Why Choose YIKORFRP® Anti-Slip FRP Panels?
- Our continuous FRP production line employs precision resin coating, multi-stage roller compression impregnation, segmented temperature-controlled curing, and a surface anti-slip composite process to provide you with anti-slip FRP panels of consistent quality.
- Through our synchronized resin coating and abrasive particle bonding technology, we embed abrasive particles into the uncured resin, thereby providing long-lasting anti-slip performance without surface flaking.
- Multi-stage silicone roller compaction and servo-controlled gap adjustment technology enable a thickness tolerance of ±0.15 mm, meeting your industrial application requirements.
- Our FRP flooring panels utilize vinyl ester and isophthalic resin systems, offering excellent resistance to acids, alkalis, saltwater, and harsh chemical environments.
- The E-glass fiber-reinforced composite structure provides a flexural strength of ≥95 MPa, and our lightweight design makes these panels suitable for heavy-duty platforms and walkways.
- Advanced PLC-controlled equipment, an automatic resin mixing system, and temperature-controlled curing ovens enable us to ensure consistent performance for large-volume orders while quickly meeting your procurement quantity requirements.
Why Do Our Anti-Slip FRP Panels Offer Consistent Quality?
Our YIKORFRP® anti-slip FRP panels are manufactured using a multi-stage pressing process, ensuring a dense and stable composite structure. The production line is equipped with 5 to 7 sets of silicone-coated pressure rollers, with pressure gradually increasing from 0.05 MPa to 0.4 MPa. This improves resin penetration and expels trapped air, allowing the resin and fiberglass materials to bond thoroughly and ensuring the consistent quality of the FRP walkway panels you purchase.
Our precision roller compaction system, combined with servo-controlled gap adjustment, ensures consistent thickness in our FRP anti-slip panels while reducing internal porosity to less than 0.5%. The optimized compaction process gives our FRP panels outstanding performance, with a flexural strength of ≥95 MPa, tensile strength of ≥70 MPa, and Barcol hardness of ≥40.
Because of their compact internal structure and reliability, our YIKORFRP® anti-slip panels offer you more options for industrial walkways, chemical platforms, and safety passageways. If you are interested, we can provide you with free samples or project case studies. Please feel free to contact me at any time.
YIKORFRP® Anti-slip FRP Panels by Features

Mild anti-slip surface, specifically designed for indoor platforms and low-traffic pedestrian areas. Abrasive grit: approximately 40 mesh.

Medium-grade anti-slip flooring is specifically designed for factories, pavements and general industrial applications. Abrasive grit: approximately 30 mesh.

Heavy-duty anti-slip panels with a surface finish of 20–30 mesh abrasive grit. These panels are suitable for heavy-duty industrial platforms or chemical plants subject to high loads.

A durable, non-slip surface suitable for factory walkways, maintenance platforms and industrial passageways.

Specially designed for chemical plants, it offers excellent protection against acids, alkalis and chemical corrosion.

We offer safety-focused FRP stair solutions, featuring durable, non-slip surfaces, suitable for industrial staircases and platforms.

Designed specifically for marine applications, it offers excellent resistance to saltwater and long-term marine weathering.

Solid anti-slip FRP panels feature a fully solid FRP structure, combining strength, durability and ease of maintenance.
What Are the Advantages of YIKORFRP® Anti-Slip FRP Panels?

Our anti-slip FRP panels feature an integrated abrasive surface design, with aluminum oxide abrasives permanently bonded to the FRP matrix.

The combination of high-hardness abrasive particles and a durable FRP composite structure provides outstanding wear resistance for use on industrial walkways.

Our panels can withstand corrosive chemical environments, including those involving acids and alkalis. They can replace easily corroded steel flooring to reduce your maintenance costs.

YIKORFRP® Non-slip FRP panels have a tensile strength of ≥70 MPa and offer excellent mechanical strength, making them easier to transport and install.

Unlike open-grating products, solid FRP panels provide a continuous load-bearing surface, offering easier cleaning and enhanced safety.

Flatness: ≤1.5 mm/m, ensuring consistent dimensional accuracy throughout the entire production process. Easy installation and reduces the need for on-site adjustments.

With an extremely low water absorption rate, these panels prevent swelling, warping and deterioration of performance in damp environments.

Performs consistently under sunlight and temperature fluctuations, ensuring a longer service life outdoors. No cracking or chalking observed after 5 years of outdoor exposure testing.
Integrated Anti-slip FRP Panels
We manufacture anti-slip FRP panels for you using a sand-locking process. After applying the sand, we use a lightweight silicone roller (pressure 0.08–0.12 MPa) to partially embed the sand particles into the resin surface layer. We then spray a thin layer of sealing resin onto the surface to completely encapsulate and secure the sand particles. The abrasive particle sizes we typically use are 20 mesh, 30 mesh and 40 mesh. The amount of sand applied is generally controlled at 1,000–2,600 g/m². This ensures high bond strength between the aggregate and the resin, whilst effectively preventing subsequent sand loss.


