World-Class Partnerships
SRS Group prides itself on its world-class partnerships with industry leaders such as Ronstan, Carbo Link, Carl Stahl, and Tensys. These collaborations enhance our capabilities across all solutions offered, from architectural rigging to balustrade systems. By working with Ronstan, we access high-quality components that ensure the durability and safety of our rigging solutions. Carbo Link’s innovative CFRP structural elements allow us to integrate advanced materials into our designs, enhancing both performance and sustainability.
Additionally, our partnership with Carl Stahl provides us with cutting-edge cable and mesh systems, perfect for creating visually striking yet functional balustrades and barriers. Tensys contributes engineering expertise that further elevates our project execution. Together, these partnerships enable SRS Group to deliver exceptional quality and innovation in every project, solidifying our position as a trusted leader in the construction industry throughout New Zealand.

Who We Work With


SRS Group has built a strong partnership with Ronstan Tensile Architecture, a global leader in tensile architecture and rigging solutions. What began as a supplier relationship has evolved into a collaboration that combines Ronstan’s world-class components and proficiency in tensile structures with SRS’s installation expertise.
As the preferred installer for Ronstan in New Zealand and the exclusive distributor of Carl Stahl X-TEND® mesh for Ronstan in NZ, SRS has delivered landmark projects such as the Kirkbride Overpass, Spencer Road Bridge, and the University of Auckland HIWA building for Ronstan, where Carl Stahl X-TEND® stainless steel mesh and Ronstan rigging systems provide both safety and architectural elegance.
Ronstan operates under strict ISO 9001:2015 Quality Management standards, ensuring precision, sustainability, and reliability in every product. Their commitment to innovation and compliance enables SRS to offer bespoke rigging and balustrade systems that meet stringent safety standards while achieving exceptional design outcomes.
Together, we create architectural solutions that elevate projects and reinforce SRS Group’s reputation as a trusted provider in New Zealand’s construction industry.


CL-Bridge: Lightweight Strength for Civil Engineering
SRS Group is the exclusive Australia and New Zealand distributor of Carbo Link’s CL-BRIDGE system, a cutting-edge Carbon Fiber Reinforced Polymer (CFRP) solution designed for bridge construction and rehabilitation. CL-BRIDGE has been successfully implemented in major projects worldwide, including landmark bridges in Germany, showcasing its ability to reduce structural weight while maintaining exceptional strength and durability.
By integrating CL-BRIDGE into our offerings, SRS enhances the efficiency and longevity of critical infrastructure. This technology not only meets stringent safety standards but also supports sustainable construction practices, making it ideal for modern civil engineering applications.


CL-RESTRAP: Extending the Life of Existing Structures
SRS Group is the exclusive Australia and New Zealand distributor of Carbo Link’s CL-RESTRAP system, an innovative CFRP solution for structural strengthening and rehabilitation. Designed to restore and improve the performance of aging infrastructure, CL-RESTRAP provides a lightweight, high-strength alternative to traditional reinforcement methods.
Through this solution, SRS enables clients to extend the lifespan of bridges, buildings, and other structures without compromising safety or aesthetics. CL-RESTRAP helps reduce maintenance costs and environmental impact, reinforcing our commitment to delivering sustainable, high-performance solutions across civil, commercial, and residential sectors.


Global Leaders in Tensile Architecture
SRS Group works closely with Carl Stahl, the global leader in stainless steel cable and mesh technology with over 140 years of expertise. Carl Stahl is renowned for its innovative solutions across diverse applications, including balustrade infills, fall protection systems, and architectural features. Their advanced X-TEND® safety mesh, which is ETA-rated for quality and compliance, and high-performance cables deliver both safety and visual appeal for civil, commercial, and residential projects.
To ensure the highest standards, Luke Tempest, Managing Director of SRS Group, visited Carl Stahl’s manufacturing facilities in Germany to review production processes firsthand. These facilities operate under strict ISO-certified quality systems, guaranteeing precision and reliability in every component.
By incorporating Carl Stahl’s cutting-edge technology into our offerings, SRS ensures durability, functionality, and design excellence. Combining their world-class components with our installation expertise, we deliver bespoke solutions that elevate projects across all sectors.


Precision Design for Tensile Structures
In conjunction with our partners Ronstan, SRS Group works collaboratively with Tensys, one of the world’s leading engineering firms specialising in lightweight tension structures and advanced building façades. Tensys has an impressive track record of designing iconic projects worldwide, including the Burj Al Arab and the Wimbledon Centre Court retractable roof, demonstrating their ability to deliver engineering excellence on a global scale.
Tensys provides comprehensive services such as reaction analysis, load path optimization, and full structural calculations, ensuring every tensile structure meets the highest standards of safety and performance. Their innovative approach, supported by advanced form-finding and finite element analysis software, allows us to implement cutting-edge solutions that enhance both aesthetics and functionality in architectural rigging and balustrade systems.
By leveraging Tensys’ expertise, SRS can confidently deliver bespoke tensile designs that combine visual impact with structural integrity. Together, we are committed to achieving exceptional quality and performance in every project, pushing the boundaries of what’s possible in architectural engineering.
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