Wind energy materials · onshore · offshore · hybrid towers
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Wind material selector

15 systems for the complete wind structure.

Start with the connection: baseplate, anchor cage, offshore annulus, suction bucket, hybrid tower joint, prestressed duct or blade bond line. Then verify installation and acceptance data.

01Choose the structural connection
02Define the installation window
03Match the specified requirements
04Approve the method and field QC

Application family

Onshore wind foundations

Review intended use, selection limits, minimum requirements, reported values and evidence basis on each product page.

Wind turbine foundation grout

CBGM-80 Wind Grout

A high-flow, non-shrink cementitious grout for onshore wind turbine baseplates and anchor cages where the approved design calls for an 80 MPa-class 28-day compressive strength requirement.
Primary search intent
80 MPa wind turbine foundation grout
Best fit
Onshore wind turbine baseplates
View product & technical data

Wind turbine foundation grout

CBGM-100 Wind Grout

A 100 MPa-class, high-flow cementitious foundation grout for onshore wind turbines, designed for efficient baseplate placement, controlled expansion and resistance to cyclic environmental exposure.
Primary search intent
100 MPa wind turbine grout
Best fit
Wind turbine tower flange grouting
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Wind turbine foundation grout

CBGM-120 Wind Grout

An ultra-high-strength, shrinkage-compensated cementitious grout for large onshore wind turbine baseplates and anchor cages, with type-test evidence for strength, flow retention, modulus, expansion and F300 freeze-thaw performance.
Primary search intent
120 MPa wind turbine foundation grout
Best fit
Large onshore wind turbine foundations
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Wind turbine foundation grout

CBGM-140 Wind Grout

A high-strength 140 MPa-class cementitious grout for heavily loaded wind turbine foundation joints where the approved specification requires very high compressive strength, high modulus, retained flow and controlled expansion.
Primary search intent
140 MPa wind turbine grout
Best fit
High-capacity wind turbine baseplates
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Application family

Offshore foundations & marine connections

Review intended use, selection limits, minimum requirements, reported values and evidence basis on each product page.

Offshore wind turbine grout

CBGM-125 Offshore Grout

An ultra-high-strength, high-modulus cementitious grout for offshore wind monopile, transition-piece and jacket foundation connections. The reviewed project-specific test set separates every minimum requirement from the corresponding measured result.
Primary search intent
offshore wind turbine grout
Best fit
Monopile and transition-piece grouted connections
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Offshore wind turbine grout

CBGM-130 Offshore Grout

A 130 MPa-class offshore wind grout engineered for pumpability, high stiffness, early strength and stable volume in monopile, transition-piece and jacket foundation connections.
Primary search intent
130 MPa offshore wind grout
Best fit
Offshore monopile/transition-piece annuli
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Offshore wind turbine grout

CBGM-C50 Offshore Grout

A high-flow C50-class offshore cementitious grout for bolted monopile skirt annuli, marine infill zones and foundation cavities where stable volume, seawater exclusion and reliable load distribution are required.
Primary search intent
offshore foundation infill grout
Best fit
Bolted monopile skirt annulus infill
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Offshore wind turbine grout

CBGM-50/70 Underwater Grout

A two-grade cementitious underwater anti-dispersion grout for offshore wind foundation cavities and submerged load-transfer zones. CBGM-50 and CBGM-70 provide separate compressive-strength routes while sharing high-flow, zero-bleeding and reinforcement-protection requirements.
Primary search intent
underwater grout for offshore wind foundations
Best fit
Submerged offshore wind foundation cavities
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Offshore wind turbine grout

CBGM-5 Suction Bucket Grout

A lightweight, long-retention, non-bleeding cementitious grout developed for offshore suction bucket and suction caisson foundation cavities where grout mass, prolonged pumping and stable flow are decisive installation constraints.
Primary search intent
suction bucket foundation grout
Best fit
Offshore wind suction bucket foundations
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Application family

Cold-climate wind foundations

Review intended use, selection limits, minimum requirements, reported values and evidence basis on each product page.

Application family

Hybrid towers & wind blades

Review intended use, selection limits, minimum requirements, reported values and evidence basis on each product page.

Hybrid wind tower systems

Kuaizhuang® Segment Epoxy

A two-component, thixotropic structural epoxy adhesive for horizontal and vertical joints between precast concrete segments in hybrid wind towers. The reviewed type-test evidence covers processing time, sag resistance, bond performance, compressive properties, shrinkage, glass-transition temperature and VOC-related items.
Primary search intent
hybrid wind tower segment epoxy adhesive
Best fit
Horizontal joints between precast wind tower segments
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Wind turbine blade materials

JGN812 Blade Adhesive

A two-component structural epoxy adhesive formulated for high-load bonding in wind turbine blade shells, shear webs and composite assemblies. The supplied product manual positions the system for high fatigue demand, controlled sag and long working time.
Primary search intent
wind turbine blade bonding adhesive
Best fit
Wind turbine blade shell bonding
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How to read the data

Requirement is not the same as a reported result.

The product pages preserve four separate fields so engineers and procurement teams can distinguish acceptance criteria from evidence.

Minimum / specified requirementThe threshold or range stated by the applicable source.
Measured / reported valueA result from the referenced evidence; not automatically a guaranteed minimum.
Typical / published valueScreening information that still requires project-specific approval.
Test method / sourceThe basis used to interpret the value and its limitations.

Technical enquiry

Send the wind structure data for a product shortlist.

Include the wind structure and connection drawing, geometry or bond line, volume, specified performance, temperature, standards, installation window and equipment.