High Strength Anti-slip FRP Panels
The high strength of YIKORFRP anti-slip panels stems from our chopped strand glass fiber production equipment. 2400tex and 4800tex E-glass roving is evenly distributed through a vacuum settling chamber, ensuring uniform fiber dispersion without clumping. We have optimized fiber lengths (12 mm, 24 mm, and 36 mm) for different panel thicknesses, while fiber layup weights ranging from 300 g/m² to 800 g/m² enhance the panels’ strength. We then use a 30 g/m² glass fiber surface mat to enhance further the internal stability and surface density of the anti-slip fiberglass sheets. This ensures that every sheet we produce for you offers exceptional load-bearing capacity and durability.
Consistent Quality FRP Anti-slip Panels
The anti-slip panels we manufacture utilise a multi-zone curing process, ensuring consistent quality. The 30-metre-long continuous curing oven is divided into a preheating zone, a high-temperature curing zone and a tempering zone, each equipped with an independent PID temperature control system. The equipment operates within a temperature range of 75°C to 135°C, ensuring uniform cross-linking of the resin within the panels. This effectively reduces internal stress and prevents deformation. Temperature fluctuations are maintained within ±2°C, with a curing time of 8–10 minutes. Our standardised production process ensures that every sheet achieves consistent hardness and dimensional accuracy. We meet your industrial requirements and provide a reliable supply.

Anti-slip FRP Panels Resource

This product catalog provides a detailed overview of YIKORFRP®’s main products, as well as detailed information on the manufacturing process and specifications of Anti-slip FRP Panels.

YIKORFRP® has obtained a comprehensive set of certifications, covering ASTM, UL94, FDA, TDS, MSDS and test reports. Please contact us if you require product reports.

If you are not yet familiar with our YIKORFRP® anti-slip FRP sheets, we have produced a number of videos to help you understand the production and quality control processes for our fibreglass sheets.
What Are the Applications for Our Anti-Slip FRP Panels?

Anti-slip FRP panels are widely used on industrial walkways and equipment maintenance platforms, where safety and durability are of the utmost importance. Our FRP structure provides reliable load-bearing capacity, and our integrated matt finish meets your anti-slip requirements even in areas with high footfall. Compared to traditional steel flooring, our FRP anti-slip panels offer a lightweight and straightforward installation method, saving you on installation and maintenance costs.

In chemical plants, sewage treatment platforms and corrosive environments where traditional metal flooring may fail, you can opt for non-slip FRP panels. When floors are subjected to long-term exposure to oil and sewage stains, standard steel plates will corrode and rust through within 3–5 years, requiring annual maintenance such as sandblasting and repainting. FRP panels can reduce maintenance costs by 75 per cent and require no replacement or refurbishment for approximately 25 years.

Deck walkways on ships and offshore oil and gas platforms are constantly exposed to high concentrations of sea salt spray and wave splash. In addition, steel plates cannot be used due to structural load constraints and other issues. The FRP anti-slip panels we manufacture weigh only one-quarter as much as load-bearing steel plates and two-thirds as much as aluminum checker plates. When not subject to corrosion, they can reduce platform loads by 40%. Even when exposed to intense UV radiation, these panels maintain their strength without chalking or cracking, making them an excellent solution for your marine or coastal infrastructure.

