(a) Explain the action of EACH of the following metallurgical mechanism: (10)
(i) Creep
(ii) Brinelling
(iii) Fretting
(iv) Fretting corrosion
(b) State, with reasons, where EACH of the mechanisms in occur in ship propulsion System. (6)
(a) Explain the action of EACH of the following metallurgical mechanism: (10)
(i) Creep
(ii) Brinelling
(iii) Fretting
(iv) Fretting corrosion
(b) State, with reasons, where EACH of the mechanisms in occur in ship propulsion System. (6)
Structured for DG Shipping MEO Class II examination scoring criteria.
Creep is the slow, time-dependent deformation of a material when it is subjected to a constant stress, particularly at high temperature. Over time, the material slowly elongates or deforms permanently under the applied load, even if the stress is below the material's yield strength.
(ii) Brinelling:
Brinelling refers to the permanent indentation or damage that occurs on a hard surface when it is subjected to excessive localized pressure, usually by a hard, stationary object pressing against it. This often occurs in bearings or mechanical contacts.
(iii) Fretting:
Fretting is the wear and degradation that occurs at the interface of two materials under small oscillatory movements or vibrations. These movements cause repeated micro-sliding or rubbing, leading to material removal and surface damage.
(iv) Fretting Corrosion:
Fretting corrosion is the combination of mechanical wear and electrochemical corrosion at the interface of two materials, where small oscillatory movements occur. The wear process exposes fresh surfaces to air or water, and the material at the contact point becomes prone to corrosion due to the creation of micro-galvanic cells.