Cut List Example · Storage

Cube Storage Unit Cut List Example: 13 Parts on 2 Sheets

This reproducible example packs a cube storage unit parts list on standard 96 × 48 inch plywood with a 1/8 inch kerf. It publishes the input rows, modeled layout, rotation comparison, and CSV so you can inspect the estimate instead of trusting a sheet-count claim without evidence.

Parts134 named part groups
4×8 sheets2Rotation allowed
Material yield52.9%47.1% unfilled area
Grain locked2Complete · Same sheet count

The answer first: how much plywood does this example use?

The modeled cube storage unit uses 2 sheets of 4×8 plywood for 13 rectangular parts at 52.9% material yield. Total finished-part area is 4875.0 square inches. Dividing that area by 4,608 square inches gives an area-only lower bound of 2 sheets, but the layout still has to solve part geometry, kerf, and orientation.

This is a planning example, not a guaranteed purchase quantity or a construction drawing. It excludes joinery allowance, damaged-edge trimming, defects, test cuts, replacement pieces, hardware, face selection, and any project components not shown in the parts table.

Download the exact input

Download Cube Storage Unit cut list CSV

The file contains the same part names, finished dimensions, quantities, source template, kerf, sheet size, benchmark version, modeled result shown on this page, and the planning-boundary fields when the project is designed for a small space. Edit a copy for your project rather than treating these example dimensions as a finished plan.

Cube storage unit example parts list

Dimensions are finished rectangular planning sizes in inches. Quantity is expanded before packing, so repeated parts occupy their own positions. Confirm material thickness and construction method separately because a rectangle layout does not calculate joinery.

Part groupLength (in)Width (in)Qty.Area (sq. in.)
Sides30132780.0
Top and bottom58.51321521.0
Vertical dividers28.51331111.5
Shelves18.751361462.5

Modeled 4×8 sheet layout

The diagram is generated from the published input with a deterministic MaxRects-style placement heuristic. It is useful for inspecting whether large panels dominate a sheet and where smaller repeated parts land. It is not a saw sequence: review support, reference edges, grain, and safe first cuts before taking it to the shop.

Cube storage unit example plywood layout2 modeled 4 by 8 plywood sheets containing 13 rectangular parts with a one-eighth inch kerf.Sheet 1Top and bottom58.5×13Top and bottom58.5×13Sides30×13Sides30×13Vertical dividers28.5×13Vertical dividers28.5×13Vertical dividers28.5×13Sheet 2Shelves18.75×13Shelves18.75×13Shelves18.75×13Shelves18.75×13Shelves18.75×13Shelves18.75×13

What changes when rotation is locked?

The rotation-allowed and fully locked scenarios both used 2 sheets. In this parts list, orientation did not change sheet count, but it can still change placement order, offcut shape, grain continuity, and cut sequence.

The benchmark's “locked” run keeps every entered rectangle in its original orientation. A real project can be more selective: lock matched doors, finished ends, long-grain shelves, and visible panels while allowing hidden backs, stretchers, or non-directional parts to rotate when their structure and edge treatment permit it.

Three project checks before you use these dimensions

  1. Test the real bin dimensions plus hand clearance before fixing each opening.
  2. Repeated dividers multiply small thickness and dado-position errors.
  3. Plan wall anchoring and base details for a tall or heavily loaded unit.

Resolve these checks in the drawing and hardware specifications before optimizing. If a choice changes a finished width, material group, grain arrow, or quantity, update the parts list and regenerate the layout rather than adjusting pieces at the saw.

How to adapt this example to your project

  1. Open the linked Cube storage unit template and define the finished outside dimensions and construction method.
  2. Replace every example row with your finished part dimensions, quantity, material code, and grain rule.
  3. Separate backs, drawer bottoms, doors, finished panels, and other thicknesses into their own purchasable material groups.
  4. Measure the real sheet and blade, then enter usable sheet size, edge trim, and kerf in the plywood cut calculator.
  5. Inspect the last sheet, useful offcuts, first cuts, narrow strips, labels, and replacement risk before ordering.

Why this title uses a sheet count and yield

Searchers asking for a cube storage unit cut list usually want an immediate scale check: number of parts, likely sheets, and whether the list is available. Those numbers are placed in the heading and description because they are computed from the visible input, not added as clickbait. The page then exposes the assumptions that can make the number change.

Yield is finished-part area divided by purchased sheet area. It does not claim that every remaining square inch is avoidable waste. Kerf, edge trim, defects, safe handling, offcut shape, and project-specific constraints determine what the shop can actually reuse.

Method, limitations, and reproducibility

The generator expands each quantity into individual rectangles, sorts by area and long side, and places pieces with the same deterministic heuristic used in WoodCutTool's open plywood benchmarks. Standard sheets are modeled at 96 × 48 inches with a 0.125 inch kerf. The method is versioned as woodcuttool-maxrects-v1 and does not claim a globally optimal nesting result.

Before purchasing, compare the example with the 75-project plywood yield dataset and run your own dimensions in CutList. Preserve a contingency when a damaged visible part, supplier variation, or field measurement would be expensive to recover from.

Frequently asked questions

Is this a complete cube storage unit plan?

No. It is a transparent plywood parts and layout example. Joinery, hardware, structure, installation, finish, local requirements, and omitted components must be designed and verified separately.

Does 2 sheets guarantee how much plywood I should buy?

No. It is the output for the published dimensions and assumptions. Your measurements, sheet condition, grain, trim, kerf, replacement policy, and construction details can increase or decrease the result.

Can I rotate every part to match the lower sheet count?

Only when appearance, structure, machining, and edge treatment permit it. Use the rotation comparison to identify cost pressure, then classify individual parts instead of releasing every orientation.

Can I download the list?

Yes. The CSV above contains the visible input and result metadata so the example can be audited and adapted.

Turn the example into your project

Turn the Cube Storage Unit example into your own checked layout

This published 2 sheets result uses fixed sample inputs. Replace every row with the measured parts, material groups, kerf, and grain rules for your project before buying sheets.

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