For isolating structure-borne noise and vibrations.
For isolating structure-borne noise and vibrations.
For isolating structure-borne noise and vibrations.
Pressure-tension elements are components developed to absorb both pressure and tensile forces. They are used in a wide range of applications involving both dynamic and static loads. Push-pull elements are used in many sectors, such as machine engineering and the building and construction industry. They are made from high-strength materials like steel, aluminium or specialised composite materials. These materials ensure a high load-bearing capacity and long service life. Elastomers are used as an isolating layer, which ensures effective vibration isolation and impact damping.
Features and benefits:
Pressure-tension elements are components developed to absorb both pressure and tensile forces. They are used in a wide range of applications involving both dynamic and static loads. Push-pull elements are used in many sectors, such as machine engineering and the building and construction industry. They are made from high-strength materials like steel, aluminium or specialised composite materials. These materials ensure a high load-bearing capacity and long service life. Elastomers are used as an isolating layer, which ensures effective vibration isolation and impact damping.
Features and benefits:
Pressure-tension elements are components developed to absorb both pressure and tensile forces. They are used in a wide range of applications involving both dynamic and static loads. Push-pull elements are used in many sectors, such as machine engineering and the building and construction industry. They are made from high-strength materials like steel, aluminium or specialised composite materials. These materials ensure a high load-bearing capacity and long service life. Elastomers are used as an isolating layer, which ensures effective vibration isolation and impact damping.
Features and benefits: