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EZSMART Corporation, ESA/ECRA #7012690 , North York , Ontario
Mon-Fri 08:00 AM - 05:00 PM
EZSMART Corporation, ESA/ECRA #7012690 , North York , Ontario
Mon-Fri 08:00 AM - 05:00 PM
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02 Aug, 2026
Posted by Amir Azimipour
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What Causes Wiring Insulation to Become Brittle?

Insulation that once flexed like new rubber can turn crumbly and crack-prone after enough years in a Toronto or GTA wall or attic — and understanding why helps explain which wiring in a home ages gracefully and which becomes a real hazard. This guide covers the actual chemistry and conditions behind brittle insulation, and what it means once you find it.

What causes wiring insulation to become brittle?

Wiring insulation becomes brittle through a combination of heat exposure, oxidation, age, and chemical breakdown of the plasticizers that keep rubber and thermoplastic compounds flexible. Every insulation material has a finite chemical life — the compounds that keep it pliable slowly evaporate or react with oxygen over decades, especially when accelerated by sustained heat from an overloaded circuit, a hot attic environment, or simple old age past the material’s design life. Once those plasticizers are sufficiently depleted, the insulation loses its flexibility and starts to crack under any bending or disturbance.

The main contributing factors

  • Sustained heat. Chemical degradation accelerates significantly with temperature — insulation running warmer for any reason ages faster than insulation staying cool. This is why chronically overloaded circuits and cable buried in a hot, poorly ventilated attic degrade faster than the same cable in a cool basement.
  • Simple age. Every insulation compound has a finite service life even under ideal conditions. Rubber-based insulation from the 1940s–1960s (cloth-covered and early knob-and-tube wiring) is generally past that life today, while modern thermoplastic NMD90 has a much longer expected service life.
  • Oxidation. Ongoing exposure to atmospheric oxygen slowly reacts with the polymer compound, a process that never fully stops and compounds over decades.
  • UV exposure. Direct or indirect sunlight accelerates breakdown significantly — relevant for any cable run near a window, in an attic with skylight exposure, or outdoors.
  • Physical disturbance during aging. Insulation that has already partially degraded is far more likely to crack when flexed, bumped, or compressed than insulation that stays undisturbed — which is why an untouched cable sometimes outlasts one that has been moved or worked near repeatedly.

Why rubber-based insulation ages faster than modern thermoplastic

Older cloth-covered and knob-and-tube wiring used rubber-based insulation compounds that have a shorter practical service life than the thermoplastic used in modern NMD90 cable, largely because rubber compounds rely more heavily on plasticizers that migrate and evaporate over time. This is the core reason a well-maintained NMD90 circuit from the 1970s can still test sound today while rubber-insulated wiring from the 1940s is reliably brittle by now — see what is cloth-covered wiring and is it a fire hazard and how long does Romex wiring last for how this plays out on each cable type specifically.

Why overloaded circuits accelerate the whole process

A circuit running consistently near or beyond its rated capacity generates more sustained heat in the conductor itself than a properly loaded circuit. That extra heat runs directly against the insulation’s chemical clock — it does not create a new degradation mechanism, it just accelerates the same aging process that would happen anyway, but over years instead of decades. This is one of the reasons chronic circuit overload matters even when nothing visibly fails right away — the insulation is quietly aging faster than it should the entire time.

What brittle insulation looks and feels like

  • Cracking or flaking when gently flexed, rather than bending smoothly.
  • A dry, chalky, or crumbly texture instead of the original smooth or slightly tacky feel.
  • Colour change — often darkening, yellowing, or fading from the original shade.
  • Visible fractures where the insulation has already separated from the conductor at a bend or disturbance point.

Do not test this by flexing suspect insulation yourself — disturbing brittle material can expose bare conductor that was otherwise safely contained. Photograph and call a licensed contractor instead.

What brittle insulation means for the circuit

Once insulation has cracked, its ability to keep the conductor electrically isolated from the framing, adjacent conductors, or anything else it touches is compromised. That is the exact setup for a short circuit or arcing fault — not a hypothetical future risk but the practical mechanism connecting brittle insulation to real fire incidents. The Electrical Safety Authority‘s ongoing tracking of electrical fire causes in Ontario consistently identifies aging wiring and insulation failure among the contributing factors in residential fires.

Expert tip from our ESA-licensed electricians

The insulation condition we find most often correlates less with the calendar age stamped on a home and more with how the specific circuit was actually used — a 1970s circuit that has quietly run a modest load for fifty years often looks better than a 1990s circuit that has been chronically overloaded by a space heater every winter for half that time. If you are trying to prioritize which parts of your home’s wiring to have inspected first, think about which circuits have run hot or heavy for years, not just which rooms have the oldest wiring by date.

Frequently Asked Questions

Does all wiring eventually become brittle?

Every insulation compound has a finite chemical life, though modern thermoplastic NMD90 lasts substantially longer than older rubber-based types under normal conditions.

Can I test insulation brittleness myself?

Not recommended — flexing suspect insulation can expose bare conductor that was otherwise contained. Have a licensed contractor assess it.

Does overloading a circuit really age the insulation faster?

Yes, sustained heat accelerates the same chemical degradation process that happens to any insulation over time, just faster.

Is brittle insulation always a fire risk?

It significantly raises the risk since cracked insulation can expose the conductor to short-circuit or arcing conditions.

Does location in the house matter for aging speed?

Yes, hot attics and any location with heat or UV exposure age insulation faster than cool, shaded locations like a basement.

Contact us

Worried about aging wiring insulation in a Toronto or GTA home? Call ezsmart at 416-838-9006 or use our contact page. An ESA-licensed electrician will inspect and advise honestly on what needs attention.

Amir Azimipour

Electrician Since 2008 Journeyman Electrician Designated Master Electrician at EZSMART Corp

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