Rock Tumbling Compatibility Chart

Material compatibility guide

Rock Tumbling Compatibility Chart: What Rocks Can Be Tumbled Together?

Match hardness, toughness, texture and stage requirements—not color alone—to build batches that grind evenly without sacrificing softer or more fragile stones.

Quick answer: Rocks are safest to tumble together when they are not only close in Mohs hardness, but also similar in toughness, fracture behavior, grain structure and condition. Hardness alone is not enough. Agate and jasper are usually forgiving together; obsidian, fluorite and other fragile or soft materials deserve separate, material-specific batches.
Usually compatibleSimilar hardness and durability; still inspect each piece.
Use cautionHardness may match, but bruising, cleavage or grain can change the result.
Separate batchMeaningful hardness or durability mismatch.

Rock tumbling compatibility chart

Use this chart as a conservative starting point. A material name does not guarantee identical behavior: weathering, fractures, inclusions, porosity and locality can change how two pieces survive a tumbler. When identification is uncertain, test a small batch rather than risking your best rough.

Material Approx. Mohs hardness Tumbling behavior Good starting companions Main caution
Agate 6.5–7 Hard, tough chalcedony; excellent polish potential Jasper, chalcedony, chert/flint, fully silicified petrified wood Deep fractures and druzy cavities can trap grit
Jasper 6.5–7 Usually tough and beginner-friendly Agate, chalcedony, chert/flint, compatible petrified wood Soft seams or porous varieties can shed material
Chalcedony 6.5–7 Fine-grained quartz family; generally durable Agate, jasper, chert/flint Thin or highly fractured pieces may chip
Chert / flint About 7 Dense and usually tough Agate, jasper, chalcedony Sharp broken edges need enough coarse-stage time
Petrified wood Often near 7 when fully silicified Can tumble like chalcedony when mineralization is complete Agate, jasper, chalcedony Soft wood-like zones, voids or mixed mineralization may undercut
Massive quartz 7 Hard but more prone to edge bruising than many jaspers Other sound quartz; cautious batches with hard chalcedony Use media and avoid loose, high-impact loads
Rose quartz 7 Hard crystalline quartz; can take a bright polish Rose quartz or similar quartz with cushioning Edge bruising; needs gentler movement and media
Amethyst / crystal quartz 7 Hard, but crystal pieces can chip and lose natural faces Similar massive quartz if you actually want rounded stones Do not tumble collectible crystal points you want to preserve
Aventurine About 6.5–7 Quartz-rich, usually workable Similar durable quartz-family material Inclusions can create pits or uneven wear
Tiger’s-eye About 6.5–7 Quartz-rich and polishable Similar tough quartz-family material Fractured or fibrous-looking zones deserve inspection
Unakite Roughly 6–7 Mixed-mineral rock; often tumbles well Best with similar unakite or carefully matched material Different minerals can wear at different rates
Granite Roughly 6–7 overall Mixed minerals with different cleavage and wear Similar granite from the same source Feldspar and mica can undercut or bruise; not equivalent to agate
Labradorite About 6–6.5 Feldspar; can polish but has cleavage Prefer a dedicated batch Edges can cleave or chip; protect flash-bearing faces
Sodalite About 5.5–6 Softer than common quartz-family rough Dedicated sodalite batch Harder stones can scratch or consume it quickly
Obsidian About 5–5.5 Natural glass; soft enough to shape fast but brittle Obsidian / Apache tears with generous cushioning Separate from agate, jasper and quartz; chips and bruises easily
Lapis lazuli Variable, often about 5–5.5 Composite rock with variable minerals Dedicated, carefully sorted batch Soft calcite-rich zones can undercut
Turquoise About 5–6 Relatively soft and often porous Dedicated special-method batch Can lose material rapidly and may not tolerate standard recipes
Fluorite 4 Soft with perfect cleavage Dedicated advanced batch only Standard agate-style tumbling is too aggressive
Calcite / marble About 3 Very soft compared with quartz-family material Dedicated soft-stone method Rapid wear; standard hard-rock schedule can destroy the load

Mohs values are approximate and describe scratch resistance, not toughness. A rock can be hard yet brittle, or relatively soft yet mechanically durable. Always inspect the actual pieces in front of you.

Four tests matter more than matching a number

1. Hardness

A large hardness difference usually means the harder material will scratch and outlast the softer material. For a mixed beginner batch, close hardness is a good first filter.

2. Toughness and fracture

Obsidian and crystalline quartz illustrate why hardness is incomplete. They can be hard enough to polish yet still bruise or chip when the load is too violent.

3. Texture and porosity

Granular or porous pieces can shed particles during later stages. One shedding stone can contaminate an otherwise clean polish batch.

4. Condition

Fresh fractures, open seams and unstable edges can make two normally compatible materials a bad pairing. Sort the pieces, not only the labels.

A simple compatibility decision

1Same general hardness?If no, separate them.

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2Similar toughness?If one bruises easily, use caution.

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3Similar texture?Remove porous or shedding pieces.

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4Similar stage needs?If timing differs greatly, run separate batches.

When a mixed batch is worth the risk

A mixed batch is useful when the materials are genuinely compatible and the variety helps create a better size distribution. Agate, jasper, chalcedony and fully silicified petrified wood are classic examples because they are usually hard, fine-grained and durable. Even then, remove pieces with open fractures, soft seams or gritty surfaces before they enter fine and polish stages.

When to separate material even if hardness matches

Crystalline quartz and agate can both measure around Mohs 7, but quartz often bruises more readily. Granite may fall in a similar overall hardness range, yet its feldspar, quartz and mica grains do not wear like homogeneous chalcedony. Treat matching Mohs numbers as permission to investigate further—not as proof that the rocks belong together.

Use the compatibility checker before building the load

The free Rock Tumbling Compatibility Checker gives conservative starting guidance for common materials. It is designed to flag obvious mismatches and direct you to a material-specific guide, not to replace identification or a small test batch.

Questions people ask before mixing rocks

Can agate and jasper be tumbled together?

Usually, yes, when both are sound, dense material with similar size and condition. They are among the most forgiving hard materials for a beginner batch.

Can quartz be mixed with agate?

Sometimes, but use more caution than the hardness number suggests. Quartz can bruise at the edges, especially in a loose load. A quartz-only batch with ceramic cushioning is safer when the pieces are large, clear or valuable.

Can obsidian be tumbled with quartz or agate?

Do not treat them as a normal mixed batch. Obsidian is softer and much more brittle, so harder stones can turn a promising obsidian load into chips and cloudy impact marks.

Can beach rocks all go in one barrel?

No. “Beach rock” describes where a pebble was found, not what it is made of. Sort mixed beach stones by texture, hardness, visible fractures and likely composition before loading them together.

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