SEBS基TPE怎么选?包PP之王,耐候耐温都赢

塑料知识科普 发布时间: 2026-09-13 2915 阅读

The overmolded part was changed to a different SEBS grade, and the edges tear open easily. Choosing the SEBS grade went wrong, mostly because the grade and the substrate didn't match.

Choosing SEBS, what's really difficult about it? First, let's look at the crash scene

SEBS-based TPE is the most commonly used TPE in the industry, but it is also the one that is easiest to get 'dazzled' by——there are dozens of grades and a bunch of parameters, they all look the same, but the final products are completely different.

The three most common accident scenes:

Scene 1: The customer said 'make it softer,' so the supplier switched to a softer grade. As a result, the coated rubber wouldn't stick well and peeled off easily—the softness and adhesion weren't aligned.

Scene 2: The feel of the sample parts is correct, but after three months of mass production, they become sticky and oily — the oil content exceeded the limit and separated out;

Scene 3: Using the same mold but changing the grade, the dimensions were off—the shrinkage rate didn't match.

The difficulty in selecting SEBS is not 'lack of material,' but 'the differences between grades are hidden in the parameters' — two grades with similar hardness may differ in performance due to variations in molecular weight, oil content, and degree of hydrogenation.

Once you understand the three parameters, choosing the grade won't be difficult.

Tech catchphrase: There are countless SEBS grades, but when choosing, only look at three things: hardness, temperature resistance, and who it's wrapping — when these three match, the grade will reveal itself.

Cause Analysis: Grade Differences Hidden in Three Parameters

The performance of SEBS-based TPE is determined by three underlying parameters:

Parameter One · Molecular Weight: High molecular weight means high strength and good temperature resistance, but poor flow and difficult processing; low molecular weight means easy processing and good surface finish, but weak strength. Decide whether strength or processability is more important first.

Parameter two · Degree of hydrogenation: The degree of hydrogenation determines aging resistance — the more thorough the hydrogenation, the fewer the double bonds, and the more resistant it is to heat and oxidation. Low hydrogenation 'economy grades' are cheaper but age faster.

Parameter three · Oil content: Oil content determines hardness and texture—more oil makes it softer, but higher oil increases the risk of oil separation. The contradictory requirement of "soft yet not separating" needs to be balanced through specific grades and formulations.

The combination of three parameters results in the personality differences of dozens of grades. When a supplier says 'this grade is good,' you need to ask: good in which parameter?

Those who can't answer it are basically selling products, not choosing models.

Considering SEBS-based TPE as 'a single material' is the first misconception in material selection. SEBS-based is a big category, with grades ranging from 20 to 90, from general grade to medical grade, and dozens of grade numbers, whose differences are even greater than the difference between SEBS and SBS.

For example: Saying 'I want SEBS grade' is like saying 'I want to buy a car'—cars range from tens of thousands to millions, so which one exactly do you want?

The first step in selecting a type is not choosing the brand, but first clarifying the positioning of 'this car': how hard it should be, how heat-resistant, and who it covers.

Add another factor that affects the feel but is often overlooked: the type of oil.

With the same hardness of 50 degrees, using paraffin oil and white oil, the hand feel can differ by two levels — paraffin oil has good compatibility with SEBS, producing a material that feels clean and non-sticky; white oil has slightly worse compatibility, making the material somewhat sticky.

There are also grades with a wide molecular weight distribution, which tend to have a hazy surface. For parts that require a high-quality surface, grades with a narrow distribution need to be specifically selected.

These parameters may not all be listed on the TDS, but you can ask the supplier for them — if they can answer, it shows they are familiar with the grade; if not, switch to another supplier.

Troubleshooting steps: Three-step lock of the license plate

A pile of labels in hand, how to lock them? Three steps:

3. Fixed three-layer rubber-coated substrates: Coating PP, coating ABS, and coating PA are completely different formulation systems — SEBS's specialty is coating PP, and for coating other substrates, a dedicated grade must be confirmed.

Completed in three steps, the candidate grades are reduced from dozens to two or three, then the supplier is asked to provide TDS according to the working conditions, and each item for hardness, elongation, and permanent compression deformation is checked.

Don't ask suppliers 'which one is better'; ask 'which one is suitable for this operating condition'—only if you ask correctly will you get the correct answer.

After obtaining two or three candidate grades, conduct a horizontal evaluation with 'the same mold and the same process' — using the same mold temperature, material temperature, and holding pressure, make a sample plate with each candidate grade to compare feel, shrinkage,

Compare the peeling of the coated layer together.

This step can filter out half of the theoretical parameter differences.

Keep samples from comparative reviews; when the product reaches large-scale production and disputes arise, you can pull them out for comparison, which is more convincing than any verbal promise.

Many factories find comparative testing troublesome, and as a result, spend ten times the time on rework during the mass production stage—comparative testing is a very cost-effective part of the selection cost.

How to fix delamination and stickiness: Addressing material, process, and system

SEBS base has a problem, solved in three directions:

Direction for the materials: Adjust grades or formulations (oil content/fillers/additives) within the same system. Requirements like 'softer by 5 degrees' or 'temperature resistance increased by 10℃' can mostly be addressed by changing the grade or formulation, without switching systems.

