Advantages and Application Status of Pultruded Plates for Wind Turbine Blades

 

Since 2021, the wind power industry has officially entered the era of parity.

 

In order to further reduce the weight and cost of wind turbine blades and improve competitiveness, the entire wind power industry has accelerated the development and application of new materials or new technologies. By using reinforcing fibers with better mechanical properties, such as high modulus glass fiber or carbon fiber, the mechanical properties of composite materials can be significantly improved, but at the same time it also brings higher costs.

 

By adopting more advanced composite material manufacturing processes, the mechanical properties of reinforcing materials can be fully utilized to achieve the purpose of reducing blade weight and cost.

 

Composite Wind Turbine Blade Manufacturing North American Pultrusion Conference

 

Pultrusion Technology began in the 1950s and has developed into one of the main molding methods for fiber-reinforced composite materials by the 1980s.

 

In recent years, pultrusion technology has been paid more attention by various industries. Its products are developing in the direction of complex shapes, extreme cross-sectional dimensions, efficient production, diversified types, and high performance, and are suitable for various engineering fields. For example, from wires as thin as 1mm to rods of 70mm, and then to 800mm×280mm hollow profiles, the pultrusion speed of some products is as high as 6m/min.

 

Advantages of Pultrusion Process Composite Fan Blade Manufacturing Process

(EN161 Carbon pultruded beam blade)

 

Pultruded board is a composite board with a certain cross-sectional shape and continuous length made by pultrusion process after multiple bundles of reinforcing fibers are impregnated with resin.

 

The pultrusion process gives the fibers a certain tension, which can significantly improve the mechanical properties of the product along the fiber direction, so its key performance is better than that of infused fabric and prepreg composite products.

 

Pultruded board composite board GRP Pultrusion Manufacturing

 

 

Vestas, a world-renowned wind power manufacturer, was the first to adopt the technology of assembling the main beam with pultruded plates, splitting the original integral main beam into pultruded plate standard parts and assembling them into shape. This revolutionary and innovative design has greatly promoted the application of pultruded plates in the field of wind power blades.

 

pultruded plates for wind turbine blade main beams Strongwell Pultrusion

 

 

The following will introduce the development history, technical advantages and application status of pultruded plates for wind turbine blade main beams, and propose the development direction of pultruded plates for wind turbine blade applications in the future.

 

Pultruded Plate Technology Development

 

Carbon Fiber Pultruded Plates

20 years ago, Europe used hand lay-up, vacuum infusion, and prepreg to produce wind turbine blade main beams, but some manufacturing defects of carbon fiber were difficult to avoid.

 

In 2003, Vestas took the lead in applying for a patent for using pultruded plates to manufacture wind turbine blade main beams.

 

In 2015, Vestas disassembled the integrally formed main beam into efficient, low-cost, high-quality pultruded plate standard parts, and realized assembly and infusion molding.

 

Through a large number of tests, verifications and improvements, Vestas took the lead in the world to use carbon fiber pultruded plates on wind turbine blades on a large scale. All blades above 2.0MW developed later used this product, which greatly promoted the application of carbon fiber pultruded plates in the wind power field.

 

In recent years, foreign blade manufacturers such as GE-LM, Siemens-Gemesea, and Nordex have successively broken through Vestas’ patent restrictions, designed their own carbon fiber pultruded plates, and applied them on large blades.

 

Taking 2021 as an example, the amount of carbon fiber used in wind turbine blades is 33,000 tons, and the main application form is pultruded main beams. Therefore, pultrusion molding has become the mainstream process for the production of carbon beams for wind turbine blades.

 

In China, after gaining development experience in the manufacturing and application of glass fiber pultruded plates, some complete machine factories, blade companies, and material suppliers have turned to the development of carbon fiber pultruded plates, and gradually applied them to large offshore wind turbine blades over 100 meters, such as Shanghai Electric’s 102, Yunda Wind Power’s 110, and Goldwind Technology’s 123.

 

Carbon Fiber Pultruded Board Composite Pultrusion Process

 

 

(Carbon Fiber Pultruded Board)

In the early stage of the development of carbon fiber pultruded board, foreign carbon fiber was used. With the advancement of domestic carbon fiber technology and price advantages, it has gradually become the main supply channel for domestic carbon fiber pultruded board. By adjusting the match between fiber and resin, the modulus of carbon fiber pultruded board can be increased from 130GPa to 145GPa, further improving the lightweight level of blades.

 

Glass Fiber Pultruded Board

Europe and the United States have studied the use of glass fiber pultruded board to manufacture blade main beams. For example, wind turbine manufacturer Senvion uses NEPTCO’s RodPack pultruded board and UD fabric mixed infusion to form blade main beams, but this solution has not been used in batches. In recent years, some European blade design and manufacturing companies have successively developed glass fiber pultruded boards, but there are still no reports of application cases.

 

Glass fiber pultruded board Composite Pultrusion Process

(Glass fiber pultruded board)

 

Different from the order of developing pultruded boards abroad, the first thing developed and applied in China was the more cost-effective glass fiber pultruded board. In 2014, Zhongfu Lianzhong Composite Materials Group Co., Ltd. (Zhongfu Lianzhong for short) took the lead in applying for a patent for the application of pultruded boards on wind turbine blades.

