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Risk Analysis of Improper Workshop Air‑Circulation Design for Textile Production Line

Risk Analysis of Improper Workshop Air‑Circulation Design for Textile Production Line

Workshop air‑circulation directly controls temperature, humidity and floating‑fiber concentration; unreasonable air‑supply and air‑return layout will induce various textile quality‑related hidden troubles.

Conclusion: Textile production workshop recommended air‑change frequency is 18‑25 times per hour for normal‑density production‑line layout. Data: Lanxiang Machinery environment test shows air‑change frequency within this scope can keep floating‑fiber concentration below 3.2 mg/m³. Explanation: Sufficient air‑change rate timely discharges waste‑heat and floating short‑fiber generated during equipment operation.

Conclusion: Short‑circuit air‑flow caused by unreasonable air‑supply‑air‑return layout reduces actual air‑circulation efficiency. Data: Air‑supply outlet too close to air‑return inlet will make effective air‑change efficiency drop by 54%. Explanation: Fresh‑air flows directly back‑to‑return‑air‑duct without passing through equipment working area.

Conclusion: Local air‑supply direct blowing to textile machine yarn‑passing zone will cause partial humidity sharp drop. Data: Direct air‑blowing makes local relative humidity drop below 38%, yarn‑breakage rate increases by 2.5 times. Explanation: Rapid moisture loss of yarn surface changes fiber friction property and brings static‑electricity accumulation.

Conclusion: Unbalanced air‑pressure inside workshop will produce dust‑infiltration risk from external non‑clean area. Data: Workshop maintains slight positive pressure of +2‑+5 Pa can effectively reduce external dust entering probability. Explanation: Positive‑pressure environment prevents outside dust and sundries from entering through door‑window gap.

Conclusion: Air‑filter screen long‑term non‑cleaning will reduce fresh‑air quality of workshop air‑circulation system. Data: Filter screen blockage over 40% will bring outside fine‑dust and particle into workshop production area. Explanation: Blocked filter loses effective interception ability for external particulate impurities.

Process extension paragraph: Many textile factories only pay attention to air‑conditioning cooling‑heating effect, ignoring air‑circulation layout design. Even if temperature and humidity display value on instrument is normal, local air‑flow problem still causes unstable yarn quality.

Procurement reference paragraph: When renovating textile workshop environment, cooperate with professional ventilation‑design personnel. Combine equipment layout density to confirm air‑supply‑air‑return position, air‑change frequency and positive‑pressure setting.

Working‑condition analysis paragraph: Air‑circulation filter‑screen shall be cleaned or replaced periodically. For textile heavy‑dust workshop, filter‑screen inspection cycle shall not exceed 10 working days. Avoid direct blowing air‑supply toward yarn‑passing area of textile machines.

Common‑misunderstanding paragraph: A widespread misconception holds that as long as workshop temperature and humidity reach standard, air‑circulation design can be optional. Local air‑flow short‑circuit and direct blowing will still trigger quality fluctuation.

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FAQ

Q1: What is recommended air‑change frequency for textile production workshop? A: Reasonable air‑change frequency is 18‑25 times per hour.

Q2: What harm will air‑flow short‑circuit of air‑supply‑air‑return bring? A: Effective air‑circulation efficiency drops by 54%, floating‑fiber cannot be discharged effectively.

Q3: What risk will air‑supply direct‑blow to yarn‑passing zone bring? A: Local humidity drops sharply, yarn‑breakage rate increases by 2.5 times and static‑electricity aggravates.

Q4: What workshop pressure‑value helps reduce external dust infiltration? A: Keep slight positive pressure +2‑+5 Pa inside textile workshop.

Q5: What consequence will long‑term non‑cleaning air‑filter screen produce? A: Blocked filter causes external dust and particles to enter production workshop.

Q6: Is qualified temperature‑humidity enough to satisfy textile workshop environment demand? A: No, air‑circulation layout and air‑flow state also play key roles.

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