Soft Plastic Plastisol Mix Calculator

Soft Plastic Plastisol Mix Calculator

Estimate a pourable soft-plastic bait batch from cavity volume, plastisol hardness, softener, hardener, salt, floating additive, colorant, glitter, scent, regrind, sprue loss, and mold count.

📌 Plastisol mix presets

Plastisol and mold inputs

Sets the reference density, expected hardness, and yield language.
Used as the baseline hardness before modifiers.
Unheated plastisol measure before additives and regrind.
Higher is firmer. Auto-filled by grade unless custom is selected.
Plasticizer softener percentage relative to starting plastisol.
Firming additive percentage relative to starting plastisol.
Fine or powdered salt by weight against the base plastisol mass.
Low-density additive that offsets sink rate and stiffens slightly.
Concentrated color, pearl, smoke, or highlight liquid.
Fine, medium, or large flake percentage by practical volume.
Post-cure slickness and scent oil included in batch mass.
Old baits or sprues blended into the pour, as final mix share.
Water-fill one cavity, then enter the measured volume.
Total bait cavities filled each pour pass.
Used to estimate complete pour rounds from the same batch.
Runner, injector nose, cup cling, tails, and bad first pours.
Extra mix held back to avoid short shots in the final mold.
Optional production target used for the top-up recommendation.

Plastisol batch results

Total hot mix 0 ready-to-pour batch Base plus additives and regrind
Estimated bait yield 0 finished baits Usable mix divided by cavity volume
Feel and hardness 0 softness band Grade adjusted by softener, hardener, salt, and filler
Sink behavior 0 density estimate Composite density compared with water

Mix math breakdown

🧪 Additive math cards

0.97 Base density g/ml

Working density for many liquid plastisol bait mixes before salt and fillers.

2.16 Fine salt g/ml

Salt greatly raises mass and sink rate while reducing clarity and stretch.

0.20 Float powder g/ml

Microballoon-style filler adds volume with low mass for neutral or rising baits.

1.04 Fast sink line

Composite density above water means the bait will tend to sink before hook weight.

📊 Plastisol reference tables

Plastisol gradeHardness indexUseful bait stylesAdjustment note
Super soft24-30Drop-shot worms, thin tails, finesse shadsUsually needs little softener and careful sprue-loss tracking.
Soft31-38Worms, craws, finesse swimbaitsGood base for small salt loads and flexible appendages.
Medium39-48General trailers, flukes, paddle tailsAccepts softener for action or hardener for nose durability.
Firm49-58Large swimbaits, tubes, saltwater shapesBest where hook slots, tails, and rigging need support.
Heavy-salt grade44-54Stick baits and dense sinking poursOften starts firmer so salt and oil do not make it mushy.
AdditiveTypical rangeMath effectWatch value
Softener2-18% of base volumeLowers hardness, adds liquid volume, lowers density slightly.Too much can weaken hook noses and reduce memory.
Hardener1-10% of base volumeRaises hardness and slightly raises working mass.High doses reduce tail kick and stretch.
Fine salt3-40% of base weightAdds mass and small volume; raises sink behavior quickly.Coarse salt changes cavity fill and surface finish.
Colorant0.3-3% of base volumeAdds small mass and volume, mostly visual.High pigment may bleed or stiffen the bait skin.
Glitter0.2-4% of base volumeDisplaces plastisol volume and slightly raises hardness.Large flake needs extra injector and runner allowance.
Regrind5-35% of final mixAdds usable volume but raises variability and opacity.Count it as final-share, not base-share.
Bait sizeExample cavityDensity targetYield use
2.5 inch drop-shot worm0.06 fl oz / 1.8 ml0.97-1.03 g/mlHigh count batches where sprue volume can exceed bait volume.
4 inch finesse worm0.15 fl oz / 4.4 ml0.98-1.05 g/mlSoft action and repeatable color are more important than salt.
5 inch stick bait0.32 fl oz / 9.5 ml1.15-1.35 g/mlSalt-heavy fall rate drives both weight and yield per cup.
3.8 inch paddle tail0.28 fl oz / 8.3 ml0.98-1.08 g/mlMedium hardness protects the nose while keeping tail kick.
Tube body0.24 fl oz / 7.1 ml1.02-1.15 g/mlTrim and skirt cuts justify a larger sprue-loss percentage.
Problem signalLikely math causeCalculator adjustmentExpected result
Baits tear at hook slotSoftener too high or recycle too highLower softener 3-5 points or add 2% hardener.Higher hardness and better nose strength.
Short shots in final cavitiesSprue loss or overage too lowAdd 4-8% sprue loss and recalc target baits.More realistic pour-round count.
Stick bait sinks too slowlySalt load below density targetRaise salt until density clears 1.15 g/ml.Faster fall and heavier bait mass.
Floating bait barely risesSalt, glitter, or regrind offset fillerRaise float powder or lower dense additives.Composite density moves toward neutral.

