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Seismic Roof Pipe Bracing System Zinc Plated Steel Base Stiffener/Coupling Set

Customization: Available
After-sales Service: One Year
Warranty: One Year

Product Description

📊 Overview & Basic Information
ConnectionScrewStructureUniversal
Flexible or RigidFlexibleMaterialCarbon Steel
StandardStandardCertificationUL/FM/CE
Molding MethodCasting, Laser ForgingSurface TreatmentGalvanized
Adaptive DomainBuilding/Bridge Piping Support
FeaturesHeavy Duty / Seismic Resistant / Corrosion Resistance
Package Size28.00cm * 28.00cm * 15.00cmGross Weight22.050kg
Production Capacity50,000 / Month
🏗️ Product Description
Seismic Roof Pipe Bracing System

Suitable for lateral and longitudinal seismic bracing connected to walls. Our system rigidly connects seismic components to buildings through torque bolts tightening steel profiles or steel pipes.

  • Advanced Technology: Connection parts utilize advanced riveting technology to prevent component detachment.
  • High Strength: Anti-backout bolts can be used according to specific requirements.
  • Surface Protection: Options include electro-galvanizing, hot-dip galvanizing, Dacromet, and epoxy spraying.
  • Easy Installation: Drill holes for M12 or M16 expansion anchor bolts, fix the connection seat, and tighten torque bolts until the hexagonal head breaks off for secure fastening.
⚙️ Technical Specifications
Model Description & Usage Material
UTT10 / UTT10Q Designed for bracing pipe up to 8" against sway and seismic disturbance. Fits Sprinkler Pipe Sch 10, Sch 40. Carbon Steel / Ductile Iron
UTT071 / UTTH10 One size fits braced pipe up to 8", with 1/2" or M12 bolt hole for structure. Ductile Iron QT450
UTT1001 Used in combination with 1" round pipes for seismic disturbance protection. Carbon Steel
UTT1002 Used in combination with threaded rods for flexible bracing solutions. Carbon Steel
Zinc Plated Steel Base Stiffener
🌟 Product Features
🛡️
Certified Quality

All products pass UL and FM industry certification standards, ensuring global safety compliance.

✏️
Custom Engineering

Engineers provide customized pipe support accessories based on your specific engineering drawings.

💎
Durable Finish

Galvanized surface treatment provides anti-corrosion protection, a smooth aesthetic, and a long service life.

🔬
Advanced Production

5 advanced laser cutters and high-quality casting equipment ensure smooth surfaces without defects.

🏭 Manufacturing & Quality Control
Precision Engineering

Factory uses dedicated molds and hydraulic presses for accurate forming to meet OEM/ODM requirements.

Efficient Assembly

Streamlined assembly, testing, and packing. Waterproof cartons and desiccants protect against moisture.

Production Process 1
Production Process 2
📸 Product & Case Gallery
Advanced Systems
Product Show
Case Show
Why Choose Us
Exhibition
Frequently Asked Questions (FAQ)
Q1: What certifications do your seismic bracing products hold?

Our products are fully certified by UL, FM, and CE, meeting rigorous international safety and quality standards for seismic support systems.

Q2: Which materials are used in the manufacturing of the pipe supports?

We utilize high-grade Carbon Steel, Ductile Iron (QT450), and Stainless Steel, depending on the specific model and customer requirements.

Q3: How are the products protected against corrosion?

Our standard surface treatment is electro-galvanizing. We also offer hot-dip galvanizing, Dacromet, and epoxy spraying for enhanced durability in various environments.

Q4: Can the support system be customized for specific projects?

Yes, our engineering team can customize accessories and special pipe support systems based on the engineering drawings provided by the customer.

Q5: What are the primary applications for this seismic system?

The system is primarily designed for building and bridge piping support, specifically for lateral and longitudinal seismic bracing to prevent sway during disturbances.

Q6: What is the benefit of the "torque bolt" design during installation?

The torque bolt ensures a precise and secure connection. Once the required tightness is reached, the hexagonal head breaks off, providing a visual confirmation of correct installation.

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