HENGST
1011623B
$174.00 USD
Tags:
- HENGST
- Material:1011623B
- Model:R928045784
- 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 2.140 G100-A00-0-M (1011623B) is a high-performance hydraulic filter element designed to optimize filtration processes by efficiently capturing contaminants. The core of this component is its stainless steel wire mesh filter media, which ensures durability and robust filtration capabilities. With dimensions of 150 mm in length, an outer diameter of 73.5 mm, and an inner diameter of 40.2 mm, it is engineered to fit seamlessly into compatible systems. This filter element boasts a nominal size of 140 and a collapse pressure rating of 30 bar, making it suitable for demanding environments where pressure stability is critical. The design includes an NBR seal, coded as M, which provides reliable sealing performance in various operational conditions. The Hengst filter element\u2019s design classifies it as a standard component without a support cage but still maintains structural integrity under operational pressures. It features a dirt holding capacity that maximizes the service life of the filtration system by reducing the frequency of maintenance interventions required to replace or clean the filters. Although not suitable for HFC or HFA fluids and lacking DIN24550 certification, this filter element is ideal for applications where traditional hydraulic oils are used. This product forms the central component within a filter assembly where key parameters such as retention capacity and pressure loss are primarily determined by the quality and configuration of the filter media used. Its robust construction and efficient design make it an essential part for maintaining system cleanliness and reliability in hydraulic circuits requiring high-performance filtration solutions.
The Hengst 2.140 G100-A00-0-M (1011623B) is a high-performance hydraulic filter element designed to optimize filtration processes by efficiently capturing contaminants. The core of this component is its stainless steel wire mesh filter media, which ensures durability and robust filtration capabilities. With dimensions of 150 mm in length, an outer diameter of 73.5 mm, and an inner diameter of 40.2 mm, it is engineered to fit seamlessly into compatible systems. This filter element boasts a nominal size of 140 and a collapse pressure rating of 30 bar, making it suitable for demanding environments where pressure stability is critical. The design includes an NBR seal, coded as M, which provides reliable sealing performance in various operational conditions. The Hengst filter element\u2019s design classifies it as a standard component without a support cage but still maintains structural integrity under operational pressures. It features a dirt holding capacity that maximizes the service life of the filtration system by reducing the frequency of maintenance interventions required to replace or clean the filters. Although not suitable for HFC or HFA fluids and lacking DIN24550 certification, this filter element is ideal for applications where traditional hydraulic oils are used. This product forms the central component within a filter assembly where key parameters such as retention capacity and pressure loss are primarily determined by the quality and configuration of the filter media used. Its robust construction and efficient design make it an essential part for maintaining system cleanliness and reliability in hydraulic circuits requiring high-performance filtration solutions.
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.