dxr
Solid-liquid separation centrifuge filter mesh
Solid Liquid Separation Centrifuge Filter Mesh for Industrial Filtration
Our centrifuge filter mesh is specifically designed for solid-liquid separation systems in industrial centrifuges. With over 30 years of manufacturing experience, we provide high-precision filter mesh solutions that ensure stable separation performance, long service life, and consistent filtration accuracy.
This solid liquid separation mesh is widely used in chemical processing, pharmaceuticals, food production, and wastewater treatment industries.
Why Our Centrifuge Filter Mesh Performs Better
1. High Filtration Accuracy
The filtration performance depends on mesh count and wire diameter. Our centrifuge filter mesh is produced using precision weaving machines with tolerance controlled within ±3%. For example:
- 100 mesh ≈ 150 micron filtration
- 200 mesh ≈ 75 micron filtration
- 300 mesh ≈ 48 micron filtration
This ensures stable and repeatable solid-liquid separation results in high-speed centrifuge operations.
2. Strong Mechanical Strength
During centrifuge operation, rotational speeds can exceed 3000 RPM, creating significant tensile stress. Our mesh is made from high-quality stainless steel (304 / 316), offering:
- High tensile strength
- Excellent deformation resistance
- Stable structure under high-speed rotation
This significantly reduces the risk of mesh breakage and improves operational safety.
3. Excellent Corrosion Resistance
For chemical and wastewater applications, corrosion resistance is critical. We use 316 stainless steel with molybdenum content (2–3%), which improves resistance to:
- Acidic environments
- Alkaline solutions
- Salt corrosion
This extends the service life of the centrifuge filter mesh by 30–50% compared to standard materials.
4. Custom Design for Centrifuge Systems
Different centrifuge machines require different mesh structures. We provide customized solutions based on:
- Machine model
- Separation material
- Particle size requirements
- Operating conditions
Available forms include:
- Mesh sheets
- Cylindrical filter screens
- Cone-shaped filter mesh
Technical Specifications
| Mesh Count | Wire Diameter | Opening Size | Material | Application |
|---|---|---|---|---|
| 100 mesh | 0.10 mm | 150 micron | SS304 | Chemical filtration |
| 200 mesh | 0.05 mm | 75 micron | SS316 | Pharmaceutical filtration |
| 300 mesh | 0.035 mm | 48 micron | SS316 | Fine particle separation |
| Custom | 0.02–0.5 mm | Custom | SS304 / SS316 | Customized applications |
Applications
- Solid-liquid separation in centrifuges
- Chemical processing industry
- Food and beverage filtration
- Pharmaceutical production
- Wastewater treatment
Manufacturing Strength (Why Choose Us)
As a factory with over 30 years of experience, we control the entire production process:
- Advanced weaving machines (high precision control)
- Strict quality inspection (mesh count & tolerance testing)
- Stable raw material supply (certified stainless steel)
- Custom production capability (OEM & drawings accepted)
Our production capacity ensures fast delivery and consistent quality for bulk orders.
Packaging and Delivery
- Inner: plastic film + waterproof paper
- Outer: wooden case or carton
- Delivery time: 7–30 days
Contact us
✔ Custom size available
✔ Free sample support
✔ Fast response within 24 hours
Contact us now to get a quotation for your centrifuge filter mesh project.
- Material:
- galvanized wire or stainless steel wire
- Product category:
- Weave Wire Mesh
- Weave Style:
- Plain Weave/Twill Weave/Herringbone weave/Dutch Weave
- Technique:
- woven
- Customized:
- All sizes can be customized as per your demand
- sample:
- Most of our products are free to send samples, some products require you to pay the freight.
- Product Applications:
- Perfectly suited for a wide array of architectural and functional purposes, stainless steel wire mesh is used in various industries. The petroleum, chemical environmental protection,mining, aerospace, paper making, electronic, metallurgical, food industries all utilize woven wire mesh.