HENGST
1015786B
$458.15 USD
Tags:
- HENGST
- Material:1015786B
- Model:R928053926
- 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 10.330LA PWR6-A00-B6-M SO3000 (1015786B) is a high-performance hydraulic filter element designed to optimize filtration in hydraulic systems. This component is integral to the filtration process, where it effectively determines key parameters such as retention capacity, dirt holding capacity, and pressure loss through its advanced filter media. The filter media used in this model is a multilayer glass fiber material designated as PWR, which ensures efficient filtration and durability under various operating conditions. The element measures 194.5 mm in length with an outer diameter of 94.5 mm and an inner diameter of 48.3 mm, making it suitable for systems requiring these specific dimensions. The design features a bypass valve code B6 and a collapse pressure code A, with a collapse pressure rating of 30 bar, ensuring reliability under high-pressure conditions. It includes a support cage made from standard materials for added stability and does not require additional support cages due to its robust construction. The nominal size of this filter element is specified as 330LA, providing ample surface area for effective filtration. This filter element is equipped with NBR seals (seal code M), which offer excellent compatibility with hydraulic fluids and ensure leak-free operation. Additionally, the Hengst 10 series design classifies it as an advanced option for those seeking superior performance in hydraulic applications. It is suitable for use with HFC and HFA fluids but not compliant with DIN24550 standards. Overall, the Hengst 10.330LA PWR6-A00-B6-M SO3000 offers exceptional filtration capabilities, making it an ideal choice for maintaining cleanliness and efficiency in demanding hydraulic systems.
The Hengst 10.330LA PWR6-A00-B6-M SO3000 (1015786B) is a high-performance hydraulic filter element designed to optimize filtration in hydraulic systems. This component is integral to the filtration process, where it effectively determines key parameters such as retention capacity, dirt holding capacity, and pressure loss through its advanced filter media. The filter media used in this model is a multilayer glass fiber material designated as PWR, which ensures efficient filtration and durability under various operating conditions. The element measures 194.5 mm in length with an outer diameter of 94.5 mm and an inner diameter of 48.3 mm, making it suitable for systems requiring these specific dimensions. The design features a bypass valve code B6 and a collapse pressure code A, with a collapse pressure rating of 30 bar, ensuring reliability under high-pressure conditions. It includes a support cage made from standard materials for added stability and does not require additional support cages due to its robust construction. The nominal size of this filter element is specified as 330LA, providing ample surface area for effective filtration. This filter element is equipped with NBR seals (seal code M), which offer excellent compatibility with hydraulic fluids and ensure leak-free operation. Additionally, the Hengst 10 series design classifies it as an advanced option for those seeking superior performance in hydraulic applications. It is suitable for use with HFC and HFA fluids but not compliant with DIN24550 standards. Overall, the Hengst 10.330LA PWR6-A00-B6-M SO3000 offers exceptional filtration capabilities, making it an ideal choice for maintaining cleanliness and efficiency in demanding hydraulic systems.
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.