
The multi-layer stainless steel sintered wire mesh is typically composed of more than 5 layers of stainless steel wire mesh with varying mesh sizes and patterns. These layers are carefully stacked on top of each other and then bonded together through a high-temperature sintering process.
The multi-layer stainless steel sintered wire mesh is typically composed of more than 5 layers of stainless steel wire mesh with varying mesh sizes and patterns. These layers are carefully stacked on top of each other and then bonded together through a high-temperature sintering process. The sintering process involves applying heat and pressure to the stacked layers, causing the wires to bond at their contact points without the need for additional binders or adhesives. This results in a strong and uniform structure that maintains its integrity even under high temperatures and corrosive environments.
Features and Benefits
1. High Filtration Efficiency. The multiple layers of woven wire mesh in the sintered mesh provide a large filtration area and intricate tortuous paths for fluid flow, ensuring efficient particle retention and separation.
2. Excellent Mechanical Strength. The sintering process creates strong bonds between the wire mesh layers, resulting in a robust material that can withstand high pressures and mechanical stresses without deformation or damage.
3. Uniform Pore Structure. The controlled sintering process ensures a consistent and uniform pore structure throughout the material, allowing for precise filtration and separation of particles based on size.
4. Chemical and Corrosion Resistance. Stainless steel is inherently resistant to corrosion and chemical attack, making the sintered mesh suitable for use in harsh environments where exposure to corrosive substances is a concern.
5. Good Temperature Tolerance. The sintered mesh can withstand high temperatures without compromising its structural integrity, making it ideal for applications involving high-temperature fluids or gases.
6. Long Service Life. Due to its durability and resistance to wear and tear, the multi-layer stainless steel sintered wire mesh offers a long service life and requires minimal maintenance over time.
Parameters
Model number |
Nominal precision (μm) |
Absolute precision (μm) |
Gases permeability (L/min · dm2 · kPa) |
Bubbling pressure (pa) |
ADBSW1 |
1 |
6-7 |
180 |
5300-6000 |
ADBSW2 |
2 |
8-9 |
240 |
4300-5000 |
ADBSW5 |
5 |
11-13 |
260 |
3000-3700 |
ADBSW10 |
10 |
16-18 |
310 |
2700-3300 |
ADBSW15 |
15 |
24-26 |
350 |
2000-2600 |
ADBSW20 |
20 |
28-32 |
450 |
1800-2300 |
ADBSW25 |
25 |
34-36 |
620 |
1400-1900 |
ADBSW30 |
30 |
40-45 |
690 |
1200-1700 |
ADBSW40 |
40 |
50-55 |
720 |
1000-1500 |
ADBSW50 |
50 |
71-80 |
850 |
900-1200 |
ADBSW70 |
70 |
89-95 |
900 |
700-1100 |
ADBSW100 |
100 |
110-120 |
1080 |
650-1000 |
ADBSW150 |
150 |
180-200 |
2600 |
550-800 |
ADBSW200 |
200 |
260-280 |
2800 |
450-600 |
Applications
The Multi-Layer Stainless Steel Sintered Wire Mesh finds a wide range of applications across various industries due to its unique properties and versatility. Some common applications include:
1. Filtration and Separation. The sintered mesh is widely used in filtration systems for liquid and gas filtration, air purification, wastewater treatment, and solid-liquid separation processes.
2. Fluidization and Distribution. The uniform pore structure of the sintered mesh makes it ideal for fluidization and distribution applications in industries such as pharmaceuticals, food processing, and chemical processing.
3. Catalyst Support. The high surface area and stability of the sintered mesh make it suitable for use as a catalyst support in chemical reactions and catalytic converters.
4. Pressure Equalization. The sintered mesh is utilized in pressure equalization applications to control pressure differentials across membranes, filters, and enclosures.
5. Noise Reduction. The sintered mesh is employed in noise reduction systems by acting as a silencer or diffuser in exhaust systems, HVAC systems, and industrial equipment.
Maintenance and Cleaning
Proper maintenance and cleaning of the multi-layer stainless steel sintered wire mesh are essential to ensure optimal performance and longevity. Here are some tips for maintaining and cleaning the sintered mesh:
1. Regular Inspection. Periodically inspect the sintered mesh for signs of wear, clogging, or damage. Replace the mesh if any defects are detected to prevent system inefficiencies.
2. Backwashing. For filtration applications, perform backwashing to remove accumulated particles and debris from the mesh surface. Use a gentle flow of clean water or a suitable cleaning solution to flush out contaminants.
3. Chemical Cleaning. In cases where the mesh is exposed to corrosive substances or stubborn contaminants, consider using a mild cleaning solution or solvent to dissolve and remove the deposits. Rinse thoroughly after cleaning to prevent residue buildup.
4. Avoid Abrasive Cleaning. Refrain from using abrasive materials or harsh chemicals that may damage the surface of the sintered mesh. Opt for soft brushes or cloths for gentle cleaning.
5. Drying. After cleaning, ensure the sintered mesh is completely dry before reinstallation to prevent microbial growth or rust formation. Use a gentle airflow or pat-dry method to aid in the drying process.
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AIDA Philosophy
1. Management Concept:
· Satisfy the customers' demand --- Touch customers, trust with our products and services
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2. Company Mission:
· Focus on customer needs, provide best filtering solution
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3. Corporate Vision:
· Become a global purification leadership brand
4. Values:
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