TPE硬度测试方法与读数?参数对得上,良率才稳

应用领域 发布时间: 2026-09-12 3358 阅读

Same material tested in two workshops, hardness differs by five degrees. If the ruler and method are wrong, the data is just self-fooling.

If the two workshops differ by five degrees, it's not that the material is floating, it's the method is wrong

TPE For hardness testing, the method and readings are correct to be accurate: ruler, thickness, time. Conclusion first: if the measurement method is wrong, the same piece can read two hardnesses—the method is the foundation of hardness.

TPE The biggest pitfall in hardness testing: if the parameters are correct, yield is stable. If the method is wrong, the readings are wasted—the method is the crosshair of hardness.

TPE Hardness is the quality test: drift and misreading are problems. Only when tested correctly can quality be stable—the quality test, don't skip the standard.

Hardness is a different system, why first recognize the Shore scale

TPE Common Shore hardness: A. Soft tape, D hard rubber. If you choose the wrong ruler, the reading is invalid—the ruler is the foundation of hardness.

Hardness range: SEBS base 0-90A. TPV 40A-60D—range, which is the map of hardness.

Hardness determined by piece: Toothpaste is soft, tool handle is hard. Incorrect hardness, poor feel—hardness is data for tactile feel.

Thickness, time, environment, where are the readings different ?

Thickness: Specimen thickness should be at least 6mm. If the thickness is insufficient, the reading is too low—thickness is the prerequisite for reading.

Time: The reading is read for 1 second after the pin contacts. If the time is too long, the reading drifts—time is the standard for reading.

Environment: 23°C standard temperature. High temperature, lower hardness—environment is the condition for reading.

Shaw Scale, one chart for clear comparison

RulerRangePurpose
000-100Ultra-soft
A0-100Soft rubber
D0-100Hard Rubber
ReadingCorrespondingAcceptance

Table Reading: Choose the ruler by hardness, read according to the ruler—ultra-soft 00, soft A, hard D.

Choose a ruler according to hardness for accurate readings.

Accurate readings and repeats, acceptance testing of these four items

ProjectRequirementsJudgment
RulerCorrectCompliant
Thickness≥6mmCompliant
Time1 secondCompliant
Environment23°CCompliant

Table reading: Align ruler, thickness, and indenter time one by one; stacked thin parts for accurate measurement—unified measurement methods allow batch hardness to be compared.

Method is the crosshair for hardness.

Random ruler selection and random readings, data can't be used

Plot 1: Random selection with a ruler. Use Shore A for soft materials, 00 for thin parts, misread and differ by several degrees—hardness should be set with a ruler before discussing the values.

Pit 2: Thickness is insufficient. Reading is too low—thickness meets standard.

Pit 3: Time is set randomly. Reading float—1 second reading.

Ruler, thickness, indenter — ask clearly before testing

Triple question: What ruler, thickness of the part, and what temperature. First test: Standard readings measured — three questions and one verification, supplier details are clear.

Method validation must come first: test specimen thickness and indenter residence time follow standards, only allowed if ± is within 3A. Compare the method first, then discuss hardness—the method is the crosshair of hardness.

Make sampling a habit: keep samples for each batch, and retest hardness by batch. Compare batch material changes before scaling up—stable batches, few customer complaints.

Readings are unreliable, inaccurate: compare with a table

phenomenacausescountermeasures
readings driftwrong rulerreplace ruler
low readingsthin thicknessincrease thickness
High readingLow temperatureTemperature control
Hardness driftBatch driftWindow lock
Poor hand feelHardness biasedFormula adjustment

Shore A reading should be measured at 23°C; if the thickness of thin parts is below 6mm, the reading will be distorted. Test specimens under consistent injection molding conditions; stacked measurements or scale changes are accurate; Hardness multi-point measurements are averaged.

Hardness acceptance: Each batch retains 6mm thick specimens, measure Shore A at 23°C, and only release if ± is within 3A. Regularly calibrate the hardness tester; Different standards have different readings; compare according to customer-specified standards.

If two hardness levels are measured in the same batch, it's not due to material bluff, but because the sample thickness or temperature was not controlled. Moisture absorption affects readings; samples should be stored to prevent moisture; If readings are abnormal, retest first before drawing conclusions.

Shore is a TPE thermometer—00 tube jelly, set A tube gummy to rubber, D tube hard spring. Everyone has a tactile gauge: pacifier, toothbrush handle, mouse pad—translate the Shore value into something you have touched.

After standardizing the test piece and calibration at 23°C, the same batch reading is collected from ±8A to ±2A. Test records are archived, and personnel operate consistently; Customers cannot detect batch differences.

Hardness is a TPE thermometer, but incorrect readings are equivalent to not being measured—if the sample thickness is below 6mm, the reading is distorted.

Shore A: For soft materials measured by 6mm or more, layering is accurate for testing; After being placed at 23°C for testing, if the thin part is pressed directly against the glass, the reading is too soft; wait enough before reading.

Hardness acceptance requires retaining samples for each batch; only discusses batch differences at the same temperature and method.

If the same batch fluctuates over ±3A, it means two batches; Shore 00 tubes for jelly, Shore A tubes for gummy to rubber, Shore D tubes for hard spring—change the scale and don't mix, keep samples for each batch and archive.

Hardness test final acceptance: sample thickness, constant temperature, and sample retention and archiving are all handled with the batch. Measure Shore A requires 6mm thickness, constant temperature at 23°C, and keep samples for each batch for archiving; If the fluctuation exceeds ±3A, it's considered two batches; change the scale and don't mix them.

Hardness readings ultimately mean locking in thickness, temperature, and method all at once. Samples 6mm thick, constant temperature at 23°C, same measurement level, keep samples for each batch; If the fluctuation exceeds ±3A, two batches are counted; don't order directly based on readings.

Hardness accuracy is accurate and you can know by layering the scale and testing once. If the reading of thin parts is distorted, stack to 6mm and test at constant temperature before the data is entered for acceptance.

Mixing scales is a major hotspot for reading errors; Shore 00, A, and D each test separate parts, do not mix and sell.

Cologne customer case: odor returned to the storage bin, custom grade yield 98%.

A plastic injection molding factory in Guangzhou had finished TPE parts returned by downstream clients due to odor, and the goods were piling up in the warehouse. Cologne assisted in customizing oil-resistant/temperature-resistant special grades, eliminating the odor, with mass production yield stabilizing at 98%. Customizing according to working conditions cuts off the odor from the source—when facing odor problems, first check the base material and oil.

Summary

The method for testing TPE hardness: first align the scale, then verify the reading; only when the parameters match will the yield be stable. The method is the benchmark.

这台机器上的件,说下工况我帮你看看

报个件、说清温度和要过的认证,当天回你两三个能打的方案。电话微信同号,找到人就能聊。

打电话 18969817163发邮件询价
WA