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Metal Wire Mesh Structured Packing: 250Y/500Y/700Y in SS304, 316L & Special Alloys

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Metal Wire Mesh Structured Packing: 250Y/500Y/700Y in SS304, 316L & Special Alloys

Metal Wire Mesh Structured Packing: 250Y/500Y/700Y in SS304, 316L & Special Alloys
September 24, 2026

 

Metal wire mesh structured packing discs in 250Y and 500Y specifications made from SS304 and SS316L stainless steel

Figure 1: Corrugated wire mesh packing discs (250Y & 500Y) — the highest-efficiency structured packing for precision distillation.

Metal Wire Mesh Structured Packing: 250Y/500Y/700Y in SS304, 316L & Special Alloys

Engineer's Brief: Also known as corrugated wire gauze packing (or "ripple" type in some markets), metal wire mesh structured packing delivers the lowest HETP of any tower packing — as low as 150 mm per theoretical stage. It is the default choice for precision distillation, isotope separation, and heat-sensitive vacuum service. Compare with our general Structured Packing for Distillation for perforated-plate alternatives.

1. What Is Metal Wire Mesh Structured Packing?

Metal wire mesh structured packing consists of corrugated (gauze) sheets woven from fine metal wire, assembled into cylindrical discs that fit the tower diameter. The corrugations run at alternating angles (typically 45° for "Y" type, 30° for "X" type), creating a highly uniform network of triangular flow channels .

Unlike perforated plate packing (which uses stamped metal sheets), wire mesh uses woven gauze — providing 3× more surface area per unit volume and exceptional capillary wetting. This translates to HETP values of 150–400 mm, compared to 400–600 mm for plate-type structured packing . The trade-off: lower flood capacity (F-factor 1.5–2.5 Pa0.5) and higher cost.

Close-up of corrugated wire mesh gauze showing woven metal filaments and 45-degree Y-type corrugation channels

Figure 2: Woven wire gauze with 45° Y-type corrugations — the microstructure that delivers HETP as low as 150 mm.

2. Technical Specifications & Dimensions

All data below are industry-standard values for SS304/316L wire mesh packing. FXSINO manufactures to your tower ID with segment heights of 50–200 mm per disc:

Model Surface Area (m²/m³) Void Fraction (%) Typical HETP (mm) ΔP (kPa/stage) F-Factor (Pa0.5)
250Y 250 95.0 250–400 0.2–0.3 2.0–2.5
350Y 350 93.0 180–280 0.15–0.25 1.8–2.3
500Y 500 90.0 120–200 0.1–0.2 1.5–2.0
700Y 700 85.0 80–150 0.08–0.15 1.2–1.8

Data compiled from industry standard wire mesh structured packing datasheets. HETP and ΔP vary with liquid/vapor load. Replace with FXSINO measured values before publication.

3. Material Selection Guide

Wire mesh packing is available in a wide range of metals. Selection follows the same corrosion logic as other tower internals — see our 304 vs 316L Structured Packing guide for detailed thresholds:

Material Corrosion Resistance Max Temp Best Applications Relative Cost
SS304 Good (non-chloride) 450°C Organics, solvents, non-corrosive fractions Baseline
SS316L Excellent (chloride-resistant) 450°C Pharma, chlorinated solvents, acidic cuts +15–25%
Copper / Brass Good (non-oxidizing) 200°C Solvent recovery, anti-static service +20–30%
Nickel / Monel Excellent (caustic, HF) 500°C Caustic distillation, fluorochemicals +100–150%
Hastelloy C-276 Superior (strong acid/chloride) 650°C HCl, Cl2, severe corrosive service +200–300%
SS304 and SS316L wire mesh structured packing discs side by side showing subtle color difference between the two stainless grades

Figure 3: SS304 (left) vs SS316L (right) wire mesh discs — both deliver identical efficiency; 316L adds chloride immunity.

4. Wire Mesh vs. Perforated Plate Structured Packing

Factor Wire Mesh (This Page) Perforated Plate (Distillation Page)
HETP 150–400 mm (excellent) 400–600 mm (good)
Flood Capacity Low (F 1.5–2.5) High (F 2.5–3.5)
Cost per m³ Higher (woven gauze) Lower (stamped sheet)
Best For Precision separation, vacuum, heat-sensitive High-throughput absorption, general distillation

5. Primary Applications

  • • Precision Distillation: Isotope separation, enantiomer resolution, close-boiling azeotropes — where HETP < 200 mm is mandatory .
  • • Vacuum Distillation: Heat-sensitive chemicals (vitamins, fatty acids, pharma intermediates) at 5–50 mbar. Ultra-low ΔP (0.08–0.15 kPa/stage) minimizes reboiler temperature .
  • • Solvent Recovery: High-purity ethanol, IPA, acetone recovery — copper or SS316L gauze prevents product discoloration.
  • • Cryogenic Distillation: Air separation, LNG processing — aluminum or SS304 mesh with minimal ΔP.
Metal wire mesh structured packing discs stacked inside a distillation column with liquid distributor above

Figure 4: 500Y wire mesh discs stacked in a 0.8m ID vacuum distillation column with liquid collector & redistributor between sections.

6. Installation & Tower Internals

  • Support Grid: Wire mesh discs sit directly on a camel hump support grid with 90–95% open area. Grid bars must be ≤ 10 mm wide to prevent channeling.
  • Disc Stacking: Each disc is 50–200 mm high. Rotate adjacent discs 90° to prevent vapor bypass. Seal the outer rim with PTFE rope or custom-formed strip.
  • Bed Limiter: Install a hold-down plate above the top disc for vacuum or high-F-factor service to prevent fluidization.
  • Redistribution: Every 2–3 m of packed height requires a collector & redistributor to reset liquid distribution — wire mesh is especially sensitive to maldistribution.

7. Quick FAQ

Q: What's the difference between wire mesh and perforated plate structured packing?

A: Wire mesh (gauze) uses woven filaments and delivers HETP as low as 150 mm — ideal for precision/vacuum. Perforated plate uses stamped sheets, offers 2× flood capacity but HETP of 400–600 mm. See Section 4 above for the full comparison table.

Q: Can wire mesh packing be cleaned in place (CIP)?

A: Yes, but with caution. The fine gauze traps particulates more readily than plate packings. Use low-pressure (2–3 bar) spray balls and verify drainability. For polymer fouling, chemical soak (NaOH or solvent-based) is preferred over mechanical cleaning.

Q: What is the lead time for custom sizes?

A: Standard 250Y/500Y in SS304/316L ships in 10–15 days. Custom alloys (Hastelloy, Titanium) or non-standard corrugation angles (X-type) require 25–35 days. MOQ: 0.5 m³. Contact us with tower ID, bed height, and process conditions.

Request a Quote for Wire Mesh Structured Packing

Send your tower diameter, packed bed height, operating pressure (especially if vacuum), and fluid composition. We'll specify the optimal model (250Y/350Y/500Y/700Y), recommend material grade, and supply matched support grids, liquid distributors, and bed limiters for a complete tower package.

Contact FXSINO: jackieqiu9202@gmail.com | +86 18507999558

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