316 Stainless Steel Wire Mesh Demister Pad for Gas Liquid Separation
Price:
$29-86/set
MOQ:
10 PCS
Delivery Time:
5-8 work days
Brand:
YUANHAI
Product Description
316 SS Wire Mesh Demister Pad - Durable Vapor Liquid Separation for Industrial Use
Product Attributes
| Material | Metal, 316L, Stainless Steel |
| Hole Shape | Round, Square |
| Width | Customized, Require |
| Type | Filter Elements, Filter Disc |
| Length | Customize Length, Requirement |
| Application | Kinds Filtration Industry, Chemical Industry, Gas Liquid Separation |
| Feature | Corrosion Resistance, high mechanical damping characteristics and non-linear spring rates |
| Usage | Liquid Filter, Air Filter, gas-liquid separator |
Product Description
Our 316 stainless steel wire mesh demister pad is an industrial-grade mist elimination solution designed for superior vapor-liquid separation in harsh processing environments. Manufactured with high-quality 316 stainless steel wires, these demister pads effectively remove liquid droplets from gas streams while offering exceptional corrosion resistance.
Key Advantages
- Premium 316 stainless steel construction for maximum corrosion resistance
- Multi-layer mesh design ensures high separation efficiency (99%+ for droplets >3μm)
- Maintains structural integrity at temperatures up to 480°C (900°F)
- Low pressure drop design minimizes energy consumption
- Customizable configurations for specific process requirements
Technical Specifications
- Material: 316 stainless steel (optional 316L available)
- Wire Diameter: 0.15mm-0.3mm (standard)
- Mesh Density: 100-200 kg/m³ (customizable)
- Standard Thickness: 100mm or 150mm (other sizes available)
- Maximum Operating Temperature: 480°C (900°F)
- Separation Efficiency: 99% for droplets >3μm
- Pressure Drop: <250 Pa at 1.5m/s gas velocity
Applications
- Chemical processing plants
- Oil & gas refineries
- Petrochemical facilities
- Power generation systems
- Marine and offshore applications
- Pharmaceutical production
- Food processing equipment
Manufacturing Process
- High-quality 316 stainless steel wire selection
- Precision knitting into multi-layer mesh structure
- Special crimping process for optimal gas flow
- Edge binding with reinforced stainless steel frame
- Quality inspection including:
- Mesh density verification
- Dimensional accuracy check
- Material composition testing
FAQ
Q: What is the main advantage of 316 SS demister pads?
A: They offer superior corrosion resistance, especially in chloride/saltwater environments, lasting 3-5 times longer than standard steel.
Q: What size droplets can these remove?
A: Effectively captures droplets as small as 3 microns with ≥99% efficiency.
Q: How do I choose the right thickness?
A: Standard 100mm works for most applications; 150mm provides higher efficiency for fine mists.
Q: What temperatures can they handle?
A: Continuous operation up to 480°C (900°F), with short-term peaks to 550°C (1020°F).
Q: How do I clean them?
A: Simple water rinsing or mild chemical cleaning; avoid abrasive methods.
Q: What's the delivery time?
A: Standard sizes ship in 5-7 days; custom configurations take 2-3 weeks.
Q: What's the typical lifespan?
A: 5-8 years in continuous operation, depending on chemical exposure.
Q: Do you provide installation support?
A: Yes, we offer technical drawings and installation guidelines with every order.
Technical Data Sheet
| Parameter | Details |
|---|---|
| Material | 304 Stainless Steel (ASTM A240 compliant) |
| Wire Diameter | 0.1mm-0.3mm (customizable) |
| Mesh Density | 100-300 kg/m³ (standard), other densities available |
| Thickness | 50mm-300mm (typical) |
| Operating Temp | -20°C to +400°C |
| Pressure Drop | <30 Pa (design-dependent) |
| Applications | Scrubbers, distillation towers, LNG plants, HVAC, marine exhaust systems |
Related Videos
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Anping yuanhai wire mesh products Co., Ltd
Location
East of Huangcheng Village,northeast of Huangcheng Township,anping County
Contact Person
Amanda