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  • Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter
  • Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter
  • Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter
  • Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter
  • Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter
  • Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter
Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter

Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter

$35.00-$55.00/ Piece|10 Piece/Pieces(Min. Order)

Customization:

Power(Min.Order: 100 pieces)

Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Heating: Designed to generate and distribute heat efficiently in furnace kilns and industrial applications, supporting temperatures up to 1400°C.
  • Structural Support: Functions as a durable ceramic rod for furnace fixtures, maintaining structural integrity under extreme thermal stress.
  • Liquid Heating Ignition: Enables precise ignition and sustained heating in liquid-based systems, such as industrial boilers or specialized processing equipment.

Key features

  • 1. Advanced Silicon Nitride Ceramic Material Technology

  • With silicon nitride ceramic material, you can achieve superior thermal shock resistance and corrosion protection compared to traditional metal alloys*. This aerospace-grade ceramic ensures long-term durability in harsh furnace environments.

  • 2. Precision-Engineered Rod Design for Seamless Integration

  • With a compact rod shape optimized for furnace kiln systems, you can ensure precise heat distribution and easy installation in structural ceramic fixtures*. The streamlined design outperforms bulky metal alternatives in space-constrained applications.

  • 3. Extreme Temperature Performance

  • With high-temperature stability up to 1400°C, you can maintain consistent performance in extreme thermal environments, outperforming standard ceramic rods by 20-30% in endurance testing*.

  • 4. Specialized Industrial Application Solutions

  • Designed for furnace kiln and industrial fixture applications, you can achieve reliable continuous operation in high-heat scenarios, addressing the unique demands of structural ceramic manufacturing*.

  • 5. Comprehensive Environmental and Safety Compliance

  • With certifications including IEC62321 (hazardous substance restriction) and EPR compliance in Germany/France, you can meet global environmental and recycling standards, ensuring responsible production and disposal*.

Product details

Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter

The Si3N4 Heating Element Silicon Nitride Ceramic Liquid Heating Igniter is a high-performance heating solution designed for furnace kilns, structural ceramics, and furnace fixtures. Crafted from silicon nitride ceramic, it offers superior thermal stability, corrosion resistance, and durability. Certified to IEC62321 and EPR standards (Germany/France), this rod-shaped ceramic heating element ensures compliance with global environmental and packaging regulations.


Technical specifications

FeatureSpecificationApplication Scenario
MaterialSilicon nitride ceramicWithstands extreme temperatures in kilns
CertificationsIEC62321, EPR_Germany_Packing, EPR_France_PackingMeets EU environmental and packaging norms
Shape/TypeRod (customizable dimensions)Structural ceramic fixtures, furnace components
Thermal Conductivity60-80 W/m·K (at 1000°C)Efficient heat distribution in industrial furnaces
Max Operating Temp1400°C (Pro Model)High-temperature kiln applications

Customization guide

Adjustable parameters include rod length (100mm–1500mm), diameter (3mm–20mm), and surface finish (e.g., smooth/rough) to meet specific furnace design requirements.


Get inspired

With silicon nitride ceramic’s exceptional thermal stability, you can achieve uniform heating in industrial kilns while minimizing material degradation. Its corrosion resistance ensures longevity even in harsh environments.


Choose your model

ParameterBase ModelAdvanced ModelPro Model
Thermal Efficiency85%+15% (98%)+30% (110.5%)
Max Operating Temp1200°C1300°C1400°C
Service Life5000 hours6500 hours8000 hours
Weight1.2kg/m1.4kg/m1.6kg/m

Supplier's note

  1. Three Technical Breakthroughs:

    • Silicon Nitride Material: Achieves 1400°C max temp (Pro Model) with minimal thermal expansion.
    • EPR Compliance: Simplifies EU market entry with pre-certified packaging.
    • Customizable Dimensions: Enables precise fitting for furnace kiln designs.
  2. Optimal Version Selection:

    • Base Model: Ideal for small-scale kilns requiring standard thermal performance (≤1200°C).
    • Advanced Model: Suitable for mid-sized industrial applications needing 15% higher efficiency.
    • Pro Model: Best for high-temperature environments (e.g., aerospace ceramics) where durability and extreme heat resistance are critical.

With the Pro Model’s 1400°C capability, you can safely process high-melting-point ceramics. Its dense ceramic structure also reduces energy loss compared to traditional metal alloys. Pair it with customized rod lengths to optimize kiln space utilization.

Frequently asked questions

  • Which heating element model suits high-temperature furnace kilns best?

  • How do I maintain a silicon nitride ceramic heating element for longevity?

  • Silicon nitride vs. alumina ceramics: Which is better for furnace fixtures?

  • Can the Si3N4 Heating Element be customized for specific furnace applications?

  • Is the silicon nitride ceramic heating element EPR-compliant for Europe?

  • What safety features does the Si3N4 Heating Element offer?

  • Does the ceramic rod ensure even heat distribution in kilns?

  • How does silicon nitride compare to metal alloys in heating elements?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHigh-temperature industrial equipmentIndustry Standard: Metallic alloys (e.g., nichrome)
Our Base: Silicon nitride ceramic (IEC 62321 compliant, 1400°C max temp) ▲
Our Advanced: Enhanced silicon nitride with additives (1600°C max temp) ▲▲
Superior thermal resistance and durability ▲
Full compliance with IEC standards ▲▲
Higher cost than metallic options ▲
Requires specialized handling ▲▲
Thermal PerformanceFurnace kilns requiring rapid heatingIndustry Standard: Up to 1200°C (ASTM C110)
Our Base: 1400°C (IEC 62321) ▲
Our Advanced: 1600°C ▲▲
Operates in extreme temperatures ▲
Reduces downtime via faster heat-up ▲▲
Requires advanced insulation ▲
Higher energy consumption ▲▲
Safety ComplianceEU-regulated manufacturingIndustry Standard: Basic electrical safety certs
Our Base: IEC 62321, EPR Germany ▲
Our Advanced: EPR Germany/France, RoHS ▲▲
Full regulatory compliance ▲
Meets EU recycling mandates ▲▲
Certification costs may increase price ▲
Limited global recognition ▲▲
Structural IntegrityHeavy-duty furnace fixturesIndustry Standard: Moderate thermal shock resistance (ΔT 200°C)
Our Base: Thermal shock resistance ΔT 500°C (IEC 62321) ▲
Our Advanced: ΔT 600°C ▲▲
Withstands extreme temperature fluctuations ▲
Longer lifespan ▲▲
Heavier than alternatives ▲
Requires reinforced mounting ▲▲
Environmental ComplianceGreen manufacturing facilitiesIndustry Standard: Minimal environmental certs
Our Base: EPR Germany ▲
Our Advanced: EPR Germany/France, RoHS ▲▲
Meets strict EU recycling laws ▲
Reduces waste disposal costs ▲▲
Limited availability in non-EU markets ▲
Complex certification process ▲▲
Application SuitabilityCustom furnace designsIndustry Standard: Limited customization
Our Base: Customizable rod dimensions (IEC 62321 compliant) ▲
Our Advanced: Tailored thermal properties + dimensions ▲▲
Adaptable to specific thermal needs ▲
Optimized for niche applications ▲▲
Longer lead times for custom orders ▲
Higher R&D investment ▲▲

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