USB线护套用什么材料?护套阻燃,V0是及格线

应用领域 发布时间: 2026-09-16 3467 阅读

The USB cable's connector cracked after six months of plugging and unplugging, and it works intermittently when the connection is poor. The USB cable's sheath wasn't chosen correctly for fire resistance and flexibility, so when the cable fails, the device stops working as well.

After six months of plugging and unplugging, the interface cracked and contact became poor.

The USB cable sheath is a 'component that is powered while bending': flame-retardant, flexible, and wear-resistant. The material needs to be flame-retardant, flexible, and wear-resistant — conclusion first: for USB cable sheaths, flame-retardant SEBS-based TPE is mainstream; for high-power cables, flame-retardant TPEE is preferred.

The biggest pit of USB cable sheaths: the sheath is flame-retardant, and V0 is the passing line. If it doesn't pass V0, the sheath is not safe—V0 is the passing line for the sheath.

The USB cable sheath is a safety component: cracking or being non-flame-retardant are problems. Choosing the right material ensures device stability—safety components, don't skimp on material costs.

Why is TPE used for USB covers

Reasons for using TPE for USB cable sheaths: can be made flame-retardant, can be made flexible, can be made abrasion-resistant, high efficiency—these four together make it suitable for sheaths.

Flame retardancy is key: electrical safety. Include flame retardancy testing in the acceptance criteria—if it doesn't pass V0, it's a problem.

Flexibility cannot be skipped: repeatedly bend. Include bending tests in the acceptance—if it cracks, it’s a problem.

Power on, bend, pull, three checkpoints

Powered condition: safe when powered. Flame retardant data must be tested — if V0 fails, then it is a problem.

Bending conditions: repeated bending. Flexibility data must be tested—cracking is a problem.

Tensile condition: used for pulling. Strength data must be verified—breaking, that's the issue.

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

DimensionSEBS-based TPETPEE
Flame retardantCan doGood
FlexibleGoodGood
Wear-resistantCan doStrong
CostmiddleMedium-high
Temperature resistantCan doTall
PurposeRegularHigh power

Table reading: TPEE has good flame retardancy and heat resistance but is expensive; SEBS has a high cost-performance ratio — conventional USB cables use SEBS, high-power ones use TPEE.

Choose by power: high power TPEE, standard SEBS base.

USB sheath inspection: V0 is the passing line

LevelTestJudgment
V0Vertical burningQualified
V1Vertical burningFollow
V2Vertical burningBe alert
HBhorizontal burningMaterial change

Table reading method: Go through the hot wire step by step from V2 to V0, and don't be vague about the rating of electrical components—when the flame self-extinguishes, the data is more reliable than the feel.

V0 is the pass line for the casing.

Flame retardant degradation, three pitfalls

Pitfall 1: Flame retardant degradation. To save materials, the V0 rating is downgraded to a standard grade, increasing the fire risk—next to the charging port, the protective cover's flame retardant level must not be compromised.

Pitfall 2: Flexibility overlooked. Cracking—bend test is a must.

Pitfall 3: False flame retardant claims. Non-compliant — flame retardant should be accepted based on actual tests.

Check flame resistance before choosing a USB cover

Three questions: What is the flame retardant rating, how many times can it be bent, and what is the power? One test: Actual measurement in use — three questions and one test make the supplier's details clear.

Flame retardant verification must come first: According to safety regulations, determine the glow-wire and oxygen index, and the report must be traceable to the batch. Test flame retardancy first, then discuss the price — V0 is the passing line for the sheath.

Making sample retention a habit: retain samples for each batch, and retest flame retardancy and flexibility by batch. When changing materials between batches, compare first before increasing production — stable batches result in fewer customer complaints.

USB Cable Sheath: Don't Panic if Something Goes Wrong, Match It Correctly

PhenomenonReasonCountermeasure
Not flame-retardantInsufficient flame retardancyChange flame retardant
CrackingInsufficient flexibilitySwitch to high-flexibility material
tear offInsufficient strengthSwitch to high-strength material
YellowedInsufficient weather resistanceReplace with weather-resistant material
Batch DriftFormula fluctuationLock window

The data cable sheath's flame retardancy meets the UL94 V-0 standard, and the hot wire test at 750℃ is the passing line. Flame retardancy is not a selling point but a baseline; for parts used for charging and data transfer, if they cannot pass these two tests, do not list them.

The USB cable cracked at the connector after some use; it wasn't pulled, but stress was concentrated at the bend at the base. The cable outlet needs stress relief, and the bending radius should be sufficient, otherwise it will inevitably break at the base after ten thousand bends.

The data cable inspection is based on four items: flame retardant rating, number of bends, plug and pull at the base, and flexibility at low temperature. The V-0 report is issued with each batch, it does not crack after ten thousand bends, and the connector fit gaps are checked to ensure they are neither loose nor detached.

PVC jackets are cheap but rely on added halogens for flame retardancy and have an odor, while TPE is halogen-free, low-smoke, and safer. When carrying cables in your pocket every day, consider the combined factors of low odor and flame retardancy, not just the unit price.

Replace with halogen-free flame-retardant TPE, V-0 with 750℃ glow-wire test passed twice, roots do not crack after ten thousand bends. Data cables pass certification and bending tests, and both processes are approved together.

For USB cables, frequent plugging and unplugging makes the root the most likely to break. TPE selected with Shore A 85 upper and lower, with a flexible formula, can withstand it. To endure tens of thousands of plug-ins, rely on a thicker and softer section at the root; leave enough bending radius.

If it is less than 4 times the wire diameter, it must be flexible; if glue opens or it cracks, it must be reworked. Stress relief should be done at the junction between the wire insulation and the terminal.

The surface of the wire insulation should be dry and non-sticky; residue control is the source of daily complaints. If black parts are left for two weeks and a layer of white frost appears that cannot be wiped off, it is due to over-oiling or poor compatibility.

Switch to a low-precipitation formula, after ninety days of sample testing there is no white bloom on the surface, recheck bending and appearance for each batch, and when changing materials for a batch, first compare with a small batch.

USB cable finishing inspection: test the plug/unplug part, surface frost, and bending for each batch. Keep samples from each batch to test the bending of the plug end and the surface; after ninety days, the samples show no frost.

For batch material changes, first do a small batch plug-in and plug-out comparison; do not glue, then ship.

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

A cable factory in Foshan experienced batch delamination of USB cable sheath overmolding, resulting in a persistently high rework rate. Cologne assisted in adjusting the injection molding parameters (mold temperature/material temperature/holding pressure), eliminating the delamination, and restoring the tactile rebound to match the sample. With the parameter window locked, delamination is prevented from the source—overmolding issues are first addressed by checking parameters, then the substrate.

Summary

For USB cable sheath selection, test flame retardancy first, then verify flexibility; a sheath with V0 flame retardancy is the baseline standard, V0 is the baseline standard.

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