Reliability Engineering and Risk Analysis
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Reliability Engineering and Risk Analysis

A Practical Guide, Third Edition

Mohammad Modarres, Mark P. Kaminskiy, Vasiliy Krivtsov

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  1. 504 pages
  2. English
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eBook - PDF

Reliability Engineering and Risk Analysis

A Practical Guide, Third Edition

Mohammad Modarres, Mark P. Kaminskiy, Vasiliy Krivtsov

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About This Book

This undergraduate and graduate textbook provides a practical and comprehensive overview of reliability and risk analysis techniques. Written for engineering students and practicing engineers, the book is multi-disciplinary in scope. The new edition has new topics in classical confidence interval estimation; Bayesian uncertainty analysis; models for physics-of-failure approach to life estimation; extended discussions on the generalized renewal process and optimal maintenance; and further modifications, updates, and discussions. The book includes examples to clarify technical subjects and many end of chapter exercises. PowerPoint slides and a Solutions Manual are also available.

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6
Reliability 
Engineering 
and 
Risk 
Analysis
TABLE 
1.2 
(
Continued
)
Mechanical 
Failure 
Mechanisms
Mechanism
Causes
Effect
Description
Thermal 
shock
Rapid 
cooling, 
heating
Large 
differential 
temperature
Yield 
fracture
Embrittlement
Thermal 
gradients 
in 
an 
item 
causing 
major 
differential 
thermal 
strains 
that 
exceed 
the 
ability 
of 
the 
material 
to 
withstand 
without 
yielding 
or 
fracture
Yield
Large 
static 
force
Operational 
load 
or 
motion
Geometry 
changes
Deformation
Break
Plastic 
deformation 
in 
an 
item 
occurs 
by 
operational 
loads 
or 
motion
Radiation
Damage
Nuclear 
radiation
Changes 
in 
material 
property
Loss 
of 
ductility
Radiation 
causes 
rigidity 
and 
loss 
of 
ductility. 
Polymers 
are 
more 
susceptible 
than 
metals. 
In 
metals, 
radiation 
reduces 
ductility, 
resulting 
in 
other 
failure 
mechanisms

Table of contents