一批试料合格就冲量产,第三批全崩。一批看不出波动,三批稳定再放量。
一批合格就放量,第三批全崩
TPE 试样是“耐心活”:一批、二批、三批。结论先给:三批稳定才敢上量产,别急——三批,是量产的体检。
TPE试样最大的坑:一批过了就放量,批次波动全踩一遍——三批,是量产的保险。
试样是质量关:三批稳,量产稳。急着上,返工来——试样,是量产的预演。
一批看不出波动,为什么要三批
一批是巧合:数据好,可能是运气。一批,是单点。
二批是验证:重复出,才可信。二批,是验证。
三批是稳定:连续过,才放心。三批,是底线。
参数、物性、良率,三批盯什么
参数:三批参数一致。参数稳,才可复制——参数,是试样的基础。
物性:三批物性对表。物性稳,才达标——物性,是试样的成绩。
良率:三批良率达标。良率稳,才放量——良率,是试样的闸门。
三批验证,一张表对照清楚
| 批次 | 看什么 | 判断 |
|---|
| 一批 | 跑通 | 通过 |
| 二批 | 复现 | 通过 |
| 三批 | 稳定 | 通过 |
| 放量 | 达标 | 放行 |
表格读法:批次逐批验,三批才放行,硬度每批留±3A余量。
三批稳,量产稳。
三批稳再放量,验收核这四项
| 项目 | 要求 | 判断 |
|---|
| 参数 | 一致 | 达标 |
| 物性 | 达标 | 达标 |
| 良率 | 达标 | 达标 |
| 批次 | 稳定 | 达标 |
表格读法:试样一项项核,放量看得见,三批数据并排比。
三批,是量产的体检。
一批就冲量产,波动没机会暴露
坑一:一批放量。首批好看第二批就飘,客诉跟着来——三批必走。
坑二:波动不看。踩坑——波动必盯。
坑三:数据不记。白试——数据必记。
参数、良率、波动——放量前盯紧
三问:什么参数、什么物性、什么良率。一验:三批实测——三问一验,供应商底细清楚。
三批验证要先行:先把连续三批的硬度、熔指、外观跑完,再谈量产——三批,是量产的保险。
留样要成习惯:每批留样,物性按批次复测。批次换料先对比再放量——批次稳,客诉少。
一批好三批崩:对照一张表
| 现象 | 原因 | 对策 |
|---|
| 翻车 | 一批放量 | 走三批 |
| 波动 | 不盯批 | 盯批次 |
| 数据缺 | 不记录 | 记数据 |
| 良率低 | 参数乱 | 锁参数 |
| 客诉 | 急放量 | 别着急 |
一批合格就放量,等于拿整批订单赌博。软胶件的析出发白,常到第三批才冒出来。
试样走三批:首件摸手感、二件测物性、三件考良率。三批都落在 ±3A 内,才签放量审批单。
每批留 6mm 厚试片,23℃ 测 Shore A。三批硬度差超过 ±3A,客户摸上去就是“两批货”。
试样翻车多半不是料不行,是干燥和模温没按料号卡。TPE 吸湿,80℃ 烘 2-4h 再上机,数据才作数。
三批试样全过、良率爬到 95% 以上,量产才敢开。跳过这一步,问题会在量产线上十倍奉还。
试样走三批:首件摸手感、二件测物性、三件考良率。三批Shore都收在±3A内才签放量,一批合格就放量等于拿整批订单赌博。
TPE吸湿80℃烘2-4h再上机,数据才作数。含水率超0.1%表面银纹气泡,干燥这道省不得,软胶件析出发白常到第三批才冒出来。
每批留6mm厚试片23℃测Shore A。三批硬度差超±3A客户摸上去就是两批货,试样翻车多半不是料不行是干燥和模温没按料号卡。
三批试样全过良率爬到95%以上量产才敢开
。跳过这一步问题会在量产线上十倍奉还,每批留6mm厚试片23℃测Shore A三批硬度差超±3A客户摸上去就是两批货。
一批合格就放量等于拿整批订单赌博
。软胶件的析出发白常到第三批才冒出来,试样走三批首件摸手感二件测物性三件考良率三批都落在±3A内才签放量审批单。
试样走三批首件摸手感二件测物性三件考良率
。三批Shore都收在±3A内才签放量一批合格就放量等于拿整批订单赌博,TPE吸湿80℃烘2-4h再上机数据才作数。
TPE吸湿80℃烘2-4h再上机数据才作数。含水率超0.1%表面银纹气泡,三批试样全过良率爬到95%以上量产才敢开跳过这一步问题在量产线上十倍奉还。
科隆客户案例:异味退货压仓库,匹配基材良率98%
广州一家改性料应用厂,TPE 件成品异味被下游退回,货压在仓库。科隆配合重新匹配包胶基材与加工温度,异味消除,量产良率稳定在 98%。基材匹配对了,异味从源头断——气味问题,先查基材和油。
小结
TPE试样的安排,三批先走,稳定再看,三批稳定才敢上量产别急,三批是体检。
有些生意我们不做。
不问用途就报价的,不做。
把副牌料说成正牌卖的,不做。
Once a batch of test material passes, ramp up to mass production; the third batch fails completely. One batch shows no fluctuations; after three stable batches, increase production.
