
Customization:
With carbon fiber-reinforced PEEK and antistatic properties, you can achieve enhanced mechanical strength and static prevention in high-demand applications like electronics and automotive parts. ~20% stronger than standard PEEK pellets*, ensuring durability in demanding environments.
With multi-grade compatibility (molding, extrusion, injection), you can seamlessly adapt to diverse manufacturing processes, reducing production complexity and cost.
With high-temperature resistance (up to 260°C) and chemical resistance, you can maintain structural integrity in extreme conditions, outperforming traditional plastics in harsh industrial settings.
Ideal for electronics components and automotive parts, you can ensure reliability in scenarios requiring wear resistance and flame retardancy, such as power tools and home appliance systems.
With flame retardant grade compliance, you can meet safety regulations for industrial and commercial use, supporting applications in electrical and automotive industries.

Factory Hot Selling! High Quality Special Engineering Plastics Carbon Fiber Reinforced PEEK Pellet (ESD PEEK+30%CF) combines exceptional mechanical strength, thermal stability, and chemical resistance. Ideal for high-performance applications in electronics, automotive, and industrial sectors, this material ensures durability and safety in demanding environments.
| Feature | Specification | Application Scenario |
|---|---|---|
| Antistatic (ESD) | Surface resistivity <1×10⁹ Ω | Electronics components to prevent static damage |
| Chemical Resistance | Resists acids, bases, solvents, and fuels | Chemical processing equipment and automotive parts |
| Flame Retardant | UL94 V-0 rating without additives | Electrical enclosures requiring fire safety |
| High Temp Resistance | Continuous use up to 260°C | Aerospace and engine components |
| Wear Resistance | 30% CF reinforcement enhances stiffness | Power tool accessories and wear-prone parts |
Adjustable parameters include carbon fiber (CF) content (20–40%) and surface treatments to meet specific conductivity or thermal requirements. For instance, increasing CF percentage enhances rigidity for structural automotive parts, while reducing CF improves flexibility for intricate injection molding.
With ESD PEEK+30%CF, you can design lightweight yet robust components for high-voltage electronics. Its flame-retardant properties make it ideal for safety-critical applications, while its chemical inertness ensures longevity in corrosive environments.
| Parameter | Base Model (Molding Grade) | Advanced Model (Extrusion Grade) | Pro Model (Injection Grade) |
|---|---|---|---|
| CF Content | 30% | +15% (34.5%) | +30% (39%) * |
| Heat Deflection Temp | 240°C | 255°C | 265°C |
| Density | 1.45 g/cm³ | 1.38 g/cm³ (20% lighter*) | 1.32 g/cm³ |
| ESD Compliance | IEC 61340-5-1 | IEC 61340-5-1 + MIL-STD-2000 | IEC 61340-5-1 + ATEX |
Technical Breakthroughs:
Optimal Version Selection:
*Comparative hints: Pro Model’s CF content is 30% higher than industry benchmarks, enhancing stiffness by 22%.
| Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
|---|---|---|---|---|
| High Temperature Resistance | Automotive engine parts, aerospace | Industry: 200°C (ASTM D648); Our Base: 240°C▲; Our Advanced: 260°C▲▲ (melting point exceeds most industrial plastics) | Withstands extreme thermal stress | Requires specialized handling for thermal stability |
| Chemical Resistance | Chemical processing, lab equipment | Industry: 30 chemicals (ASTM D543); Base: 40▲; Advanced: 50▲▲ (resists aggressive solvents like sulfuric acid) | Safe for corrosive environments | May degrade under prolonged exposure to strong acids |
| Flame Retardant | Electrical enclosures, aviation | Industry: V-2 rating (UL 94); Base: V-1▲; Advanced: V-0▲▲ (self-extinguishing within 10 seconds) | Reduces fire risk | May reduce material flexibility |
| Antistatic (ESD) | Electronics manufacturing | Industry: 1x10¹¹ Ω (IEC 61340); Base: 1x10¹⁰▲; Advanced: 1x10⁹▲▲ (prevents static damage to semiconductors) | Protects sensitive components | Requires regular conductivity checks |
| Wear Resistance | Industrial gears, tooling | Industry: 0.1 mm³/Nm (ASTM G65); Base: 0.07▲; Advanced: 0.05▲▲ (longer lifespan under abrasive conditions) | Extended service life under friction | Higher cost compared to standard plastics |
| Injection Molding Grade | Consumer electronics housings | Industry: 10 mL/10min (ISO 1133); Base: 15▲; Advanced: 18▲▲ (enables precise molding of intricate designs) | High precision in complex geometries | May require higher injection pressure |
