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应用领域 发布时间: 2026-09-15 4550 阅读

If you store it outdoors for two years, the cushion will just turn to powder. For outdoor use, durability against weather is the baseline, don’t skimp on this level.

It fades after two years of sun exposure; it's not that it's worn out, it just isn't weather-resistant enough.

Energy storage buffer pads are 'outdoor components': weather-resistant, resilient, and compressible. The material needs to withstand outdoor conditions — conclusion first: for household outdoor use, weather resistance is the baseline — weather resistance is the minimum requirement for buffer pads.

The biggest pitfall of energy storage buffer pads: insufficient weather resistance, causing the surface to crack after two years of sun exposure — weather resistance is the lifespan line of buffer pads.

Energy storage components are safety parts: aging and cracking are both problems. Choosing the right material ensures stable energy storage—don’t skimp on the formula for energy storage components.

Both rebound and weather resistance are needed, so why choose TPE?

Reasons for using TPE in energy storage cushioning pads: can provide rebound, can resist weathering, can withstand compression—combining all three makes it suitable for cushioning.

Rebound is key: cushioning relies on rebound. Rebound testing should be included in acceptance—insufficient rebound is a problem.

Weather resistance cannot be compromised: outdoor sunlight aging. Include weather resistance testing in the acceptance criteria—aging equals a problem.

Outdoors, compression, temperature change—what to check in each of the three aspects

Outdoor conditions: sunlight and rain. Weather resistance data must be tested—aging is the issue.

Compression condition: the battery cell expands and compresses. Rebound data must be checked—deformation is the problem.

Thermal cycling conditions: alternating hot and cold. Temperature resistance data must be tested—cracking indicates a problem.

Cushioning pad materials, clearly compared in one table

Materialreboundweather-resistantCost
TPEGoodGoodmiddle
EVAmiddlepoorLow
RubberGoodGoodTall
PU Foamingmiddlemiddlemiddle

Table reading method: Materials are arranged by task; choose different ones for different tasks. For the outdoor column, check weather resistance first.

Look at weather resistance and rebound together to choose the right material.

Does not crack or age in the sun, test these four items during inspection

ProjectRequirementJudgment
reboundTestMeet the standard
weather-resistantTestMeet the standard
Temperature resistantTestMeet the standard
BatchLockMeet the standard

Table reading: Check the cushions item by item, the lifespan is visible, and UV aging data should be attached.

Weather resistance is the lifespan line of the buffer pad.

If you only look at resilience and don't test weather resistance, it will be ruined outdoors.

Pitfall 1: Only looking at rebound. The rebound data may look good, but if it doesn't pass UV aging tests, it will become brittle after one year outdoors — weather resistance must be tested.

Pitfall 2: Missing temperature change measurements. Cracking — temperature resistance must be measured.

Pitfall three: Compression not tested. Deformation—compression must be tested.

Weather resistance, resilience, service life — ask clearly before setting the cushion

Three questions: what kind of outdoor environment, what temperature range, what compression rate. One test: actual working conditions measured — three questions and one test, the supplier's details are clear.

Weather resistance verification should come first: finish the QUV aging and xenon lamp tests before discussing rebound indicators—weather resistance is the lifespan line of the cushioning pad.

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

Powdering, Deformation, Cracking: A Fault Comparison Table

PhenomenonReasonCountermeasure
AgingInsufficient weather resistanceReplace with weather-resistant material
CrackingInsufficient temperature resistanceChange to heat-resistant material
TransformationInsufficient reboundReplace with high-resilience material
become hardAgingAdditives
Batch bleachingFormula fluctuationLock window

Outdoor mats stored by users for three years: EVA cracks first and loses resilience first—weather resistance is the baseline, not a bonus. Outdoor parts are tested for long-term aging, not judged by how good the rebound of new material looks.

Good rebound does not mean weather resistance; EVA has moderate rebound but poor weather resistance, and will powder after half a year outdoors. Choose an SEBS-based weather-resistant system, and don't just look at the rebound of the new material; only rebound after aging counts.

Compression set is the 'memory' of a cushion. If it is compressed for too long and does not recover, it means poor memory. For outdoor long-term compression, the compression set must be kept within 30%, otherwise, the cushion will become thinner and thinner.

The cushioning pad is the 'sun protection post' outdoors, and ultraviolet rays and heat accelerate aging together. After photo-thermal compound aging, the rebound does not degrade, only then can it withstand outdoor exposure; heat aging alone is not enough.

After weathering sampling for one year, rebound remains at 90%, and compression deformation is still within 30%, with household storage doubling orders in the second year. Set aging conditions according to the actual outdoor temperature, don’t apply laboratory data to the open air.

For outdoor cushioning pads for households, choose an SEBS-based weather-resistant system. Don’t take the rebound of new material as the data after aging. After 1000 hours of combined light and heat aging, the rebound rate should be ≥80%, and it should not become sticky or exude after being left outdoors for a year to be considered acceptable.

Long-term compressed cushioning pads result in compression deformation within 30% (70°C × 22h). When the battery cell swells and presses against the pad, if the compression deformation exceeds the limit, the cushioning margin is lost, and the more the pad is compressed, the thinner it becomes, so vibrations are directly transmitted to the module.

Only by maintaining rebound without decay after combined light and heat aging can it withstand outdoor exposure; thermal aging alone is not enough. After 1000 hours of UV and heat aging, the rebound rate should be ≥80%. For household storage and outdoor components, choose an SEBS-based weather-resistant system, and do not use new material data as data after aging.

Outdoor parts are judged by long-term aging tests, not by whether the rebound looks good when using new materials.

When choosing an SEBS-based weather-resistant system, don't just look at the rebound of new material; only the rebound after aging counts. For long-term outdoor compression, the deformation must stay within 30%, otherwise the pad will get thinner the more it is compressed.

Cologne Customer Case: Hardness drift and inconsistent touch, small batch trial production experienced low-temperature bending issues

A energy storage equipment factory in Dongguan experienced batch-to-batch drift in the hardness of energy storage buffer pads, with the feel alternating between soft and hard. Cologne coordinated small batch trial production for verification before scaling up; the hardness was stable, and it passed the -40°C low-temperature bending test in one go. During small batch trial production, the batch is locked before scaling up——for batch drift, first check the stability of the system.

Summary

When selecting energy storage buffer pads, first determine weather resistance, then check rebound. For household outdoor storage, weather resistance is the bottom line; weather resistance is the lifespan line.

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