🔗 Mix comparison grid

Finesse action Soft

Use low salt, moderate softener, and small cavity volume for thin tails and slow fall.

Stick bait fall Dense

Salt percentage dominates density, so yield by count drops as each bait gains mass.

Swimbait hold Firm

Medium-to-firm hardness helps bodies stay straight and noses survive rigging.

Floating blend Light

Floating filler offsets density but adds stiffness, so softener may be needed.

💡 Calculator tips

Use cavity volume as the anchor. A water-filled cavity measurement makes the yield math far more reliable than counting a previous pour by cup volume alone.
Keep dense and light additives separate in the math. Salt changes sink rate mostly by mass, while floating powder changes it mostly by added volume.

The science of pouring soft plastics. Pouring soft plastic lures feels like magic, but it is actualy just applied chemistry and geometry. There’s only geometry and chemistry.

You begin with a clear liquid plastisol, sprinkle in some salt to control sink rate, then add color to make ’em visible. Ideal result will sink instead of float and won’t tear where it touches the hook. The calculator (above) figures all that stuff out for you. This means you don’t have to estimate what percentage of your base resin has been absorbed by additives and wasted during sprue.

How to Pour Soft Plastic Lures

Additives such as fine salt makes the plastisol denser by increasing mass and thereby displacing some of the polymer resin. This is important since the less resin there is, the less flexible finished bait will be. While you may achieve a faster sinking stick bait, they can get brittle in cold water if you don’t take the compromise into consideration. As you can see from table on page, each grade has its own response to modifiers.

There are other variables that cause problems, such as hardness. For instance, maybe you like how a certain medium plastisol feel in the cup so you choose that grade. Then you adds a certain amount of softener to get a particular texture. The addition of that softener drop the durometer substantially and reduces strength of the lure’s nose. A compromised-nose bait won’t last through multiple hook set.

With your inputs for both hardener and softener, the calculator will adjust the expected hardness index to give you look at what the physical feel will be prior to heating the mix.

Most people mess up their pours when it comes to calculating volume. When they measure one cavity with water, they don’t factor in splatter during pouring, injector nose, or the runners. Typically, you can lose as much as 10-15% of the batch to trim and sprue in most molds. If you’re only calculating how much volume finished baits have, you’ll find yourself running out of mix half way through your final pour. By adding an overage buffer, you’re sure all cavities gets filled to capacity without short shots ruining your whole production run.

There is a fine line with regrinds. Using scrap baits and leftover sprues is good for not wasting plastic and money. But it adds inconsistency to your batch. Regrind has shorter polymer chains then brand new material which will change some things like stretch and clarity. If you have lots of regrind, those paddle tails may gets cloudy or be so brittle that they snap instead of bend. Keep the percentage of regrind reasonable to see the cost savings. This way, you won’t compromise structure of new lures.

While they may appear insignificant; like a drop of scent and a couple drops of color (it all add up). Colorants (if used heavily) will change viscosity a bit as well as increase volume. Scent or slickness oils will not cure with the plastisol, and they can be affected by time (leaching out) or how the bait feel as it moves through water. You must account for these small details on the tool, so every drop counts when you need precision.

This shift in understanding how things work change your workbench experience. From there on out you are engineering rather than guessing. What was a chance event turns into a predictable result with each pour. You know how much softener you need to lower hardness and how much salt is needed to raise the density; it’s all under your control when making finished product.

It is that control that makes the difference between those who just dabble and those who make quality lure every time. You’re not building a bait that merely resembles a fish. You are designing one that holds up to rigging, acts right in the water and does what it’s supposed to do when pressured. That requires careful balance with all those factors where every drop counts.

The baits holds up from cast to cast. They sink the way they were intended and hook the way they’re meant to be.

Soft Plastic Plastisol Mix Calculator

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