Composite Repair Market [2023-2028] | Market Size, Growth, Dynamics and Trends with Top Key Players Opportunities and FOrecast

Composite Repair Market [2023-2028] | Market Size, Growth, Dynamics and Trends with Top Key Players Opportunities and FOrecast
Browse 152 market data Tables and 54 Figures spread through 191 Pages and in-depth TOC on “Composite Repair Market”
The Composite Repair Market is growing due to rising demand across aerospace, automotive, and oil & gas industries. Advancements in composite materials and cost-effective repair technologies drive market expansion. With increasing adoption of sustainable solutions, the market is set for steady growth in the coming years.

The composite repair market is projected to grow from USD 18.6 billion in 2023 to USD 34.2 billion by 2028, at a CAGR of 13.0% during the forecast period. As composite parts replacement is costlier, composite repair is performed on disbands or delamination, holes or punctures, cracks, and other damages to bring back the part to its previous working condition. This market research report is a comprehensive analysis of the current composite repair market trends, future prospects, and other pivotal factors that drive the market.

Structural type segment to grow at a significant rate in composite repair, in terms of value.

Structural repair is conducted if the damage has weakened the structure due to fiber fracture, delamination, or disbonding. This repair involves the replacement of the damaged fiber reinforcement, and core in sandwich structures, to restore the original mechanical properties. This repair restores full structural properties by forming a joint between the prepared repair area and the repair patch. Mostly, structural repair is done on parts of aerospace, boat, construction, and many others where part replacement is difficult and expensive.

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Hand Lay-Up type to be the dominating segment in the composite repair market in terms of value.

Hand lay-up is an open molding method suitable for repairing a wide variety of composite structures, including boats, tanks, bath-ware, housing, transportation components, and architectural products. Gel coat is first applied to the mold using a spray gun for a high-quality surface. When the gel coat has cured sufficiently, roll stock fiberglass reinforcement is manually placed on the mold. Then, resins are impregnated by hand into fibers, which are in the form of woven, knitted, stitched, or bonded fabrics. The laminating resin is applied by pouring, brushing, spraying, or using a paint roller. Subsequent layers of fiberglass reinforcement are added to build laminate thickness. It is the simplest method offering low-cost tooling, simple processing, and a wide range of part sizes. Hand lay-up technique is also used in the standard wind turbine blades, boat hulls, decks, and architectural molding. This process is also used for repairing marine composite structures.

Automotive & Transportation industry to be the fastest-growing end-use industry segment in the global composite repair market in terms of value.

The use of composites is most widespread in aerospace & defense and hence there is a need of composite repair in case of damage due to lightning and collision with bird or some object. The use of composites in aerospace is increasing over the years to make it lighter, faster, and more fuel efficient. The new commercial passenger aircrafts such as Boeing 787 and Airbus A350 constitute more than 50% composites in their airframe structures. In addition, the aviation giants as well as aerospace organizations such as SpaceX and National Aeronautics and Space Administration (NASA) are using composites due to their high stiffness-to-weight ratio and resistance to fatigue and corrosion.

Asia Pacific continuous to be the largest market in the global composite repairs market in terms of value.

Asia Pacific is expected to be the largest market for composite repairs. This is due to the growth of aerospace, wind energy, and automotive industries in the region, owing to availability of low-cost labor, and infrastructure development in this region. As the regions, economy is still in the developing stage, the expenditures made towards aerospace part manufacturing, and MRO is considered to be strategically important by the governments in the region.

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this copupled with huge investments made towards generation of cleaner energy, especially wind energy will play an important role in composite repair market. With the spending capacity of the population in the region increasing significantly over the years, the sales of personal vehhicles in the region has seen a tremendous growth. This has led the automotive manufacturers to offer several cosmetic differences to stand out in the increasingly competitive market to attract customers. This will also have a significant effect over the composite repair market.

Composite Repair Companies

The composite repairs industry is highly fragmented . Major players in this market are. Lufthansa Technik AG (Germany), Air France KLM E&M (France), and HAECO (U.S.) are the key players for aerospace composite repairs. Similarly for wind energy, UpWind Solution (U.S.), Total Wind Group A/S (Denmark), and Technical Wind Services (Scotland) are the key players. Citadel Technologies (U.S.), Milliken Infrastructure (U.S.), and T.D. Williamson (U.S.) are the key service provider for FRP pipeline repairs. West Systems (U.S.) and WR composites (U.K.) provide repair works for composite boats. Fibrwraps (U.S.) and Concrete Repairs Ltd. (U.K.) provide repair services for construction industry.

LUFTHANSA TECHNIK AG (GERMANY)

Lufthansa Technik (LHT), AG. is one the subsidiaries of Deutsche Lufthansa Group established in 1995, headquartered in Hamburg, Germany. Having experience of almost 20 years in MRO for commercial aircrafts using composite components, Lufthansa positioned itself very well in the composite repairs market. Lufthansa has also invested considerably in autoclave and automated processes and innovative repair technology.To meet the increasing demand of MRO for airframe related components, Lufthanasa has expanded itself by providing ARC services in Tulsa (U.S.), Hamburg (Germany), and Shenzhen (China).

AIR FRANCE-KLM E&M (FRANCE)

AIR FRANCE-KLM (AFIKLM), E&M. is a joint venture of AIR FRANCE and KLM since 2004. Its headquarters is located in Tremblay-en-France, Paris. With combined experience of both parent airlines, it has developed service portfolio suitable for different needs of customers. Also, it has reduced the cost of outsourcing for Air France and KLM. Being ranked second globally for MRO activities, AFIKLM, E&M. has mastered in advanced composite repair and started to provide On-Wing repairs for composite nacelles and airframes.

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HAECO (HONG KONG)

Hong Kong Aircraft Engineering Company Limited (HAECO) was established in November 1950 at Hong Kong. Its headquarters is located at Lantau Islands, Hong Kong. Among all its subsidiaries, Taikoo Spirit AeroSystems (Jinjiang), China provides services of repairs and overhauling of composite structures, formed in 2009 as a result of joint venture of HAECO and Spirit AeroSystems. With a self-sufficient facility, Taikoo Spirit is the largest supplier of aircraft components located in Asia.

UpWind Solutions (US)

UpWind Solutions is a leading brand in wind energy industry, well known for its expertise in installation, maintenance, and repair of windmill blades globally. It was established in 2011, with headquarters in San Diego, U.S. After becoming part of Vestas group in 2015, the company works with increased capabilities and customer base. The company deals with cosmetic and structural blade repair. It also provide leading edge erosion repair and protection along with lightning protection system. The company has experience in repair, inspection, and upgrades for wind turbines manufactured by companies such as GE, Vestas, Siemens, Gamesa, Mitsubishi, and Suzlon.

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