1. Equipment Weight and Dimensions
Purpose: The weight of the equipment directly determines the load capacity required for each vibration isolator. Accurate weight data enables us to select isolators with matched load ratings, effectively preventing isolator damage caused by overload and compromised vibration isolation performance resulting from insufficient load bearing. Meanwhile, the equipment volume and mounting interface dimensions govern isolator model selection and installation layout design. This ensures rational and interference-free installation of isolators at the equipment base.
2. Impact Load and Operating Impact Conditions
Purpose: In addition to vibration during steady operation, the equipment may be subjected to instantaneous and severe impact loads such as emergency braking and collision. Please provide key parameters including peak impact acceleration and impact duration. These data are core basis for calculating the required damping coefficient and impact resistance of isolators, enabling the products to absorb massive instantaneous energy and protect the equipment from impact damage.
3. Specific Application Environment
Purpose: The working environment of isolators is a decisive factor for material selection and service life evaluation. Please inform us of the ambient temperature, humidity, and special environmental conditions such as oil contamination, acid-base corrosive gas or seawater exposure. Based on these details, we can select special materials with high and low temperature resistance, aging resistance and corrosion resistance (e.g., silicone rubber, special stainless steel) to ensure the long-term stability and reliability of isolators even in harsh working conditions.
4. Installation Quantity and Method
Purpose: A reasonable number of installed isolators is fundamental to equipment operational stability. For equipment with a high center of gravity, we will recommend auxiliary supports on the rear side for enhanced stability. In addition, please specify the isolator installation mode (vertical, longitudinal or 45° angle mounting). This design ensures that the main stiffness direction of the vibration isolation system aligns with the primary vibration or impact direction of the equipment, so as to maximize the vibration and impact isolation efficiency.
Acknowledgements
Thank you for your support and cooperation. Every detail you provide is essential for us to customize an efficient and reliable vibration isolation solution for your equipment.