Seismic Isolation Device Fastening for High-Rise Building Safety

*Some images are for illustration purposes only.

Published on

August 1, 2025

Industry

Construction

Product

Minimizing Earthquake Impact with Reliable Fasteners

Seismic isolation systems protect buildings by absorbing and deflecting earthquake energy before it reaches the structure. This is achieved by placing isolators and dampers—often fitted with anti-vibration rubber—between the building and its foundation. These components require secure but non-rigid fastening, which presents unique challenges for traditional nuts and bolts.

HARDLOCK Nut offers a solution that enables safe, effective fastening even in installations where strong tightening is not possible, ensuring the performance and reliability of seismic isolation systems during critical events.

Wikipedia: Seismic base isolation

Overcoming Fastening Challenges in Seismic Isolation Installations

Installing seismic isolation systems introduces several fastening difficulties:

  • Soft Surfaces: Anti-vibration rubber prevents strong torque from being applied, making secure fastening difficult.
  • Traditional Double Nuts: Often used in the past, double nut methods are complex and prone to loosening in vibration-prone environments.
  • Difficult Installation: Securing components in tight or delicate spaces increases labor time and risk of incorrect installation.
  • Maintenance Burden: Loosening over time increases the need for inspections and retightening, especially after seismic events.

These challenges affect both safety and project efficiency, particularly in high-stakes construction like hospitals, data centers, and high-rise buildings.

How HARDLOCK Nuts Improve Seismic Isolation Fastening

HARDLOCK Nut’s self-locking wedge mechanism provides secure fastening without the need for high torque or secondary nuts:

  • Secure Fastening on Soft Materials: Performs reliably even on anti-vibration rubber, where standard nuts cannot be fully tightened.
  • Simplified Installation: Eliminates the need for time-consuming double nutting, making installation faster and more consistent.
  • Non-Loosening Design: Maintains clamping force over time, resisting loosening caused by long-term vibration and seismic motion.
  • Versatile Application: Ideal for components with installation constraints or limited torque requirements.
  • Lower Costs: Reduces both initial labor time and long-term maintenance costs.

Benefits of HARDLOCK in Seismic Isolation Systems

By enabling proper fastening without over-tightening, HARDLOCK Nut enhances the reliability of seismic isolation installations. It reduces shaking during earthquakes while eliminating the drawbacks of double nutting and high-maintenance fastening methods. Trusted by engineers and builders, HARDLOCK ensures that seismic isolators perform at their best—when it matters most.

Trusted Anti-Loosening Fasteners for High-Rise and Structural Construction

In the construction industry—especially in high-rise buildings and large-scale structures—fastening reliability is critical for both structural integrity and long-term performance. Vibrations from wind, seismic activity, and daily operational loads can cause conventional fasteners to loosen over time, leading to safety hazards and costly repairs. HARDLOCK Nut (HLN) is the proven solution for anti-loosening performance in construction applications, from core structural joints to exterior installations and utility systems.

Key Construction Applications Using HARDLOCK Nut (HLN):

HARDLOCK Nut (HLN) helps construction professionals meet the highest safety standards while reducing maintenance demands and ensuring structural longevity—even in the most complex and vibration-prone environments.

Trusted Anti-Loosening Fasteners for High-Rise and Structural Construction

Achieve the Highest Safe & Secure Performance In Your Next Project.

Unparalleled rotation and looseness prevention rate
Bolt axial force (fastening power maintained for extended periods)
Drastically reduces labor costs associated with retightening