粘接强度测试材料怎么选?螺杆转速快,剪切热伤料

应用领域 发布时间: 2026-09-13 3385 阅读

The adhesive peeling strength is sometimes high and sometimes low, mass production feels like opening a blind box. When the screw speed is too fast, the shear heat damages the material first.

The peeling force fluctuates, which is caused by the material being damaged by shear heat.

TPE bonding strength test, both the method and the rotation speed need to be controlled: specimen, rotation speed, readings. Conclusion first: if the screw rotates too fast, the shear heat will damage the material—the rotation speed is the source of interference in the test.

The biggest pitfall in bonding strength testing: high screw speed causes shear thermal damage to the material. Increase the speed even a bit, and it causes shear thermal damage—the speed is the invisible killer of bonding.

TPE testing is a craft: the data must be accurate, and the method must be correct. Only if the testing is right will the bonding be stable—it's a craft, don't skimp on the standards.

Peeling force is the answer sheet for encapsulation; why must it be measured?

Is the TPE coating good or not is determined by the peel strength. Write the peel test into the acceptance criteria—the peel strength is the report card of the bonding.

Peel tests must follow the standard: 180° peel, speed according to the standard. If the speed is incorrect, the reading will be off — speed is the benchmark of the test.

Testing is not a formality: the preparation of splines must be consistent. If the splines are inconsistent, the data measurement is meaningless—splines are the prerequisite for testing.

Rotation speed, shear heat, degradation, how the chain breaks

High speed: high shear heat, material degradation. Shear heat damages the material — speed is the switch for heat.

Low rotation speed: insufficient plasticization, poor adhesion. Insufficient plasticization—the rotation speed is the balance of plasticization.

The rotation speed depends on the machine: injection molding machines and extruders are different. Different machines have different rotation speeds — rotation speed is a parameter of the machine.

Rotational speed and shear heat, a table makes it clear at a glance

Rotational speedCutting HeatInfluence
LowsmallPoor plasticization
middlemiddleBalance
TallbigDegradation
Too highextremely largeDamaged material

Table reading: As the speed increases step by step, the material temperature jumps, yet the bonding strength actually drops — when shear heat is high, the sample is essentially damaged by heat.

Adjust the speed according to balance, so the bonding is stable.

Peeling is stable with small fluctuations, accept and check these four items

ProjectRequirementJudgment
splineconsistentMeet the standard
Rotational speedBalanceMeet the standard
SpeedstandardMeet the standard
Peel strengthActual measurementMeet the standard

Reading the table: record each item of rotation speed, material temperature, and spline condition, don't let any variable drift—when measuring bonding strength, control the rotation speed first.

Rotational speed is the source of interference in the test.

The method of adjusting the rotation speed is incorrect, so the data cannot be compared.

Pitfall 1: Messing with the speed. In an attempt to quickly max out the speed, the material degrades in the hopper—the test data becomes distorted, all caused by shear heat.

Pitfall 2: Inconsistent splines. Data test blank—splines consistent.

Pitfall three: Incorrect speed. Readings are biased — speed according to the standard.

Rotational speed, peeling, methods—ask before testing

Three questions: what system, what substrate, how much peel strength. One test: measured by standard testing — three questions and one test, supplier details clearly understood.

Speed verification should be done first: follow the recommended speed range, and take readings only when the material temperature does not exceed the upper limit. Control the speed first, then discuss bonding—speed is the source of interference in the test.

Making sample retention a habit: retain samples from each batch and retest peeling strength by batch. Before switching materials between batches, compare them first before scaling up—the batch is stable, and customer complaints are few.

Delamination, fluctuating force values, degradation: compared with a table

PhenomenonReasonCountermeasure
Data driftInconsistent qualityUnified spline
Reading biasSpeed errorAccording to the standard
Poor adhesionHigh speedReduce speed
Poor adhesionPoor plasticizationIncrease speed
Batch bleachingFormula fluctuationLock window

Bonding strength is determined by peel force; the test can only be compared when conducted at 23°C with the samples under the same conditions. For overmolded bonding, perform a peel test and record the data in the acceptance; if the rotational speed is too high, it can shear and thermally damage the material, and the parameters should be noted in the process card.

Before testing bonding strength, pre-treat the substrate: clean and degrease thoroughly. Prepare specimens according to the standard, with consistent injection molding conditions; keep testing temperature and humidity fixed, do not compare under different conditions.

The peeling data fluctuates; it's not that the adhesive is bad, but that the sample preparation and test conditions are not consistent. Dirt and oil on the surface are major killers of bonding strength; moisture and temperature also affect the readings.

Peel strength is the "report card" for coated parts—if it's below 0.5 kN/m, don't submit it. When choosing materials for adhesion strength testing, first answer three questions: what is the substrate, what is the soft adhesive, and what are the working conditions.

After retesting under fixed conditions, the data remained stable within the process window. Test records are archived, and personnel operations are consistent; before changing materials, first compare peeling data before discussing the price.

Whether the coating adheres firmly or not does not rely on touch but on peel strength. If the peel strength is below 0.5 kN/m, do not mass-produce.

PP substrate SEBS-based typical 1.0-2.0 kN/m; the test is performed by cutting samples according to standards and recording the peel angle. After bending 5,000 times, it is tested again. If delamination occurs, it is considered unqualified. Sample preparation must be uniform.

For bonding strength acceptance, first choose the right system, then discuss formulation optimization. If the substrate polarity is wrong, no matter how much glue is used, it will still peel off; ABS with SBS, PP with SEBS, PC with TPU; keep peel test data for each batch, and when changing materials, compare with a small batch first.

Bonding strength final acceptance: sample cutting is uniform, peeling angle, and re-measurement after bending - three items are checked with each batch.

Do not mass-produce if the peel strength is below 0.5 kN/m; re-test after bending 5,000 times. Keep peel data for each batch accordingly, and compare small batches first when changing materials.

Cologne Customer Case: Tight delivery schedule with mismatched stock, reformulating and re-certifying

A plastic injection processing factory in Cangzhou has tight delivery deadlines, and the properties of the in-stock grades do not match. Cologne assisted in adjusting the formulation (oil/additive/filler ratio), aligning the properties, and completed third-party testing and certification. With the formulation readjusted, the delivery schedule is reclaimed from the source—if the properties do not match, first look at the formulation system.

Summary

For the selection of bonding strength tests, control the rotational speed first, and then choose the method correctly. A fast screw speed causes shear heat damage to the material; speed is the source of interference.

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