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Heating Elements Furnace Spares Heater Replacement Parts Components

Heating Elements Furnace Spares Heater Replacement Parts Components

Heating Elements furnace spares

furnace spares Replacement

Furnace heater replacement parts

Place of Origin:

Hefei, China

Brand Name:

Tailord

Certification:

ISO9001:2015

Model Number:

Customized

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Product Details
Temperatureresistance:
Up To 1500°C
Surfacetreatment:
Anti-corrosion Coating
Operatingenvironment:
High Temperature And Corrosive Environments
Productname:
Furnace Spare Parts
Material:
High-grade Steel
Durability:
Long-lasting And Wear-resistant
Weight:
Varies By Part, Typically 0.5-5 Kg
Installationtype:
Bolt-on Or Welded
Leadtime:
2-4 Weeks Depending On Order Quantity
Usage:
Replacement Parts For Furnace Maintenance And Repair
Dimensions:
Customizable Per Requirement
Manufacturer:
Certified Industrial Furnace Parts Supplier
Compatibility:
Suitable For Various Furnace Models
Warranty:
12 Months
Highlight:

Heating Elements furnace spares

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furnace spares Replacement

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Furnace heater replacement parts

Payment & Shipping Terms
Minimum Order Quantity
1 Pcs
Price
According to specific product
Packaging Details
Wooden Packages
Delivery Time
10-15 Days
Payment Terms
L/C,T/T
Supply Ability
9999 units
Product Description

We Tailord provide All kinds of furnace heating elements, and customize requests are acceptable.

 

Heating Elements Max Temperature
FEC Heater(Resistance Alloy Coils) 1050℃
Resistance Alloy Coils Rods 1150℃
SiC Rods 1400℃
MoSi2 Rods 1750℃
Molybdenum Wire 1750℃

 

In industrial electric kilns and furnaces, heaters are core components that directly affect heating efficiency, temperature control precision, and service life. Below is a detailed introduction to common heater types, their characteristics, and typical applications:

1. Resistance Wire Heaters

  • Core structure: Made of high-resistance alloy wires (e.g., nichrome, kanthal) as heating elements.
  • Key features: Simple structure, low cost, wide temperature range (-200℃ to 1200℃), and easy replacement.
  • Typical applications: General industrial drying, annealing, and low-to-medium temperature sintering processes.

2. Molybdenum Wire Heaters

  • Core structure: Adopts high-purity molybdenum wire as the heating medium, often used in vacuum or protective atmosphere environments.
  • Key features: Excellent high-temperature resistance (up to 1800℃), stable heating performance, and good temperature uniformity.
  • Typical applications: High-temperature sintering of special materials, brazing of precision components, and aerospace material processing.

3. Silicon Carbide Heaters

  • Core structure: Ceramic heating elements made of silicon carbide (SiC) as the main raw material.
  • Key features: High surface temperature (up to 1600℃), fast heating rate, corrosion resistance, and long service life.
  • Typical applications: High-temperature kilns for ceramics, glass, and electronic ceramic sintering.

4. Ceramic Fiber Heaters

  • Core structure: Heating wires embedded in ceramic fiber insulation materials, forming a lightweight, flexible heating body.
  • Key features: Low thermal inertia, rapid temperature rise and fall, energy-saving, and good thermal insulation performance.
  • Typical applications: Mold heating, local heating of equipment, and small-batch precision processing.

5. Tubular Heaters

  • Core structure: Heating wires sealed in metal tubes (e.g., stainless steel, Incoloy) filled with insulating magnesium oxide powder.
  • Key features: High mechanical strength, waterproof and dustproof, and adaptable to harsh working environments.
  • Typical applications: Liquid heating, air heating, and heating of industrial kiln inner liners.

6. Induction Heaters

  • Core structure: Based on electromagnetic induction principle, generating eddy currents in the workpiece to achieve self-heating.
  • Key features: Ultra-fast heating speed, high energy efficiency, and minimal heat loss to the environment.
  • Typical applications: Forging, quenching, and heat treatment of metal workpieces.

7. Electric Heating Plates

  • Core structure: Flat heating elements made of resistance materials bonded to metal or ceramic substrates.
  • Key features: Uniform surface temperature, easy installation, and suitable for planar heating scenarios.
  • Typical applications: Heating of molds, drying trays, and low-temperature industrial ovens.

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