 

high-strength glass fiber pultruded board manufacturing and its integrated infusion on large wind turbine blades, and developed megawatt-class blades using pultruded main beams

 

In 2019, Zhongfu Lianzhong and Zhongfu Carbon Core Cable Technology Co., Ltd. (Zhongfu Carbon Core for short) successfully broke through the technical system of high-strength glass fiber pultruded board manufacturing and its integrated infusion on large wind turbine blades, and developed megawatt-class blades using pultruded main beams.

 

Subsequently, more and more domestic complete machine factories, blade companies, and material suppliers have devoted themselves to the research and development of pultruded boards and their application technologies, and have produced a large number of patented technologies involving pultruded board cross-sections, pultruded board manufacturing processes, and pultruded board applications.

 

In the early stages of domestic pultruded board development, the industry first focused on the research and development of low-cost glass fiber pultruded boards and their application technologies, and developed high-performance pultruded boards by using ultra-high modulus glass fiber (dip modulus of about 95GPa) and high resin content.

 

After mastering a certain amount of experience, in order to achieve blade cost reduction, a lower level of high modulus fiber (dip modulus of about 90GPa) and low resin content were used to further improve the glass fiber stiffness and strength conversion efficiency, and successfully developed pultruded boards with comparable performance.

 

The entire domestic market has quickly accumulated and shared manufacturing and use experience, so pultruded plates have been widely used in large wind turbine blades.

 

At present, some companies are trying to develop higher-performance pultruded plates using ultra-high modulus glass fiber and low resin content, hoping that the design modulus of pultruded plates will reach 65GPa-68GPa.

 

Domestic research has been conducted on pultruded resins of various systems, such as unsaturated polyester, polyurethane, epoxy resin, etc., and the epoxy system has become the mainstream system in the industry because of its mature process, high performance and stability.

 

In addition, domestic companies have broken through the thin and wide sheet section concept design defined by Vestas, and innovatively developed narrow and thick sections, which greatly improved the universality of pultruded plates for blade geometry and the quality of blade main beam infusion.

 

Carbon-Glass Mixed Pultruded Plate

Currently, carbon fiber materials are expensive, and the main beam of pultruded plates manufactured by them is costly, so they can only be used for 100-meter offshore wind turbine blades. In order to reduce material costs while retaining higher performance.

 

Domestic blade material manufacturers have turned their development direction to carbon-glass hybrid pultrusion technology. This technology combines the high strength, high modulus, and low density of carbon fiber with the high elongation and low cost of glass fiber, breaking through the technical barriers of low modulus and high weight faced by traditional glass fiber large blade design.

 

By changing the ratio of carbon yarn and glass fiber, the modulus can be linearly changed from 60Gpa to 120Gpa. It provides more possibilities for blade design, optimization, weight reduction, and cost reduction, and finds the best fit between performance, weight, and cost.

 

Carbon-glass pultruded board Pultrusion of Glass Fiber Composites

(Carbon-glass pultruded board)

 

In July 2021, the first carbon-glass pultruded blade in China, Mingyang Intelligent’s MySE11-99A1 blade, was successfully launched. The blade is 99 meters long. At present, many pultruded composite material suppliers such as Huamei, Fengdu, and Zhongfu Carbon Core provide Mingyang with carbon-glass pultruded beam products, which have been applied to a variety of blade shapes.

 

FRP Fan Blades Tube Axial Fan with Fiber Flass Blade

(Mingyang Smart MySE11-99A1 blade)

 

Mold-Free Pultruded Board

 

Traditional pultruded boards are attached with a layer of mold release cloth on the upper and lower surfaces, whose main function is to form a rough bonding surface, absorb mold release agent and protect the surface of the board from pollution and damage.

 

However, the use of mold release cloth has increased the cost of materials, production equipment and quality control.

 

For this reason, since 2022, many domestic pultruded board manufacturers have successively developed mold-free pultruded boards to improve the competitive advantage of their products.

 

Mold-free cloth extruded board What is Pultrusion in Injection Moulding

 

(Mold-free cloth extruded board)

 

Currently, Sany has used mold-free cloth sheets in batches on multiple blades and plans to further expand the scope of application; Zhongcai, Times, Chongtong and Shuangrui have all entered the trial or small batch stage.

 

Polyurethane Pultruded Board

 

In the past two years, the price of epoxy resin has risen by more than 34%, causing the cost of blades to rise by more than 10%. Therefore, it is urgent to find a low-cost and high-performance resin to replace epoxy resin.

 

Due to its low cost, high toughness and fatigue resistance, polyurethane resin provides a new idea for reducing the cost and improving the performance of blades.

 

On the other hand, among the production cost factors of pultruded board, the pultrusion speed has the greatest impact. Polyurethane has a lower viscosity and faster curing speed than epoxy resin, which can effectively increase the pultrusion speed and thus reduce production costs. Compared with epoxy system, it can save up to 20% of production costs.

Polyurethane pultruded board FRP Pultrusion Manufacturing

 

(Polyurethane Pultruded Board)

 

In 2020, Sinoma Blade was the first to try out polyurethane pultruded beams. In February 2023, the first test blade of the TMT95 blade of Times New Materials used glass fiber reinforced polyurethane pultruded board beams.

 

However, since the blade has not yet completed full-scale testing and verification, subsequent batch production blades still use pultruded boards with epoxy resin systems. Therefore, there are currently no mass application cases of polyurethane pultruded beams in the industry.

 

glass fiber reinforced polyurethane pultruded board beams Pultrusion FRP Sheets

 

 

 

 

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