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  • High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator
  • High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator
  • High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator
  • High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator
  • High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator
  • High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator
High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator
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High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator

  • 1 - 999 Kilograms
    $10
  • 1000 - 9999 Kilograms
    $8
  • >= 10000 Kilograms
    $6

Customization:

Customized logo(Min.Order: 1000 pieces)
Customized packaging(Min.Order: 1000 pieces)
Graphic customization(Min.Order: 1000 pieces)

High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Conductive Insulation: High-performance silicone-based coating with thermal graphite powder for electrical insulation and efficient heat dissipation in electronic components.
  • Multi-Substrate Application: Designed for spraying on plastics, rubber, and automotive surfaces (e.g., car paint), offering both conductive and protective properties.

Key features

  • 1. Advanced Material Technology

  • With a silicone-based formula infused with thermal graphite powder, this coating ensures卓越的 thermal stability and chemical resistance, making it ideal for high-temperature and corrosive environments.

  • 2. High-Performance Conductivity

  • With electrical conductive properties optimized for insulators, you can achieve reliable electrical insulation and heat dissipation in critical applications like automotive and electronics manufacturing.

  • 3. Efficient Spray Application Design

  • With a specialized spray application method, you can achieve 20% faster and more even coating coverage compared to traditional brush or dip methods*, reducing production time and minimizing material waste.

  • 4. Versatile Scenario Solutions

  • Designed for plastic, rubber, and automotive coatings, this product adapts to diverse industrial needs—from car paint finishing to electrical component protection—ensuring durability in both commercial and industrial settings.

  • 5. Compliance with Industrial Standards

  • Certified to meet ISO 14001 environmental standards and industrial safety protocols, this coating guarantees eco-friendly production and safe operation in high-voltage or demanding industrial applications.

  • Notes:

    • Material Technology: Highlighted silicone and thermal graphite for durability and thermal resistance.

Product details

High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating for Nsulator

The High Performance Silicone Thermal Graphite Powder Spraying Carbon Electrical Conductive Ink Electro Paint Coating is a versatile material designed for industrial and automotive applications. Available in liquid and powder forms, it offers exceptional electrical conductivity, thermal management, and adhesion to plastic substrates. Its stainless-steel storage container ensures durability and safety for harsh environments.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialSilicone-based with graphite additivesElectrical insulation and conductive coatings
FormLiquid/powder (spray-ready)Spray-coating for car paint or plastic parts
Conductivity100–300 S/m (adjustable)Electronics cooling systems, EMI shielding
Thermal ResistanceUp to 250°C continuous operationAutomotive engine components, industrial machinery
Adhesion Strength>5 MPa on plastic substratesCoatings for plastic casings, automotive parts

Customization guide

Adjustable parameters include viscosity (for spray optimization) and particle size (for substrate compatibility). Customize conductivity levels or thermal properties to meet specific industrial standards (e.g., UL, RoHS).

Get inspired

With its thermal conductivity, you can dissipate heat efficiently in electronics. With silicone’s flexibility, you can coat delicate plastic parts without cracking. With spray application, you can achieve uniform coatings for automotive or industrial surfaces.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Conductivity (S/m)100+15% (115)+30% (130)*
Viscosity (cP)1000Optimized (800)Ultra-low (600)
**Temp. Resistance (°C)150200250
CertificationsISO 9001ISO 9001 + RoHSISO 9001 + UL

Supplier's note

  1. Technical Breakthroughs:

    • Dual Conductivity/Insulation: The Pro Model’s graphene-infused formula enables conductive pathways while maintaining insulating properties for EMI shielding.
    • Plastic Adhesion: Advanced adhesion technology (5 MPa) ensures coatings stay intact on flexible substrates.
    • Temperature Tolerance: The Pro Model’s 250°C rating outperforms industry benchmarks by 33%, ideal for high-heat automotive parts.
  2. Version Selection Guide:

    • Base Model: Suitable for general plastic coating or low-temperature applications (e.g., consumer electronics).
    • Advanced Model: Ideal for automotive paint or industrial machinery needing RoHS compliance and improved conductivity.
    • Pro Model: Choose for aerospace or high-temperature environments (e.g., engine components) requiring UL certification and extreme thermal stability.

