Cornwall Steel Buildings

Machinery store buildings

A clear span steel frame with nothing standing in the middle of it, sized around what has to get in and turn round. Tell us roughly what you need and you get engineered drawings and a price — and, unlike anywhere else, an honest figure for the base it has to stand on.

Common span
12–18 m

Clear inside, no posts. Wider is possible; it costs more steel per m².

Typical slab
200 mm

With mesh. 150 mm can do if it only ever sees light tractors.

Sub-base
150 mm

Compacted Type 1, spread around 190 mm loose.

Planning route
Prior approval

On qualifying agricultural holdings, not a full application.

What you are actually buying

A steel portal frame with nothing standing in the middle of it. That clear span is the whole point — you can run a telehandler the length of it and swing a loaded trailer round inside without working around a post. Frames sit at 6 metre bay centres as a rule, so the length goes up in sixes; the span and the eaves height are yours to decide.

Span is what fits inside

Around 12 metres takes a tractor and trailer with room to get past. Eighteen gives you two rows of kit and a walkway between them. Much past twenty and you are paying for steel to hold a roof up rather than for floor you use.

Length comes in bays

Normally 6 metre centres, so 18, 24, 30 and so on. Each bay you add costs less per square metre than the one before, which is why the cheapest way to get more shed is usually longer rather than wider.

Eaves height is the one people regret

It is not the height of the machine. It is tipping a trailer, lifting with a telehandler and getting a door tall enough. Set it against what you might buy, not what is in the yard now — you cannot raise it later.

What you get asked to decide

  • Open bays, sliding doors or roller shutters, on the gable or down the side
  • Fibre cement or box profile sheeting, with roof lights where you want the daylight
  • A lean-to down one side, cheaper per square metre than the main building
  • Guttering and downpipes, and where the water is going once it leaves them
  • Supplied for your own team to erect, or supplied and erected

There is one more choice underneath all of those: whether the frame iscold rolled or hot rolled. It changes the price, the lead time, whether you can put it up yourself, and what goes in the ground.

How it goes from here

Five steps, in this order. The fourth is the one nobody prices for you up front, which is why there is a calculator further down this page.

  1. Step 1

    Tell us roughly what you need

    Span, length and what it is for. Approximate is fine — nobody expects you to have decided, and it means the first reply can be useful rather than a list of questions.

  2. Step 2

    Drawings and a price for the frame

    South West Steel Buildings prepare engineered drawings and quote the building. That includes the pad foundation sizes, which no calculator can work out for you.

  3. Step 3

    Settle the planning position

    Prior approval on a qualifying agricultural holding, or a full application. Worth establishing before steel is ordered rather than after.

  4. Step 4

    Get the base in

    Site strip, level, stone and slab, ready and cured before the erectors arrive. This is the part you can price on this page today.

  5. Step 5

    Delivery and erection

    Delivered for your own team to put up, or supplied and erected. Both are normal; the difference is worth asking about at quote stage, not later.

Get a price for my machinery store

Rough dimensions are enough to start. You get a reply the same day.

What the frame quote covers

Steel, purlins, side rails, cladding, roof lights, doors and — if you ask for it — erection. That is the number you get quoted, and for what it covers it is usually a fair one. It assumes a level, prepared base is waiting when the erectors arrive.

It does not include getting that base there. Site strip, cut and fill, hardcore, the slab, the drainage and the access track are groundworks, priced by a different trade at a different time — sometimes by the same supplier, sometimes by a local contractor.

A good supplier hands you a foundation drawing, often free of charge, showing what the slab and the pads have to be. That is worth having. But a drawing is not a quantity. It does not tell you how much concrete you are ordering, how much stone, how much topsoil is coming off the field, or how many lorry loads are leaving it. That is the number you are being asked to accept a price for without ever being told what it should be.

Why the floor works harder here

A machinery store floor takes moving loads. A loaded trailer turning on the spot puts far more through a slab than the same weight standing still, and it does it in the same few places every day — inside the door, wherever you always swing round.

That is why 200mm with mesh is the usual starting point rather than the 150mm that would do for a hay barn. If you are running a combine, a loaded grain trailer or a telehandler with a full bucket, say so when you spec it. Those are the loads that decide it, not the size of the building.

Get the falls right while you are at it. A machinery store floor collects diesel, oil and whatever comes in on the tyres. A floor that drains towards a door is easier to keep than one that puddles in the middle, and it matters far more once the building is full.

The slope is the variable

Two identical buildings on two different fields are two different jobs. On a level site you strip the topsoil, level, stone up and pour. On a field with half a metre of fall across the footprint you are cutting into one end, filling the other, and deciding whether the surplus goes on a heap or into a lorry.

88 m³

Topsoil shifted before you touch the level, stripping 250mm off a 350m² working platform. If it leaves site, that is ten lorry loads — and it is the figure most people guess.

Dig a trial hole and measure the topsoil rather than estimating from the top of the field. It moves more material than the slope does on most sites.

Where you stand on planning

A machinery store on a working farm is usually agricultural development rather than a full planning application. Part 6 of the General Permitted Development Order gives rights on agricultural units of five hectares or more under Class A, and narrower rights on units between 0.4 and five hectares under Class B.

Two things have to be true. The unit has to qualify on size, and the building has to be reasonably necessary for agriculture on that unit — a shed for a contracting business, or for storing something unrelated to the holding, is not covered however agricultural it looks.

Where it applies you do not apply for planning permission. You apply to the council for a determination on whether prior approval is needed for the siting, design and external appearance, and they have 28 days to come back. That is a quicker and cheaper route than a full application, which is why it is worth establishing early whether you qualify.

There is a floor area limit, and it has moved. It was 465 square metres until 2018, when it rose to 1,000, and the rules were amended again in May 2024. If you are reading an older guide, check it against the current position before relying on it.

