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Welding Metallurgy & Materials Flashcards

7 cards from real Architecting on AWS Certification practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

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  1. What is the primary cause of hydrogen-induced cracking (HIC) in high-strength steel welds?

    Answer: Diffusible hydrogen trapped in the heat-affected zone under residual stress

    Hydrogen-induced cracking occurs when diffusible hydrogen migrates to the HAZ and combines with residual tensile stress and a susceptible microstructure.

  2. Which welding process is most commonly used for joining austenitic stainless steel to minimize sensitization?

    Answer: Gas Tungsten Arc Welding (GTAW) with low heat input

    GTAW with low heat input minimizes the time spent in the sensitization temperature range (450–850°C), reducing chromium carbide precipitation at grain boundaries.

  3. The Schaeffler diagram is used to predict the weld metal microstructure of stainless steels based on which two parameters?

    Answer: Chromium equivalent and nickel equivalent

    The Schaeffler diagram maps weld metal microstructure (austenite, ferrite, martensite) as a function of chromium equivalent (ferrite stabilizers) versus nickel equivalent (austenite stabilizers).

  4. What microstructural feature in low-alloy steel HAZ is most detrimental to toughness?

    Answer: Upper bainite

    Upper bainite contains coarse carbide films along lath boundaries that act as cleavage crack initiators, severely reducing Charpy impact toughness.

  5. Which phenomenon describes the loss of corrosion resistance in austenitic stainless steel due to chromium depletion near grain boundaries?

    Answer: Sensitization

    Sensitization occurs when chromium carbides precipitate at grain boundaries during heating to 450–850°C, depleting the adjacent matrix of chromium below the passive threshold (~12%).

  6. In welding duplex stainless steel, what is the target ferrite content in the weld metal to balance corrosion resistance and toughness?

    Answer: 30–60%

    A ferrite content of approximately 30–60% (FN 30–70) in duplex stainless steel weld metal provides the best combination of strength, toughness, and corrosion resistance.

  7. What is the purpose of post-weld heat treatment (PWHT) in carbon and low-alloy steel weldments?

    Answer: To relieve residual stresses and temper hard HAZ microstructures

    PWHT reduces residual stresses generated during welding and tempers brittle martensite or bainite in the HAZ, improving toughness and reducing susceptibility to hydrogen cracking.