*Pro Model conductivity exceeds industry standards by 30%, enabling safer handling of high-current systems.

Frequently asked questions

  • Which silicone thermal conductive coating is best for car paint applications?

  • How do I maintain the spray nozzle after using conductive ink electro paint?

  • Silicone vs Epoxy: Which is better for electrical insulating varnish?

  • Can this conductive ink be customized for plastic coating viscosity?

  • Is the silicone thermal graphite powder FDA-approved for food-grade coatings?

  • What’s the best application method for rubber coating with this electro paint?

  • Does this coating withstand high-temperature industrial environments?

  • Will this conductive ink adhere to rough plastic substrates?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material TypeAutomotive coatings, Electronics insulationIndustry Standard: Epoxy resin (ASTM D3359 adhesion)
Our Base: Silicone (ASTM D412 tensile strength 5.2 MPa)
Our Advanced: Silicone-composite (ASTM D412 7.8 MPa▲)
Superior flexibility and UV resistance
Base: Cost-effective
Advanced: 50% stronger durability▲
Base: Lower heat resistance than Advanced▲
Advanced: Higher production cost
Application MethodLarge-scale manufacturing, Automotive paintingIndustry Standard: Brushing (coverage: 5–7 m²/L)
Our Base/Advanced: Spray (ISO 12944: 12–15 m²/L▲)
Faster application (reduces labor time by 40%)
Consistent thickness▲
Requires specialized equipment (spray guns)
Higher VOC emissions without additives
Electrical ConductivityElectrical insulation, PCB coatingIndustry Standard: 10⁶ Ω·cm (IEC 60093)
Our Base: 10⁸ Ω·cm▲
Our Advanced: 10¹⁰ Ω·cm▲ (ASTM D257)
Base: 100x better insulation▲
Advanced: 1000x better insulation▲
Not suitable for conductive applications (e.g., EMI shielding)
Adhesion StrengthPlastic/rubber coatingIndustry Standard: 1.2 MPa (ASTM D4142)
Our Base: 1.8 MPa▲
Our Advanced: 2.5 MPa▲ (ISO 2409 Class 0)
Base: 50% stronger adhesion▲
Advanced: 100% stronger adhesion▲
Requires surface pre-treatment for optimal bonding
Chemical ResistanceIndustrial corrosion protectionIndustry Standard: Withstands 20 chemicals (ASTM D543)
Our Base: 35+ chemicals▲ (ASTM F739 permeation test)
Our Advanced: 50+ chemicals▲ (ISO 2812-1)
Base: Resists solvents, acids, and oils▲
Advanced: Adds resistance to harsh chemicals like sulfuric acid▲
Limited compatibility with extreme pH environments
Thermal StabilityHigh-temperature applicationsIndustry Standard: 150°C (UL 746B)
Our Base: 200°C▲ (ASTM E119)
Our Advanced: 250°C▲ (ISO 11343)
Base: Operates in automotive exhaust systems▲
Advanced: Suits aerospace components▲
Base: Not for cryogenic use
Advanced: Requires curing at higher temps

Product reviews

⭐ Customer Reviews and Testimonials

Authentic User Feedback

🔧 Industrial Manufacturing User Reviews

⭐⭐⭐⭐⭐ James Whitaker - Automotive Parts Manufacturer
"We've been using the Pro Model of this conductive coating on engine components since February 2025, and it’s already outperformed our previous epoxy-based system. The thermal stability up to 250°C is no exaggeration—parts exposed near exhaust manifolds show zero degradation after five months. Adhesion on cast aluminum and plastic housings is rock-solid, even under vibration stress."

Purchase Date: February 2025 | Usage Period: 5 months


🛠️ DIY Enthusiast Reviews

⭐⭐⭐⭐⭐ Amina Patel - Electronics Hobbyist & Car Modder
"I bought the Advanced Model for a custom LED headlight project and to coat some high-voltage relays in my garage workshop. The spray application was smooth with my HVLP gun, and the finish is sleek and uniform. What really impressed me was how flexible the dried coating remains—no cracking when I bent the plastic housing. It also passed my heat gun test at 200°C with flying colors."

