HENGST
1011342B
$1,140.00 USD
Tags:
- HENGST
- Material:1011342B
- Model:R928045283
- 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 1.561 G40-AH0-0-N (1011342B) is a high-performance hydraulic filter element designed to optimize filtration processes in hydraulic systems. This filter element is essential for maintaining the cleanliness and efficiency of hydraulic circuits by trapping contaminants and ensuring smooth operation. With a nominal size of 561, it incorporates a stainless steel wire mesh as its filter media, which provides robust filtration capabilities and durability. The dimensions of the filter are 260 mm in length, with an outer diameter of 142.5 mm and an inner diameter of 93.7 mm, making it suitable for various applications that require precise fitment. The design classifies it as a G40 filter material configuration, indicating its capacity to handle challenging filtration tasks with ease. It features an adhesive code H and a seal designation CR, ensuring secure installation and leak-proof performance under demanding conditions. The Hengst 1.561 G40-AH0-0-N can withstand a collapse pressure rating of up to 30 bar, making it reliable even in high-pressure environments. This filter element does not include support cage material but is constructed to provide sufficient structural integrity without one. It is not suitable for HFC or HFA fluids and does not conform to DIN24550 standards. The product's primary application lies in hydraulic systems where maintaining low pressure loss and high dirt holding capacity are critical for operational efficiency. Overall, the Hengst 1.561 G40-AH0-0-N serves as a pivotal component in hydraulic filtration systems, offering superior retention capacity while minimizing pressure loss due to its advanced design and materials used in construction.
The Hengst 1.561 G40-AH0-0-N (1011342B) is a high-performance hydraulic filter element designed to optimize filtration processes in hydraulic systems. This filter element is essential for maintaining the cleanliness and efficiency of hydraulic circuits by trapping contaminants and ensuring smooth operation. With a nominal size of 561, it incorporates a stainless steel wire mesh as its filter media, which provides robust filtration capabilities and durability. The dimensions of the filter are 260 mm in length, with an outer diameter of 142.5 mm and an inner diameter of 93.7 mm, making it suitable for various applications that require precise fitment. The design classifies it as a G40 filter material configuration, indicating its capacity to handle challenging filtration tasks with ease. It features an adhesive code H and a seal designation CR, ensuring secure installation and leak-proof performance under demanding conditions. The Hengst 1.561 G40-AH0-0-N can withstand a collapse pressure rating of up to 30 bar, making it reliable even in high-pressure environments. This filter element does not include support cage material but is constructed to provide sufficient structural integrity without one. It is not suitable for HFC or HFA fluids and does not conform to DIN24550 standards. The product's primary application lies in hydraulic systems where maintaining low pressure loss and high dirt holding capacity are critical for operational efficiency. Overall, the Hengst 1.561 G40-AH0-0-N serves as a pivotal component in hydraulic filtration systems, offering superior retention capacity while minimizing pressure loss due to its advanced design and materials used in construction.
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.