Johannesburg reliability certificate program
Apply English. Apply SPanish. Apply Now. Instead, the ARP-L training provides a solid overview of the technical aspects so that they understand the terminology and main issues. Certain people in the industry and the practitioners who formed the Mobius Institute Board of Certification Scheme Committee and Technical Committee believed that there should be more than one level of certification in recognition of the challenging task involved with improving reliability, maintenance, operational performance, and asset health monitoring.
Thus the three-level system was devised. The Scheme Committee and Technical Committee also believed there should be a structured training program to support the certification program and that people should be encouraged to take the training. Many people are only given the opportunity to take training if it is associated with the certification program. Unfortunately, SMRP actively discourages organizations from offering training that prepares a person for the CMRP certification, instead requesting people to read a variety of books.
While certification is important, the education gained in achieving that certification is arguably more important. The structure, independence, discipline, and fairness behind the Asset Reliability Practitioner training and certification are very different from those that exist for CRL.
CRE certification is highly respected in the industry. CRE is focused on reliability engineering, however, the vast majority of CRE certified personnel are focused on product reliability; ensuring that your television does not fail, and determining warranty requirements, for example. You will be issued a digital certificate, personalized logo, and certification card. The certificate will acknowledge that the recipient has completed training, passed the exam, and if they have sufficient practical work experience relevant to the technology to be fully certified.
This will be available to share online as needed by the candidate. Your name will also appear on the Mobius Institute website unless you would prefer to remain anonymous. The experience requirements exist simply to ensure that you have experienced the issues related to poor reliability: downtime, lower than desired production output, frustration with breakdowns, etc.
It is not expected that you have been a full-time reliability engineer or program leader, but it is expected that you may have been involved with some of the common activities, such as condition monitoring, the acquisition of laser alignment or other precision maintenance tools, root cause failure analysis, and so on. Questions are proposed, audited, and reviewed by the TC. MIBoC has developed a process that utilizes software developed for the task so that the exam questions are protected, and so that all changes are tracked.
The TC is made up of industry experts and experienced people who work in the field from around the world. Once a question has been used in an exam, special statistical processes, called psychometrics, are used to check if any questions are too easy, too hard, or too confusing.
Those questions are then reviewed by the TC and either improved or rejected. Yes and no. Unfortunately, there is not an ISO standard for the certification of reliability practitioners or anything close to it. SC and TC are made up of industry experts and experienced people who work in the field from around the world.
Certification at ARP A, E, and L demonstrates that you have some experience in an industrial setting and that you understand certain facts, concepts, and principles, but it does not mean that an employer should not take responsibility for the tasks that you are assigned to perform.
Having said that, a person who has passed ARP-E should have the knowledge necessary to become an effective reliability engineer, and a person who passes ARP-L should be able to manage and lead a reliability improvement initiative. We will need to see some evidence that you have taken the training, but it is not necessary to retake any training.
For a list of recognized courses, refer to ED The course also covers the other techniques of predictive maintenance such as oil and particle analysis, ultrasound and infrared thermography with an introduction to automated machine condition monitoring. The latest approaches and equipment used together with current research techniques in vibration analysis are also highlighted. The lessons will be supplemented with case studies illustrating the practical aspects of vibration analysis and monitoring on a diverse range of applications.
This course explores a systematic approach to successful failure analysis and troubleshooting, including the determination of goals, use of checklists and setting up a failure analysis team.
By reference to specific case studies, it will be shown that such a systematic program can lead to significant failure reductions in many types of machinery.
Through examples dealing with pumps and compressors, guidance is given on vendor selection and methods for reliability review. Included are illustrative examples in pumps, centrifugal compressors, blowers and fans, reciprocating compressors, engines and gas turbines. Next, a systematic approach to generalized machinery problem-solving is described in terms of situation analysis, cause analysis, action generation, decision-making and planning for change.
Finally, a root cause failure analysis RCFA method is explained in detail. Sealing rotating shafts in fluid transfer machinery such as pumps and turbines has always been problematic. There are basically three ways in which a fluid under pressure in a machine can be prevented from leaking out from around a rotating shaft:. This course is designed to equip students with the latest theory and practice in the field of Reliability Engineering, and then apply it to the maintenance of electrical and mechanical systems.
Structure of the course: a unique emphasis. The course is comprehensive in its approach, combining theory, worked examples, problems for the student and case studies as applicable. Cases are supported by video material.
Bearings, of either the plain or rolling element type are one of the commonest machine elements. They are also remarkable pieces of precision engineering, which are often not treated with the respect that they deserve. This course introduces design and maintenance personnel to the basic types of bearings and common nomenclature used. Bearing design, installation and maintenance is discussed with a focus on preventing premature failure. The participant is also trained to analyze failed bearings so a similar occurrence will not happen again.
Compressors are devices for compressing air or other gases for use in industrial processes. There are many different types of compressor, including reciprocating, axial flow, centrifugal flow, roots blowers and other types. To achieve the maximum reliability and efficiency of such machines it is necessary to understand the physical laws behind their operation and hence the selection of one or another of the various types.
Successful implementation of RCM will lead to increase in cost effectiveness, machine uptime, and a greater understanding of the level of risk that the organisation is presently managing.
This two-day workshop will explore, dissect and highlight the key elements of Reliability Centred Maintenance. By emphasising the objectives, benefits and importance of RCM the facilitator will enable key learnings and discussion points creating a group environment for learning. RCM is about establishing the failure modes and failure effects by examining consequences of failure.
These steps of proactive and predictive maintenance will ensure that future failures are minimalised. The importance of setting task frequencies and identifying where the responsibility lies maintenance and operations will assist in the evaluation of the validity of different types of proactive maintenance.
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