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High-Humidity Paper Mills: Reliable Power in Pulp Mist and Steam

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High-Humidity Paper Mills: Reliable Power in Pulp Mist and Steam
τα τελευταία νέα της εταιρείας για High-Humidity Paper Mills: Reliable Power in Pulp Mist and Steam
Explosion-Proof Motor Selection Guide for High-Temperature, High-Humidity Paper Mills: Reliable Power in Pulp Mist and Steam
1. The Unique Hazard of Paper Machine Rooms

The paper industry is often underestimated as "low-risk," but reality tells a different story. Dryer sections operate at 80–95°C with 85%–95% relative humidity year-round, while airborne fiber dust, rosin mist, and hydrogen sulfide gas are ever-present.

In 2024, a major paper mill in South China experienced a shutdown when an IP55 motor in the dryer section accumulated condensation inside its terminal box, causing phase-to-phase arcing that ignited fiber dust. The 48-hour outage cost over 3 million RMB. Root cause: inadequate ingress protection and no condensate drainage design.

2. Hazardous Area Classification in Paper Mills

Per GB 50058-2014:

Area

Classification

Primary Hazards

Pulping pit (underground)

Zone 21 (dust)

Dry paper scraps, fiber dust clouds

Headbox area

Zone 2 (gas)

Rosin vapor, formaldehyde

Dryer section

Zone 22 (dust) + Zone 2 (gas)

Fiber dust, trace H₂S in steam

Coating preparation

Zone 21 (dust)

Calcium carbonate, starch dust

Key insight: The dryer section is a mixed hazardous area​ — motors must carry both gas (Ex) and dust (Ex tD) certifications.

3. Recommended Protection Scheme: Ex tb IIIC T125°C Db + Ex db IIB T4 Gb
Ex tb IIIC T125°C Db ← Dust protection (Group III, conductive dust, max surface temp 125°C) Ex db IIB T4 Gb ← Gas protection (Group IIB, T4 temperature class)
4. Key Technical Measures
4.1 Fully Enclosed Design with Automatic Condensate Drain
  • Float-type automatic drain valve at housing bottom — discharges accumulated water automatically

  • Valve material: 316L SS + PTFE gasket, acid/alkali resistant

  • Terminal box tilted ≥5°, with drain hole at lowest point to prevent pooling

4.2 Moisture-Resistant Insulation System
  • Stator winding: Class H insulation (180°C); temperature rise evaluated per Class F (105K limit)

  • Impregnating varnish: hydrolysis-resistant polyesterimide resin, passing 1,000-hour dual-85 test​ (85°C / 85% RH)

  • Slot wedges and tie cords: high-temperature aramid fiber — no moisture absorption or deformation

4.3 Anti-Corrosion Surface Treatment
  • Housing exterior: epoxy zinc-rich primer + polyurethane topcoat​ (total film thickness ≥ 200 μm)

  • Fan cover and blades: 304 SS or reinforced nylon — no rust debris falling into airflow path

  • Nameplate: laser-etched stainless steel, rivet-mounted (no adhesive)

4.4 Bearing System Upgrade
  • Grease: high-temperature complex lithium grease (range -20°C to 160°C)

  • Pressure relief channel in bearing housing to prevent grease expansion into windings

  • V-ring rubber seals on both drive and non-drive ends to block steam ingress

5. Verified Test Data

Third-party lab simulation of paper machine dryer environment (90°C / 95% RH / 10 mg/m³ fiber dust, 2,000-hour continuous run):

Test Item

Standard IP55 Motor

This Explosion-Proof Motor

Acceptance Criteria

Insulation resistance (hot)

12 MΩ

380 MΩ

≥ 50 MΩ

Terminal box condensate volume

15 mL/day

0.3 mL/day

≤ 1 mL/day

Bearing temperature rise

55 K

38 K

≤ 45 K

Housing corrosion area (after 2,000h)

8%

< 0.5%

≤ 3%

6. Selection Recommendations

Application

Recommended Model

Key Features

Dryer section (high temp/humidity)

Ex tb IIIC T125°C + Ex db IIB T4

Auto drain valve, Class H insulation, SS fan

Pulping area (heavy dust)

Ex tb IIIC T125°C Db

Dust-sealed shaft extension, reinforced filter screen

Coating room (wet + dusty)

Ex tb IIIC T125°C Db + anti-corrosion coating

Fully enclosed, PTFE seals

Χρόνος μπαρ : 2026-07-21 09:11:26 >> blog κατάλογος
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Tellhow Technology (Chongqing) Co., Ltd.

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Τηλ.:: +86 2386551944

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