鞋中底用PEBA还是TPU?软硬差一档,用途两回事

应用领域 发布时间: 2026-09-15 4727 阅读

The midsole collapses after stepping twice, and the rebound is gone. My feet get tired while running. The rebound setting of the shoe's midsole wasn't chosen correctly, so the cushioning is just for show.

The midsole collapses after just two steps, where did the rebound go?

The shoe midsole is the 'component for guided cushioning and rebound': rebound, cushioning, lightness. The material should have good rebound, good cushioning, and be lightweight — conclusion first: using PEBA for the shoe midsole is the high-end mainstream; for regular midsoles, foamed TPU or EVA composites are more cost-effective.

The biggest trap of midsoles in shoes: a slight difference in hardness and softness can mean two completely different uses. Even a small difference in hardness can make rebound and cushioning entirely different—choose according to purpose, not the name.

The midsole of a shoe is a functional component: poor rebound or hardening are both problems. Choosing the right material makes running shoes stable—functional components, don't skimp on materials.

Why is PEBA both elastic and lightweight?

Reasons for using PEBA in shoe midsoles: good rebound, lightweight, fatigue resistance, and good shock absorption—combined, these four qualities make it suitable for high-end midsoles.

Rebound is key: running rebound. Incorporate rebound rate testing into the acceptance—if the rebound is poor, it's a problem.

Lightweight should not be compromised: for every gram the midsole is lighter, the foot feel improves by a fraction. Record the density data in the acceptance check — lightweight is a bonus for the midsole.

Running cushioning fatigue, three barriers

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

Cushioning condition: landing impact. Cushioning data needs to be checked—vibration in the feet is the problem.

Fatigue condition: long-term use. Fatigue data need to be verified—if it hardens, it's a problem.

PEBA or TPU? See clearly in one table

DimensionPEBATPU
reboundExcellentGood
LightweightLightmiddle
CushioningGoodGood
CostTallMedium-high
Fatigue-resistantGoodGood
PurposeHigh-endRegular

Table reading: PEBA has excellent rebound and is very lightweight but expensive; TPU has high cost performance — high-end shoes use PEBA, regular shoes use TPU.

Choose by positioning: high-end PEBA, regular TPU.

Midsole inspection: accounting for resilience and lightweight

ProjectMethodstandard
ResilienceRebound TestAccording to the standard
DensityDensity cupBy target
CushioningImpact testBy energy
FatigueCyclic compressionBy frequency

How to read the table: After checking the four items of rebound rate, cushioning, and density, it will be clear whether this midsole is for running shoes or walking shoes.

Purpose is the real judge of the midsole.

Choosing materials by name, three holes bury a heap

Pitfall 1: Choosing by name. Both PEBA and TPU are called midsole materials, but a difference in softness can completely change their use—choose based on purpose.

Pitfall 2: Rebound overstatement. The report states rebound, but it is actually on the harder side — the rebound is accepted based on actual measurement.

Pitfall 3: Density omission. Midsole weight — density data must be checked.

Before placing the order, make sure to ask about these three numbers thoroughly

Three questions: What is the rebound rate, what is the density, and what is the positioning based on? One test: Actual running measurement — three questions and one test make the supplier’s details clear.

Purpose verification comes first: first decide whether you want rebound or cushioning, then discuss the price — purpose is the judge of the midsole.

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.

Midsole rebound is key — PEBA foam has a high rebound rate, and TPU foam is wear-resistant. Supercritical foaming requires high melt strength and a precise foaming window, and batch stability needs to be tested.

The midsole selection considers both rebound and foaming process together.

Midsole rebound decay after running several hundred kilometers—fatigue data was not measured, and the rebound decay rate is not transparent. Only midsoles with low decay are suitable for long-distance running, while those with high decay will collapse after wearing for a few months.

Rebound attenuation rate is evidence of the midsole's lifespan.

The material becoming soft in summer and hard in winter is not due to poor quality—the temperature environment affects material performance, so testing should be done at actual temperatures. The temperature adaptability window should cover the entire year. For changes in hardness, first check temperature adaptability.

PEBA is valued for its raw materials, while TPU is valued for its process—since their cost structures are different, comparing prices by structure is fair. PEBA has high rebound, TPU has good wear resistance, so choose according to the use. Even for the same midsole material, if the hardness grade is off by one level, the shoe will perform in the wrong field.

Supercritical foaming data needs to be pulled out—check three things: melt strength, foaming window, and batch stability. Thickness design should follow the target cushioning and stability to adjust the formula. Only when the foaming data is complete can the midsole be made stable.

Table of Common Problems and Countermeasures of Shoe Midsoles

PhenomenonReasonCountermeasure
Poor reboundWrong gear selectedSelect by use
Stomp your footInsufficient cushioningIncrease cushioning mode
hardenAgingReplace with fatigue-resistant material
Size fluctuationShrinkage rate driftingSmall batch trial production
OverweightHigh densitySwitch to lightweight material

PEBA foam midsole density is 0.10-0.15 g/cm³, with a rebound rate over 60%. EVA foam rebound is 30-40%, PEBA rebound is twice as high but three times as expensive—PEBA is used for racing shoes, EVA for training shoes.

Midsole compression permanent deformation is measured at 50% deformation, 70°C × 6h; if it exceeds 30%, it will collapse in three months. PEBA compression deformation is <15%, EVA compression deformation is 25-35% — compression deformation data determines midsole lifespan, don’t just look at the rebound of new shoes.

The cost of midsole materials is calculated by multiplying the unit price per gram by the density. PEBA is three times more expensive than EVA but has twice the rebound. Racing shoes pay for rebound, while training shoes pay according to the budget — calculate the material cost based on the shoe's positioning, and don't just apply PEBA across the board.

Cologne Customer Case: Unstable Shrinkage Rate and Size Fluctuations, Small Batch Trial Production Continues with Three Orders

A shoe material factory in Zhongshan has unstable shrinkage rates in the midsoles, with large size fluctuations. Cologne coordinated small batch trial productions for verification before scaling up, and the sizes became stable, with the customer placing consecutive orders for three batches. Small batch trial production locks the sizes before mass production—the shrinkage problem should be exposed during the trial production stage.

Summary

When selecting the midsole for a shoe, first determine its purpose, then measure its rebound. A difference in softness or hardness by one level corresponds to different uses; don’t choose based on the name.

For more than ten years, I’ve only done one thing: turning nylon into a usable form.

PA6 and PA66 are the basics. PA46, PA6T, and PA9T are the entry points for high-temperature resistance. PA11 and PA12 handle water and oil channels. Nylon alloys compensate for what single resins cannot balance. Modified thermoplastic elastomers, modified nylon, modified PPO, and PPS run in parallel, along with major chemical manufacturers’ nylon resins, secondary brands, and bulk material in stock.

Using the same material in the wrong place leads to accidents. So always ask about the part first, then the material.

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