The exclusions matter more in Cornwall than in most places. Rights are restricted on protected land, which covers a substantial part of the county, and removed altogether for livestock accommodation within 400 metres of a protected building. Scheduled monuments were added to the exclusions in 2024. None of that is a reason not to build. It is a reason to establish your position before committing to a frame.

A summary, not planning advice. The legislation is Part 6 of Schedule 2 to the Town and Country Planning (General Permitted Development) (England) Order 2015, as amended. Talk to Cornwall Council or a planning consultant about your own site.

What nobody can tell you from a web page

The pad foundations. The concrete bases the stanchions sit on are sized by a structural engineer against your span, your eaves height, the wind loading where you are and what your ground will bear. There is no formula for it, and anyone giving you a pad size without a design has guessed. They come with your drawings when you get a price.

Everything else below is geometry, worked out from the dimensions of the building.

Work out the base for your machinery store

Already set to a machinery store specification. Change the span and length to your building, and tell it what the ground is doing. A 12 by 20 with a 200mm slab comes out at around 52 cubic metres of concrete and 78 tonnes of stone, to give you a sense of it.

Building

Tractors and trailers on and off it daily.

m
m

Slab

Set by the building type above. Change it if you know different.

mm

Each side. Leave at 0 if it finishes flush.

mm

Site

mm

High corner to low corner.

Balanced keeps the dug material on the plot and moves the least.

mm

Dig a trial hole and measure it. This shifts more muck than the slope does.

Concrete to order for the slab
52.0waste allowed, rounded to the half metre
Machinery store · slab 246.4 m² at 200 mm · working platform 352.6
Ready-mix plant
Slab concrete
Net 49.3 m³ before waste
52.0
Quarry
Type 1 sub-base
Spread 188 mm loose to finish at 150 mm compacted
77.6t
Builders merchant
Mesh sheets
2.4 × 4.8 m sheets, 300 mm laps allowed
28sheets
Damp proof membrane
Laps and upstand included
276
Edge detail
Perimeter, for edge insulation or expansion joint
64.8m
Earthworks
Topsoil to strip
110.2 m³ once dug and loose
88.2
Cut
17.6
Fill
17.6

What this does not work out: the pad foundations

The concrete pads the stanchions sit on are sized by a structural engineer, not by a formula. They change with the span, the eaves height, the wind loading on your particular site and what the ground will bear. Anyone quoting you a pad size without a design has guessed it.

Want this priced properly?

Send us the job and we'll get you engineered drawings and a quote for the frame — with the pad sizes this tool can't work out. The figures above go with your enquiry, so you don't have to type them again.

Every enquiry gets a reply the same day, and your figures go with it. The building itself is designed and priced by South West Steel Buildings, who we work with — so your details go to them too, and they will be in touch. How we handle your details.

Common questions

What span do I need for a machinery store?
Work it out from what has to get in and turn round rather than from a round number. Around 12 metres takes a tractor and trailer with room to get past; 18 metres gives you two rows of machinery and a walkway between them. Past about 20 metres the steel is working hard to hold a roof up rather than giving you floor you use, so if you want more building it is usually cheaper to add length in 6 metre bays than to widen it.
What eaves height should a machinery store be?
Set it against tipping and lifting, not against the height of the machine. A trailer being tipped, a telehandler at full reach and a door tall enough to drive through all need more than the machine does standing still, and the eaves height cannot be raised once the frame is up. Specify it for what you might buy, not for what is in the yard now.
What slab thickness does a machinery store need?
A 200mm slab with mesh is the usual starting point for a machinery store, and it is the band UK suppliers quote for agricultural and commercial floors. If the building will only ever see light tractors, 150mm can be enough. What decides it is the heaviest thing that will regularly stand or turn on it, so spec it against your own machinery rather than the building size, and confirm it with your groundworker.
Is the concrete base included in a steel building quote?
Not in the frame price. A steel building quote covers the frame, cladding, doors and, if you ask for it, erection. The site strip, cut and fill, sub-base, slab, drainage and any access track are groundworks — a separate trade on a separate bill, whether you buy them from the same supplier or from a local contractor. Many suppliers will give you a foundation drawing free of charge, which tells you what the slab has to be; it does not tell you what it will cost to build. On a sloping site groundworks are frequently a third or more of the total spend, which is why it is worth knowing the quantities before you accept anyone’s price for them.
How much concrete does a 12m by 20m machinery store need?
A 12m by 20m building with a 200mm slab and a 100mm oversail works out at roughly 52 cubic metres of concrete once a waste allowance is added, plus around 78 tonnes of Type 1 for a 150mm compacted sub-base. Change the dimensions in the calculator to get the figures for your own building.
Can I erect a steel building myself?
Often, yes. Steel buildings are commonly supplied either delivered for your own team to erect, or supplied and erected, and the choice changes the price meaningfully. It is worth asking which one you are being quoted for at the point you get the price rather than assuming, and worth being honest with yourself about whether you have the lifting kit and the labour for it.
Do I need planning permission for a machinery store?
Often not, if it is a genuine agricultural building. Part 6 of the GPDO gives permitted development rights on agricultural units of five hectares or more under Class A, and more limited rights on units between 0.4 and five hectares under Class B. The building must be reasonably necessary for agriculture on that unit, and a floor area limit applies. Instead of a full planning application you apply to the council for a prior approval determination on siting, design and external appearance, which they have 28 days to decide. Rights are restricted in protected landscapes and removed entirely for livestock accommodation within 400 metres of a protected building.

Get a price for your machinery store

Rough span and length is enough to start with. You get engineered drawings and a price for the building, including the pad foundation sizes — and you already know what the base under it comes to.