汽车线束护套用什么弹性体?线缆耐低温,冬天弯不断

应用领域 发布时间: 2026-09-12 3075 阅读

The car wiring harness sheath cracks as soon as it gets cold in winter, and warning lights appear in the cabin. If the car wiring harness sheath is not chosen for low-temperature resistance and flame retardancy, it becomes a timed hidden danger in the car.

Cracks appear as soon as it freezes, and the warning light comes on in the car cabin

Automotive wiring harness sheaths are 'low-temperature resistant and flame-retardant components': low-temperature resistant, flame-retardant, and wear-resistant. The material must be low-temperature resistant, flame-retardant, and wear-resistant—the conclusion first: using flame-retardant SEBS-based TPE for automotive wiring harness sheaths is mainstream;

Engine compartment, flame-retardant TPEE preferred.

The biggest pitfall of automotive wiring harness sheaths: the cables are resistant to low temperatures and won't bend in winter. When tested at low temperatures, the sheath shows its true quality—resistance to low temperatures is the sheath's winter challenge.

Car wiring harness sheaths are safety components: cracking or not being flame-retardant are both problems. Choosing the right material ensures the whole vehicle is stable—safety components, don't skimp on material costs.

Why use TPE for automotive wiring harness sheaths

Reasons for using TPE for automotive wiring harness sheaths: can be made to withstand low temperatures, can be made flame-retardant, can be made wear-resistant, high efficiency — together, these four make it suitable for sheaths.

Low-temperature resistance is key: bending in winter. Include low-temperature testing in the acceptance criteria—cracking is a problem.

Fire retardancy cannot be compromised: vehicle safety. Include fire retardancy testing in the acceptance process—if V0 is not passed, it is a problem.

Low temperature, flame-retardant, wear-resistant, three barriers

Low-temperature conditions: used in winter. Low-temperature resistance data must be tested—cracking is the problem.

Flame-retardant conditions: overall vehicle safety. Flame-retardant data must be verified—if it doesn't pass V0, then it's a problem.

Wear-resistant condition: wiring friction. Wear-resistant data must be tested—if it wears through, it's a problem.

Flame-retardant SEBS base or flame-retardant TPEE? A table

DimensionSEBS-based TPETPEE
Low temperature resistantCan be doneGood
Flame retardantCan doGood
Wear-resistantCan doStrong
CostmiddleMedium-high
Temperature resistantCan be doneTall
PurposeCar bodyEngine compartment

Table reading: TPEE has good low-temperature and heat resistance but is expensive; SEBS has a high cost-performance ratio — car body covers are SEBS-based, engine compartments are TPEE.

Select by location: Engine compartment TPEE, car body SEBS base.

Vehicle wiring harness inspection: It only counts as passing in winter if it doesn't bend.

TemperatureStateJudgment
-20℃UnbendableQualified
-30℃UnbendableQualified
-40℃MicrocrackFollow
-45℃CrackingMaterial change

Table reading: The exterior parts of the cabin can be bent at low temperatures according to basement and nighttime temperatures without cracking — they do not crack when bent below zero, so the wiring harness can only be installed in the northern regions.

Cold resistance is the winter key of the sheath.

Only tested at room temperature, the three pits are not flame retardant

Pitfall 1: Only testing at room temperature. Soft at room temperature, turns white with a snap on a cold vehicle—low-temperature performance hasn't caught up. Before winter, installed parts can't avoid low-temperature testing.

Pitfall 2: Missing flame-retardant test. Failing V0—the flame-retardant test must be conducted.

Pitfall 3: Overstated wear resistance. Abrasion—wear resistance should be accepted based on actual testing.

Vehicle wiring harness should be tested for low-temperature resistance first

Three questions: What is the minimum target temperature, what is the fire-retardant rating, and how should the wiring be laid out? One test: Measure under actual working conditions — with these three questions and one test, the supplier's details are clear.

