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1. A pipeline welder is preparing to weld API 5L Grade X70 pipe
carrying high-pressure natural gas. Why is strict adherence to the
qualified Welding Procedure Specification (WPS) critical?
A. To reduce electrode consumption only
B. To satisfy customer preference
C. To ensure weld mechanical properties meet design and code
requirements
D. To improve paint adhesion
Answer: C. To ensure weld mechanical properties meet design and
code requirements
Rationale: The WPS establishes approved welding variables including
process, filler metal, amperage, voltage, travel speed, preheat, and
interpass temperature. Deviating from qualified parameters can
significantly alter weld strength, toughness, ductility, and hydrogen
resistance, potentially resulting in catastrophic pipeline failure.
2. Which welding process is most commonly used for the root pass
during cross-country pipeline construction?
A. Flux-Cored Arc Welding (FCAW)
B. Gas Metal Arc Welding (GMAW)
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,C. Shielded Metal Arc Welding (SMAW) using cellulose electrodes
D. Oxyacetylene Welding
Answer: C. Shielded Metal Arc Welding (SMAW) using cellulose
electrodes
Rationale: Cellulosic electrodes such as E6010 and E8010 provide deep
penetration, excellent keyhole control, and fast-freezing slag, making
them ideal for open-root pipeline welding in all positions.
3. Which discontinuity is most likely caused by insufficient cleaning
between weld passes?
A. Undercut
B. Slag inclusion
C. Burn-through
D. Arc strike
Answer: B. Slag inclusion
Rationale: Failure to remove slag completely before depositing
subsequent passes traps nonmetallic material within the weld, creating
slag inclusions that reduce strength and may cause rejection during
radiographic inspection.
4. During pipeline welding, maintaining proper root opening
primarily ensures:
A. Faster electrode consumption
B. Correct weld penetration and fusion
C. Reduced pipe diameter
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,D. Increased coating adhesion
Answer: B. Correct weld penetration and fusion
Rationale: The root opening controls penetration depth and bead
formation. An improper gap may lead to incomplete penetration,
excessive reinforcement, or burn-through.
5. Which electrode classification is specifically designed for high-
strength pipeline applications?
A. E6013
B. E7014
C. E8010-G
D. E7024
Answer: C. E8010-G
Rationale: E8010-G electrodes provide higher tensile strength and deep
penetration suitable for modern high-strength pipeline steels while
maintaining excellent root characteristics.
6. Hydrogen-induced cracking most commonly occurs:
A. Immediately after grinding
B. Several hours after welding
C. Before welding begins
D. During painting
Answer: B. Several hours after welding
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, Rationale: Hydrogen-assisted cracking is often delayed, occurring after
the weld cools. It requires diffusible hydrogen, susceptible
microstructure, tensile stress, and relatively low temperatures.
7. Which factor most effectively minimizes hydrogen cracking?
A. Increasing travel speed excessively
B. Eliminating bevel preparation
C. Proper preheat and low-hydrogen procedures
D. Using excessive weaving
Answer: C. Proper preheat and low-hydrogen procedures
Rationale: Preheat slows cooling, promotes hydrogen diffusion, and
reduces formation of hard martensitic microstructures susceptible to
cracking.
8. API 1104 primarily governs:
A. Structural steel buildings
B. Bridge fabrication
C. Welding of pipelines and related facilities
D. Shipbuilding
Answer: C. Welding of pipelines and related facilities
Rationale: API 1104 establishes qualification, fabrication, inspection,
repair, and acceptance criteria specifically for pipeline welding.
9. Excessive amperage during root pass welding most commonly
causes:
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