PetroBench 2.0 is hereSee what's new

PetroBench

When to Use Fiberglass Sucker Rods

Fiberglass rods solve specific problems - corrosion, weight, deep wells. They fail in specific ways. Here is when they are the right answer.

Editorial photograph for article on when to use fiberglass sucker rods
2 min read

Fiberglass sucker rods are not a universal upgrade over steel. They solve specific problems - corrosion, weight, deep wells - and create others. Deciding whether they are right depends on the well's failure mode and service conditions, not on novelty.

What Fiberglass Does Well

Corrosion immunity. Fiberglass does not corrode. In wells where corrosion-fatigue is driving steel rod failures (high water cut, H2S, CO2), fiberglass extends run life dramatically. This is the primary reason to run fiberglass.

Weight reduction. Fiberglass is about one-third the weight of steel. On deep wells where the rod string's own weight dominates the load calculation, lighter rods reduce peak polished rod load, allow a smaller pumping unit, and cut energy consumption. The effect on stroke dynamics also often allows higher SPM and higher production.

Reduced friction in deviated wells. Lower side loads and reduced rod-tubing contact. Particularly effective in wells where steel rods have caused excessive tubing wear.

What Fiberglass Does Poorly

Shock loading. Fiberglass is sensitive to sudden compressive loads. Fluid pound damages it faster than steel. Fiberglass installations require pump-off control not as an optimization but as a requirement to prevent rapid failure.

Temperature. Operating envelope caps around 200 F for standard fiberglass. High-temperature composite versions extend this but at significant cost. In deep wells with elevated bottomhole temperatures, the thermal envelope is a real constraint.

Handling sensitivity. Fiberglass rods are more fragile during handling than steel. Nicks, dropped rods, over-torqued couplings cause immediate or latent failures.

When to Use Them

Strong candidates: wells with high water cut in corrosive service where steel is failing from corrosion-fatigue. Deep wells where rod weight drives load calculations. Wells with deviation where side-loading damages steel rods.

Weak candidates: wells with chronic fluid pound (fix the pound first). Wells with high-BHT conditions. Low-volume wells where steel works fine and the fiberglass premium is unjustified.

Mixed Strings

Fiberglass up top, steel at the bottom is a common and effective design in deep corrosive wells. The top section carries the weight savings and corrosion resistance benefits. The bottom section handles compressive load near the pump where fiberglass is weakest.

Bottom Line

Fiberglass sucker rods are the right answer when corrosion-fatigue, rod weight, or deviation-induced wear are driving failures and the service envelope fits. They are the wrong answer as a universal upgrade. Specify them for the problem, not for the novelty.

Fiberglass Rods Corrosion Deep Wells Rod String Design

Ready to see PetroBench in action?

Talk to our engineering team about your rod lift design workflow.