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Cured-in-Place Pipe Market is Expected to grow at a robust CAGR of 4.82% through 2030F

The increasing global Cured-in-Place Pipe market is driven by Growing Shift Toward UV-Cured CIPP Liners, Integration of Robotics and Digital Inspection Tools during the forecast period 2026-2030F.


According to TechSci Research report, “Cured-in-Place Pipe Market – Global Industry Size, Share, Trends, Competition Forecast & Opportunities, 2020-2030F”, The Global Cured-in-Place Pipe Market was valued at USD 2.91 Billion in 2024 and is expected to reach USD 3.89 Billion by 2030 with a CAGR of 4.82% during the forecast period. A significant trend in the global CIPP market is the increasing adoption of ultraviolet (UV) light-cured liners over traditional hot water or steam curing methods. UV curing offers faster installation times, with curing speeds of up to 10 meters per minute, compared to several hours required for thermal curing. This reduces project downtime and labor costs, making it particularly attractive for urban rehabilitation projects where traffic disruption must be minimized. UV curing also eliminates the need for large volumes of water or steam, lowering resource consumption by as much as 80%. Moreover, UV-cured liners generate lower emissions since they can be impregnated with non-styrene resins, aligning with stricter environmental standards. Lightweight liners are easier to transport and install, reducing logistics costs by up to 25%. The technology also enables real-time quality control through built-in light sensors that ensure uniform curing, enhancing reliability. With increasing demand for eco-friendly and time-efficient solutions, UV-cured liners are becoming the preferred choice for municipalities and contractors, driving a clear shift in market dynamics.

The adoption of robotics and smart inspection systems is rapidly transforming the CIPP market. Robotic crawlers equipped with high-definition cameras and sensors are now standard in pre- and post-installation inspections, allowing precise condition assessments of pipelines. Data-driven inspection reduces human error and provides digital records for asset management. For instance, advanced CCTV robots can detect cracks as small as 1 mm, enabling accurate liner design specifications. Artificial intelligence (AI)-powered platforms are also being integrated to analyze inspection footage and predict failure risks. Robotics are increasingly being used during liner placement and curing, ensuring uniformity in large-diameter or complex pipelines. The combination of robotics and digital tools improves project efficiency, with some utilities reporting a 30% reduction in inspection and installation times. Moreover, cloud-based data management allows municipalities to centralize pipeline condition data for long-term planning. This trend reflects the industry’s broader movement toward smart infrastructure solutions, where automation and digitalization enhance accuracy, reduce costs, and improve lifecycle management of underground assets.

 

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Based on Resin Type, Glass Fiber Reinforced Polymer is the fastest growing segment in the global Cured-in-Place Pipe market during the forecast period, due to its superior mechanical and chemical performance compared to conventional resins. GFRP liners offer higher tensile strength, excellent load-bearing capacity, and superior resistance to corrosion, abrasion, and chemical attacks, making them particularly suitable for pipelines exposed to aggressive environments such as industrial wastewater, petrochemical plants, and chemical processing facilities. Additionally, GFRP-based liners significantly extend the service life of pipelines, often beyond 50 years, ensuring lower lifecycle costs for asset owners. Municipalities and utilities are increasingly favoring GFRP solutions due to their ability to handle larger diameters and higher-pressure pipelines without compromising structural integrity. With the global rise in rehabilitation needs for water, wastewater, and industrial pipelines, GFRP’s lightweight properties combined with its durability make it an attractive choice. Furthermore, the growing emphasis on sustainability is fueling demand for advanced materials like GFRP, as they reduce the frequency of replacements and minimize carbon footprint compared to traditional repair methods. As infrastructure modernization accelerates globally, the adoption of GFRP in CIPP applications is expected to expand rapidly.

Based on region, Asia Pacific is the fastest growing region in the Global Cured-in-Place Pipe Market during the forecast period driven by rapid urbanization, population growth, and increasing investments in water and wastewater infrastructure. Countries such as China, India, Japan, and Southeast Asian nations are witnessing rising pipeline rehabilitation needs due to aging infrastructure, high population density, and industrial expansion. For instance, over 30% of water distribution networks in major cities like Beijing and Mumbai are reported to be more than 40 years old, creating significant demand for trenchless rehabilitation solutions like CIPP. Governments in the region are prioritizing non-disruptive and cost-efficient pipeline renewal technologies to minimize urban congestion and project delays, making CIPP a highly attractive solution. Additionally, large-scale smart city projects and infrastructure modernization programs across Asia Pacific are accelerating the adoption of advanced trenchless technologies. The availability of relatively lower-cost labor combined with rising technology adoption also supports faster deployment in the region. Moreover, environmental concerns and regulatory pushes for sustainable infrastructure practices are encouraging municipalities to shift toward CIPP methods, which significantly reduce excavation, waste generation, and surface disruption. With its strong pipeline replacement needs, supportive government policies, and rising awareness of trenchless technologies, Asia Pacific is positioned as the fastest-growing regional market during the forecast period.

 

Key market players in the Global Cured-in-Place Pipe market are: -

  • Aegion             
  • Granite Construction
  • Inland Pipe Rehabilitation
  • SAK Construction
  • Michels Corporation
  • PURIS Corporation
  • Per Aarsleff A/S
  • Reline UV Group
  • SAERTEX multiCom GmbH
  • IMPREG Group           

 

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The Global Cured-in-Place Pipe (CIPP) market presents strong opportunities driven by aging water and wastewater infrastructure, particularly in developed economies, and rapid urbanization in emerging markets. Growing environmental concerns and stricter regulations are encouraging trenchless technologies that minimize surface disruption and reduce carbon footprints. Expanding adoption in potable water applications and the integration of advanced curing methods such as UV and steam further enhance efficiency and durability. Rising investments in smart cities and infrastructure modernization initiatives worldwide will continue to fuel demand for innovative, cost-effective, and sustainable pipeline rehabilitation solutions.Top of Form” said Mr. Karan Chechi, Research Director of TechSci Research, a research-based Global management consulting firm.

“Cured-in-Place Pipe Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Resin Type (Polyester, Glass Fiber Reinforced Polymer, Others), By Curing Method (Steam Curing, UV Curing, Others), By Application (Water & Sewer Lines, Gas Pipelines, Industrial Piping, Others), By Region, and By Competition, 2020-2030F,” has evaluated the future growth potential of Global Cured-in-Place Pipe Market and provides statistics & information on market size, structure, and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in Global Cured-in-Place Pipe Market.

 

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