工业防尘套用什么TPE?回弹差10%,脚感两重天

应用领域 发布时间: 2026-09-16 4402 阅读

The dust cover cracks after being stretched ten thousand times, and dust gets into the bearing causing it to seize. If the industrial dust cover's rebound and temperature resistance are not chosen correctly, the dust protection is just for show.

It cracks after being stretched ten thousand times, and dust jams the bearings.

Industrial dust-proof covers are 'dust-proof telescopic components': resilient, temperature-resistant, and stretchable. The materials need to be resilient, temperature-resistant, and stretchable — conclusion first: industrial dust-proof covers mainly use SEBS-based TPE; for high-temperature dust-proof applications, TPV is preferred.

The biggest drawback of industrial dust covers: 10% less rebound, two completely different experiences in foot feel. With 10% less rebound, the hand feel seems like two different things — rebound is the dividing line for dust covers.

Industrial dust-proof covers are functional parts: poor rebound and cracking are both problems. Only by choosing the right material can the equipment be stable—functional parts, don't skimp on material costs.

Why use TPE for dust covers

Reasons for using TPE for industrial dust covers: it can rebound, it can withstand temperature, it can stretch, and it is efficient—together, these four make it suitable for dust covers.

Rebound is key: telescopic rebound. Incorporate rebound testing into acceptance — poor rebound indicates a problem.

Temperature resistance cannot be compromised: environmental temperature. Include temperature resistance testing in acceptance — deformation indicates a problem.

Expandable temperature medium, three barriers

Telescopic working condition: reciprocating telescopic. Rebound data needs to be checked—rebound difference is the problem.

Temperature working condition: ambient temperature. Temperature resistance data must be tested — deformation is the problem.

Medium conditions: Contacting medium. Resistance data must be verified—the swelling, that's the problem.

SEBS base or TPV? Dust cover comparison table

DimensionSEBS baseTPV
reboundCan doGood
Temperature resistantCan doGood
telescopicGoodGood
CostmiddleMedium-high
Media-resistantmiddleGood
PurposeRegularHigh temperature

Table interpretation: TPV has good temperature and media resistance but is expensive; SEBS has a high cost-performance ratio — conventional dust covers use SEBS, high-temperature ones use TPV.

Select by temperature: high-temperature TPV, conventional SEBS base.

Dust cover inspection: If the rebound is off by a bit, check it first

Rebound ratehand feelJudgment
90%pluckedQualified
85%middleFollow
80%softBe alert
75%collapseMaterial change

Table reading: Test the rebound step by step, the feel feels like two different kinds——slightly lower recovery rate when stretched, becomes loose after several stretches.

Rebound is the watershed of the dust cover.

Only focusing on the price, three pitfalls of rebound leak

Pitfall 1: Only focus on the price. If the rebound can't keep up, the dust cover will not stick to the rod after ten extensions—rebound must be tested.

Pitfall 2: Missed temperature resistance test. Deformation — temperature resistance test, must be checked.

Pitfall three: Overstated rebound. Subsidence — Rebound should be measured and accepted based on actual measurement.

When choosing dust-proof cover material, first look at the rebound

Three questions: What is the rebound rate, what is the temperature resistance, and what is the medium? One verification: actual operating conditions measurement—three questions and one verification make the supplier's details clear.

Rebound verification must come first: measure the recovery rate after repeated stretching. Measure the rebound first, then talk about the price—rebound is the watershed of dust covers.

Making sample retention a habit: retain samples from each batch, and retest rebound and temperature resistance by batch. When changing materials between batches, compare first before scaling up — stable batches lead to fewer customer complaints.

Dust cover: If there's a problem, don't disassemble it randomly, check this chart first

PhenomenonReasonCountermeasure
Poor reboundInsufficient dosageReplace with high-rebound material
TransformationInsufficient temperature resistanceChange to heat-resistant material
SwellingResistant to weak mediaChange to a more resistant material
CrackingInsufficient fatigueReplace with fatigue-resistant material
Batch DriftFormula fluctuationLock window

Mainstream dust cover SEBS base TPE, Shore A 50-65, 10% difference in rebound rate, double the tactile feel. Rebound relies on cross-linked systems; excessive oil rebound and will fall off—inspect by rebound rate, don't take it for granted.

SEBS soft and stretchable, TPV is temperature-resistant and can withstand high temperatures. Room temperature telescopic dustproof SEBS, TPV in high-temperature environments—select according to operating temperature.

Dust cover coating delamination, first check mold temperature and material temperature parameter window, don't blame glue. Substrate polarity doesn't match, parameters aren't locked; delamination is a parameter issue—compare with production and adjustment for material replacement.

Dust cover acceptance: assembly sealing gap, low-temperature bending, and resistance to medium immersion. Inner diameter is measured by shaft diameter, and when exposed to oil contamination, perform swelling tests—if one item fails, no exemption is allowed.

Follow production and adjustment parameters to eliminate delamination and rebound by reproducing the sample with the touch, and reduce the rework rate of dust covers. Each batch is retained for retaining and rebounding, then sealed; batch changes are compared before scaling up.

Select dust cover by operating temperature; SEBS is extendable at room temperature and TPV at high temperature. SEBS is soft and elastic with good elasticity; TPV is temperature-resistant and can withstand high temperatures. For coating delamination, first check the mold temperature and material temperature parameter window. Don't blame glue;

If the substrate polarity is unmatched, delamination is a parameter that is active.

Inner diameter is measured by shaft diameter, and perform swelling tests when exposed to oil contamination. Assembly sealing gap and low-temperature bending pass together, followed by production and adjustment reference material changes and effectiveness; each batch retained for rebound testing and sealing.

Inner diameter measured by shaft diameter, contact with oil and dirt for swelling test. Each batch retained sample tested for rebound and sealing; for overmold delamination, first check mold temperature and material temperature window, compare with production and adjustment for material change effectiveness.

Dust cover rubber peeling first check parameter window, don't blame glue. Room temperature SEBS high-temperature TPV selected by temperature, inner diameter based on shaft diameter core contact with oil for swelling, followed production adjustment reference material change for effectiveness,

retained samples per batch for rebound and sealing.

Cologne customer case: Batch delamination of overmolding, replicated by production comparison

Foshan industrial equipment factory, industrial dust cover coated parts detached in batches, with a high rework rate. Cologne cooperated with on-site production debugging until yield stabilized, delamination eliminated, and tactile rebound reproduced with benchmark samples. Production follow-up debugging locked delamination before mass production—for overmolding issues, first check the parameter window.

Summary

Industrial dust cover selection: rebound tested first, temperature resistance then tested; a 10% difference in rebound means a twofold difference in foot feel, and rebound is the watershed.

A PA6 pellet leaves the factory as just a particle.

It becomes gears, clips, connector shells, battery end plates, with a whole set of solutions in between—how much reinforcement, whether flame retardant is added, what temperature resistance level is achieved, and whether the dimensions are stable

Ningbo Cologne New Materials Co., Ltd. specializes in the intermediate segment. Modified thermoplastic elastomers, modified nylons PA6 / PA66 / PA46 / PA11 / PA12 / PA6T / PA9T and nylon alloys, modified PPO / PPS, as well as nylon resins from major chemical giants, subsidiary brand materials, and bulk materials in stock.

这台机器上的件,说下工况我帮你看看

报个件、说清温度和要过的认证,当天回你两三个能打的方案。电话微信同号,找到人就能聊。

打电话 18969817163发邮件询价
WA