Process direction: SEBS-based materials are sensitive to drying and temperature — if the material is not dry, the surface will fog; if the material temperature is too high, it will yellow and degrade. First check drying (80-90°C × 2-3 hours), then check the material temperature window. Many cases of 'wrong material' are actually 'the process was not fed correctly'.

System direction: For conditions that SEBS cannot withstand (continuous 100℃, strong oil resistance), switch up to TPV or TPEE instead of forcing it in SEBS—beyond the system boundaries, no matter how expensive the SEBS is, it’s useless.

The sequence of the three directions: first process, then materials, and finally the system — most failures happen because the process cannot handle the materials, not because the materials are inadequate.

Can SEBS basically encapsulate ABS? Yes, but it requires a special grade. SEBS's specialty is encapsulating PP—because the solubility parameters of PP and SEBS are close, they can form physical entanglements when molten, sticking together firmly.

When coating ABS, the polarity difference is large, and ordinary grades do not adhere well. Special grades with polarity modification must be used, which also increases the cost.

For ABS overmolding, don’t just use the regular grade labeled as 'King of PP'—first confirm whether the supplier provided an ABS-specific system. Once you change the substrate, the entire selection logic changes.

ParameterFunctionLifting Method
Molecular WeightStrength and ProcessingRequired Strength, High Ceiling
Hydrogenation DegreeAging ResistanceOutdoor High Ceiling
Oil ContentHardness and Tactile FeelAdjust by feel
StepsActionResult
OneSet hardnessSieve Setting
TwoSet Temperature ResistanceSieve Grade
ThreeBase Material DeterminationCandidate Lock
Acceptance ItemRequirementJudgment
Grade Batch NumberAlignmentCompliant
Odor GradeStandardCompliant
Overmolding TestedPassedCompliant
Batch Sample RetentionArchivedCompliant

Cologne Customer Case: Odor Return, Customized Grade Saved Entire Batch

Guangzhou Modified Material Application Factory, Batch of SEBS-Based TPE Finished Product Odor Returned by Downstream Return, Goods Stuck in Warehouse, Delivery Schedule Completely Messed Up. The customer changed the material from two suppliers, but the odor remained the same. After investigation by

Cologne, they found: the odor stemmed from mismatches between oil grade and additive system. Combined with custom oil/temperature resistant grades, the odor problem was solved, and the mass production yield stabilized at 98%. The "smell" of SEBS base is mostly the formula smell, not the material taste—once the grade is properly customized, the problem disappears.

Inspect these four points upon arrival to avoid half the pitfall

SEBS Base TPE acceptance, four actions:

Among the four items, overmolding tests are the easiest to skip—and delamination is actually the most expensive complaint among SEBS base complaints.

SEBS base grades update quickly; the "standard grade" from two years ago may have better performance and similar price options this year.

Having suppliers update their grade database every six months is better than settling for old grades and better maintaining cost lines.

SEBS base prices have fluctuated significantly over the past two years, with grade price differences reaching 30%—for the same project, last year's inquiry and this year's inquiry require a re-budget.

After securing grades, it is recommended to sign "quarterly price lock" or "batch tiered pricing" with suppliers, rather than switching back and forth monthly for inquiries.

The price gap between domestic and imported grades is narrowing, and performance gaps are also narrowing. For projects with limited budgets, you can first evaluate domestic high-hydrogen grades—let the data speak for itself, don't choose grades based on impressions.

The difference between "cheap grades" and "stable grades" has never been about the few thousand yuan per unit, but about batch stability.

For the same grade, supplier A's hardness fluctuates between batches by ± 3 degrees, while supplier B's is ± 1 degree—sounds similar, but when placed on the mass production line, materials with ± 3 degrees require frequent process adjustments, and each adjustment equals a batch of trial production pieces.

When selecting grades, use "batch stability" as an indicator: Can you provide batch fluctuation data for shipments over the past six months? Only those that can be provided are worth long-term cooperation.

Regarding actual overmolding tests, one more detail: peel tests should simulate real usage directions.

Some factories only test vertical peeling, and actual parts are used in horizontal tearing, so the data in both directions may differ by half.

During testing, clarify the "peeling direction," align the testing method with the actual force, and only then will the measured values be valuable as reference.

Also, test the peeling once after three days of the coated part—the bonding strength between the SEBS substrate and substrate changes with the storage time, and data right after molding and three days later can differ by 20%.

PP For substrate SEBS overmolding systems, typical peel force values range from 1.0-2.0kN/m; if it's below 0.5kN/m, don't mass-produce.

Summary

The purpose of writing this is to give you a clear perspective next time you talk about SEBS-based TPE, and you're welcome to share it with colleagues who need it.

SEBS is the king of PP wrapping, a top performer in weather and temperature resistance, but "many grades" are both advantages and pitfalls—once hardness, temperature resistance, and wrapping are met, the grade is locked; Add in overmolding tests and batch samples, and this line is secure.

Ningbo Kelong New Materials Co., Ltd.

Makes modified thermoplastic elastomers.

Makes modified nylon: PA6, PA66, PA46, PA11, PA12, PA6T, PA9T, nylon alloys.

Makes modified PPO, PPS.

Producing nylon resin, sub-brand materials, and large packaging materials for major chemical giants.

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