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HENGST
1018421B


$1,838.00 USD

Tags:

  • HENGST
  • Material:1018421B
  • Model:R928056976

Quantity in stock: 0

Note: Sales tax, and shipping will be calculated at checkout.
***Disclaimer: The following summary contains information gathered from various sources such as product descriptions, technical specifications and catalogs. While efforts have been made to provide accurate details, inaccuracies may occur. It is advised to verify all information by contacting Hengst directly.***
The Hengst 450PBFN0250-PWR6A00-V5,0-M-Z1 (1018421B) is a high-performance manifold filter designed for demanding applications requiring robust filtration solutions. This model features a multilayer glass fiber material filter media, designated as PWR, which provides superior filtration efficiency and durability. With a nominal size of 0250, it is engineered to handle high-pressure environments with a maximum working pressure of 450 bar and a nominal pressure rating of 450 bar. The filter is built with a nodular cast iron and carbon steel housing, ensuring strength and resilience under challenging conditions. This particular model includes an NBR seal designation, ensuring reliable sealing performance in various operational settings. The support cage material is standard, and the bypass cracking pressure is set at 7.0 bar, providing an efficient bypass mechanism when necessary. Additionally, the filter is compliant with DIN24550 standards and suitable for HFC/HFA fluids. The Hengst 450PBFN0250-PWR6A00-V5,0-M-Z1 features bottom-side mounting with a vertical port position measuring 30mm according to factory standards. It incorporates an optical indicator for monitoring purposes with a switching point set at 5 bar but does not include a check valve or cyclone effect design. The adhesive basis used in this model is PUR-Basis, contributing to its robust construction. Overall, this manifold filter from Hengst's series 450PBF is ideal for applications that require reliable filtration under high pressure while maintaining structural integrity and efficiency in fluid management systems.