医用球囊用什么TPU?回弹仪一测,掺料现原形

应用领域 发布时间: 2026-09-12 4536 阅读

Balloons expand when entering blood vessels, causing uneven wall thickness and rupture. If medical balloon additives are not tested, internal problems are a big problem.

Conclusion first: medical balloons and rebound expansion should be tied together

Medical balloons are "components that enter blood vessels": controllable expansion, rebound, medical grade.

Material must have good rebound, stable expansion, medical grade—conclusion first: medical-grade TPU for medical balloons is mainstream; For those with high requirements, custom grades are prioritized.

The biggest pitfall of medical balloons: once the rebound curve is abnormal, you should suspect rebound material has been added. Expansion must be controllable—the rebound device is the gatekeeper for material inspection.

Medical balloons are safety components: if expansion goes uncontrolled, it's an accident. If materials are chosen correctly, balloons are safe—safety parts, don't skimp on material costs.

TPU control swelling: good rebound, controllable expansion

Reasons for using TPU for medical balloons: good rebound, controllable expansion, high strength, medical grade—combined, suitable for balloons.

Rebound is the core: balloon enters blood vessels, expansion and rebound must be linear. Rebound data is written into acceptance — rebound is the measure of the balloon.

Expansion cannot be skimped: expansion must be controllable. Expansion test (by pressure) entered acceptance — expansion out of control is an accident.

Entering blood vessels to support it: expansion, rebound, sterilization

Expansion condition: pressure pressure to inflate. Expansion data must be tested—loss of control means an accident.

Rebound condition: pressure relief and rebound. Rebound data must be tested—if it doesn't rebound, that's a problem.

Medical condition: contact with blood. Biocompatibility data must be tested—stimulation is the problem.

TPU or latex: Check if the balloon cracks

DimensionTPULatex
ReboundGoodGood
SwellingControllableLarge fluctuations
StrengthHighMedium
Medical GradeOperableProtein Controversy
BatchStableLarge Fluctuation
CostMedium-HighMedium

Table Reading: Latex is cheap but has protein disputes and batch fluctuations; TPU expansion is controllable and batch stability—TPU is the mainstream for medical balloons

For people with protein allergies, TPU is a safe choice.

Rebound Filler Inspection Form: Wall Thickness Uniformity Curve

ProjectMethodAbnormal Prompt
Rebound rateRebound TesterSlightly low, suspected adulteration
DensityDensity cupCannot match, suspected adulteration
HardnessHardness testerSuspected Adulteration in Drifting
ExpansionStress testUneven suspected adulteration

Table reading: After checking the four items—rebound, expansion, wall thickness, and additive—problematic materials will reveal themselves.

There are four steps in material inspection, and not a single step can be skipped.

Two traps: adulteration fraud and fake expansion

Pitfall 1: Adulteration. A low rebound rate and non-linear expansion suggest suspecting adulteration—first, check the raw materials.

Pitfall 2: Exaggerated false labeling. The report says it is controllable, but in reality it is out of control — expansion should be accepted based on actual measurements.

Pitfall 3: False medical claims. The label says it's medical-grade, but the certification can't be found — check the certification number first.

Three inspection questions: wall thickness, pressure curve, batch

Three questions: What is the rebound rate, what pressure is the expansion under, and what is the medical certification number. One test: actual measured expansion — three questions and one test, the supplier's details are clear.

Material inspection must come first: first measure the rebound and expansion curves, then discuss the price—rebound is the standard for the balloon.

Making sample retention a habit: Retain samples of each batch and retest rebound expansion by batch. When changing materials for a batch, compare first before scaling up—the more stable the batch, the fewer the customer complaints.

The balloon wall is extremely thin, and the wall thickness uniformity of TPU is controlled within ±10% — if uneven, the expansion will be uneven and prone to rupture. The inflation pressure curve should be smooth; a steep curve carries a high risk.

Balloon selection should be checked together with uniform wall thickness and pressure curve.

Don't blame the process first for balloon rupture—the melt strength of the material is insufficient, and thin-wall processing becomes uneven. If the melt index doesn't match, other resins may have been mixed in. The root of the rupture lies in the stability of material processing, not in the mold.

When selecting materials, pay attention to the processing stability of the material—test melt strength, melt index, and batch consistency together. Once the sterilization method is determined, conduct performance tests after sterilization.

After checking the three things, there is no place for the mixed material to hide.

TPU balloons have high strength and controllable thin walls; TPE is too soft to withstand expansion pressure—the balloon requires burst strength, and TPU is the appropriate choice. Balloons are not suitable for TPE; the hardness and strength of TPU are a match.

The balloon inflates unevenly, with local bulging—uneven wall thickness, and the pressure curve will burst abruptly. During inspection, check the inflation pressure curve; if the curve is uneven, it is directly judged as defective. When the balloon enters the blood vessel, the inflation must be controllable.

Table of Common Problems and Countermeasures of Medical Balloons

PhenomenonReasonCountermeasure
Out of control expansionThe pressure curve is steepChange controllable materials
Poor reboundAdditiveMaterial inspection three-piece set
RuptureUneven wall thicknessImprove processing stability
Not flame retardantInsufficient dosageReformulate the recipe
Sterilization deformationNot resistant to sterilizationReplace the sterilization material

Medical balloon TPU tensile strength is accepted at 40MPa or above, and burst pressure is measured at twice the nominal value. Balloon wall thickness tolerance is ±0.02mm; if too thin it will burst, if too thick it cannot expand—the uniformity of wall thickness is more critical than the strength value.

The uniformity of balloon wall thickness is accepted if the deviation at various points of the same batch is ≤0.01mm. If the wall thickness is uneven, expansion will be thin first and then thick, and local excessive expansion will lead to rupture — the wall thickness distribution is more critical than the average wall thickness.

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

A medical device factory in Shanghai had its medical balloons fail the fire retardant test, blocking exports. Cologne helped readjust the formula (oil/additives/filler ratio), and the fire retardant level passed the inspection, allowing smooth export. The formula was readjusted, and the fire retardant test was passed in one go—data complete, then export goes smoothly.

Summary

When selecting medical balloons, first inspect the materials, then measure after expansion. Test with a rebound tester, and any added materials will show their true nature—don’t wait until problems occur inside the body.

The hardest part about plastic parts is not making them, but keeping them the same after three or five years.

Water absorption, aging, fatigue, creep—these words can't be seen on the blueprints, but they can all be seen on after-sales reports.

Ningbo Cologne New Materials Co., Ltd. produces modified thermoplastic elastomers, modified nylons (PA6 / PA66 / PA46 / PA11 / PA12 / PA6T / PA9T and nylon alloys), modified PPO / PPS, as well as stock of nylon resins, secondary materials, and bulk materials from major chemical giants.

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