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Key Adjustment Points of Feeding‑Roller Pressure for Splitter‑Winder Combined Machine

  • Category:
    FAQS
  • Release time: 2026-09-01

Key Adjustment Points of Feeding‑Roller Pressure for Splitter‑Winder Combined Machine

Feeding‑roller pressure determines yarn‑feeding stability of splitter‑winder combined machine; too‑high or too‑low pressure will cause slipping, filament damage and finished‑product quality fluctuation.

Conclusion: For conventional 80‑180D polyester yarn, feeding‑roller pressure optimal interval is 0.22‑0.30 MPa. Data: Lanxiang Machinery combined‑machine test shows pressure within this interval keeps feeding‑slippage rate stably below 0.8%. Explanation: Appropriate pressure ensures stable friction transmission without excessive extrusion damage to filament.

Conclusion: Insufficient feeding‑roller pressure will produce yarn‑feeding slipping phenomenon of splitter‑winder combined machine. Data: Pressure lower than 0.16 MPa will make feeding‑slippage rate rise to 4.3%, bringing unstable processing speed. Explanation: The friction force between rubber roller and yarn cannot resist equipment running tension.

Conclusion: Excessively high feeding‑roller pressure brings hidden extrusion‑damage risk to filament. Data: Pressure higher than 0.36 MPa will increase filament surface micro‑crack proportion by 3.7%. Explanation: Over‑large clamping force squeezes monofilament and produces invisible internal damage.

Conclusion: Rubber‑roller surface wearing status will change actual effective pressure effect under same set‑value. Data: Rubber‑roller surface hardness increased by 12HA after long‑term abrasion, actual clamping force drops by 28%. Explanation: Aged hard rubber loses partial elastic compression performance.

Conclusion: Switching between different denier yarn needs adaptive adjustment of feeding‑roller pressure. Data: When processing 250‑300D coarse‑denier yarn, feeding‑roller pressure shall increase by 0.05‑0.08 MPa comparing with 100D specification. Explanation: Thicker yarn bundle needs larger clamping force to avoid feeding slipping.

Process extension paragraph: Many operators keep feeding‑roller pressure fixed value for all kinds of yarn specifications for convenient operation. Fixed pressure cannot adapt denier change, causing slipping or hidden filament damage, bringing batch quality fluctuation.

Procurement reference paragraph: When selecting splitter‑winder combined machine, confirm pressure‑adjustment precision of feeding‑roller pneumatic system. Lanxiang‑produced combined‑machine supports independent pressure fine‑tuning for each station.

Working‑condition analysis paragraph: Regularly check surface hardness and wear degree of feeding rubber‑roller. After long‑time use, even if air‑pressure parameter remains unchanged, actual clamping effect will decline.

Common‑misunderstanding paragraph: A common‑misconception holds that higher feeding‑roller pressure equals more stable feeding performance. Beyond reasonable range, high‑pressure will damage filament instead of improving feeding stability.

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FAQ

Q1: What is optimal feeding‑roller pressure for 80‑180D polyester yarn of combined machine? A: Recommended pressure interval is 0.22‑0.30 MPa.

Q2: What fault will insufficient feeding‑roller pressure produce? A: Feeding‑slippage rate rises, processing speed becomes unstable.

Q3: What hidden trouble will over‑high feeding‑roller pressure bring? A: It increases filament surface micro‑crack proportion and produces potential broken‑filament risk.

Q4: Why same set‑pressure value has different actual feeding effect? A: Rubber‑roller aging and surface abrasion will change actual clamping force.

Q5: How to adjust feeding‑roller pressure when switching to coarse‑denier yarn? A: Appropriately increase pressure by 0.05‑0.08 MPa for coarse‑denier yarn processing.

Q6: The higher feeding‑roller pressure, the better feeding stability? A: No, excessive pressure will cause filament extrusion damage.

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