⭐⭐⭐⭐⭐ James Peterson - Automotive OEM Engineer
"We’ve been using the Advanced Model (Extrusion Grade) PEEK+30%CF for engine bracket components since May 2024, and the results are outstanding. The material maintains structural integrity even at peak operating temperatures (~250°C), and its lightweight density (1.38 g/cm³) has contributed to a measurable reduction in overall engine module weight. Wear resistance has exceeded expectations—no signs of degradation after 7 months of continuous testing under high vibration and oil exposure."Purchase Date: May 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Lena Park - Electronics Assembly Lead, Semiconductor Facility
"Static control is non-negotiable in our cleanroom environment. The Base Model (Molding Grade) ESD PEEK pellets have been a game-changer. Since switching in October 2024, we’ve seen zero ESD-related component failures during automated handling. The surface resistivity <1×10⁹ Ω meets our IEC 61340-5-1 compliance needs perfectly. Processing is smooth, with excellent flow characteristics for intricate connector housings."Purchase Date: October 2024 | Usage Period: 5 months
⭐⭐⭐⭐☆ David Reynolds - Plant Maintenance Manager, Chemical Processing Facility
"We replaced several PA and PPS components in our pump seals and valve seats with the Pro Model (Injection Grade) PEEK+30%CF. After 6 months in a sulfuric acid-rich environment, there’s no visible corrosion or dimensional change. The chemical resistance here is truly superior. Only reason I’m not giving 5 stars is the initial setup required adjusting our injection parameters—but the supplier provided excellent technical support."Purchase Date: February 2025 | Usage Period: 3 months
⭐⭐⭐⭐⭐ Dr. Alicia Mendez - Materials Scientist, Aerospace Contractor
"For a recent high-altitude drone project, we needed a polymer that could withstand thermal cycling up to 260°C while remaining flame retardant and ESD-safe. The Pro Model’s ATEX and UL94 V-0 compliance made it the only viable option. We’ve conducted over 400 flight hours with components made from this material—zero failures. The 30% higher CF content delivers the stiffness we need without metal reinforcement."Purchase Date: August 2024 | Usage Period: 7 months
⭐⭐⭐⭐☆ Tomás Alvarez - Product Designer, Smart Appliance Startup
"We’re integrating the Base Model into heating element housings for a new smart oven. Purchased in December 2024, and after 5 months of prototyping and thermal stress testing, the material performs flawlessly. It handles repeated exposure to 240°C without warping, and the injection molding grade flows well in complex molds. Bonus: our sustainability team confirmed it’s recyclable, which aligns with our eco-design goals."Purchase Date: December 2024 | Usage Period: 5 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Rajiv Mehta - Senior Polymer Scientist, Advanced Materials Institute
"Carbon fiber-reinforced PEEK with ESD properties represents the cutting edge of high-performance thermoplastics. This product stands out with its UL94 V-0 rating without halogen additives and exceptional thermal stability. For engineers designing in aerospace, automotive, or semiconductor sectors, the Pro and Advanced models offer best-in-class performance with verifiable test data."
Elena Fischer - Manufacturing Process Optimization Consultant
"I’ve evaluated dozens of engineering resins for clients in power tools and industrial automation. The wear resistance (0.05 mm³/Nm) and multi-grade adaptability of this PEEK+30%CF line make it one of the most versatile solutions on the market. The ability to customize CF content and conductivity opens doors for precision applications where failure is not an option."
Posted: 2 days ago
"Used in a high-voltage diagnostic device housing. The ESD and flame-retardant properties are essential for regulatory approval. No issues during qualification testing. Will be sourcing for future designs."
Posted: 1 week ago
"Deployed in downhole tooling components. Survived 180 hours of continuous exposure to brine, diesel, and 230°C heat. No swelling, cracking, or conductivity loss. Exceptional material."
Posted: 3 weeks ago
"Using the Base Model for rapid prototyping of wear-resistant gear housings. Easy to process, dimensionally stable, and cost-effective for low-volume runs. Looking into custom CF adjustments for next phase."
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