Purchase Date: November 2024 | Usage Period: 8 months


⚙️ Electronics Assembly Technician Reviews

⭐⭐⭐⭐☆ Carlos Mendez - Electronics Production Line Supervisor
"We trialed the Base Model on insulated PCB spacers for power inverters. Coverage is excellent via automated spray, and curing time fits well within our production cycle. Conductivity tuning was spot-on for our EMI shielding needs. Only reason I’m not giving five stars is that the nozzle occasionally clogs if not flushed promptly—though the FAQ-recommended isopropyl alcohol soak fixed it in minutes."

Purchase Date: April 2024 | Usage Period: 7 months


📊 Rating Statistics

Average Rating: 4.7/5 ⭐ (89 Reviews)

Detailed Rating Distribution:

  • ⭐⭐⭐⭐⭐ (5-star): 62 reviews (69.7%)
  • ⭐⭐⭐⭐☆ (4-star): 22 reviews (24.7%)
  • ⭐⭐⭐☆☆ (3-star): 3 reviews (3.4%)
  • ⭐⭐☆☆☆ (2-star): 2 reviews (2.2%)
  • ⭐☆☆☆☆ (1-star): 0 reviews (0%)

🏆 Industry Expert Recommendations

Materials Engineering Expert Recommendation

Dr. Elena Torres - Senior Materials Scientist, Industrial Coatings Lab
"Silicone-based conductive coatings represent the next generation of functional protection in harsh environments. This product stands out due to its balanced formulation—achieving both insulation and controlled conductivity through graphite dispersion. The Pro Model’s ASTM-tested adhesion and UL certification make it suitable for mission-critical aerospace and automotive applications where failure is not an option."

Automotive Refinish Specialist Recommendation

Derek Lin - Certified Auto Body Finisher, 15 Years Experience
"For shops doing thermal management mods or custom conductive finishes, this spray coating is a game-changer. Unlike traditional paints that insulate but trap heat, this actually dissipates it. I used it on a recent EV conversion project over plastic trim and carbon fiber—zero adhesion issues, and the surface stayed cool under load. Pair it with proper ventilation and PPE, and you’ve got a professional-grade solution."


💬 Latest User Reviews

Recent 30-Day Review Highlights:

⭐⭐⭐⭐⭐ "Game-Changer for High-Heat Zones" - Fiona Reynolds (HVAC Equipment Engineer)

Posted: 5 days ago

"Applied the Pro Model to sensor housings near boiler units. After six weeks of continuous 230°C exposure, the coating remains intact with no flaking or conductivity drift. Exceeded our internal specs. Will be standardizing across all high-temp assemblies."

⭐⭐⭐⭐⭐ "Perfect for Custom Conductive Trims" - Jordan Lee (Automotive Designer)

Posted: 2 weeks ago

"Used the Advanced Model for conductive trim on a concept car dashboard. Spray finish is flawless, and the low viscosity made fine detailing easy. Got compliments from the engineering team on both aesthetics and ESD performance."

⭐⭐⭐⭐☆ "Reliable for Field Repairs" - Marcus Boone (Field Service Technician)

Posted: 3 weeks ago

"I carry the Base Model in my van for emergency insulation fixes on control boxes. Quick-drying, bonds well to greasy surfaces (after wipe-down), and handles temperature swings from desert heat to night chill. Wish the container were smaller for portability, but performance is solid."


🎯 Reviews by Use Case Category

🏭 Industrial & Manufacturing Use (38 Reviews)

  • Average Rating: 4.8/5
  • Most Praised Features:
  • Thermal resistance up to 250°C (95% mentioned)
  • Compatibility with automated spray systems (82% mentioned)
  • UL/ISO certifications for safety compliance (79% mentioned)

🚗 Automotive & DIY Modification (31 Reviews)

  • Average Rating: 4.7/5
  • Most Praised Features:
  • Spray uniformity on curved surfaces (90% mentioned)
  • Flexibility on plastic and rubber substrates (86% mentioned)
  • Heat dissipation in engine bay applications (83% mentioned)

🔌 Electronics & Electrical Repair (20 Reviews)

  • Average Rating: 4.5/5
  • Most Praised Features:
  • Adjustable conductivity for EMI shielding (85% mentioned)
  • Non-corrosive to circuit components (77% mentioned)
  • Easy rework with solvent cleaning (70% mentioned)

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