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 3782 阅读

Midsole collapses after just one month of use, and the rebound is gone. Supercritical foam midsoles don't have their density controlled; the light bounce is just a gimmick.

Midsole collapses after just one month, but the rebound runs away

Supercritical foam midsoles are "light bounce pieces": rebound, lightweight, and fatigue-resistant. The material must be reboundable, lightweight, and fatigue-resistant—here's the conclusion first: TPU or TPE foam is mainstream for supercritical foam midsoles;

High-end positioning, PEBA foam is the priority.

The biggest pitfall of supercritical foam midsoles: poor rebound insoles, heel protests first. Poor rebound, heel first knows—rebound is the baseline for foamed midsoles.

Supercritical foam midsoles are functional parts: poor rebound and sagging are problems. Choosing the right materials ensures running shoes are stable—functional parts, don't skimp on material costs.

Why does supercritical foam lean toward TPE ?

Reasons for using TPE for supercritical foam midsoles: reboundable, lightweight, fatigue-resistant, and efficient—all four together, suitable for foamed midsoles.

Rebound is the core: foamed midsoles are light and springy; poor rebound causes heel soreness after walking for a long time. Write rebound tests into acceptance — rebound is the baseline for foam midsoles.

Lightweight, don't skimp: lightness is the meaning of foam. Density data is written into acceptance — overweight is the problem.

Lightweight Fatigue Running, Three Passes

Running Condition: Repeated compression. Rebound data must be verified—poor rebound is the problem.

Lightweight Condition: Weight-sensitive. Density data must be tested—overweight is the problem.

Fatigue Condition: Long-term use. Fatigue data must be tested—collapse is the problem.

TPE Foam or EVA? Clear at the first watch

DimensionTPE FoamedEVA
ReboundGoodMedium
LightweightGoodGood
Fatigue-resistantGoodMedium
CostHighLow
ProcessSupercriticalMolded
PurposeHigh-endConventional

Table Reading: EVA is cheap but has poor rebound; TPE foam has good rebound—high-end shoes use TPE foam, while conventional EVA is used

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

Foamed midsole inspection: two calculations for 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 immediately feels like it's sinking — rebound must be tested.

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

Pitfall 3: Fatigue testing omission. Collapse — fatigue testing must be conducted.

Select the base material first to 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-measure rebound density by batch. When changing material for a batch, compare first before scaling up — stable batches lead to fewer customer complaints.

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 — the magnification window needs to 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 and inconsistent expansion. The forefoot needs cushioning and the rearfoot needs rebound, requiring zoned densities; a single piece of material cannot provide a uniform feel.

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

PhenomenonCausesCountermeasures
Poor ReboundInsufficient FoamingAdjustable Rate
CollapseWeak Fatigue ResistanceReplacing Fatigue-Resistant Material
Uneven Bubble HolesUnstable ProcessParameter adjustment
OverweightHigh densityLightweight material replacement
Batch differenceFormula driftWindow lock

Supercritical foam midsole cell diameter is accepted at 50-150μm; uneven foam locally collapses. Cross-sectional slices to check bubble uniformity; if the size differs by one time in rebound, the rebound is layered—the magnification and temperature windows should be locked together.

Midsole energy return rate is accepted at above 60%; a high rebound rate does not mean high energy return. Rebound rate is a single bounce;

energy return is multiple cycles of decay—both data should be used for running shoes, don't just look at rebound.

Foamed midsole fatigue inspection after 100,000 compressions maintains height at 90%. How much the midsole collapses after one year of pressing is determined by fatigue data—a new midsole rebounds well doesn't mean it will bounce again after 100,000 cycles; the attenuation curve needs to be measured.

Supercritical foam temperature window is controlled at ±2°C; if the temperature deviates slightly, the bubbles will be uneven. The foaming process window is narrow, and temperature, pressure, and time are all linked together—don't just adjust one parameter, lock all three together for stability.

Cologne customer case: tight delivery deadline, in-stock does not match, retained sample data for additional certification

Cangzhou shoe material factory, supercritical foamed midsole has tight delivery time, spot grade and performance do not match. Cologne cooperated by providing retained samples and physical property data for the same batch, passed third-party testing and completed certification, and delivered on time. Sample retention plus data is the confidence for urgent orders—complete data, fast certification, and guaranteed delivery time.

Summary

Supercritical foam midsole selection: first check rebound, then compare lightness; insoles with poor rebound protest the heel; rebound is the bottom line.

About us, four sentences:

1. Modified thermoplastic elastomers, modified nylon (PA6 / PA66 / PA46 / PA11 / PA12 / PA6T / PA9T and nylon alloys);

2. Modified PPO / PPS;

3. Major chemical giants in nylon resin trading;

4. Sub-brand materials and large package materials in stock.

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