# 汽车踏板防滑垫用什么TPE?散料和原包,是两个价

应用领域 发布时间: 2026-09-12 2941 阅读

It becomes slippery as soon as you step on it in the rain; whether it's the accelerator or brake, you step on it. The pedal anti-slip mat can't grip when wet, and all the money saved on materials ends up paying for rework.

Conclusion first: Pedal anti-slip, wet state is the safety line

Pedal anti-slip mats are 'safety parts under your feet': you step on them for both the brake and the accelerator.

The materials should be non-slip, wear-resistant, and weather-resistant—here's the conclusion first: SEBS-based TPE is the mainstream choice for pedal non-slip mats; for high non-slip requirements, add non-slip textures or high-friction formulations.

The biggest pitfall of pedal anti-slip mats: loose material and original packaging are priced differently. Loose material is cheap but inconsistent between batches, while original packaging is stable but expensive — choose based on use, and don’t gamble with loose material for safety parts.

Pedal anti-slip mats are safety items: slipping is an accident. Anti-slip performance (tilt angle) should be recorded in the inspection and acceptance—anti-slip is the bottom line.

Why TPE is suitable for pedals: texture can be designed, wear-resistant and can withstand stepping

Reasons for using TPE for pedal non-slip mats: slip-resistant textures can be designed, wear-resistant, weather-resistant, and efficient—these four combined make it suitable for pedal mats.

Slip resistance is key: both dry and wet conditions must be slip-resistant. Actual slip tests (inclination angle) should be recorded in the acceptance—slipping when wet counts as an accident.

You can't skimp on wear resistance: the soles are worn every day. Wear resistance (abrasion) data should be verified according to actual use — once the patterns are worn flat, the anti-slip function is gone.

Three pairs of feet step on it: soles, mud and water, hot in summer and cold in winter

Tread conditions: repeatedly stepping and rubbing. Wear resistance and rebound data need to be checked—flattening and collapse are both problems.

Dirty operating conditions: mud, water, oil. Anti-slip must be stable when wet — wet anti-slip is the safety line.

Temperature conditions: cabin temperature. Test for both heat and cold—deformation and hardening, all are pitfalls.

TPE or rubber: settling the score on pedals

DimensionTPERubber
Non-slipDesignableNaturally good
Wear-resistantUpper-middleGood
smellControllableRubber smell
CostmiddleMedium-high
MoldingInjection moldingVulcanization
BatchStableHighly volatile

Table interpretation: Rubber is naturally good for anti-slip but has many processes; TPE is anti-slip, can be designed, and is efficient — for mass-produced parts, TPE is the mainstream.

High anti-slip scenario (off-road vehicle), enhanced friction formula — choose according to use.

The two biggest traps: mixed loose materials and fake anti-slip measures

Pitfall 1: Gambling on loose materials. Loose material batches fluctuate and are unstable for anti-slip parts—safety components should not rely on loose materials.

Pitfall 2: Misleading anti-slip claims. The pattern looks nice but is actually slippery — test the anti-slip performance yourself, don't just trust the pattern.

Pitfall 3: Ignoring precipitation. High-temperature precipitation, sticky surface—precipitation testing, must be measured.

Acceptance moisture measurement: tilt angle, wear, batch

Three questions: What method is used for anti-slip, what standard is used for wear resistance, original packaging or bulk material. One check: physically step on and test—three questions and one check, the supplier's details are clear.

Anti-slip verification requires actual testing: dry and wet inclinations. The hardest in reality—good-looking patterns are no match for actual anti-slip performance.

Making sample retention a habit: retain samples from each batch, and retest slip resistance and wear resistance batch by batch. When changing materials between batches, compare first before increasing the volume—stable batches result in fewer customer complaints.

Where to draw anti-slip lines: the slope on rainy days determines it

The wet-slip resistance of pedal anti-slip mats is a safety line: when shoes carry water on rainy days, slipping when wet leads to accidents. Wet-slip resistance is tested based on the tilt angle — in a wet state, it is a matter of life and death.

Wet slip resistance should follow the temperature: in winter, there is slush on the soles. Low-temperature wet tests — winter scenarios, don't miss it.

Wet slip resistance depends on the sole: different soles have different friction. Multiple soles tested in practice — practical tests are harder than reports.

A balance between slip resistance and wear resistance is necessary: deep anti-slip patterns wear out quickly. Balancing slip resistance and wear resistance is all about formulation skill—both aspects need to be tested.

Anti-slip TestStateThrough the line
Dry stateTilt angle≥25°
Wet stateTilt angle≥20°
low-temperature and wet stateSnowmelt simulation≥18°
More solesActual measurementAll meet the standard

Table 2 readings: Four states of anti-slip, the wet state is the safety line. Slipping on rainy days equals an accident.

Material specificationsRequirementExplanation
Non-slipWet state meets the standardSafety line
Wear-resistantAccording to useUnpolished
reboundAccording to the standardDoes not collapse
smellLevels 1-3Interior meets the standard

Table 3 reading: The four indicators are the physical examination form of the pedal mat. Loose material and original packaging are just two prices.

A wet inclined angle of ≥20° is considered passing; even with water on the soles on rainy days, it can still grip. Dry state ≥25°, low-temperature slush water ≥18°; all three levels must pass before release. If the anti-slip pattern is worn down by one level, the friction coefficient drops to zero.

Slipping isn’t because the texture is shallow, it’s because the bulk material batches are inconsistent — don’t gamble with bulk material for safety parts. Original packaged material batches are stable but expensive, while bulk material is cheap but hardness can vary by 30%; the money saved on the material is just enough to cover customer complaints.

SEBS-based TPE can be designed to be non-slip; natural rubber is naturally non-slip but requires vulcanization. For mass-produced parts, injection molding is used, which avoids vulcanization and saves a processing step. The friction coefficient in both dry and wet states can be adjusted according to the formulation.

Proof the rain boot soles: Rain boots are more slippery, and they are only stable after surpassing ordinary shoes. Test multiple soles in practice, don’t just trust that the pattern looks good; anti-slip testing is about 'being able to step firmly,' not 'feeling rough to the touch.'

The pedal is the safety component under the foot; if it is slightly slippery, rain can cause an accident. Record the tilt angle for inspection, re-test each batch, and once the batch is stable, it won’t slip when wet.

Cologne Customer Case: Insufficient rebound, function not up to standard, compared with the smell experienced during production acceptance

A car parts factory in Beijing had insufficient rebound of pedal anti-slip mats, and the performance of the functional parts did not meet the standards. Cologne cooperated on-site with production debugging until the yield stabilized, and the odor level passed the customer acceptance standard. During production debugging, rebound and odor were aligned together—two problems solved at once.

Summary

If you are stuck on choosing a car pedal anti-slip mat, send over the working conditions, and we will check them. First, check the working conditions, then check the material.

What we deliver is not just a package of materials.

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