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23-Ind-B2 Manufacturing Processes · May 2014

Question 4 of 7: Forming/Shaping Process Characteristics, Forging Steps, and Forging Trends

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

Notes on this paper

National Exams — May 2014 — 98-Ind-B2 Manufacturing Processes. Closed book; Casio or Sharp approved calculators only. Any five of the seven questions constitute a complete paper; all questions are of equal value (20 marks each). Answers are written in point form but fully, with all calculations shown, as instructed. Complete answers to all seven questions follow.

Reference texts: Groover, Fundamentals of Modern Manufacturing: Materials, Processes, and Systems, 6th ed. — material selection, casting, metal-cutting theory, welding processes, and automation/numerical control; Montgomery, Introduction to Statistical Quality Control, 8th ed. — where quality-control concepts are referenced.

Question 4: Forming/Shaping Process Characteristics, Forging Steps, and Forging Trends (20 marks: 7/7/6)

Question text not reproduced: the examination questions are © Engineers and Geoscientists BC. Open the official past paper (linked at the top of this page) to read the question, then follow the worked solution below.

(i) General Characteristics of Forging, Extrusion, and Sheet-Metal Forming

(ii) Steps in a Typical Forging Operation

  1. Billet/stock preparation. Cut raw stock to the required billet size/weight; clean surface scale if needed.
  2. Heating. Heat the billet to the appropriate hot-working temperature range for the alloy (for hot forging), which lowers flow stress and increases ductility, reducing the force needed and the risk of cracking; some forging (cold/warm forging) is done at or near room temperature for improved dimensional accuracy and surface finish at the cost of higher forming forces.
  3. Preforming/blocking (for closed-die work). One or more intermediate (blocker) die impressions redistribute the metal roughly into the final shape before the finishing impression, controlling metal flow and reducing the load and die wear on the finishing step.
  4. Finish forging. The workpiece is struck/pressed in the finishing die impression to its final forged shape, with excess material squeezed out as flash at the parting line (in closed-die/impression-die forging).
  5. Trimming. The flash is removed, typically by a trim die in a separate press operation.
  6. Heat treatment. The forging is normalized, annealed, or otherwise heat treated to relieve residual stress from the working and to develop the required final microstructure/mechanical properties.
  7. Cleaning/finishing and inspection. Descaling (e.g. shot blasting), any required machining of critical features, and dimensional/non-destructive inspection (to catch laps, cracks, or incomplete die fill) complete the sequence.

(iii) Current Trends in Forging Design and Manufacturing