Fluid Type | Air、Vacuum |
Operating Pressure | 0-16kgf/cm2 (0-1.6mpa) |
Negative Pressure | -750mmHg(10Torr) |
Operating Temperature Range | -20°C~200°C |
Tube Material | PU and NYLON |
Material | Stainless steel |
BLW Stainless Steel Filter Muffler (Models RMA/RMW/RMC/RMS)
This BLW brand stainless steel filter muffler, manufactured in Zhejiang, China, is designed for air medium applications with a working pressure range of 0–1.5MPa and temperature resistance from -20°C to 150°C. As a filter muffler, it combines noise reduction with air filtration, ensuring efficient performance in industrial pneumatic systems.
Key Features:
- Material & Durability
- Constructed with stainless steel (likely 304/316 grade based on industry standards), offering excellent corrosion resistance and structural integrity in harsh environments
- Plastic bag packaging ensures protection during transportation and storage.
- Constructed with stainless steel (likely 304/316 grade based on industry standards), offering excellent corrosion resistance and structural integrity in harsh environments
- Noise Reduction Mechanism
- Utilizes filter muffler technology, integrating porous structures and acoustic absorption materials (e.g., glass fiber or sintered metal) to attenuate noise by converting sound energy into heat
- The design likely incorporates resistance, expansion, and reflection principles to optimize noise reduction across broad frequency ranges
- Performance Specifications
- Pressure Loss Control: Engineered to maintain airflow efficiency with minimal pressure drop, critical for pneumatic systems
- Temperature Adaptability: Suitable for both low-temperature environments (e.g., refrigeration systems) and high-temperature industrial processes
- Application Flexibility
- Ideal for industrial air compressors, pneumatic tools, and HVAC systems, where noise control and air purity are essential
- Multiple models (RMA/RMW/RMC/RMS) cater to diverse installation requirements, such as threaded or flanged connections
- Compliance & Safety
- Adheres to noise reduction standards (e.g., Industrial Enterprise Noise Standards) while preventing airflow obstruction risks like pressure buildup or system failure