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The term "reliability-centered maintenance" authored by Tom Matteson, Stanley Nowlan and Howard Heap of United Airlines (UAL) to describe a process used to determine the optimum maintenance requirements for aircraft [3] [disputed – discuss] (having left United Airlines to pursue a consulting career a few months before the publication of the final Nowlan-Heap report, Matteson received no ...
S4000P - International specification for developing and continuously improving preventive maintenance is a specification developed jointly by a multinational team from the AeroSpace and Defence Industries Association of Europe (ASD) and Aerospace Industries Association (AIA). [1]
MIL-STD-2173, Reliability Centered Maintenance Requirements, U.S. Department of Defense (superseded by NAVAIR 00-25-403) OPNAVINST 4130.2A; DEF(AUST)5691 Logistic Support Analysis; DEF(AUST)5692 Logistic Support Analysis Record Requirements for the Australian Defence Organisation
Reliability engineering is a sub-discipline of systems engineering that emphasizes the ability of equipment to function without failure. Reliability is defined as the probability that a product, system, or service will perform its intended function adequately for a specified period of time, OR will operate in a defined environment without failure. [1]
Reliability-centered maintenance, a maintenance planning approach based on reliability and safety system assessment; Reciprocating Chemical Muscle, a mechanism that takes advantage of the superior energy density of chemical reactions; Resonant Clock Mesh, technology used in the AMD Piledriver (microarchitecture) Restrictive cardiomyopathy
As equipment ages and maintenance requirements intensify, the quest for innovative solutions becomes increasingly urgent. Reliability-centered maintenance emphasizes the use of predictive maintenance techniques in addition to traditional preventive measures. When properly implemented, it provides companies with a tool for achieving lowest asset ...
Maintenance, and hence maintenance engineering, is increasing in importance due to rising amounts of equipment, systems, machineries and infrastructure. Since the Industrial Revolution , devices, equipment, machinery and structures have grown increasingly complex, requiring a host of personnel, vocations and related systems needed to maintain ...
This graph is used in reliability engineering and deterioration modeling. The 'bathtub' refers to the shape of a line that curves up at both ends, similar in shape to a bathtub. The bathtub curve has 3 regions: The first region has a decreasing failure rate due to early failures. The middle region is a constant failure rate due to random failures.