汽车空调风管用什么TPE?认证不齐,出不了口

应用领域 发布时间: 2026-09-16 1020 阅读

As soon as the air conditioner duct blows hot air, it precipitates, and the air outlet emits a strange smell. If the low-odor option is not chosen correctly, the duct itself becomes a source of pollution.

One-sentence conclusion: For air conditioning ducts, low odor is a strict requirement.

The air conditioner vents blow directly at the passengers, and the smell is the first red flag.

TPE for air ducts: low odor, temperature resistance, and extrudability are three hard requirements — here’s the conclusion first: for the passenger cabin air conditioning ducts, use low-odor SEBS-based TPE; for sections with strict temperature requirements (near the engine compartment),

TPV or composite structures are preferred.

Most complaints about air conditioning ducts are about the smell: the air blowing out has a plastic odor, passengers complain, and car companies issue recalls. The odor level (according to the car company's standards) is written into the inspection acceptance—if the smell doesn't pass, the whole batch is returned.

Incomplete certification, can't be exported: Export air conditioner ducts need to pass material certification (such as EU and North American standards). Certification takes a long time, plan in advance—don't wait until orders come to complete the certification.

Why TPE: low odor and moldable

Reasons for using TPE in air conditioning ducts: low-odor formula, high extrusion efficiency, adequate temperature resistance, recyclable—combined, these four make it suitable for air conditioning ducts.

Low odor is not masked by fragrance; it relies on source resin plus degassing — the odor is determined by three factors: oil grade, additives, and degassing process. VOC and odor levels are tested according to automaker standards.

Temperature resistance depends on the location: the air conditioning ducts near the cabin section have high temperatures. Choose materials by section or composite—one material per section, don't use a one-size-fits-all approach.

Operating Condition Breakdown: Airflow, Temperature, Condensation

Airflow conditions: long-term blowing, the material surface must be stable — precipitates can enter the cabin with the airflow, and precipitation tests should not be missed.

Temperature conditions: In summer, the temperature of the cooling pipeline is low, while the temperature near the engine compartment section is high. Check both hot and cold ends — condensation water remains for a long time, so water resistance needs to be tested.

Dew Condensation Condition: The refrigeration section experiences year-round dew condensation, with long-term exposure to water vapor. Hydrolysis-resistant and mold-free—the material must not collapse in water vapor environments.

Comparison Table: TPE vs PP for Air Conditioning Ducts

DimensionTPEPP
smellLow odor, can be doneRequires additive control
SoftnessGoodhard
Sealing performanceGood (flexible)Requires a sealed structure
Temperature resistant100℃100℃
CostMedium-highLow
RecycleRecyclableRecyclable

Table reading: PP is cheap but hard, and sealing requires structural reinforcement; TPE has good elastic sealing and controllable odor — for levels requiring sealing and low odor, TPE has an advantage.

Duct structures are often composite: a PP frame with TPE sealing. Composite materials, each used for their strengths—don’t expect one material to solve all problems.

Common pitfalls: outdated odor reports and poor adhesion

Pitfall 1: Outdated odor report. Once the formula changes, the odor level changes too — the report must be updated in sync with the formula; don't use an old report to show off.

Pitfall 2: Composite air duct delamination is not secure. The PP skeleton and TPE sealing layer have insufficient adhesion, leading to delamination over time — perform peel strength tests (according to standards) and include the results in the inspection acceptance.

Pitfall Three: Ignoring deposition. Deposits on the inner wall of the air duct, white powder blown into the cabin — deposition testing is as important as odor.

Three records for air conditioning duct deliveries, odor level must be tested

Three questions: What standard is used for the odor, how much peeling force, and whether the certification is complete. One test: Verify by blowing air according to the actual airflow—three questions and one test make the supplier's details clear.

Odor testing must follow the automaker's standards: different automakers have different standards (such as odor levels 1-6). Testing according to the customer's standards—only when the standards are aligned is the report valid.

Making sample retention a habit: Retain samples of each batch, and re-test the odor and separation by batch. When changing material for a batch, compare first before scaling up — stable batches lead to fewer customer complaints.

Extended judgment: For the air conditioning duct precipitation test, don't just measure the odor

White powder deposits on the inner wall of the air duct, and when blown into the cabin with the wind, it leads to complaints — high-temperature oven deposition testing is just as important as odor testing, so don't just test for odor and neglect deposition.

Precipitation testing should follow the airflow scenario: precipitation occurs on the inner wall of the duct and is blown out with the wind. Measurements should be taken according to the actual duct conditions—only when the scenario aligns will the data be reliable.

If the air duct is leaking air or odor, first check the clamps and seals. Don't blame the material first—if the joints don't fit properly, even the best seal will leak. The structure is an invisible source of leaks.

Anti-condensation gel needs to be tested separately: condensation occurs year-round in the refrigeration section. Hydrolysis-resistant and mold-proof — in condensation scenarios, don’t miss it.

The cost account of the air conditioning ducts, calculate the general ledger: unit price, odor complaints, rework, recall. Odor complaints damage the brand—calculate the general ledger clearly, expensive materials are not costly.

The supplier asks four questions: What system, according to what standard is the odor, are all certifications complete, and will there be notification of changes. After these four questions, the details are clear—asking the right questions is more useful than squeezing the price.

Design the sealing structure of the air conditioning duct together

The sealing structure of the air conditioning duct should be designed together: the duct and its joints, and the duct's clamping cooperation. Only when the structures fit together properly will the seal be stable—both the materials and the structures need to be correct.

Traceability of air conditioning ducts, written into the contract

White powder appears on the air ducts; first check the batch for traceability—batch number, raw materials, and production date should be included in the contract. Without the three certificates, exports will be blocked.

The compliance of air conditioning ducts is checked according to the three certificates: odor report, certification documents, and batch data. Only when all three are complete can exports proceed smoothly.

Odor Level (1-6)ExplanationApplication
Level 1-2Almost tastelesshigh-end models
Level 3Slight, acceptablemainstream models
Level 4ObviousLow-end/Non-interior
Level 5-6StrongInterior not applicable

Table 2 Reading: The odor level is a strict criterion for automaker acceptance. If the level doesn't match, the entire batch is returned — first align the level, then discuss the price.

Duct sectionTemperatureMaterial Recommendation
air outlet sectionroom temperatureSEBS low odor
Middle section60-80℃SEBS/TPO
cabin transition section100℃TPV
Joint sealing sectionAccording to the environmentFlexible sealing system

Table 3 Reading: Select materials for each section of the duct, one material per section. Don’t expect one material to work for the entire duct.

Cologne Customer Case: Finished Product Odor Returned, Substrate Matching Yield 98%

A car parts factory in Taizhou had finished air conditioning ducts returned by downstream clients due to odor, with goods piled up in the warehouse. Cologne assisted in rematching the rubber-coated substrate and processing temperature, eliminating the odor, with mass production yield stabilizing at 98%. The odor was a matching issue between the substrate and temperature—once matched correctly, the smell naturally met the standard.

Summary

If you are stuck on selecting air conditioning ducts for cars, send over the working conditions, and we will review it; save it for reference.

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