Woodworking

Reading Grain and Figure

Grain is the direction of the wood's fibers, and every cut, plane stroke, and joint depends on reading it: flatsawn versus quartersawn faces, grain runout, which way to plane, and where figure comes from.

  • 5 min
  • 7 steps
  • 3 questions
  • Lesson 24 of 160

In this lesson

  1. What grain is
  2. Flatsawn and quartersawn
  3. Runout
  4. Which way to plane
  5. Figure
  6. At the bench
  7. What to take from this

What grain is

Wood is a bundle of long, hollow cells (fibers in hardwoods, tracheids in softwoods) running mostly along the trunk. Grain is the direction those cells run. Wood is strong and stiff along the grain and weak across it, and it shrinks very little along its length but a lot across it 1 2.

Woodworkers use “grain” for several related things:

  • Grain direction: which way the fibers run relative to a surface.
  • Growth rings: one year’s earlywood and latewood, seen as lines on faces and arcs on the end.
  • Texture: coarse (oak, ash, with large pores) or fine (maple, cherry, birch).
  • Figure: the patterns on a surface, such as ray fleck, curl, and burl.

Flatsawn and quartersawn

How a board was cut from the log shows on its end grain:

  • Flatsawn (plainsawn): growth rings run roughly parallel to the wide face. The face shows cathedral arches. It shrinks most across its width (tangential shrinkage) and tends to cup away from the heart.
  • Quartersawn: rings run perpendicular to the face, giving straight stripes and, in oak and sycamore, shimmering ray fleck. Its width changes radially, about half the tangential movement, and it stays flat 2.
  • Riftsawn: rings at roughly 30 to 60 degrees; straight lines on both face and edge, favored for table legs.

The Wood Drying course covers movement in detail. For layout: put quartersawn stock where stability matters (drawer sides, door frames, panels, tabletops you want to stay flat), and orient flatsawn boards knowing which way they’ll cup.

Quick check

Why is quartersawn lumber prized for drawer sides, door rails, and tabletops?

Runout

Runout is grain that doesn’t run parallel to a part’s length and exits its side. A sawn board often has runout because the saw doesn’t follow the tree’s fibers. Where fibers exit the side, the part is held together only by weak cross-grain strength, so legs, spindles, and chair parts snap there.

That’s why chairmakers and green woodworkers rive (split) their stock: a split follows the fibers, so riven parts have none. In sawn stock, look at both the face and the edge: the grain lines on each should run the length of the part.

Which way to plane

On any face, the fibers rise toward the surface in one direction. Plane with the grain: push the plane the way the fibers rise and run out of the surface. The shaving tends to split a little ahead of the edge, and going with the grain that split runs up and out harmlessly. Going against the grain, the split follows the fibers down into the board below the cut, and the shaving levers out chunks: tearout. Woodworkers compare it to stroking a cat or dog head to tail.

To read direction:

  • Look at the edge when planing a face (and the face when planing an edge): find which way the grain lines rise toward the face you’re planing, and push that way.
  • Feel it: a hand stroked along the surface often feels smoother going with the grain.
  • Take a test stroke and watch: clean shavings and a bright surface mean you’re right.

Reversing grain (curl, interlocked grain, swirls around knots) has no consistent with-grain direction. Handle it with a razor-sharp blade, a fine cut, a tight mouth, a cap iron set close to the edge, a higher cutting angle, or a card scraper.

Side view of a board edge with fibers rising toward the right. A plane pushed to the right, the way the fibers rise and run out, leaves a smooth surface; pushed to the left, the split ahead of the blade runs down into the board and tears out. Below, end-grain views of a flatsawn board with growth rings roughly parallel to the face and a quartersawn board with rings perpendicular to the face.
Push the plane the way the fibers rise toward the surface. Any split ahead of the edge then runs up and out instead of diving below the cut. The edge of the board shows which way that is. Credit: StudyCorner diagram · CC BY 4.0 · Source

Quick check

You plane a board and get torn-out pits. What’s the first thing to try?

Figure

Figure comes from how fibers and rays are arranged:

  • Ray fleck: the large rays of oak shown on quartersawn faces.
  • Curl (fiddleback, tiger): fibers that wave up and down, reflecting light in bands; common in maple, cherry, and birch.
  • Bird’s-eye: small swirls in sugar maple.
  • Crotch figure: feathered grain where a trunk forks.
  • Burl: a mass of tangled, budding grain.
  • Spalting: dark lines from fungal decay in early stages.

Figured wood is beautiful and harder to work: it tears out in every direction, so it’s usually finished with a scraper or very fine plane cuts.

At the bench

Take a few offcuts of different species. On each, identify flatsawn or quartersawn from the end grain, find the with-grain direction on one face by reading the edge, and plane it both ways. Note how the surface differs, then close the mouth and set the cap iron closer and try the against-grain direction again.

What to take from this

Grain is the direction of the fibers: strong and stable along them, weak and moving across them. Flatsawn faces cup and move more; quartersawn faces move half as much and stay flat. Runout makes weak parts, which is why riven stock is prized. Plane with the grain - the way the fibers rise toward the surface - read the edge to find which way that is, and meet reversing grain with a sharp blade, a fine cut, a tight mouth, a close cap iron, or a scraper.

Practice

A chair leg has grain that runs out the side halfway along its length. Why is that a problem?

Lesson complete

Nice work.

1day streak
0/1today's goal
–correct

Up next · 4 min

Hardwood and Softwood Anatomy

Next lesson
Sources for this lesson
  1. 1
    R. Bruce Hoadley. Understanding Wood: A Craftsman's Guide to Wood Technology. Taunton Press. 2000. verifiedThe woodworker's standard on wood structure, moisture, shrinkage, and drying.
  2. 2
    Samuel V. Glass, Samuel L. Zelinka. Moisture Relations and Physical Properties of Wood (Wood Handbook, Chapter 4). USDA Forest Service, Forest Products Laboratory, FPL-GTR-282. 2021. verifiedFree and bound water, fiber saturation (~30%), EMC table (Table 4-2), green moisture by species (Table 4-1), shrinkage by species (Table 4-3), and the shrinkage equation.