NivaarExam PrepOfficial exam papers ↗

21-Mat-A5 Phase Transformations and Thermal Treatment: December 2014

Nivaar worked solution (AI-drafted; not reviewed by a licensed engineer)

  1. Question 1 Fatigue-Safety Margin for a Cracked Component; Infinite-Life Flaw-Size Design for a Skeletal Implant
  2. Question 2 Creep and Fatigue Test Methodology; Three Definitions of Toughness
  3. Question 3 Fatigue-Crack-Growth Life of a Surface-Cracked Sheet; Sub-Yield Failure Mechanisms
  4. Question 4 Strengthening Single Crystals; Directionally-Solidified Single-Crystal Superalloy Turbine Blades
  5. Question 5 General Yield vs. Fast Fracture in a Marine Steel Plate; Cold Brittleness; HCP Ductility
  6. Question 6 Metal vs. Semicrystalline Polymer Stress-Strain Behaviour; CFRP Composite Properties
  7. Question 7 Plastic Instability (Considère's Criterion); Stretch-Forming Spring-Back of a Magnesium Sheet
  8. Question 8 Conditions for Creep and Fatigue; Creep Deformation Mechanism; Strain-Rate-Sensitive Yielding and Brittle Fracture

Start with Question 1 →

Paper format. National Exams, December 2014 — 10-Met-A5, Mechanical Behaviour and Fracture of Materials. Three hours, closed book, any non-communicating calculator permitted. Eight questions of 20 marks each; the rubric states that five questions constitute a complete paper and that only the first five appearing in the answer book are marked. All eight are answered here, because this set is a study resource rather than an exam script. Several questions ask explicitly for essay-format answers, and the marking scheme rewards clarity and organisation, so the discursive answers below are written as structured prose rather than as note form.

Note on the exam title

The printed exam header reads 10-Met-A5, Mechanical Behaviour and Fracture of Materials. The paper examines fracture mechanics and fatigue-crack-growth life, strengthening and toughening of engineering materials, creep and fatigue testing, deformation processing selection, and elastic–plastic forming behaviour; it has no classical phase-transformation or heat-treatment (TTT/CCT diagram, hardenability, tempering-curve) questions. The answers below are written to the printed subject.

Reference texts. The answers below are keyed to the works normally recommended for this syllabus code: