Advanced 100-Question Practice Exam
2026 | Questions & Answers with
Detailed Rationales | Complete Exam
Prep & Study Guide
1.
A welder is preparing to make a groove weld on a structural steel joint using
SMAW. The joint is restrained and the steel has a relatively high carbon
equivalent. Which procedure provides the best approach to reducing hydrogen-
assisted cracking?
A. Increase travel speed and eliminate preheat
B. Use damp electrodes and increase arc length
C. Use low-hydrogen electrodes, appropriate preheat, and controlled interpass
temperature
D. Reduce amperage until the electrode repeatedly sticks
Answer: C. Use low-hydrogen electrodes, appropriate preheat, and controlled
interpass temperature
,**Rationale: Hydrogen-assisted cracking is promoted by diffusible hydrogen,
susceptible microstructures, tensile restraint, and low temperature. Properly
stored low-hydrogen electrodes and appropriate preheat/interpass control
reduce the risk.
2.
Which SMAW electrode classification indicates a minimum tensile strength of
approximately 70 ksi?
A. E6010
B. E7018
C. E8018
D. E9018
Answer: B. E7018
**Rationale: The first two digits of a four-digit SMAW electrode classification
indicate minimum tensile strength in ksi. “70” therefore indicates 70 ksi.
3.
When using a low-hydrogen SMAW electrode that has been exposed to
atmospheric moisture beyond the manufacturer's permitted exposure time, the
preferred action is to:
A. Increase amperage
B. Recondition or replace the electrode according to the applicable requirements
C. Grind the electrode tip clean
D. Increase arc length
Answer: B. Recondition or replace the electrode according to the applicable
requirements
**Rationale: Moisture can increase diffusible hydrogen and contribute to
hydrogen cracking. Electrodes must be stored, handled, and reconditioned
according to the applicable electrode manufacturer's and welding-code
requirements.
,4.
What is the primary purpose of shielding gas in GMAW?
A. Increase base-metal hardness
B. Prevent atmospheric contamination of the molten weld pool
C. Increase electrode resistance
D. Eliminate the need for joint preparation
Answer: B. Prevent atmospheric contamination of the molten weld pool
**Rationale: Shielding gas displaces atmospheric oxygen, nitrogen, and
moisture around the arc and molten metal. Inadequate shielding can produce
porosity, oxidation, and other defects.
5.
A GMAW operator notices excessive spatter while using short-circuit transfer.
Which adjustment should be investigated first?
A. Welding parameters and arc characteristics
B. Electrode storage temperature
C. Plate thickness only
D. Welding helmet shade only
Answer: A. Welding parameters and arc characteristics
**Rationale: Excessive spatter can result from incorrect voltage, wire-feed
speed, inductance, polarity, stickout, shielding gas, or poor parameter matching.
6.
Which polarity is normally used for solid-wire GMAW with conventional
electrode-positive operation?
A. DCEN
B. DCEP
, C. AC only
D. No polarity
Answer: B. DCEP
**Rationale: Conventional GMAW with solid wire is generally performed using
direct current electrode positive, which provides stable transfer and appropriate
melting characteristics.
7.
In GTAW, the tungsten electrode becomes contaminated with molten filler metal.
What is the most appropriate corrective action?
A. Continue welding until the contamination burns away
B. Increase shielding-gas flow indefinitely
C. Stop and properly grind or replace the contaminated tungsten
D. Reverse polarity
Answer: C. Stop and properly grind or replace the contaminated tungsten
**Rationale: Tungsten contamination can destabilize the arc and introduce
inclusions. The contaminated portion should be removed by proper grinding or
the electrode replaced.
8.
For GTAW on aluminum using a conventional AC power source, the primary
reason for using AC is to:
A. Eliminate shielding gas
B. Provide appropriate arc cleaning and penetration characteristics
C. Increase electrode diameter automatically
D. Prevent all distortion
Answer: B. Provide appropriate arc cleaning and penetration characteristics