Failure of cargo aileron’s actuator

Journal Title: Frattura ed Integrità Strutturale - Year 2014, Vol 8, Issue 30

Abstract

 During a ferry flight, in a standard operation condition and at cruising level, a military cargo experienced a double hydraulic system failure due to a structural damage of the dual booster actuator. The booster actuator is the main component in mechanism of aileron’s deflection. The crew was able to arrange an emergency landing thanks to the spare oil onboard: load specialists refilled the hydraulic reservoirs. Due to safety concerns and in order to prevent the possibility of other similar incidents, a technical investigation took place. The study aimed to carry out the analysis of root causes of the actuator failure. The Booster actuator is composed mainly by the piston rod and its aluminum external case (AA7049). The assembly has two bronze caps on both ends. These are fixed in position by means of two retainers. At one end of the actuator case is placed a trunnion: a cylindrical protrusion used as a pivoting point on the aircraft. The fracture was located at one end of the case, on the trunnion side, in correspondence to the cap and over the retainer. One of the two fracture surfaces was found separated to the case and with the cap entangled inside. The fracture surfaces of the external case indicated fatigue crack growth followed by ductile separation. The failure analysis was performed by means of optical, metallographic, digital and electronic microscopy. The collected evidences showed a multiple initiation fracture mechanism. Moreover, 3D scanner reconstruction and numerical simulation demonstrated that dimensional non conformances and thermal loads caused an abnormal stress concentration. Stress concentration was located along the case assy outer surface where the fatigue crack originated. The progressive rupture mechanism grew under cyclical axial load due to the normal operations. Recommendations were issued in order to improve dimensional controls and assembly procedures during production and overhaul activities.

Authors and Affiliations

G. Zucca, M. Amura, L. Allegrucci

Keywords

Related Articles

 Fracture morphology and its evolution  A review on crack path stability and brittle fracture along butt-weld

 Considerations are made for the fracture morphology and its evolution in relation to the brittle fracture along butt-weld, where crack path stability may play important roles in various aspects. Analyses of a&nbsp...

 Fatigue crack propagation in short-fiber reinforced plastics

 The influence of fiber orientation on the crack propagation behavior was studied with single edgenotched specimens which were cut from an injection-molded plate of short-fiber reinforced plastics of polyp...

 Estimating macro-, micro-, and nano-hardness of metallic materials from elasto-plastic finite element results

 This paper summarises an attempt of estimating macro-, micro-, and nano-hardness of metallic materials through conventional elasto-plastic finite element (FE) analyses. In more detail, to verify if the classical FE...

 Multiscale approach to description of deformation and fracture of brittle media with hierarchical porous structure on the basis of movable cellular automaton method

 An approach to multiscale description of deformation and fracture of brittle porous materials on the basis of movable cellular automaton method was proposed. The material characterized by pore size distribution fun...

 Strain gradient elasticity within the symmetric BEM formulation

 The symmetric Galerkin Boundary Element Method is used to address a class of strain gradientelastic materials featured by a free energy function of the (classical) strain and of its (first) gradient. With respectto...

Download PDF file
  • EP ID EP152781
  • DOI -
  • Views 75
  • Downloads 0

How To Cite

G. Zucca, M. Amura, L. Allegrucci (2014).  Failure of cargo aileron’s actuator. Frattura ed Integrità Strutturale, 8(30), 409-416. https://europub.co.uk/articles/-A-152781