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AWS Metallurgy & Materials Flashcards

7 cards from real AWS practice questions. Tap to flip, then mark Knew It or Still Learning โ€” missed cards come back until you master them.

Read the first 7 AWS Metallurgy & Materials flashcards as text
  1. What microstructural feature is responsible for the high hardness of martensite in steel?

    Answer: Supersaturated solid solution of carbon in a BCT iron lattice

    Martensite's extreme hardness results from carbon atoms being trapped in a distorted body-centered tetragonal lattice, creating high internal strain.

  2. In a copper-zinc (brass) alloy weld, which problem is most likely to occur due to the low boiling point of zinc?

    Answer: Porosity from zinc vaporization

    Zinc has a boiling point below typical welding temperatures, causing it to vaporize and create porosity and toxic fume hazards.

  3. What does a high carbon equivalent (CE) value indicate about a steel's weldability?

    Answer: Poor weldability with increased risk of hydrogen cracking and HAZ hardening

    A high CE indicates the steel will harden significantly in the HAZ and is susceptible to hydrogen-induced cracking, requiring preheat and low-hydrogen procedures.

  4. Which phenomenon occurs when two dissimilar metals with different electrochemical potentials are joined by welding and exposed to an electrolyte?

    Answer: Galvanic corrosion

    Galvanic corrosion occurs when dissimilar metals in electrical contact are exposed to an electrolyte, causing the more active (anodic) metal to corrode preferentially.

  5. What is the function of titanium or niobium additions in stabilized austenitic stainless steels used for welding?

    Answer: To preferentially combine with carbon and prevent chromium carbide sensitization

    Ti and Nb have stronger affinity for carbon than chromium does, forming their own carbides and preventing the chromium depletion that causes sensitization.

  6. In welding aluminum alloys, what is the primary source of porosity in the weld metal?

    Answer: Hydrogen dissolved from moisture in the oxide layer or filler wire

    Aluminum's oxide layer readily absorbs moisture, and hydrogen solubility drops sharply upon solidification, causing hydrogen bubbles to form as porosity.

  7. Which heat treatment process is used to reduce residual stresses in a welded structure without significantly changing the microstructure?

    Answer: Post-weld heat treatment (PWHT) / stress relief

    PWHT stress relief involves heating the weldment to a temperature below the transformation range and holding it to allow plastic flow and stress relaxation.