operating in hazardous zones with vacuum systems, methods for process pressure control and regulation and leak detection. All of the authors work or did work at a selection of the most important German companies involved in vacuum technology, and their expertise is disseminated here for engineers working in vacuum technology, chemical process design, plant operation, and mechanical engineering.
Leak testing has become a major aspect of many processes in a wide range of industries, from castings to crisp packets. But it seems it is often shrouded in “secret formulas” and specialist knowledge, known only to the leak test manufacturers. Have you ever asked: · What is my leak specification? · Can I set up my air pressure tester myself? · How do I check/calibrate my leak test machine? · Would a helium test be better? · Why is my leak test failing good parts? · What are the problems I need to be aware of? · Who can I ask for honest help and advice? Many of you will already know the wealth of knowledge the author brings to this subject, and how he makes even the complicated easy to understand. Now retired from industry, Barry wanted to share his knowledge with anyone who wants to be an expert in this field or simply has an interest and wants to know more. With this easy-to-follow guide, you can call on all of Barry’s vast experience in all aspects of leak testing, including air under water, pressure decay, flow measurement, helium leak testing, gas sniffers and many more. The book guides you through all you need to know, from the basic mathematics, through developing your leak specifications, selection and setting up your leak test, right through to fault diagnosis and effective maintenance. Leak Testing Made Easy does exactly what it says, taking the mystery of the subject, and making it simple and practical to understand, with many pictorial examples, along with lots of practical analogies to common-day things that you already know about. Packed with look-up tables and charts, this book is a must for any specifiers and users of leaks and leak testing equipment, or simply for those who would like to know more.
Gaseous leak detection is an important quality assurance tool in a variety of industrial operations. This volume is devoted to the practical aspects of industrial gaseous leak detection, explaining and illustrating the technology of leak testing small components as well as large process systems. It explains the techniques of hand probing, fixture design, and integration of computer controlled production test lines, and is written to be accessible to managers and technicians as well as engineers.
Contains the background information needed by students and NDT personnel who want to qualify for NDT Levels I, II, and III certification-in accordance with the American Society for Nondestructive Testing (ASNT) Recommended Practice No. SNT-TC-1A (August 1984 edition). Contents follow the general outline of SNT-TC-1A. Includes typical chapter questions and answers, as well as information on recent state-of-the-art developments. In the case of Level III certification, the book is meant to supplement the required hands-on laboratory and field training. College and university instructors should find the text especially useful in working with private industry and NDT employers. Coverage is broad in scope, making this guide a useful general reference. Topics covered include the theory and techniques of radiographic equipment, magnetic particle tests, ultrasonic testing, liquid penetrant tests, electromagnetic testing method, neutron radiographic testing, leak testing methods, acoustic emissions, visual inspection and holography.
Comprehensive guide to the basic principles and applications of non-destructive testing methods for aircraft system and components: airframe, propulsion, landing gear and more Provides detailed analysis of the advantages and disadvantages of major NDT methods Important for design, inspection, maintenance, repair, corrosion protection and safety This critical book is among the first to provide a detailed assessment of non-destructive testing methods for the many materials and thousands of parts in aircraft. It describes a wide variety of NDT techniques and explains their application in the evaluation and inspection of aerospace materials and components ranging from the entire airframe to systems and subsystems. At the same time the book offers guidance on the information derived from each NDT method and its relation to aircraft design, repair, maintenance and overall safety. The book covers basic principles, as well as practical details of instrumentation, procedures and operational results with a full discussion of each method's capabilities and limitations as these pertain to aircraft inspection and different types of materials, e.g., composites and metal alloys. Technologies covered include: optical and enhanced optical methods; liquid penetrant, replication and magnetic particle inspection; electromagnetic and eddy current approaches; acoustics and ultrasonic techniques; infrared thermal imaging; and radiographic methods. A final section is devoted to NDT reliability and ways the probability of detection can be measured to establish inspection intervals.