HENGST
1011897B
$1,678.28 USD
Tags:
- HENGST
- Material:1011897B
- Model:R928046177
- Summary:Hydraulic-Filter Element
Quantity in stock: 0
***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 20.750 PWR20-S00-7-M (1011897B) is a hydraulic filter element designed to optimize filtration in hydraulic systems. This component plays a crucial role in maintaining system cleanliness by determining key filtration parameters such as retention capacity, dirt holding capacity, and pressure loss through its advanced filter media. The filter media is made from multilayer glass fiber material, designated as PWR, which ensures efficient filtration performance. With dimensions of 373 mm in length, 142.5 mm in outer diameter, and 95 mm in inner diameter, this filter element is engineered to fit specific hydraulic applications. The design class of the Hengst 20.750 PWR20-S00-7-M is categorized under the 'Filter element' series, with a nominal size of 750 and support cage material specified as standard. The seal designation is NBR with a seal code of M, ensuring compatibility with various hydraulic fluids while maintaining integrity under operational conditions. The bypass valve code is set at 7 with a bypass cracking pressure of 3.5 bar, allowing for controlled fluid flow when necessary. Additionally, the collapse pressure rating is marked as standard within this model's capabilities, ensuring reliability under high-pressure conditions without compromising structural integrity. This particular model does not feature suitability for HFC/HFA fluids or DIN24550 compliance and does not include a support cage or additional volume capacity beyond its stated specifications. Overall, the Hengst 20.750 PWR20-S00-7-M filter element serves as an essential component in hydraulic systems requiring efficient and reliable filtration to protect sensitive components from contaminants and extend system longevity.
The Hengst 20.750 PWR20-S00-7-M (1011897B) is a hydraulic filter element designed to optimize filtration in hydraulic systems. This component plays a crucial role in maintaining system cleanliness by determining key filtration parameters such as retention capacity, dirt holding capacity, and pressure loss through its advanced filter media. The filter media is made from multilayer glass fiber material, designated as PWR, which ensures efficient filtration performance. With dimensions of 373 mm in length, 142.5 mm in outer diameter, and 95 mm in inner diameter, this filter element is engineered to fit specific hydraulic applications. The design class of the Hengst 20.750 PWR20-S00-7-M is categorized under the 'Filter element' series, with a nominal size of 750 and support cage material specified as standard. The seal designation is NBR with a seal code of M, ensuring compatibility with various hydraulic fluids while maintaining integrity under operational conditions. The bypass valve code is set at 7 with a bypass cracking pressure of 3.5 bar, allowing for controlled fluid flow when necessary. Additionally, the collapse pressure rating is marked as standard within this model's capabilities, ensuring reliability under high-pressure conditions without compromising structural integrity. This particular model does not feature suitability for HFC/HFA fluids or DIN24550 compliance and does not include a support cage or additional volume capacity beyond its stated specifications. Overall, the Hengst 20.750 PWR20-S00-7-M filter element serves as an essential component in hydraulic systems requiring efficient and reliable filtration to protect sensitive components from contaminants and extend system longevity.
The Filter Element is the central component in a filter, where the actual filtration takes place. The key filter parameters such as retention capacity, dirt holding capacity and pressure loss are determined by the Filter Element and the filter media used.