FurnitureWorkbenchMedium

Knock-Down Workbench

A 1,500 mm maple bench that bolts together and unbolts again: the rails clamp to the outside of the legs, so every joint is a bolt through both members with a nut you can reach.

Designthe dimensions everything else is derived from

Finished size
1500 x 600 x 900 mm
Top
1500 x 600 x 40 mm solid maple
Legs
4 off 90 x 90 mm, 860 mm long
Frame
rails bolted to the outside faces of the legs
Top fixing
bolted down through counterbored holes, plugged
Lower shelf
rests on two cleats, not fastened

Cut list sizes are finished sizes. Add 5 mm to the width and 25 mm to the length of every solid-wood part for saw kerf and planing, and buy boards oversize by one thickness so a bowed board can be flattened rather than relegated.

Materialswhat each part is made from, and why

All materials
Maple (Hard Maple) · 1 top, 1500 x 600 x 40 mm
Closed grain and high hardness: a bench top gets hit, scraped and oiled, and maple takes that without raising fibres the way an open-grained timber does.
Fir (Douglas) · 4 legs, 4 rails, 2 cleats
Structural softwood with a high strength-to-cost ratio. It is the part you cut oversize, not the part you look at.
Birch Plywood · 1 shelf, 1320 x 420 x 18 mm
Cross-laminated, so it will not cup under a load spread over 1.3 m the way a solid plank would.

Cut listfinished sizes, worked back from the design

PartQtyFinished sizeStock
Top11500 x 600 x 40 mmMaple (Hard Maple)
Leg490 x 90 x 860 mmFir (Douglas)
Upper long rail21500 x 90 x 40 mmFir (Douglas)
Upper short rail2520 x 90 x 40 mmFir (Douglas)
Shelf11320 x 420 x 18 mmBirch Plywood
Shelf cleat2420 x 40 x 40 mmFir (Douglas)

Fastenersquantities and lengths that follow from the joints

All standards
ItemQtyGripStandard
M8 x 150 hex bolt20130 mmISO 4017
M8 x 100 hex bolt880 mmISO 4017
M8 plain washer56—DIN 125 A
M8 nylon-insert nut28—DIN 985

Grip is the sum of the clamped thicknesses. A bolt has to clear the nut by two full threads, which is what sets the length that appears in each row — not a preference.

M8 x 150 hex bolt · grip 130 mm
Sixteen for the leg-to-rail joints and four for the shelf cleats. Grip is the rail thickness (40) plus the leg (90); add the nut and two washers and the next stock length up is 150. ISO 4017 →
M8 x 100 hex bolt · grip 80 mm
Down through the top (40) and the rail (40). Heads sit in 20 mm counterbores plugged with maple dowel so the working surface stays clear. ISO 4017 →
M8 plain washer
One under every head and one under every nut. Without the one under the nut the nut sinks into the softwood and the joint loses its clamp within a season. DIN 125 A →
M8 nylon-insert nut
Matches the bolt count. The nylon insert is what stops a bench that is dragged across a floor from shaking itself loose. DIN 985 →

Toolsand what each one is for on this job

All tools
Circular Saw
Breaking down the 40 mm top and the rails oversize.
Drill
Boring the 8.5 mm clearance holes through leg and rail.
Twist Drill Bits
8.5 mm is the clearance fit for M8; anything tighter and the bolt will not drop through a 90 mm leg.
Socket Set
Twenty-eight nuts go on far faster with a socket than with a spanner.
Combination Wrench
Holding the nut while the bolt turns, which is the only way to avoid spinning the head.
Tape Measure
Setting joint centres once, from a single reference end, rather than per joint.

Order of workthe sequence, and where it is not free to change

  1. Cut the four legs to 860 mm. 900 mm finished height less the 40 mm top.
  2. Clamp each leg to its rails and bore through all three at once. Drilling the parts together is what makes the frame square.
  3. Bolt the two long rails and two short rails to the four legs, snug rather than tight, and check the diagonals match.
  4. Fit the two shelf cleats at 250 mm above the floor.
  5. Drop the shelf in. It is not fastened: it lifts out for cleaning and it does not fight the frame when the timber moves.
  6. Counterbore eight 20 mm holes in the top, drill through, bolt down, and plug the counterbores with maple dowel cut flush.

Where it goes wrongthe three failures worth designing out

  • Tightening a bolt into softwood with no washer under the nut. The nut crushes the fibres, the clamp disappears, and the bench racks.
  • Running the bolts up with an impact driver. The driver will exceed what the timber can take and pull the head into the rail.
  • Drilling legs and rails separately. A millimetre of difference per joint is a centimetre across the frame, and the top will not sit flat.

Frequently asked questions

Why bolt the rails to the outside of the legs instead of between them?

Because of where the nut ends up. With the rail between the legs the bolt would have to be driven into the end grain of the rail, which needs a barrel nut or a lag screw. With the rail on the outside face the bolt passes through both members and the nut is on the inside face of the leg, where you can reach it with a spanner. Both members are then in compression, which is the condition the bolt is designed for.

Is there room to unbolt it later?

Yes, and that is the point of the design. Every nut is accessible with the top off, no joint is glued, and no fastener is driven into end grain. A bench that has to move house in two years is a bench that should come apart in twenty minutes.

Can I substitute wood screws and skip the bolts?

For a bench, no. A wood screw holds by compressing the fibres around its shank and it cannot be re-tightened once those fibres are crushed; a bolt with a washer and a nut can. This database does not carry wood screw standards, so the sizes you would need are not published here either.