Buy a 4 inch (DN100) stainless steel flanged strainer online. With PN16 working pressure, SS 304/316 material, the Y-type filter is widely used in the chemical industry, heating, refrigeration, petroleum, construction, wind power, etc.
Specifications
- Model: ATO-GL41H
- Type: Y Type Strainer
- Nominal Diameter: 4 inch (DN100)
- Working Pressure: PN16
- Product Material: 304/316 Stainless Steel
- Connection Form: Flange
- Temperature Range: -40°C~180°C
- Weight: 16.5kg
Dimensions (Unit: mm)
Main Part Materials |
NO. |
Part Name |
Materials |
QTY |
1 |
BODY |
CF8/CF8M |
1 |
2 |
FILTER |
S304/S316 |
1 |
3 |
JOINT GASKET |
PTRE/RPTFE |
1 |
4 |
CAP |
CF8/CF8M |
1 |
5 |
BOLT OUTER HEXAGON |
S304 |
4-12 |
DN |
b |
L±1.05 |
D |
D1 |
D2 |
T |
f |
z-φd |
100 |
100 |
322 |
220 |
180 |
156 |
22 |
2 |
8-φ18 |
Applications
Y-type strainers can remove impurities, debris, and solid particles from fluid or gas pipelines in industrial and commercial applications. They are typically used in applications where a high flow rate is required, and where there is a risk of damage to equipment or processes from the presence of solid particles.
Tips: Why use a Y strainer instead of other types of strainers?
A Y strainer is often preferred over other types due to its compact design and efficient debris removal capabilities. The Y shape allows for a relatively low-profile installation in pipelines, making it suitable for applications with space constraints. Its angled straining element effectively captures solid particles, preventing their entry into downstream equipment. Y strainers are particularly advantageous in situations where periodic maintenance for cleaning is acceptable. Compared to basket strainers, Y-type strainers are easier to clean and typically result in less pressure drop. The simplicity of their design and ease of installation, often facilitated by flanged connections, contribute to their popularity in industries such as petrochemical, water treatment, and HVAC, where protecting equipment from debris is crucial for maintaining system efficiency.