传送带挡板用什么材料?耐温差20℃,场景差一个级

应用领域 发布时间: 2026-09-16 3883 阅读

The conveyor belt baffle broke after just two months, scattering materials everywhere. The conveyor belt baffle's temperature resistance and wear resistance were not properly chosen, making the material-blocking function virtually useless.

It broke after just two months of use, and the materials spilled all over the ground.

Conveyor belt baffles are 'parts resistant to material blocking and wear': resistant to temperature, wear, and impact. The material needs to be resistant to temperature, wear, and impact—conclusion first: TPV is the mainstream for conveyor belt baffles; for heavy-duty baffles, TPU composite is reserved.

The biggest pitfall of conveyor belt baffles: temperature difference tolerance is 20℃, and the scenario is off by one level. If the temperature grade is chosen incorrectly, material that is fine at room temperature will soften and collapse when used next to the drying channel — temperature tolerance is the scenario boundary for baffles.

Conveyor belt baffles are functional parts: deformation and wear-through are problems. Only by choosing the right material can the production line be stable—functional parts, don’t skimp on material costs.

Why is TPV used for the baffle?

Reasons for using TPV for conveyor belt baffles: good temperature resistance, good wear resistance, good impact resistance, long service life—combined, these four make it suitable for baffles.

Temperature resistance is key: material temperature. Write the temperature resistance test into the acceptance criteria—deformation equals a problem.

Wear resistance cannot be compromised: material friction. Wear resistance testing should be included in the acceptance—if it wears through, that's a problem.

Material blocking temperature shock, three barriers

Material blocking condition: material blockage. Wear-resistant data must be tested—if it wears through, it's a problem.

Temperature working condition: material temperature. Temperature resistance data must be verified—deformation equals a problem.

Impact condition: material falling. Impact resistance data needs to be tested—cracking is a problem.

TPV or TPU? Check the sheet to see the differences in the baffles

DimensionTPVTPU
Temperature resistantGoodMedium-high
Wear-resistantGoodStrong
Impact-resistantGoodGood
CostMedium-highMedium-high
EfficiencyInjection moldinginjection molding
PurposemainstreamOverload

Table reading: TPU is wear-resistant and strong; TPV has a wide temperature range—used for conveyor belt baffles, TPV is mainstream.

Choose by load: heavy-duty TPU, regular TPV.

Baffle acceptance: Temperature difference resistance 20℃, scenario difference grade one

TemperatureSceneMaterial
60℃RegularTPV
80℃Medium temperatureTPV
100℃High temperatureTPU replica
120℃Overloadcompound

Table reading: Match the temperature step by step, and the scene level by level—next to the baking tunnel and in the normal temperature section, the selection of material temperature ratings must not be mixed.

Temperature resistance is the scene demarcation of the baffle.

Mixing scenarios, three pitfalls

Pitfall 1: Mixing scenarios. Normal temperature material is used next to the drying channel, and the baffle softens and collapses as soon as it is baked—choose according to the scenario.

Pitfall 2: Abrasion testing omissions. Wear-through — abrasion testing must be conducted.

Pitfall 3: False temperature resistance labeling. Deformation — temperature resistance should be accepted based on actual measurements.

Choose baffle material by first determining temperature resistance

Three questions: What is the material temperature, what standard is used for wear resistance, and what is the material. One verification: actual working conditions measured — three questions and one verification make the supplier's details clear.

Temperature verification must come first: first measure the actual contact temperature accurately, then choose the temperature-resistant grade. Set the temperature first, then discuss the price—temperature resistance is the scene boundary for the baffle.

Making sample retention a habit: retain samples for each batch, and re-test temperature and wear resistance by batch. When changing materials for a batch, compare first before scaling up—the more stable the batch, the fewer the customer complaints.

Conveyor Belt Baffles: Old Problems, New Solutions, A Comparative Table

PhenomenonReasonCountermeasure
TransformationInsufficient temperature resistanceChange to heat-resistant material
wear throughInsufficient wear resistanceReplace wear-resistant material
CrackingInsufficient impact resistanceChange to impact-resistant material
OdorSubstrate oil issueChange substrate
Batch DriftFormula fluctuationLock window

The main TPV for baffles, Shore A 85-95, one grade difference for temperature difference of 20°C. Each increment of material temperature raises the material system by one grade — select according to the actual measured temperature of the material.

TPV temperature and wear resistance, TPU composite can withstand heavy load impact. Light-load powder TPV, heavy-load block TPU composite — select based on material hardness and weight.

Baffle deformation first checks material temperature; don't blame wear resistance insufficiently. If temperature exceeds the system's temperature resistance level, it collapses softly—write temperature into working conditions, then select material.

Baffle acceptance: temperature resistance, wear resistance, and material impact three levels. Specify material properties (powder/pellet/block), installation method (bolts/clips) core strength.

Small batch trial production locks dimensions; customer replaces orders for three consecutive batches, baffle batch size no longer fluctuates. Each batch is retained to test temperature and wear resistance; material changes are first done in small batches before ramping up.

Baffles are selected by material hardness and weight, light-load powder TPV and heavy-load block TPU composite. TPV temperature and wear resistance is measured volume; baffle deformation is checked first by material temperature. Don't blame wear resistance insufficiently; if temperature exceeds the system temperature resistance level, it will collapse.

Specify material nature and powder blocks; installation method bolts clamp core strength. Test temperature resistance and material impact simultaneously; small batch trial production lock dimensions then increase volume; test temperature resistance and wear resistance for each batch of samples.

Specify material properties and powder and particle blocks; install method to test strength. Test temperature resistance and wear resistance for each batch of samples; if temperature exceeds the system temperature resistance level, soften and collapse; small batch trial production lock dimensions will be scaled up.

For baffle deformation, first check material temperature; don't blame wear resistance for insufficient wear resistance. Light-load powder TPV heavy-load block TPU composite selected by material; if the temperature exceeds the temperature resistance level, it collapses. Specify the material properties and installation core strength.

Each batch retains samples for temperature resistance and wear-resistance.

Cologne customer case: Unstable shrinkage rate and dimensional fluctuations, three orders continued for small-batch trial production

An industrial equipment factory in Chongqing, conveyor belt baffle shrinkage rate is unstable and size fluctuates significantly. Cologne cooperates with small-batch trial production for validation before scaling up, dimensions stabilize, and the customer renews orders for three consecutive batches. Small-batch trial production locks the size before scaling up—shrinkage rate issues should be exposed during the trial production stage.

Summary

When selecting conveyor baffles, set the temperature first, then test wear resistance. If the temperature difference is 20°C, the difference in scenario is one level; temperature resistance is the dividing line between scenarios.

"Can domestic products replace imports?" — we hear this phrase every week.

Most can, but not just "can" and "no" can be fully explained. There are clear boundaries between high-temperature resistance, precision parts, and long-term aging: within the boundary, yes; outside the boundary, if forced out, problems will arise.

Ningbo Kelong New Materials Co., Ltd. produces modified thermoplastic elastomers, modified nylon (PA6 / PA66 / PA46 / PA11 / PA12 / PA6T / PA9T and nylon alloys), modified PPO / PPS, as well as nylon resins, sub-brand materials, and large package materials from major chemical giants in stock.

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