Concrete or Steel Stumps? What to Use When Restumping
Reactive clay above. Century-old mine workings below. In Bendigo, a house can be moving for three completely different reasons that look identical from inside the living room — and cost wildly different amounts to fix.
So no pier gets quoted here until the cause of the movement has actually been identified.
Why the original stumps failed in the first place
Understanding this makes the materials decision much easier, because the failure mode is remarkably consistent.
Timber stumps almost never rot in the middle or at the top. They fail at ground line — the narrow band where the post enters the soil. That’s where moisture and oxygen are both available, and fungal decay needs both. Below ground line there’s less oxygen. Above it there’s less moisture. At the interface, there’s plenty of each.
Which is why a stump can look perfectly sound when you shine a torch along it and be almost gone where it matters. It’s also why the durable Victorian hardwoods lasted as long as they did without lasting forever — the timber species buys you decades, not immunity.
The practical lesson for the materials decision: the thing that killed the old stumps was water at ground line. Any replacement material has to be judged on how it handles that, and the water source has to be dealt with regardless of what goes in. Drainage, ventilation and where the water comes from →
Concrete stumps
The default across Victoria, and what most quotes will assume unless you ask otherwise. Precast concrete posts, set into holes, with the bearer fixed to the top.
What’s good about them
- They don’t rot. The failure mode that destroyed the original timber simply doesn’t apply.
- They’re not food. No borer, no termites.
- Cost. Generally the cheaper of the two options per stump.
- Familiarity. Every operator installs them, so you’re not paying a premium for specialised work.
- Compressive strength. Concrete carries vertical load extremely well, which is most of what a stump does.
What to know about them
- They’re brittle in tension and bending. Concrete handles being squashed far better than being bent or pulled. Where ground movement applies lateral force, that matters.
- Reinforcement matters. [[VERIFY — confirm what reinforcement is standard in precast stumps sold in Victoria, and whether unreinforced stumps are still permitted for structural residential use. Then state it plainly here.]] Unreinforced or poorly reinforced concrete can crack and spall under movement.
- They’re not adjustable. Once set, the height is the height. If the house goes out of level again, correcting it means jacking and packing on top of them or replacing them.
- Weight. Concrete stumps are heavy, which is a real factor on a gold-era block with 300mm of subfloor clearance and no machine access. It’s a labour cost.
Galvanised steel stumps
Steel posts, hot-dip galvanised, usually with an adjustable head — a threaded section at the top that allows the height to be altered after installation.
What’s good about them
- Adjustability. The genuine differentiator. If the house settles again, levels can be corrected by adjusting the stumps rather than by jacking and packing or restumping a second time.
- Strength in bending, not just compression. Steel tolerates lateral load and movement far better than concrete does.
- Weight and handling. Much lighter than concrete, which matters more than it sounds when everything is being carried by hand through a narrow side access into a 300mm crawl space.
- Not organic. No rot, no borer, no termites.
What to know about them
- Cost. Generally the dearer option per stump.
- Corrosion is the failure mode. Galvanising is a sacrificial coating with a finite life, and that life depends on soil conditions. Aggressive or persistently wet soils shorten it. This is the steel equivalent of ground-line rot, and the same principle applies: manage the water.
- Coating damage matters. Galvanising that’s been cut, drilled or scraped during installation is compromised at that point. Installation quality has more bearing on lifespan than with concrete.
- Fewer operators specialise in them, so availability and pricing vary more.
The adjustability point deserves emphasis, because it’s the one with a Bendigo-specific argument behind it — covered below.