Trivex vs Polycarbonate for Rimless Drill-Mount Frames: Impact Resistance vs Cracking
For rimless drill-mount frames, no supplied evidence shows that Trivex cracks less often than polycarbonate around the drilled mounting holes. The only material-level distinction backed by test data is optical: Trivex has a higher Abbe value and produced less peripheral color dispersion in one lab's tests. That's a clarity difference, not proof of fewer mounting fractures.

Treat the two facts separately. If a specific lens product and drilling process haven't been tested together, neither material comes with a guarantee against pin-hole stress cracks.
Does Trivex reduce drill-mount cracking?
No. The tensile and drill-hole observations reported by Laramy-K's reported tensile and drill-hole findings actually contradict each other, so they cannot support a crack-resistance recommendation for either material.
The lab's page calls Trivex resistant to cracking around drill holes, but its own tensile test found Trivex breaking under less strain than polycarbonate. The source describes its testing as real-world and unscientific, which means the conflict isn't a data error to resolve; it's a sign the comparison wasn't controlled tightly enough to name a winner. The limited optical lean toward Trivex, covered below, is a separate consideration and doesn't answer the cracking question.
What the tensile and internal-stress evidence can establish
The table below separates what a single independent lab reported from what a shopper can actually conclude about drill-mount durability.
| Property | What the evidence reports | What it establishes |
|---|---|---|
| Tensile strength / drill-hole resistance | Trivex is called drill-hole resistant, yet broke under less strain in the same source's tensile test | Conflicting results; no crack-resistance winner |
| Internal stress at mounting points | Not measured or reported | Not established for either material |
| Abbe value | Trivex 45, polycarbonate 29 | A real optical difference, unrelated to mount strength |
| Acetone / solvent exposure | Tested Trivex unaffected; tested polycarbonate lenses showed some degradation | Applies only to that experiment, not general chemical resistance |
| Comparative impact or drill-mount cracking | No like-for-like mounting test supplied | Not established |
The internal-stress row matters most for this decision. Nobody supplied a controlled comparison of stress buildup around a drilled hole in either material, and general impact resistance (how a lens handles a blunt strike) doesn't predict how it handles a small drilled pin point under clamping pressure. Those are different mechanical events. Until a controlled, like-for-like drill-mount test exists, general resistance numbers can't be used to pick a material for that specific job.
What the Abbe comparison means for optics
Laramy-K's reported Abbe values of 45 for Trivex and 29 for polycarbonate point to less light-bending distortion at the lens edges with Trivex. In its own tests, that translated into less peripheral color fringing, the faint rainbow edge some wearers notice in strong prescriptions or larger frames.
That's a specific, source-bound observation, not a universal promise. It came from one lab's reported peripheral color-dispersion result, not a study across brands, prescriptions, or coatings. It also has nothing to do with drill-mount cracking; a lens can show less color fringing and still have an untested response to drilling stress.

What the acetone test means for durability
Laramy-K's acetone experiment found the tested Trivex lens unaffected while the tested lenses' acetone response showed some degradation in polycarbonate. That's the outcome of one solvent, on the specific lenses in that experiment.
It doesn't extend to other cleaners, coatings, everyday wear, or long-term durability. A lens that handles acetone well hasn't been shown to handle drilling stress, UV exposure, or years of frame flex any differently. If you want a verification routine for a lens you already own, our home lens testing guide walks through checks you can run without lab equipment.
What to confirm before drilling a specific frame
Before choosing a material, ask the optician or lens lab one specific question: is this exact lens product compatible with this frame's hole positions, mounting hardware, and the lab's intended drilling and mounting process? That question covers the variables that actually predict a mounting-point failure, not the material name alone.
Rimless frames vary in hole spacing, edge thickness, and pin design, and labs vary in how they drill and set hardware. Our rimless glasses styles and our broader guide to rimless drill-mount lens choices are useful starting points for comparing frame and lens combinations, but the lab confirming your specific setup is the step that actually protects against a cracked mount.
FAQs
Why do rimless frames crack?
The evidence here doesn't point to one specific cause. If a pair has already cracked at a mounting point, ask the optician or lab to inspect the fracture origin and the mounting details rather than assuming the lens material alone was responsible.
Is Trivex better than polycarbonate for drill-mounts?
Not based on the available evidence. The only tested comparison found conflicting tensile and drill-hole results, so neither material has a demonstrated edge for drill-mount crack resistance. The reported optical advantage for Trivex is a separate finding and doesn't answer this question.
What is the Abbe value difference between these materials?
Laramy-K reports an Abbe value of 45 for Trivex and 29 for polycarbonate, a difference tied to less peripheral color dispersion in its tests. These are that source's figures, not universal specifications for every lens product on the market.



