汽车制动防尘罩用什么材料?硬10度,手感差一档

应用领域 发布时间: 2026-09-16 1369 阅读

The dust cover delaminated and let in sand after just three months, and the brake components wore grooves. The material selection for the brake dust cover was missed, and rework is more expensive than buying the material.

Conclusion first: Look at the brake dust shield, hardness, and bonding together.

The brake dust cover is the 'leather on the brake parts': it prevents dust, sand, and water.

The material should have appropriate hardness, strong adhesion, and good resilience.

Conclusion first: SEBS-based TPE is mainstream. For overmolded parts that need strong bonding, use high-adhesion formulations or TPV.

A 10-degree increase in hardness changes the hand feel by one level; a deviation of one level in hardness changes the entire assembly feel—Shore A 50-70 is determined according to assembly conditions, and the hardness serves as the anchor point for the dust cover.

The brake dust cover is a 'functional part': if it fails to block dust, sand gets into the brake components. Choosing the right material ensures functionality—functional parts, don't skimp on material costs.

Why TPE Wins: Hardness Can Be Adjusted Freely, No One Beats Its Rubber Coating

Reasons for using TPE for the brake dust cover: hardness is adjustable, coating process is mature, rebound is good, cost is controllable — altogether, these four reasons make it suitable for a dust cover.

Hardness is key: too hard makes assembly difficult, too soft collapses. Shore A hardness is determined according to assembly conditions.

Delamination of the overmold is the death sentence for overmolded parts. The peel strength should be written into the acceptance criteria according to the standard——TPE over metal or nylon cores will delaminate if the peel is not strong after prolonged use.

It tests three operating conditions: friction, temperature, and brake fluid

Friction conditions: friction dust from brake components. Wear resistance and dust resistance data need to be tested — wear through the dust cover, and dust enters the brake components.

Temperature conditions: Brake components heat up. Temperature resistance is tested according to the actual temperature — if the temperature is insufficient, the dust cover will soften.

Medium conditions: brake fluid, oil contamination. The resistance to the medium needs to be tested—liquid swelling, dust protection failure.

TPE or Rubber: Explained Clearly in One Table

DimensionTPE (SEBS-based)Rubber
HardnessA40-80 AdjustableAdjustable
Encapsulation bondingMatureNeeds to be handled
reboundAdjustableGood
Moldinginjection moldingVulcanization
CostLowMedium-high
BatchStableHighly volatile

Table reading: Rubber has good rebound but involves many processes and batch variations; TPE is efficient, with stable batches and mature overmolding — for mass production, TPE is the mainstream.

High-elasticity scenarios (frequent stretching), high rebound TPE formulation — choose according to function.

Three critical issues: hardness fluctuation, delamination, blistering

Pitfall 1: Hardness drift. Hardness fluctuates between batches—batch reports are more valuable than the grade name.

Pitfall 2: Coating delamination. Coated parts delaminate after long-term use—perform peel strength testing and include it in the acceptance criteria.

Pitfall three: Resistance to media leakage testing. Formulating brake fluid expansion—resistance to media data must be tested.

Check these three accounts upon arrival: hardness, peel, and media resistance

Three questions: According to what standard is the hardness, what is the peeling strength, and under what conditions is it resistant to media? One test: sample according to actual assembly—three questions and one test, the supplier's details are clear.

Encapsulation verification must be tested in practice: peeling and bending. In practical tests, the hardest is delamination once, which leads to a lot of rework.

Making sample retention a habit: retain samples for each batch and re-test hardness and adhesion by batch. When changing materials for a batch, compare first before scaling up — stable batches lead to fewer customer complaints.

Overmolded window locked: mold temperature, material temperature, holding pressure

Three-parameter lock for overmolding window: mold temperature, material temperature, holding pressure — the three parameters ensure the overmold is firm, while delamination often occurs when the temperature window is not correctly identified.

Mold temperature affects bonding: If the mold temperature is too low, bonding is not strong. Adjust according to the recommended value in the formula.

Material temperature affects flow: if the material temperature is too high, it will degrade and discolor, so control it according to the grade's recommended window.

Holding pressure affects density: insufficient holding pressure causes surface sink marks, adjusted according to part shape.

Coating parametersWindowInfluence
Mold temperatureAccording to the recipeBonding strength
Material temperatureBy brandFlow/Degradation
Pressure holdingBy itemDensity
CoolingBy wall thicknessDimensional stability

Table 2 reading: Overmolded four parameters, lock it to be stable. Delamination is mostly due to not finding the right temperature window.

Material specificationsRequirementExplanation
HardnessA50-70Tactile assembly
Peel strengthAccording to the standardTightly coated with rubber
rebound≥50%Functional component
Media-resistantAccording to the actual situationDoes not expand

Table 3 reading: The four indicators are the health check chart of the dust cover. Hardness is 10 degrees, and the hand feel is one grade worse.

Different interference fits require different hardness levels. Read the data according to the actual assembly — hardness A50-70, rebound ≥50%. Only when assembled correctly will the hardness not be off.

Supplier of brake dust covers, ask four questions: what system, what is the peel strength, what standard is the hardness based on, and will changes be notified. After asking these four questions, the details are clear — asking the right questions is more useful than haggling over the price.

During proofing, simulate the continuous production of the encapsulation once: temperature accumulates, and the window will drift.

After continuous operation, single pieces are more stable — simulating continuously is more comprehensive than only looking at single pieces.

Loading and running brake tests, considering high temperature and friction together — the actual vehicle brakes are only released after passing batch tests. The cumulative temperature window during continuous production will drift, so continuous conditions are first simulated.

Cologne Customer Case: Bulk Delamination of Coating, Adjusting Parameters to Replicate Benchmark

At a car parts factory in Ma'anshan, brake dust cover overmolded parts were delaminating in large quantities, and the rework rate remained high. Kolon collaborated to adjust the injection molding parameters (mold temperature/material temperature/holding pressure), restoring the tactile rebound to match the sample, and the delamination problem disappeared. The parameter window was locked, stopping delamination at its source—overmolding is the art of temperature.

Summary

The material selection for car brake dust shields is an exercise in judgment; the more you practice, the more accurate you naturally become. Colleagues who need this are also welcome to share it with them.

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