For stair treads and industrial steps, anti-slip FRP panels are the ideal choice for improving worker safety. They help reduce the risk of slips caused by moisture or oil. Compared to standard checkered steel plates, which have a wet coefficient of friction (DCOF) of only 0.35, the FRP anti-slip panels we manufacture for you have a wet DCOF of ≥0.65 and a dry DCOF of ≥0.82—far exceeding industry standards. In a 5,000-cycle Taber abrasion test, standard steel plates failed, whereas our panels experienced only an 8% decline in coefficient of friction.
Anti-slip FRP Panels Customised Solutions
Our anti-slip FRP panels offer a range of customised solutions; we can manufacture FRP panels in various thicknesses or with different coefficients of friction to meet your specific requirements. We are your specialist supplier of FRP products in China.
YIKORFRP® offers anti-slip FRP sheets tailored to your specific industrial requirements. We provide flexible and comprehensive customisation options, including non-standard dimensions, thicknesses, anti-slip surface textures, corrosion-resistant resin systems, flame-retardant and anti-static modifications, special colours, and pre-cut holes, amongst other processing options. It is our pleasure to provide you with a service that meets your expectations.
We are a factory specializing in the production of FRP panels, offering a wide variety of products, including FRP roofing, FRP panels, and FRP sandwich panels. This enables us to provide you with project-level solutions. We have a professional design team and construction technicians who can not only provide you with product solutions but also address all your needs, from installation to after-sales service. We look forward to working with you.
More About YIKORFRP® Anti-slip FRP Panels
- Specifications
- Technical Data Sheet
- Anti-slip FRP Panels vs Traditional Materials
Why are our anti-slip FRP panels so popular? You can consult our product specifications and diagrams to find out more about our products.
| Category | Specifications |
|---|---|
| Panel Type | Solid Anti-slip FRP Panel |
| Thickness | 2-12mm |
| Width | 1000-1500mm |
| Length | Customized |
| Density | 1.45-1.55g/cm³ |
| Flexural Strength | ≥95MPa |
| Tensile Strength | ≥70MPa |
| Barcol Hardness | ≥40 |
| Water Absorption | <0.35% |
| Anti-slip Layer | Aluminum Oxide Grit/ Corundum/ Quartz |
| Grit Size | 20/30/40 Mesh |
| Dry DCOF | ≥0.80 |
| Wet DCOF | ≥0.60 |
| Oil DCOF | ≥0.48 |
| Chemical Resistance | Acids & Alkalis Resistant |
| UV Resistance | Outdoor ≥5 Years |
| Temperature | -40℃~80℃ |
| Fire Rating | ASTM E84 Class A Available |
This is the technical specifications sheet for our company’s Anti-slip FRP Panels. Technical specifications may vary between different models. Please feel free to contact us at any time for further information.
| Item | Typical Value | Unit | Test method |
| Panel Thickness | 8 | mm | Production specification |
| Standard Panel Size | 1200×2400 | mm | Production specification |
| Customized Width | 1200 | mm | Production specification |
| Customized Length | 2400 | mm | Production specification |
| Weight | 14 | kg/㎡ | Production specification |
| FRP Structure | Solid FRP Composite Panel | / | Production specification |
| Surface Structure | Aluminum Oxide | / | Production specification |
| Anti-slip Aggregate Size | 40 | Mesh | Production Specification |
| Anti-slip Layer Thickness | 0.5 | mm | Production Specification |
| Dry Friction Coefficient | 1.0 | μ | ASTM C1028 |
| Wet Friction Coefficient | 0.9 | μ | ASTM C1028 |
| Oil Contaminated Friction Coefficient | 0.56 | μ | ASTM C1028 |
| Tensile Strength | 85 | MPa | GB/T 1447 |
| Flexural Strength | 106 | MPa | GB/T 1449 |
| Compression Strength | 135 | MPa | ASTM D695 |
| Elastic Modulus | 9500 | MPa | ASTM D790 |
| Surface Hardness | 47 | Barcol | GB/T 3854 |
| Density | 1.48 | g/cm³ | GB/T 1463 |
| Water Absorption | <0.35 | % | GB/T 1462 |
| Impact Resistance | 35 | kJ/㎡ | ASTM D256 |
| Impact Resistance | ≥30 | kJ/㎡ | ASTM D256 |
| Thermal Conductivity | 0.20-0.30 | W/m·K | ASTM C177 |
| Thermal Expansion Coefficient | 2.0-3.5×10⁻⁵ | /℃ | ASTM D696 |
| Salt Spray Resistance | ≥5000 | h | ASTM B117 |
Compared to conventional materials, our fiberglass honeycomb panels are lightweight, high-strength, and corrosion-resistant. They offer exceptional solutions for the RV, truck, marine, and construction industries.
| Performance | Anti-slip FRP Panels | Carbon Steel Plate | Aluminum Plate | Concrete Flooring | Wood Flooring |
| Anti-slip Performance | Integrated abrasive surface with DCOF ≥0.80, maintains grip in wet and oily environments | Requires additional coating or surface treatment, anti-slip performance decreases after wear | Needs surface texturing, slippery when wet | Surface roughness decreases over time, cracks may affect safety | Easily becomes slippery after moisture absorption |
| Corrosion Resistance | Excellent resistance to acids, alkalis, salt spray and chemicals (pH 2-12) | Easily rusts in humid, chemical and marine environments | Good corrosion resistance but vulnerable to chemical attack | Poor resistance to chemical corrosion, cracking may occur | Rot, mold and decay under moisture |
| Weight Advantage | Lightweight structure, density only 1.45-1.55 g/cm³, easy transportation and installation | Heavy weight increases structural load and installation cost | Lightweight but lower impact resistance | Extremely heavy, requires strong supporting structure | Lightweight but lower durability |
