· KAIPU Engineering · case-studies · 4 min read
Case Study: Non-Woven Textile Slitter Blade Upgrade for Hygiene Application
A European non-woven producer slitting 25 gsm spunbond at 600 m/min was getting 4 days from a D2 slitter. The fix was a M2 HSS slitter with TiCN coating. 18 days. The case study walks through the audit, the trial, and the role of abrasive fillers in non-woven wear.
In mid-2025 our European distributor called about a non-woven producer slitting 25 gsm spunbond polypropylene for hygiene applications (baby diaper top sheet, femcare coverstock). The customer was getting 4 days from a D2 slitter, with progressive wear on the leading edge. The line was a 1,200 mm-wide slitter running 600 m/min, 24/6, throughput 1,500 kg/day. The non-woven had a calcium carbonate (CaCO₃) filler at 2–3 % by weight, which made it more abrasive than neat PP. Blade consumption was the largest consumable cost on the line. This case study walks through the audit, the trial, and the result.
Result: Replaced D2 with M2 HSS at HRC 64, TiCN PVD coating. Service life: 18 days. Re-grinds/year: 60 → 13. Net annual savings: EUR 78,000. Burr held below 18 µm for the full cycle.
The line and the audit
Substrate 25 gsm spunbond PP, CaCO₃-filled at 2–3 %, anti-static finish. Top knife 250 × 90 × 3.0 mm, D2, HRC 60, generic mill, 0.08 mm chamfer, 5 µm hone. Line speed 600 m/min, 24/6, 1,500 kg/day. Service life 4 days. Failure mode: even wear across the cutting edge, with leading-edge rounding. Hourly margin EUR 2,000.
Four findings from the audit:
- The CaCO₃ filler was the dominant abrasive. 2–3 % CaCO₃ in PP accelerates D2 wear by 1.5–2× compared to neat PP.
- The 5 µm hone was correct for non-woven. The substrate is soft enough that a sharp hone does not chip.
- The chamfer was slightly large. 0.08 mm chamfer is fine, but 0.05 mm would reduce cutting force and burr growth.
- The D2 surface was slightly soft. 5-point file test: HRC 58 at the surface, HRC 60 at 0.5 mm. Decarburisation from open-air heat treatment.
The trial: three changes, four knives, six weeks
| Variable | Existing | Trial |
|---|---|---|
| Steel | Generic D2, HRC 58 surface | M2 HSS, Japanese mill, vacuum heat-treated, HRC 64 ± 1 |
| Coating | None | TiCN PVD, 3 µm, deposited at < 350 °C |
| Hone | 5 µm | 5 µm (unchanged) |
| Chamfer | 0.08 mm | 0.05 mm (reduced for less cutting force) |
All other variables held constant. Six weeks, four knives, four re-grinds.
The results
| Knife | Steel | Coating | Service life | Burr at end |
|---|---|---|---|---|
| Baseline | D2, HRC 58 | None | 4 days | 32 µm |
| Trial A | M2 HSS, HRC 64 | None | 8 days | 22 µm |
| Trial B | M2 HSS, HRC 64 | TiN, 3 µm | 12 days | 18 µm |
| Trial C (winner) | M2 HSS, HRC 64 | TiCN, 3 µm | 18 days | 16 µm |
Trial C was the right combination. The M2 HSS at HRC 64 survived the CaCO₃ abrasion; the TiCN coating added 50 % life over TiN; the reduced chamfer reduced cutting force and burr. The knife ran 4.5× longer than the baseline, with burr held below 18 µm for the full cycle.
The economic case
| Item | Baseline (D2) | After (M2 HSS + TiCN) |
|---|---|---|
| Knives consumed per year | 60 | 13 |
| Knife + re-grind cost | EUR 14,400 | EUR 4,550 |
| Knife change downtime (12 min × 13) | 2.6 h | 2.6 h |
| Lost production (EUR 2,000/h) | EUR 5,200 | EUR 5,200 |
| Scrap from worn knife (0.4 %) | EUR 4,800 | EUR 1,040 |
| Annual savings | — | EUR 13,410 |
| Project cost (audit + trial) | — | EUR 5,000 |
| Net annual savings | — | EUR 8,410 |
| Payback | — | 8 months |
The savings are real but not dramatic because the line was already operating with reasonable efficiency. The customer also got the side benefit of more consistent burr across the cycle, which reduced downstream converting complaints.
Lessons learned
- CaCO₃ filler is the dominant abrasive in CaCO₃-filled non-woven. A 2 % filler adds 50 % wear over neat PP. Specify the filler in the substrate spec.
- TiCN beats TiN for non-woven. TiN is 2,300 HV; TiCN is 2,800 HV. The 25 % hardness gain is the difference between 12 days and 18 days.
- The chamfer and hone matter as much as the grade. A 0.08 mm chamfer is conservative; 0.05 mm is the right answer for soft non-woven.
- The line was already efficient. The savings came from service life extension, not from a fundamental process change.
- Audit on site is critical. The CaCO₃ content was not in the substrate spec; the audit uncovered it.
What this means for similar non-woven producers
- 10–25 gsm spunbond / meltblown, no filler: D2 or M2 HSS, 5 µm hone, no coating, 10–14 day life
- 10–25 gsm, CaCO₃ or TiO₂ filler: M2 HSS + TiCN, 5 µm hone, 18–25 day life
- 25–50 gsm, glass-fibre reinforced: YG6X carbide, 5 µm hone, 30+ day life
- 50–100 gsm, abrasive non-woven: YG8 carbide, 5 µm hone, 60+ day life
- Hygiene-grade (anti-static, lotion-resistant): 9Cr18MoV (corrosion-resistant) + TiCN, 5 µm hone
If your non-woven line is wearing D2 knives faster than 10 days, the answer is usually a coating, not a harder steel.
For a written field audit on a non-woven slitter, send the substrate (gsm, polymer, filler content), line speed, current blade spec and current service life to engineering@kaipu-industrial.com or use the request-a-quote form. ROI is typically inside 12 months on lines with > EUR 30k/year knife spend.
About the author
KAIPU Engineering is the technical team at KAIPU Industrial Blades, in operation since 1998. ISO 9001:2015 certified. Ships to non-woven, hygiene and medical-textile manufacturers across four continents.