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  • JT/T 280 Thermoplastic Road Marking Paint – High-quality road marking solution for highways, urban roads, and industrial zones.
  • JT/T 280 Thermoplastic Road Marking Paint – Application process showcasing durability and reflectivity.
  • JT/T 280 Thermoplastic Road Marking Paint – High-quality road marking solution for highways, urban roads, and industrial zones.
  • JT/T 280 Thermoplastic Road Marking Paint – Application process showcasing durability and reflectivity.

China Thermoplastic Road Marking Paint

No.JT/T 280
High-performance thermoplastic road marking paint manufactured under China’s JT/T 280-2022 standard. Designed for highways, city roads, and airports, this reflective material offers excellent adhesion, wear resistance, fast drying, and superior retroreflectivity. Ideal for long-lasting lane markings and pedestrian crossings.
$7.50
  • JT/T 280 Thermoplastic Road Marking Paint – High-quality road marking solution for highways, urban roads, and industrial zones.
  • JT/T 280 Thermoplastic Road Marking Paint – Application process showcasing durability and reflectivity.

Description

What Is China Thermoplastic Road Marking Paint?

China thermoplastic road marking paint is a solid powder coating material formulated according to the national transportation standard JT/T 280-2022. It becomes flowable when heated to 180–210 °C and forms a durable, reflective film after cooling. This paint is mainly used for creating long-lasting traffic lines such as center lines, edge lines, pedestrian crossings, arrows, and symbols on asphalt or concrete pavements.

As a hot-melt marking material, it offers excellent adhesion, high reflectivity, fast drying, and strong wear resistance. The finished markings are bright, weatherproof, and suitable for highways, city roads, airports, parking lots, and industrial zones, ensuring safe and visible traffic guidance both day and night.

How to Use Thermoplastic Road Marking Paint

Thermoplastic road marking paint must be heated, applied, and cooled under controlled conditions to ensure strong adhesion and long-term durability. The process generally includes preheating, application, and bead dropping, followed by natural cooling. Below are the main steps used in professional road marking projects.

1. Preheat the Paint

Pour the solid thermoplastic powder into a specialized preheater and heat it to 180–210 °C until it becomes a uniform molten liquid. Maintain constant stirring to avoid scorching or uneven melting. The paint should remain smooth and free from bubbles before transfer.

2. Apply with Marking Machine

Transfer the melted paint into the thermoplastic road marking machine. Apply evenly on the road surface at the desired line width and thickness, typically 1.5–2.0 mm. Ensure the pavement is clean and dry for optimal adhesion to asphalt or concrete.

3. Drop Reflective Glass Beads

While the paint is still hot, immediately drop 300–400 g/m² of reflective glass beads onto the surface. The beads embed partially into the molten layer, enhancing retroreflectivity for clear night visibility and improved road safety.

4. Cooling and Traffic Opening

After application, allow the markings to cool naturally for about 3–5 minutes. Once hardened, the surface becomes smooth, wear-resistant, and traffic-ready. Proper temperature control ensures that the paint film bonds firmly and resists deformation or peeling.

Technical Parameters — Thermoplastic Road Marking Paint (JT/T 280-2022)

Item Unit Standard Requirement / Typical Value Remarks
Appearance Uniform solid powder, free of impurities and lumps Visual inspection
Softening Point °C ≥ 100 Thermal stability before melting
Density g/cm³ 1.9 – 2.3 Depends on pigment/filler ratio
Viscosity at 200 °C s 15 – 45 Flow cup method
Flowability (at 200 °C) mm 180 – 220 Construction smoothness
Drying Time (Non-stick to Tire) min ≤ 5 Traffic-ready time
Adhesion (Pull-off Strength) MPa ≥ 0.6 On asphalt concrete base
Compressive Strength (23 °C ± 1) MPa ≥ 18 After 24 h curing
Compressive Strength (60 °C ± 1) MPa ≥ 1.0 Heat-resistance stability
Wear Resistance (Mass Loss) mg ≤ 60 Abrasion test
Water Resistance (24 h) No blistering, cracking, or discoloration Distilled water immersion
Alkali Resistance (24 h) No blistering, cracking, or discoloration Saturated Ca(OH)₂ solution
Retroreflectivity (RL, dry) mcd·m⁻²·lx⁻¹ ≥ 200 (white), ≥ 150 (yellow) With standard glass beads
Brightness Factor (β) ≥ 0.75 (white), ≥ 0.50 (yellow) Colorimetric measurement
Skid Resistance (SRT Value) ≥ 45 British pendulum tester
Glass Bead Content (Premixed) % by weight 20 – 30 Adjustable
Surface Glass Bead Drop Rate g/m² 300 – 400 Standard application rate
Application Temperature Range °C 180 – 210 Recommended heating range
Heat Stability (4 h at 200 °C) No segregation; no significant color change Melt stability
Shelf Life months ≥ 12 Dry, ventilated storage
Standard Package kg/bag 25 ± 0.5 Moisture-proof plastic bags

Source standard: National Standards Information Public Service Platform

Differences from Other International Standards

Although thermoplastic road marking paints around the world share similar functions, their formulations and testing standards vary by region. The proportion of resins, fillers, pigments, and glass beads directly affects the product’s service life, retroreflectivity, and overall cost.

In many Asian countries, such as Vietnam, the local standard TCVN 8791:2011 directly references the Chinese JT/T 280-2022 specification. This means that thermoplastic paints manufactured under China’s standard can fully comply with Vietnamese government quality inspections when used for road marking projects.

For the AASHTO M249 standard used in the United States, only minor adjustments are needed—typically adding reflective glass beads to reach around 30% content and ensuring the same performance consistency—making Chinese thermoplastic materials suitable for export to American projects.

The BS 3262 standard from the United Kingdom and Europe requires higher durability and optical properties than the Chinese standard. However, by fine-tuning the formulation—such as enhancing resin purity and bead adhesion—products based on the Chinese specification can also meet EU testing requirements. This adaptability makes Chinese thermoplastic road marking paints a versatile and cost-effective choice for international use.

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FAQ of Bole Road Marking Paint

What is the minimum order quantity (MOQ) for thermoplastic road marking paint?

The minimum order quantity for our thermoplastic road marking paint is 1 ton.

Do you support OEM or custom packaging for private label orders?

Yes, we support OEM, including customized packaging and private labeling. We can also tailor the formulation of our road marking paint to meet specific standards.

What certifications does your paint comply with?

Our road marking paint complies with SDS, low-VOC standards, and can be exported under BS 3262 and AASHTO specifications upon request.

How long does delivery take to different regions?

Delivery time varies by region: 5–15 days to Southeast Asia, 30–50 days to Africa, and 40–60 days to the Americas by sea shipping.

Can you provide a complete road marking solution, including machines and paint?

Yes. With over 20 years of experience in thermoplastic road marking, we provide full solutions including road marking paint, road marking machines, preheaters, and project support.

What is the shelf life of your thermoplastic road marking paint?

Our road marking paint has a shelf life of up to 2 years under proper storage conditions.

Can you provide technical documents like TDS or MSDS?

Yes, we can provide Safety Data Sheets (SDS), MSDS, and sea shipping certificates for all of our road marking paint products.

Do you offer on-site training or technical support for international clients?

Yes. If you purchase both the road marking machine and paint from us, we offer remote or on-site technical guidance for your project.

How does your paint compare to other brands in durability and reflectivity?

We use high-quality raw materials to ensure our road marking paint offers excellent durability, strong adhesion, and superior whiteness for better reflectivity.
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