发泡鞋垫用什么TPE?密度轻10%,成本省一截

应用领域 发布时间: 2026-09-15 1051 阅读

The foam in the insoles is too airy; it flattens with just a press and doesn't rebound at all. The foam density of the insoles wasn't controlled well, saving on cost but making them feel collapsed.

The insole foam is airy and collapses easily when pressed.

Foam insoles are 'light and springy pieces': rebound, density, sweat absorption. The material should have good rebound, light density, and sweat absorption—conclusion first: using foamed TPE for foam insoles is mainstream; density is the ledger, being 10% lighter saves a section.

The biggest trap with foam insoles: 10% lighter density, saving a chunk of cost. Density is the key to cost—density is the ledger of foam insoles.

Foam insoles are functional components: sagging or hardening are both problems. Only with the right material selection will the insole be stable—functional components, don't skimp on material costs.

Why are foam insoles made with TPE?

Reasons to use TPE for foam insoles: rebound can be achieved, density can be adjusted, sweat absorption is possible, high efficiency—combined, these four make it suitable for foam insoles.

Rebound is key: stand on tiptoe every day. Write the rebound test into the acceptance criteria — collapse is a problem.

Density cannot be neglected: how many pairs of foam insoles one pound of material can produce all depends on whether the density is controlled steadily. The density data is recorded in the inspection — density is the ledger of foam insoles.

Toe pad density absorbs sweat, three barriers

Tiptoe condition: tiptoe every day. Rebound data must be checked—collapse indicates a problem.

Density condition: weight-sensitive. Density data must be verified—overweight is a problem.

Sweat absorption condition: soaked with sweat. Water resistance data needs to be tested—if it hardens, that's a problem.

TPE or EVA foam? A chart to see clearly

DimensionTPE FoamEVA
reboundGoodmiddle
DensityAdjustableLight
Absorb sweatCan be donepoor
CostMedium-highLow
DurableGoodmiddle
PurposeQuality modelLow-priced model

Table reading: EVA is cheap but has poor rebound; TPE foam has good rebound - quality insoles use TPE foam, low-cost ones use EVA.

Choose by positioning: high-quality TPE foam, low-cost EVA.

Foam Insole Acceptance: Two Accounts of Density and Rebound

ProjectMethodstandard
reboundRebound TestAccording to the standard
DensityDensity cupBy target
Absorb sweatWater immersion testBy time
CostAccountingContrast

How to read the table: only after going through the four items of density, rebound, and cost will the cost account be clear.

Density is the ledger of foam insoles.

Looking only at the unit price, three pits saved money but feel flat.

Pitfall 1: Only looking at the unit price. If the density fluctuates, it's impossible to accurately tell how much material goes into a pair of shoes—density must be checked.

Pitfall 2: Rebound testing omission. Subsidence—rebound testing is a must.

Pitfall 3: Sweat absorption testing failure. Hardening — water immersion test, must be tested.

Choose foam insoles by first calculating their density

Three questions: What is the density, what is the rebound rate, and what is the foaming ratio? One test: measured in actual wear—three questions and one test, the supplier's details are clear.

Density verification comes first: first check the balance of density and rebound, then talk about price—density is the ledger of foam insoles.

Making sample retention a habit: retain samples from each batch, and re-measure rebound density by batch. When changing material for a batch, compare first before scaling up — stable batches lead to fewer customer complaints.

Foamed insoles with 10% lower density can save a portion of the raw material cost per piece. However, the density cannot be reduced indefinitely; below 0.25 the rebound collapses—it's about finding the balance between density and rebound.

EVA is cheap but has poor rebound, while TPE foam has good rebound but medium to high cost. For high-volume low-price, use EVA; for quality insoles, use TPE foam—choose according to positioning, don't just look at the unit price.

Insoles lose their rebound after long-term use, not because the material is bad, but because the fatigue resistance data was not measured. How much rebound remains after several thousand compressions, and the rate of decay determines the lifespan.

Foam insole inspection: rebound rate, density cup, 24h water immersion, surface abrasion resistance. Thickness is determined according to the target sports scene, and issues with hardening due to sweat absorption are completely resolved.

Density lock 0.30 with rebound attenuation passed inspection, insoles do not flatten or harden after one year of use. Samples from each batch are kept to measure density and rebound, and color drift is checked against a ΔE 1.5 standard.

Common Problems and Countermeasures of Foam Insoles

PhenomenonReasonCountermeasure
collapseInsufficient reboundReplace with high-resilience material
become hardInsufficient sweatingChange to waterproof material
frostedInsufficient wear resistanceReplace wear-resistant material
Density fluctuationFoaming instabilityLock ratio
Color differenceColor powder driftChasing Color Powder

Foam insoles are tested for compression and rebound by being compressed to 40% deformation 100,000 times, with a rebound retention rate of 80% for acceptance. How much the insole's rebound decays after a year of use, and the rate of decay, determines its lifespan—new insoles' Q is not counted; only after 100,000 compressions does Q count.

Foamed insoles are breathable, with a water vapor transmission rate of >300 g/m²·24h for inspection. Insoles that are not breathable for sweaty feet just smell stuffy; TPE foaming is one level more breathable than EVA—both water absorption and breathability are tested together.

Foam insoles are accepted if the shock attenuation rate according to impact acceleration is above 40%. Insoles are not better the softer they are for cushioning.

It is to reduce the impact of landing to a comfortable range — the impact attenuation rate indicates the shock absorption effect better than hardness.

Foam insoles with slow rebound are accepted if they rebound 80% after being compressed for 30 seconds. Slow rebound insoles slowly spring back when stepped on; if they rebound quickly, there is no cushioning effect — rebound speed and rebound rate are two different indicators and both need to be measured.

The color of the foam insoles is matched according to the thickness grade, with a color difference ΔE ≤ 1.5. The color of the same insole style should be consistent across different thicknesses—when thickness changes, density changes, and the color tends to drift, so the instrument relies on the eye for color classification.

Cologne Customer Case: Insufficient oil resistance causing swelling and deformation, parameter adjustment after over 1000 hours of aging

A shoe material factory in Ningbo faced insufficient oil resistance in their foam insoles, which swelled and deformed after being exposed to oil. Cologne assisted by adjusting the injection molding parameters (mold temperature/material temperature/holding pressure), eliminating the swelling, and passing the 1000-hour aging test on the first attempt. The parameter window was locked, cutting off swelling at the source—when it comes to oil resistance issues, start by looking at the formula, then the parameters.

Summary

When selecting foam insoles, get the density right first, then test the rebound. Reducing density by 10% can save a significant portion of cost, as density is the ledger.

What we deliver is more than just a bag of material.

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