超临界发泡中底用什么材料?鞋垫回弹差,脚后跟先抗议

应用领域 发布时间: 2026-09-12 716 阅读

The midsole collapsed after just a month of stepping, and the rebound is gone when running. The density of the supercritical foamed midsole was not controlled, so the light bounce is just a gimmick.

The midsole collapsed after just a month of use, and the rebound is gone.

The supercritical foam midsole is a 'light and elastic component': resilient, lightweight, and fatigue-resistant. The material needs to be resilient, lightweight, and fatigue-resistant — here's the conclusion first: using TPU or TPE foaming for supercritical foam midsoles is mainstream;

High-end positioning, PEBA foam preferred.

The biggest drawback of supercritical foaming midsoles: poor insole rebound, with the heel protesting first. Poor rebound, the heel feels it first—rebound is the baseline for foamed midsoles.

The supercritical foamed midsole is a functional component: poor rebound and collapse are both problems. Choosing the right material keeps running shoes stable—functional components, don't skimp on material costs.

Why supercritical foaming tends to favor TPE

Reasons for using TPE in supercritical foam midsoles: can provide rebound, can be lightweight, fatigue-resistant, and highly efficient—these four together make it suitable for foam midsoles.

Rebound is key: The foam midsole is light and springy; if the rebound is poor, your heels will hurt after walking for a long time. Rebound testing is included in the acceptance—rebound is the bottom line for foam midsoles.

Lightweight should not be compromised: lightness is the meaning of foaming. Density data should be recorded for acceptance—overweight is a problem.

Light fatigue from running, three barriers

Running condition: repeated compression. Rebound data needs to be checked — if the rebound is off, that's the problem.

Lightweight operating condition: weight-sensitive. Density data must be checked — overweight is a problem.

Fatigue condition: long-term use. Fatigue data must be verified—collapse is the problem.

TPE or EVA foam? A chart to see clearly

DimensionTPE FoamingEVA
reboundGoodmiddle
lightweightGoodGood
Fatigue-resistantGoodmiddle
CostTallLow
CraftsupercriticalMolding
PurposeHigh-endRegular

Table reading: EVA is cheap but has poor rebound; TPE foam has good rebound — high-end shoes use TPE foam, regular ones use EVA.

Select by positioning: high-end foam, standard EVA.

Foamed midsole inspection: two accounts of rebound and lightweight

ProjectMethodstandard
reboundRebound TestAccording to the standard
DensityDensity cupBy target
FatigueCyclic compressionBy frequency
poreCross-sectional observationEven

Table reading: Only after completing the four items of rebound, density, and cushioning is the foam midsole considered qualified.

Rebound is the bottom line of the foam midsole.

Only aiming for lightness, three holes collapsed.

Pitfall 1: Only aiming for lightness. If the density is too low, the rebound collapses, and the foot feel immediately sinks — rebound must be tested.

Pitfall 2: Undetected blowholes. Uneven blowholes—cross-sectional observation is a must.

Pitfall 3: Fatigue omissions. Collapse—fatigue testing is a must.

Select the base material first and control the foaming density

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

Rebound verification must come first: measure the ball rebound rate first, then discuss the price — rebound is the bottom line for foam midsoles.

Making sample retention a habit: retain samples from each batch and re-test the rebound density by batch. When changing materials between batches, compare first before scaling up—the batch is stable, and customer complaints are few.

The density of the foamed midsole should be between 0.15-0.25 g/cm³, and the rebound rate must exceed 60%. The cross-section of the foam cells should appear uniform; if the cells are uneven, parts will collapse — so the process window for the ratio must be locked.

EVA molding is cheap but has poor rebound, while TPE/TPU supercritical foaming has good rebound but is expensive. High-end running shoes use foamed TPU, and regular training shoes use EVA — choose the process route according to positioning.

Poor midsole rebound is not due to soft material, but because of uneven foam cells combined with inconsistent scaling. The forefoot needs cushioning and the rearfoot needs rebound, requiring zoned density; a single piece of material cannot achieve the best feel across the foot.

Foamed midsole inspection four-piece set: rebound rate, density, 100,000 cycles of compression, and foam cell cross-section. Don't just report a single rebound rate; the cushioning curve and energy return rate should be included together.

Density 0.20, rebound added 65%, cyclic compression tested. The midsole still feels springy after a year of wear. Samples from each batch are kept to test density and fatigue, and the cross-sections of the foam cells are archived for comparison batch by batch.

Table of Common Problems and Countermeasures in Supercritical Foamed Midsoles

PhenomenonReasonCountermeasure
Poor reboundInsufficient foamingAdjust Magnification
collapseWeak fatigue resistanceReplace with fatigue-resistant material
Uneven poresUnstable processAdjust parameters
OverweightHigh densitySwitch to lightweight material
Batch differenceFormula DriftLock the window

In supercritical foaming midsoles, the cell diameter is accepted at 50-150 μm; if the cells are uneven, some areas will collapse. Cross-sectional slices are used to check cell uniformity; if the size difference is twice, rebound will cause delamination—the magnification and temperature window need to be locked together.

The energy return rate of the midsole is accepted if it is above 60%. A high rebound rate does not equal high energy return. The rebound rate refers to a single bounce.

Energy return is multiple cycles of decay—the midsole data of running shoes should consider both values, not just the rebound.

Foamed midsoles pass inspection if they retain 90% of their height after 100,000 compressions. How much a midsole will collapse after a year of use is determined by fatigue data—the good rebound of a new midsole does not mean it will still rebound after 100,000 cycles, the decay curve needs to be measured.

The supercritical foaming temperature window is controlled within ±2°C; if the temperature deviates slightly, the pores become uneven. The foaming process window is narrow, with three interrelated parameters: temperature, pressure, and time—don’t adjust just one parameter; locking all three together ensures stability.

Cologne Customer Case: Tight delivery schedule with mismatched stock, sample data used to supplement certification

A shoe material factory in Cangzhou had tight deadlines for supercritical foamed midsoles, and the performance of the available grades did not match. Kolon cooperated by providing samples from the same batch along with physical property data, conducted third-party testing, and completed the certification to ensure on-time delivery. Samples plus data are the confidence for urgent orders—complete data allows for fast certification, and only then can the delivery deadline be guaranteed.

Summary

In selecting a supercritical foamed midsole, first look at rebound, then compare weight. If the insole has poor rebound, the heel complains first; rebound is the bottom line.

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