| Strength Performance | Tensile strength ≥70 MPa, flexural strength ≥95 MPa, high strength-to-weight ratio | High strength but prone to corrosion without protection | Good strength but lower impact resistance | High compressive strength but brittle under impact | Lower mechanical strength and deformation risk |
| Maintenance Requirement | Almost maintenance-free, no painting or anti-rust treatment required | Requires regular painting, coating repair and rust prevention | Requires surface protection in harsh environments | Requires crack repair and surface maintenance | Requires coating, sealing and replacement |
| Service Life | 20+ years under proper conditions | Reduced lifespan in corrosive environments | Long lifespan but depends on environment | Long lifespan but vulnerable to cracking | Shorter lifespan in outdoor or wet applications |
| Water Resistance | Water absorption <0.35%, waterproof structure | Rust formation caused by water exposure | Good waterproof performance | Water penetration may cause cracks | Absorbs moisture and deforms |
| Chemical Resistance | Resistant to acids, alkalis, oils and industrial chemicals | Limited resistance, requires special coating | Limited resistance to strong chemicals | Poor resistance to aggressive chemicals | Not suitable for chemical environments |
| Installation Efficiency | Can be prefabricated, drilled and customized, reducing onsite labor | Requires welding, lifting equipment and surface treatment | Requires professional installation | Long curing and construction period | Simple installation but frequent replacement |
| Electrical Safety | Excellent electrical insulation, suitable for power facilities | Conductive material, electrical hazard risk | Conductive material | Conductive when wet | Insulating but affected by moisture |
| Fire Performance | Available with flame-retardant resin systems, ASTM E84 Class A option | Non-combustible but loses strength under high temperature | Non-combustible but melts under extreme heat | Excellent fire resistance | Combustible without special treatment |
| Environmental Adaptability | Suitable for chemical plants, marine platforms, wastewater treatment and outdoor facilities | Limited in salt spray and chemical environments | Suitable for general applications but expensive in harsh environments | Suitable for civil structures but difficult to repair | Limited outdoor durability |
Real Feedback from Our Customers
Our solid anti-slip FRP panels are completely flat and non-porous, with an integrated anti-slip granulate layer on the surface, making them ideal for full-surface flooring, stair treads and enclosed walkways. FRP gratings, on the other hand, feature a hollow mesh structure and are primarily used in drainage channels. Solid panels offer superior water resistance and dust resistance, and are easy for you to clean.
Yes. We embed aluminium oxide abrasives into the surface during the continuous production process of our anti-slip FRP panels. Under wet and slippery conditions, the coefficient of friction (DCOF) can reach ≥0.6; on oily surfaces, it can reach ≥0.48, fully complying with the industrial safety standards set by the US Occupational Safety and Health Administration (OSHA). Even after prolonged wear and tear, our abrasives will not flake off.
For general indoor dry or damp environments, we recommend isophthalate polyester. For outdoor walkways exposed to sunlight, we use UV-resistant polyester. In sewage treatment works, electroplating plants and chemical plants where there is acid or alkali corrosion, we use vinyl ester resin. For power stations, petrochemical plants and explosion-proof areas, we recommend flame-retardant phenolic resins. In meat, beverage and food processing facilities, we incorporate antimicrobial silver ions.
Our standard FRP anti-slip panels are fully insulating, with a dielectric strength exceeding 10 kV/mm. In addition, we supply customised anti-static panels for solvent-handling workshops. There is no risk of electric shock, and even when metal tools strike the surface of our FRP panels, no sparks are generated, making them suitable for use in explosion-proof areas.
Our anti-slip FRP panels exhibited a reduction in coefficient of friction of just 7–9 per cent after 5,000 Taber abrasion tests. For forklift aisles and heavy-duty platforms, we use 40-mesh fine sand and apply a double layer of sealing coating to ensure that anti-slip performance remains stable for over 10 years. We can produce either smooth or anti-slip areas according to your requirements.
To save time during installation, you can secure the panels using stainless steel or FRP bolts through the pre-drilled holes we have provided, without the need for welding or gas cutting. For routine maintenance, simply rinse with water or a neutral detergent. There is no need to repaint, remove rust or apply any special surface protection.
The minimum order quantity for standard sheets is one roll. Of course, we also accept small-batch orders for custom-cut sheets. The production lead time for standard FRP panels is 7–10 working days. Customised panels featuring special resins, anti-static properties or specialised fibreglass sheets require 12–18 working days. We support bulk project orders from engineering contractors.













