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XinmoJetTIJ ENGINEERING

Engineering

Substrate matching guide

Ink adhesion is a surface energy problem before it is an ink problem. This page sets out the thresholds, the pretreatment options and the drying bands for the materials we see most often, and the tests that settle the question on your own product.

Start with the surface, not the ink

A liquid wets a solid when the solid surface energy exceeds the liquid surface tension. In practice the margin needs to be comfortable — a gap of roughly 8 to 10 mN/m is the working rule of thumb, not a few units.

This is why polyolefins are the classic problem. HDPE sits around 28 to 32 mN/m and PP around 26 to 28 mN/m, both below the surface tension of most coding inks. A solvent ink on untreated HDPE can look perfect wet and then flake off under a thumbnail.

Polyester behaves differently: PET measures around 40 to 42 mN/m, which is already above the threshold for a solvent ink. The same ink that fails on HDPE may hold well on a PET bottle, which is why "plastic" is too broad a category for ink selection.

Pretreatment moves the surface energy

Corona discharge and flame treatment raise the surface energy of a polyolefin by oxidising the surface layer. In published figures, corona treatment lifts HDPE from roughly 30 to 38 – 42 mN/m, PP to around 40 – 44 mN/m, and PET to 46 – 55 mN/m.

Two cautions matter more than the numbers. First, treatment decays: a treated bottle loses its dyne level over storage time, so an ink that held in the lab may fail on stock that has sat in a warehouse. Second, primers and coatings can substitute for treatment, but the coating becomes the surface you are printing on — which is why a lacquered metal behaves like the lacquer, not like the metal.

Drying is a line speed question

Drying time only matters in relation to what happens to the product after the printhead. On a porous carton the ink is absorbed within a fraction of a second. On a non-porous plastic or coated metal the carrier has to evaporate, and that takes seconds, not milliseconds.

The practical test is not the drying time on a datasheet but where the first contact happens: the first roller, the first stacker, the first time two printed surfaces touch. We ask for that distance and the line speed, because those two numbers define the drying budget.

Where the budget is too short, the options are to move the printhead, add an air knife or dryer, reduce the ink load, or change the ink system. Changing the cartridge alone rarely fixes a drying problem caused by line layout.

LOW ENERGY · INK BEADSPP 26–28 mN/m · HDPE 28–32 mN/mPOOR WETTING — POOR ADHESIONHIGH ENERGY · INK WETSPET 40–42 mN/m · CORONA-TREATED PE 38–42 mN/mGOOD WETTING — ADHESION POSSIBLEWORKING RULEsubstrate energy − ink tension ≥ 8–10 mN/mSchematic — not to scale. Values are published industry ranges.
A liquid wets a solid when the solid surface energy exceeds the liquid surface tension. In practice the margin needs to be comfortable — a gap of roughly 8 to 10 mN/m is the working rule of thumb, not a few units.

Substrate reference table

The values on this page are published industry ranges and general engineering rules, not measurements of your specific material. Surface energy varies by grade, additive package and surface state, and certification of any coding outcome rests with the party applying the code.

Substrate reference table
MaterialSurface energyRecommended inkPretreatmentAdhesion difficulty
Kraft / paperboardKraft / paperboardAbsorbent — surface energy is not the limiting factorWater-basedNot normally required for this substrateStraightforward
Wood (raw)Wood (raw)Absorbent — surface energy is not the limiting factorWater-basedNot normally required for this substrateStraightforward
Corrugated cartonCorrugated cartonWater-basedNot normally required for this substrateStraightforward
Kraft paperKraft paperWater-basedNot normally required for this substrateStraightforward
PaperboardPaperboardWater-basedNot normally required for this substrateStraightforward
WoodWoodWater-basedNot normally required for this substrateStraightforward
Uncoated labelUncoated labelWater-basedNot normally required for this substrateStraightforward
PPPP26–28 mN/mSolvent fast-dryCommonly required — corona, flame or primerDemanding
HDPE / LDPEHDPE / LDPE28–32 mN/mSolvent fast-dryCommonly required — corona, flame or primerDemanding
PETPET40–42 mN/mSolvent fast-dryCommonly required — corona, flame or primerDemanding
Rigid PVCRigid PVC38–40 mN/mSolvent fast-dryCommonly required — corona, flame or primerDemanding
HDPEHDPESolvent fast-dryCommonly required — corona, flame or primerDemanding
LDPELDPESolvent fast-dryCommonly required — corona, flame or primerDemanding
PET bottlePET bottleSolvent fast-dryCommonly required — corona, flame or primerDemanding
PET filmPET filmSolvent fast-dryCommonly required — corona, flame or primerDemanding
Coated / lacquered metalCoated / lacquered metal30–38 mN/mSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
Metallised filmMetallised film32–38 mN/mSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
GlassGlassHigh energy but chemically inert — adhesion depends on the primerSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
Coated aluminium foilCoated aluminium foilSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
Metallised BOPP filmMetallised BOPP filmSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
Lacquered tinplateLacquered tinplateSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
Anodised aluminiumAnodised aluminiumSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
Coated steel tubeCoated steel tubeSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
GlassGlassSolvent fast-dryCommonly required — corona, flame or primerWorkable with care
Follows the carrier substrateFollows the carrier substrateSelect the carrier substrate first, then apply the covert layerCovert UV (invisible)Not normally required for this substrateWorkable with care
Pharma carton and labelPharma carton and labelCovert UV (invisible)Not normally required for this substrateWorkable with care
Cosmetic secondary packagingCosmetic secondary packagingCovert UV (invisible)Not normally required for this substrateWorkable with care
Premium beverage packagingPremium beverage packagingCovert UV (invisible)Not normally required for this substrateWorkable with care
Spare-part and warranty labelsSpare-part and warranty labelsCovert UV (invisible)Not normally required for this substrateWorkable with care
Document and certificate stockDocument and certificate stockCovert UV (invisible)Not normally required for this substrateWorkable with care

How to qualify an ink on your own product

We would rather spend a week on a sample than have you discover at commissioning that the ink will not hold.

Request free printed samples
  1. 01

    Print a sample on the actual substrate, at the actual line speed, with the actual coding content. A test on a clean lab coupon is not evidence about your product.

  2. 02

    Tape test: apply a pressure-sensitive tape, press firmly, remove at 90 degrees, and look at how much ink comes away with it.

  3. 03

    Wipe test: apply ethanol or IPA as used in your cleaning process and wipe under consistent pressure. Check for colour transfer and for loss of contrast in the code.

  4. 04

    Rub test: where the surface will be handled or abraded, run a solvent rub and count the double rubs to breakthrough rather than recording a pass or fail.

  5. 05

    Environmental test: for cold chain or condensation exposure, hold the sample under the conditions the product actually sees and re-check readability afterwards.

  6. 06

    Verify readability, not just appearance: scan the code with the equipment you will use at end of line, and confirm the contrast ratio is adequate on the actual colour of the substrate.

Substrate matching tool

Pick the material you print on and what the code has to survive. The recommendation updates immediately.

1 · What are you printing on?
2 · What does the code have to survive?

Confirm by sampling on your own substrate

Select a material to see a recommendation.

Send us your substrate — we will send back a printed code

Tell us the material, the line speed and the text you need to print. We will recommend an ink system and put printed samples in the post so you can test them yourself.