汽车格栅缓冲块用什么TPE?三批稳定,才敢上量产

应用领域 发布时间: 2026-09-16 4598 阅读

The grille buffer block cracks in winter and gets compressed in summer. Rebound and low temperature need to be considered together.

In a nutshell: grille buffer block, look at rebound and low temperature together

Grille buffer blocks are the 'shock pads' of the grille: preventing loosening, cushioning, and soundproofing.

The material should have rebound, low-temperature toughness, and weather resistance — conclusion first: SEBS-based TPE is mainstream for grid buffer blocks; for high rebound or low-temperature requirements, high-rebound formulations or TPV are preferred.

Getting a good batch is luck; consistently good batches show quality — only after three consecutive good batches do we dare to go into mass production — hardness, rebound, and size are measured batch by batch, and a fluctuation ≤5% is considered stable.

Grille buffer blocks are 'small parts with multiple roles': they prevent loosening, cushion, and absorb noise. Choosing the right material makes even small parts score points—small parts, don't underestimate them.

Why TPE: adjustable rebound with low-temperature toughness

Reasons for using TPE for grille buffer blocks: adjustable rebound, low-temperature toughness, high injection molding efficiency, and controllable cost—combined, these four make it suitable for buffer blocks.

Rebound is the core function: the buffer block needs to 'spring back.' The rebound rate (according to the standard) is written into the acceptance criteria—if the rebound is insufficient, the grille will be loose.

Low-temperature toughness cannot be ignored: in winter, the grille buffer blocks become brittle. Low-temperature impact (according to the actual temperature) should be included in acceptance testing—if it fails at low temperatures, it will crack in winter.

Operating condition breakdown: extrusion, temperature, aging

Squeezing conditions: grating assembly pre-pressing, vibration. Rebound and fatigue data need to be verified—compressed to death without rebound, cushioning failure.

Temperature conditions: the front face is exposed to sunlight. Heat resistance and light aging data need to be tested—brittleness and cracking from sun exposure are both issues.

Aging conditions: vehicle service life. Aging data is aligned by service life — aging causes embrittlement, and buffering then fails.

Comparison Table: SEBS Based vs TPV for Grille Buffer Blocks

DimensionSEBS baseTPV
reboundAdjustableGood
Low temperatureGoodGood
Weather-resistantUpper-middleGood
CostLowTall
Hardness rangeA40-80A40-90
Compression setmiddleLow

Table reading: SEBS is generally cheap with adjustable rebound; TPV has low compression set and good weather resistance — choose the system according to the working conditions.

High rebound requirement (grille anti-loosening), TPV or high rebound SEBS formulation — select according to function.

Common pitfalls: batch drift and low-temperature missed detection

Pitfall 1: Batch drift. Hardness and rebound vary between batches — the batch report is more valuable than the grade name.

Pitfall 2: Low-temperature leakage testing. In winter, buffer blocks become brittle—low-temperature impact, must be tested.

Pitfall 3: Overstated rebound. Report says 60%, actually 45% — rebound should be accepted based on actual measurement.

Three accounts for the arrival of grille buffer blocks, mandatory testing at low temperatures

Three questions: What method is used for rebound, what temperature is set for low temperature, are the batch data complete. One test: validate by testing three consecutive batches—three questions and one test, the supplier's background is clear.

Rebound ≥55% is required to withstand loosening—if the buffer block is compressed and does not rebound, the grille will loosen. The rebound rate is accepted based on actual measurement.

Making sample retention a habit: retain samples for each batch, and re-test the rebound at low temperature batch by batch. When changing materials between batches, compare first before scaling up — stable batches result in fewer customer complaints.

Extended judgment: Batch verification of grille buffer blocks, three consecutive batches

Batch verification of the grille buffer blocks involves testing three consecutive batches: hardness, rebound, and dimensions are measured batch by batch. Only when all three batches are stable do we dare move to mass production.

Batch validation must follow production conditions: mass production molds, mass production processes. Trial production is the same as mass production; don’t have two sets of standards—only when conditions are aligned will the conclusions be correct.

Batch data must be archived: keep three batches of data for reference, providing a basis for mass production comparisons. Data archiving is the fundamental account of batch management.

When suppliers change formulas or raw materials, notify first and then verify—quietly changing materials without notification is the most dangerous, and if the change window doesn't lock batches, they will eventually drift.

Batch verificationProjectThrough line
first batchHardness/Rebound/SizeBenchmark
The second batchSame as aboveFluctuation ≤5%
The third batchSame as aboveFluctuation ≤5%
Three batches summaryData ArchiveContinuous and stable

Table 2 reading method: Run three batches consecutively, compare them batch by batch. Only if the three batches are stable can we dare to go into mass production.

Material specificationsRequirementExplanation
rebound≥55%Anti-loosening
Low temperature-30℃ impactDoes not crack in winter
Weather-resistantXenon lamp 1000hNot crispy
pressure transformerAccording to the standardDoes not collapse

Table 3 reading: The four indicators are the health check report of the buffer blocks. A batch being good is luck; every batch being good is the material.

Performance varies between winter and summer batches, read data according to the season — low temperature -30℃ impacts writing during acceptance testing, and buffer blocks are most prone to cracking in winter due to brittleness.

Supplier of grille buffer blocks, ask four questions: what system, what method is used for rebound, what temperature for low temperature, will changes be notified. After asking these four questions, the details are clear — asking the right questions is more useful than bargaining.

When prototyping, simulate the rebound of the grille buffer block as in winter: rebound worsens at low temperatures. Once winter passes, it is more stable at normal temperature — simulating seasons is more comprehensive than only looking at normal temperature.

Testing the car on a vibration rig gives more realistic results than individual rebound data — only after passing batch vibration tests are the cars released, ensuring more stable rebound simulation at low winter temperatures.

Cologne Customer Case: Low-Temperature Cracking Results in Entire Batch Being Scrapped, Sample Data Returns 98%

A car parts factory in Shenzhen had a batch of grille buffer blocks crack at low temperatures, resulting in the entire batch being scrapped. Cologne cooperated by providing samples and physical property data from the same batch, with a batch qualification rate consistently above 98%. Samples plus data are the confidence for batch management—only when the data is locked is the batch stable.

Summary

The selection and judgment of the car grille buffer block is more valuable than the part number itself, and it is also more worthwhile to spend time on it first; this is more important than the price list.

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