The first batch was ramped up once qualified, the third batch completely collapsed.
TPE samples are a 'test of patience': batch one, batch two, batch three. Here's the conclusion first: only when batch three is stable can mass production be started, don't rush—batch three is the health check for mass production.
The biggest pitfall of TPE samples: once one batch passes, it goes into mass production, experiencing all the batch fluctuations—three batches are the insurance for mass production.
Samples are a quality checkpoint: if three batches are stable, mass production will be stable. Rushing to launch leads to rework—samples are a rehearsal for mass production.
A batch that shows no fluctuation, why make three batches?
One batch is a coincidence: the data is good, it might be luck. One batch is a single point.
The second batch is for verification: only if it is repeated can it be trusted. The second batch is for verification.
Three batches ensure stability: only after continuous passes can we be assured. Three batches are the bottom line.
Parameters, physical properties, yield rate—what should three batches focus on?
Parameters: The three batches of parameters are consistent. Only when the parameters are stable can they be replicated—parameters are the basis of the sample.
Material properties: Comparison of material properties across three batches. Material properties must be stable to meet the standard—material properties are the test results of the samples.
Yield: The yield of three batches meets the standard. Only when the yield is stable will mass production be launched—yield is the gate for samples.
Three batches of verification, everything clearly matched on one sheet
| Batch | What are you looking at? | Judgment |
|---|
| a batch | Run through | through |
| Second batch | reproduce | through |
| Three batches | Stable | through |
| Increase in volume | Meet the standard | Release |
Table reading method: Inspect batch by batch, only release after three batches, and retain ±3A margin for hardness in each batch.
Three batches are stable, mass production is stable.
Three batches steadily released in larger quantities, inspection and acceptance check these four items
| Project | Requirement | Judgment |
|---|
| Parameter | consistent | Meet the standard |
| Physical properties | Meet the standard | Meet the standard |
| Yield | Meet the standard | Meet the standard |
| Batch | Stable | Meet the standard |
Table reading: Check each sample item by item, observe the visible quantities, and compare three batches of data side by side.
The three batches are mass production inspections.
A batch goes straight into mass production, fluctuations have no chance to be exposed
Pitfall 1: Large release in batches. The first batch looks good, the second batch declines, complaints start coming in — the third batch is bound to fail.
Pitfall 2: Ignore fluctuations. Pitfall — always watch fluctuations.
Pitfall three: Not recording data. White effort—data must be recorded.
Parameters, yield, fluctuations — closely monitor before ramp-up
Three questions: what parameters, what physical properties, what yield. One verification: three batches actually measured — three questions and one verification, the supplier's details are clear.
Three batches of validation must come first: first complete the hardness, melt index, and appearance tests for three consecutive batches, then talk about mass production—three batches are the insurance for mass production.
Making sample retention a habit: retain samples for each batch, and re-test physical properties batch by batch. Before switching materials between batches, compare them first before scaling up—the batch is stable, and customer complaints are few.
