鞋垫材料怎么挑?凉鞋要耐晒,暴晒不变形,选型别省

应用领域 发布时间: 2026-09-16 841 阅读

The insole collapsed after just a week of use, and the soles of my feet feel sore. I didn't choose the right rebound and sun-resistant insole, so wearing it every day is uncomfortable.

The insole is collapsed and my arch hurts, where did the rebound go?

Insoles are an 'everyday item underfoot': resilient, sun-resistant, and sweat-absorbent. The materials need to be resilient, sun-resistant, and sweat-absorbent—the conclusion first: foam TPE is mainstream for insoles; for high-end insoles, foamed TPU or gel composites are preferred.

The biggest pitfall of insoles: Sandals need to be sun-resistant and not deform under intense sunlight, so don't skimp on choosing the right type. Insoles that deform from sun exposure are a result of skimping on the type—sun resistance is a required lesson for sandals.

Insoles are the parts that determine the experience: sagging or deformation will all lead to complaints. Choosing the right material is key for comfortable walking—since they're experience parts, don't skimp on material costs.

Why use TPE for insoles

Reasons for using TPE in insoles: can provide rebound, can be sun-resistant, can absorb sweat, high efficiency — all four together make it suitable for insoles.

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

Sun resistance cannot be compromised: sandals under strong sunlight. Sun resistance testing should be included in acceptance—deformation means a problem.

Standing on tiptoe in the scorching sun to absorb sweat, three hurdles

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

Exposure to strong sunlight conditions: drying on the balcony. Sunlight resistance data must be verified—deformation equals 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? How to choose insoles

DimensionTPEEVA
reboundGoodmiddle
Sun-resistantGoodpoor
Absorb sweatCan dobad
CostmiddleLow
DurableGoodmiddle
PurposeQuality modelLow-priced model

Table reading: EVA is cheap but has poor sun resistance and weak rebound; TPE has good rebound and sun resistance — quality insoles use TPE, low-priced ones use EVA.

Choose according to positioning: quality TPE, low-cost EVA.

Insole Acceptance: Two Sets of Accounts for Resilience and Sunlight Resistance

ProjectMethodstandard
reboundRebound TestAccording to the standard
Sun-resistantAging TestBy day
Absorb sweatWater immersion testBy time
TransformationSize remeasurementNo deformation

Table reading: After completing the four items of UV aging, rebound, bending, it won't deform under exposure to sunlight.

Sun resistance is a required course for sandal insoles.

Just going for cheap, ended up with three problems.

Pitfall 1: Only looking for cheap options. Sandals need to be sun-resistant — sun resistance must be tested.

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

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

Ask these three questions first when choosing insole materials

Three questions: What is the rebound rate, how many days of sun resistance, and how to test sweat absorption. One test: actual wear test—three questions and one test, the supplier's details are clear.

Sun resistance verification must come first: first conduct UV aging and then observe hardness changes before discussing the price—sun resistance is a compulsory course for sandal insoles.

Making sample retention a habit: retain samples for each batch, and retest rebound and sun resistance by batch. When changing materials for a batch, compare first before scaling up—the more stable the batch, the fewer the customer complaints.

Foamed insoles need a density of 0.25-0.35 g/cm³ for both resilience and lightness to be achieved. If the ratio is too high, it becomes too soft and collapses; if too low, it becomes too hard and hurts the feet. The ratio window must be fixed.

EVA insoles deform and turn yellow after being exposed to sunlight for two months, while TPE foam has moderate sun resistance. EVA has weak UV resistance and becomes brittle after a week on the balcony; outdoor models should choose SEBS-based weather-resistant systems.

The collapse of the insole is not due to poor rebound, but because the foaming ratio fluctuated. In the same batch, a density difference of 0.05 will cause the hardness to layer—first lock in the density, then talk about the rebound rate.

Insole inspection four-piece set: rebound rate, density, 24-hour water immersion, 500-hour UV aging. All four items must pass before release; missing any one will result in customer complaints six months later.

Magnification lock 0.30 plus UV 500h passed inspection, insoles do not deform or lose resilience under intense sunlight. Samples from each batch are tested for density and resilience, and the feel is retested after three months without delamination.

Table of Common Problems and Solutions for Insoles

PhenomenonReasonCountermeasure
collapseInsufficient reboundReplace with high-resilience material
TransformationInsufficient sun resistanceChange to sun-resistant material
become hardInsufficient sweatingReplace with waterproof material
Color differenceColor powder driftChasing Color Powder
Density fluctuationFoaming instabilityLock ratio

Insole compression permanently deforms; tested at 40% deformation, 40℃×6h, if it exceeds 25%, it will collapse in a month. Insoles are stepped on every day, and compression deformation determines their lifespan—new insoles being soft doesn't count, they only count as soft if they are still soft after a month of use.

Insoles are checked for moisture absorption and sweat wicking according to a water absorption rate of <3%; if they swell and deform after absorbing water, it is a customer complaint. EVA insoles harden after absorbing water, and TPE foam has a lower water absorption rate — the water absorption rate of insoles for sweaty feet must be measured, don’t just look at rebound.

The friction of the insole surface is measured separately for dry and wet surfaces. The friction coefficient on sweaty surfaces should be no less than 70% of that on dry surfaces. Good slip resistance on dry surfaces does not mean good slip resistance on sweaty surfaces — a sudden drop in friction coefficient after sweating leads to complaints, and only passing the wet surface test counts.

The forefoot bending point of the insole should align with the metatarsals, and the bending test should be done according to the angles of an actual gait. If the insole is too hard, bending will be uncomfortable; if it is too soft, support will be insufficient—the bending angle and position should be adjusted according to the foot shape, not just based on thickness.

Cologne Customer Case: Batch Color Difference Complained, System Change Delivered in 7 Days

A shoe material factory in Changzhou had noticeable color differences in batches of insoles, and the finished products were frequently complained about. Kolon coordinated a system and grade replacement (from SEBS-based to TPV-based), resulting in stable color differences and a shortened delivery cycle within 7 days. After changing the system, the color difference problem was eliminated from the source—the color difference is a system-level issue, not something that can be solved by color matching.

Summary

When choosing insoles, check sun resistance first, then test rebound. Sandals must be resistant to sun exposure and not deform under strong sunlight, so don’t skimp on choosing the type.

We are standing between the resin factory and the injection molding factory.

The previous section was about petrification and polymerization, the next section is about molds and machinery. The middle part is most like translation — translating the resin indicators into the part's performance, and translating the part's requirements back into the direction for the material.

Ningbo Cologne New Materials Co., Ltd. produces modified thermoplastic elastomers, modified nylons (PA6 / PA66 / PA46 / PA11 / PA12 / PA6T / PA9T and nylon alloys), modified PPO / PPS, as well as stock of nylon resins, secondary materials, and bulk materials from major chemical giants.

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