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Guidelines for Implementation of Structural Health Monitoring on Fixed Wing Aircraft
- Aerospace Standard
- ARP6461
- Issued
Downloadable datasets available
Annotation ability available
Sector:
Issuing Committee:
Language:
English
Scope
This document is applicable to civil aerospace airframe structural applications where stakeholders are seeking guidance on the definition, development and certification of Structural Health Monitoring (SHM) technologies for aircraft health management applications.
For the purpose of this document, SHM is defined as “the process of acquiring and analyzing data from on-board sensors to evaluate the health of a structure.” The suite of on-board sensors could include any presently installed aircraft sensors as well as new sensors to be defined in the future.
Rationale
The development of Structural Health Monitoring (SHM) technologies to achieve Vehicle Health Management objectives in aerospace applications is an activity that spans multiple engineering disciplines. It is also recognized that many stakeholders i.e. Regulatory Agencies, Airlines, Original Equipment Manufacturers (OEM), Academia and Equipment Suppliers are crucial to the process of certifying viable SHM solutions. Thus a common language (definitions), framework of SHM solution approaches, and recommended practices for reaching those solutions, are needed to promote fruitful and efficient technology development.
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TABLE 2 | TASK PHASING OF SHM SYSTEM LABORATORY-TO-FIELD TRANSITION | |
TABLE 3 | SHM EVALUATION ACTIVITIES | |
TABLE 4 | SUMMARY OF POTENTIAL SHM EVALUATION CRITERIA | |
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Issuing Committee
Aerospace Industry Steering Committee on Structural Health
The scope of the committee is to accumulate, develop and disseminate SHM system technology and experience relating to the following groups -- a. Civil fixed and rotary wing air vehicles; b. Military fixed and rotary wing air vehicles; and c. Unmanned fixed and rotary wing air vehicles.
Reference
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