One batch is good, three batches collapse: compare with a table
| Phenomenon | Reason | Countermeasure |
|---|
| overturn | A batch with increased volume | Go in three batches |
| Fluctuation | Do not focus on criticism | Monitor batch |
| Data missing | Do not record | Record data |
| Low yield | Parameters are messy | Lock parameters |
| Customer Complaint | Sharp increase in volume | Don't worry |
Once a batch is qualified, the volume is released, which is equivalent to gambling with the entire order. The whitening of soft rubber parts often doesn't appear until the third batch.
The samples go through three batches: the first piece is checked by hand-feel, the second piece is measured for physical properties, and the third piece evaluates yield rate. Only if all three batches are within ±3A will the mass production approval form be signed.
Keep 6mm thick samples from each batch, and measure Shore A at 23°C. If the hardness difference among the three batches exceeds ±3A, the customer will feel like it's 'two different batches'.
Sample rejection is mostly not because the material is bad, but because the drying and mold temperature were not set according to the material number. TPE absorbs moisture; bake at 80°C for 2-4 hours before molding for the data to be valid.
All three batches of samples passed, and the yield rate climbed above 95%, only then would we dare to start mass production. Skipping this step, the problems would come back tenfold on the production line.
Specimens go through three batches: the first batch is for feeling test by hand, the second batch tests physical properties, and the third batch checks yield rate. All three batches' Shore readings must be within ±3A to approve full-scale production; releasing full-scale production with only one batch qualified is equivalent to gambling with the entire order.
TPE should be dried at 80°C for 2-4 hours before being put on the machine; only then will the data be valid. If the moisture content exceeds 0.1%, silver streaks and bubbles appear on the surface. This drying step cannot be skipped, as whitening of soft rubber parts often only appears by the third batch.
Measure Shore A of each batch of 6mm thick test pieces at 23°C. If the hardness difference of three batches exceeds ±3A, the customer will feel like there are two different batches. Most of the time, test piece failure is not due to bad material but due to drying and mold temperature not being set according to the material number.
Only after three batches of samples all pass with a yield rate climbing above 95% will mass production be dared to start.
Skipping this step will result in problems being multiplied tenfold on the production line. For each batch, test pieces of 6mm thickness are measured for Shore A hardness at 23°C, and if the difference in hardness across three batches exceeds ±3A, the customer will feel like there are only two batches of goods.
Releasing large quantities once a batch passes inspection is equivalent to gambling with the entire order.
The whitening caused by the precipitation of soft rubber parts usually only appears in the third batch. For the samples, the first of three batches is tested by hand for feel, the second for physical properties, and the third for yield rate. Only when all three batches fall within ±3A will the mass production approval form be signed.
The sample goes through three batches: the first piece is checked by touch, the second piece is tested for physical properties, and the third piece is used to assess yield rate.
All three batches of Shore must be within ±3A before signing off for mass release; releasing mass with just one batch passing is like gambling with the entire order. TPE must be dried at 80°C for 2-4 hours before processing for the data to be valid.
TPE should be moisture-absorbed and baked at 80°C for 2-4 hours before running on the machine for the data to be valid. If the water content exceeds 0.1%, there will be silver streaks and bubbles on the surface. Only when all three batches of samples pass with a yield rate climbing above 95% can mass production proceed; skipping this step will cause problems to be returned tenfold on the production line.
Cologne customer case: Returns due to odor pile up in warehouse, matching substrate yield rate 98%
A modified material application factory in Guangzhou had TPE finished products returned by downstream customers due to odor, and the goods were piled up in the warehouse. Kolon cooperated to rematch the overmolding substrate and processing temperature, eliminating the odor, and mass production yield stabilized at 98%. Once the substrate matching was correct, the odor was stopped at the source — for odor issues, first check the substrate and oil.
Summary
The arrangement of TPE samples: three batches go first, observe stability, only after three batches are stable should we dare to go into mass production. Don't rush, the three batches are like a health check.
There are some businesses we do not engage in.
We do not provide quotes without asking the intended use.
We do not sell secondary brand materials as if they were the main brand.