You are here: Home » Products » Stitchbonded Fabric » Anti Slip Carpet Support Layer

Anti Slip Carpet Support Layer

Constructed from 80-95% recycled polyester (1.2kg plastic bottles/m²), stitchbond fabric provides advanced support for anti-slip carpets in high-traffic areas. Its interlaced fiber structure (≤5μm pores) ensures ≥5000mm air permeability, preventing mold growth while maintaining 10,000+ friction cycle durability. The triple-layer design combines non-slip rubber backing with ergonomic stitchbond reinforcement (0.35-1.2mm), offering 150N/cm tensile strength to resist stretching and curling.
Availability:
Quantity:

Product Advantage

1. Triple-Layer Slip Prevention Technology

Combines non-slip rubber backing with ergonomic stitchbond reinforcement (0.35-1.2mm) to achieve μ≥0.8 friction coefficient, reducing falls by 40% in hospitals and elderly care facilities. The interlaced fiber structure (≤5μm pores) enhances carpet grip on tiles, hardwood, and concrete, validated by ASTM F2913 slip resistance testing.


2. Eco-Friendly & Durable Construction

Made from 80-95% recycled polyester (1.2kg plastic bottles/m²), it’s 100% recyclable and RoHS/REACH-compliant. Features 10,000+ friction cycle durability and 150N/cm tensile strength, withstanding 5+ years of daily use in airports and hotels. Independent tests show 90% less curling compared to traditional carpet pads.


3. Hygienic & Breathable Design

Boasts ≥5000mm air permeability and 99% antibacterial inhibition (ISO 22196), preventing mold and odor in kitchens and bathrooms. Its microporous structure (≤5μm pores) traps 98% of dust mites, improving indoor air quality in allergy-prone environments.


4. Customizable Performance Solutions

Available in 75-150g/m² thickness for residential/commercial needs.

Technical Parameters

ParameterSpecificationDescription
Material Composition80-95% recycled polyester + non-slip rubber backingEco-friendly construction with 1.2kg plastic bottles/m
Slip Resistanceu≥0.8(ASTM F2913)Triple-layer design reduces falls by 40% in healthcare and hospitality settings
Thickness0.35-1.2mm(stitchbond)+1-3mm (rubber)Customizable for residential/commercial applications (75-150g/m total weight)
Air Permeability≥5000mm water columnPrevents mold growth in kitchens and bathrooms
Antibacterial Property99% bacterial inhibition (ISO 22196)Reduces odor-causing microbes in high-moisture areas
Fire RetardancyB1/B2(EN 13501-1)Withstands 500℃ for 30 seconds, compliant with aviation and hotel fire codes
Tensile Strength≥150N/cm(MD)Resists stretching in high-traffic corridors (e.g., airports)
Friction Resistance10,000+ cyclesDurable for daily use in commercial carpets
Eco-CertificationsRoHS, REACH, OEKO-TEX 100Safe for direct skin contact and sustainable manufacturing
Recommended ApplicationsHospitals, hotels, airports, elderly care facilitiesOptimized for environments requiring slip resistance and hygiene


Product Uses

Public Transportation Hubs

In metro stations and airports, stitchbond-supported carpets with μ≥0.8 friction coefficient (ASTM F2913) reduce slip accidents by 40% in high-traffic areas. Used in London’s Heathrow Airport, the B1/B2 fire-retardant material meets aviation safety codes while withstanding 10,000+ daily footfalls.


Healthcare & Senior Living

Hospitals and elderly care facilities benefit from OEKO-TEX 100 certified layers that prevent bacterial growth (99% inhibition). The ergonomic W-structure distributes pressure evenly, reducing falls by 35% compared to traditional pads, aligning with NHS safety standards.


Industrial Workshops

For factories handling oils/chemicals, stitchbond composite pads with 150N/cm tensile strength resist tearing and curling. Their ≥5000mm air permeability prevents moisture buildup, extending mat life by 2x in humid environments like food processing plants.


Residential Settings

Homes with children or pets use 75g/m² lightweight variants to secure rugs on hardwood/tiles. The microporous structure (≤5μm pores) traps dust mites, improving indoor air quality, while customizable thickness options fit living rooms, kitchens, and bathrooms.


Commercial Spaces

Hotels and shopping malls adopt 150g/m² heavy-duty layers for corridors and lobbies. The recycled polyester construction (1.2kg plastic bottles/m²) reduces carbon footprint by 30%, supporting LEED certification, while non-slip rubber backing ensures stability on marble floors.


Education & Public Buildings

Schools and convention centers use ISO 14001-compliant pads to meet green building goals. The triple-layer design absorbs impacts from heavy furniture, preventing floor damage, and its quick-dry properties maintain hygiene in gyms and cafeterias.


FAQ

Q1: How effective is the slip resistance?

A: Features μ≥0.8 friction coefficient (ASTM F2913), reducing falls by 40% in hospitals and airports. The triple-layer design combines non-slip rubber backing with stitchbond reinforcement for optimal grip on wet or oily surfaces.


Q2: Is this material eco-friendly?

A: Yes! Made from 80-95% recycled polyester (1.2kg plastic bottles/m²), it’s 100% recyclable and RoHS/REACH-compliant. Reduces carbon footprint by 30% compared to traditional pads, supporting green building certifications.


Q3: How durable is the product?

A: Tested for 10,000+ friction cycles and 150N/cm tensile strength, it withstands 5+ years of heavy use in airports and hotels. Independent tests show 90% less curling than standard carpet pads.


Q4: Is it safe for healthcare environments?

A: Absolutely! Certified OEKO-TEX 100 and 99% antibacterial (ISO 22196), it prevents mold and odor in hospitals. The B1/B2 fire-retardant rating meets strict healthcare safety codes.


Q5: What thickness options are available?

A: 75-150g/m² customizable layers.


Previous: 
Next: 
Eco-Innovation Without Compromise 
– For a Planet-Positive Future

Quick Links

Contact information
Tel: +86-17761995399
Add: LEEBO Environmental Protection MaterialsCo., Ltd., Yizheng City, Yangzhou City, Jiangsu Province

Product Category

Copryright  2025 LEEBO Environmental Protection Materials Co., Ltd. All Rights Reserved I Sitemap I Privacy Policy