Seismic Bracing Manufacturer for Building MEP Systems

Seismic bracing is a support and seismic protection system for building MEP services. By securely connecting pipes, ducts, cable trays, and other MEP installations to the building structure, seismic bracing helps limit system movement under seismic and other horizontal or vertical loads, reducing the risk of displacement, falling, collision, and damage to MEP systems.

EDOYON provides seismic bracing systems for plumbing, HVAC, fire protection piping, cable trays, and other MEP services. Product selection is based on project-specific conditions, including service type, pipe diameter or dimensions, system loads, installation method, support spacing, building structure, seismic design requirements, materials, and surface treatment.

  • Materials: Carbon Steel / Galvanized Steel / Stainless Steel Options
  • Standards: ASME / ISO / GB Options
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Single Pipe Lateral Seismic Brace

≤DN150

Single-Pipe Two-Way Seismic Bracing

≤DN150

Two-Pipe Lateral Seismic Bracing

≤DN300, Cross arm L≤1.0m

Two-Pipe Two-Way Seismic Bracing

≤DN300, Cross arm L≤1.0m

Multi-Pipe Lateral Seismic Bracing

≤DN100, Cross arm L≤1.5m

多管双向抗震支架Multi-Pipe Two-Way Seismic Bracing

≤DN100, Cross arm L≤1.5m

Single Cable Tray Lateral Seismic Bracing

Cable tray width B ≤ 500 mm, crossarm length L ≤ 1.0 m

Single Cable Tray Two-Way Seismic Bracing

Cable tray width B ≤ 500 mm, crossarm length L ≤ 1.0 m

Double Cable Tray Lateral Seismic Bracing

Cable tray width B ≤ 500 mm, crossarm length L ≤ 1.0 m

Seismic Bracing for Two Cable Trays in Two Directions

Cable tray width B ≤ 500 mm, crossarm length L ≤ 1.0 m

多桥架侧向抗震支架 Multi-Cable Tray Lateral Seismic Bracing

Cable tray width B≤300mm,crossarm length L≤1.5m

Multi-Cable-Tray Two-Way Seismic Bracing

Cable tray width B≤300mm,crossarm length L≤1.5m

Single Rectangular Duct Lateral Seismic Bracing

Duct width B ≤ 2,500 mm, crossbeam L ≤ 3.0 m

Single Rectangular Duct Two-Way Seismic Bracing

Duct width B ≤ 2,500 mm, crossbeam L ≤ 3.0 m

Multi-Rectangular-Duct Lateral Seismic Bracing

Duct width B ≤ 2,500 mm, crossbeam L ≤ 6.0 m

Multi-Rectangular-Duct Two-Way Seismic Bracing

Duct width B ≤ 2,500 mm, crossbeam L ≤ 6.0 m

Round Duct Lateral Seismic Bracing

Duct outside diameter Ø ≤ 1250 mm.

Round Duct Two-Way Seismic Bracing

Duct outside diameter Ø ≤ 1250 mm

Combined Cable Tray and Pipe Lateral Seismic Bracing

Crossarm L≤1.5m

Combined Cable Tray and Pipe Two-Way Seismic Bracing

Cross-arm length L ≤ 1.5 m

Combined Cable Tray and Duct Lateral Seismic Bracing

Cross-arm length L ≤ 3 m

Combined Cable Tray and Duct Two-Way Seismic Bracing

Cross arm L≤3m

Combined Pipe and Duct Lateral Seismic Bracing

Cross arm L≤1.5m

Combined Pipe and Duct Two-Way Seismic Bracing

Cross arm L≤1.5m

Combined Plumbing, Electrical and HVAC Lateral Seismic Bracing

Cross arm L≤1.5m

Combined Plumbing, Electrical and HVAC Two-Way Seismic Bracing

Cross arm L≤1.5m

Extra-Large Duct Lateral Seismic Bracing

Cross arm L≤6m

Extra-Large Duct Two-Way Seismic Bracing

Cross arm L≤6m

Seismic Bracing for Fans and MEP Equipment

Fan weight ≤ 750 kg

Seismic Stainless Steel C Channel

Galvanized Steel C Channel

Aluzinc C Channel

HDG Seismic C Channel

Saddle Clip

Pipe Clamp

U-type Pipe Clamp

Double Pipe Clamp

Multi-pipe Clamp

Rubber Shock-absorbing

Seismic Hinge Connector

Seismic Adjustable Tie Rod

Seismic Base

2-hole Angle Bracket

Seismic Fastener

Column Connecting Pressing Plate

Rubber Damping Pad

Limit Block

U-bolt

U型螺栓

Threaded Rod

Fully threaded rods are used for mounting and connecting support systems and pipe clamps. Manufactured according to GB/T 196-2003, with an electro-galvanized surface treatment conforming to GB/T 9799-2011.

Flange Nut

Featuring an integrated flange for enhanced resistance to loosening. The surface is electro-galvanized in accordance with GB/T 9799-2011, with a property class of 8, complying with GB/T 6177.1-2016.

Hex Nut

Class 8 carbon steel with a rated load of 9.0 kN. The surface is electro-galvanized in accordance with GB/T 3098.2.

Flat Washer

Spring Washer

Expansion Anchor Bolt

Concrete substrate strength class: C20 to C60. Surface treatment: hot-dip galvanized, in accordance with GB/T 13912-2002.

Hex Bolt

Material: Q235B carbon steel, in accordance with GB/T 700-2006. Surface treatment: electro-galvanized, in accordance with GB/T 9799-2011. Property class: 8.8, complying with GB/T 3098.1-2010.

How Seismic Bracing Systems Work

Seismic bracing systems form a stable support structure through anchoring connections, bracing members, and pipe or service fastening components, securely connecting pipes, ducts, cable trays, and other MEP services to the building’s main structure.

During an earthquake or significant horizontal or vertical vibration, the seismic bracing system transfers and distributes the applied forces through its structural components, helping limit the movement of MEP services and improve overall system stability.

01. Seismic Forces Occur

When an earthquake or external vibration occurs, MEP services such as pipes, ducts, and cable trays generate inertial forces in both the horizontal and vertical directions.

02. Bracing Supports and Transfers Loads

The seismic bracing system forms a stable support structure through Slotted C Channel, Saddle Clips, connection fittings, and fastening components, transferring the forces generated by MEP services to the main building structure.

03. Limit MEP Service Movement

The support system uses strategically positioned seismic braces, cross braces, and pipe or service fastening components to help limit excessive displacement and movement of pipes and other MEP services during seismic events.

04. Maintain System Stability

After external vibrations subside, the seismic bracing system continues to provide stable support for pipes and other MEP services, helping reduce excessive movement and stress at connection points and improving the overall reliability of the MEP system.