Low-temperature verification must be done first: according to the lowest winter temperature at the installation site, determine the embrittlement temperature, and only release it if it doesn't crack when bent. Measure the low temperature first, then talk about the price—low-temperature resistance is the winter key for the sheath.

Making sample retention a habit: retain samples for each batch and re-test low-temperature flame retardancy batch by batch. When changing materials between batches, compare first before scaling up — stable batches result in fewer customer complaints.

Car wiring harness sheath: When problems occur, troubleshoot step by step, clear at a glance

PhenomenonReasonCountermeasure
Low-temperature crackingInsufficient cold resistanceSwitch to cold-resistant material
Not flame retardantInsufficient flame retardancyChange flame retardant
worn outInsufficient wear resistanceReplace wear-resistant material
stickyAdditive migrationSwitch to low precipitation material
Batch DriftFormula fluctuationLock window

Automotive wiring harness sheaths comply with automotive standards for low-temperature resistance, not cracking when bent at -40°C, and are oil-resistant without swelling. The conditions in the engine compartment and chassis are more demanding than consumer electronics, with low-temperature performance and oil resistance being two hard requirements.

The wire harness sheath becomes sticky and oozes oil after one year in the engine compartment; it is not dirt, but because the oil-resistant system was not applied. For parts that come into contact with engine oil and grease, you need to choose an oil-resistant material with suitable polarity; using general-purpose materials will always cause swelling.

Automotive wiring harness acceptance four-piece set: low-temperature bending, oil immersion resistance, aging resistance, flame retardant. Reports are verified according to the vehicle series standards. When switching suppliers, first test a small batch of 500 pieces through the three checks before increasing the volume.

Rubber sheaths are oil-resistant and heat-resistant but need vulcanization and are heavy, while TPE sheaths are light, can be injection molded, and save processing steps. For the large quantities of car door wires and chassis wires, weight reduction and vulcanization-free are both cost considerations.

Using SEBS/TPV-based material that meets automotive standards for oil and low-temperature resistance, does not crack at -40°C, and does not swell when soaked in engine oil. The wiring harness has passed the approval of the whole vehicle manufacturer, and the annual renewal orders do not change the material.

The automotive wiring harness sheathing conduit is exposed to sunlight again, and weather resistance and oil resistance are essential for survival. TPE must be selected with an anti-aging formula. Near the engine compartment, it is exposed to heat and oil for long periods, and ordinary SEBS-based materials easily age and become sticky.

Weather-resistant formula with anti-oxidation and anti-UV properties, does not become sticky or crack for ten years, slides through pipes smoothly, and does not whiten when bent.

The acceptance of wire harness sheaths is not only about bending resistance, but also about rebound and surface condition after high-temperature baking. A temperature difference within 8°C indicates a safe-to-touch wire; after high-temperature aging, hardness drift is measured.

A drift of more than ±3A means two batches of goods, and the customer can tell.

Automotive wiring harness sheath final inspection: High-temperature aging, hardness drift, and oil resistance are checked with each batch. For each batch, samples are tested for rebound and hardness after oven treatment, with drift not exceeding ±3A;

For batch material change, first do a small batch pipe trial assembly; only increase the quantity if there is no sticking or jamming.

Cologne Customer Case: Flame Retardant Failed Inspection, Export Blocked, Reformulated to Pass Inspection

A cable factory in Chengdu had trouble with the flame retardancy of automotive wire harness sheaths, failing inspections and facing export blockage. Cologne cooperated in readjusting the formula (oil/additive/filler ratio), and the flame retardancy passed the inspection, allowing smooth export. When the formula is readjusted, passing the flame retardancy stage is about the formula — for flame retardancy issues, start by looking at the additive system.

Summary

For the selection of automotive wire harness sheaths, test for low temperature first, then for flame retardancy. The cable should not break when bent in low temperatures; low-temperature resistance is the winter checkpoint.

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