CUSTOM ELECTRIC AIR HEATING EQUIPMENT

Electric Air Heater

Custom electric air heating equipment for process air, industrial drying, preheating and hot-air circulation.

The Electric Air Heater is an industrial electric heating unit designed to raise the temperature of clean air or process air in production lines, drying systems, circulation loops and equipment packages. It can be configured for low-pressure airflow, duct connection or closed-pipeline installation according to the required air volume, pressure and outlet temperature.

Heating power, housing form, heating element material, connection size, control method and safety interlocks can be engineered according to the process. The heater can be supplied as a standalone unit or together with a control cabinet, sensors, fan interface and system piping.

Industrial electric air heater for process air heating

Product Overview

The Electric Air Heater is a custom industrial unit used to heat clean air, process air or recirculated air before the air enters a dryer, oven, production line, ventilation section or other process equipment. The heater is selected according to airflow, inlet temperature, required outlet temperature, allowable pressure drop and operating pressure.

A typical unit includes a heater housing, electric heating element assembly, inlet and outlet connections, thermal insulation, terminal box, temperature sensors and mounting supports. Depending on the project, it can also include a control cabinet, SCR power regulation, fan interlock, differential-pressure switch, valves, instruments and system piping.

This page focuses on general industrial process-air heating. For large-volume, low-pressure ventilation ducts, the Electric Duct Heater is normally the more direct selection. For pressure-bearing nitrogen, compressed air or other process gases in a closed pipeline, the Electric Inline Process Gas Heater should be considered.

Xiangyuan Machinery can supply the air heater as a standalone heating unit, a heater with an independent control cabinet, or an integrated air-heating package prepared for connection to the customer’s fan, ductwork or production equipment.

Electric air heater system with control cabinet

Key Features

Each Electric Air Heater is engineered around airflow, temperature rise, pressure condition, allowable pressure drop, installation space and process-control requirements.

Custom Heating Duty

Heating power is calculated from airflow, inlet temperature, target outlet temperature and operating conditions.

Airflow-Oriented Design

Housing dimensions, internal air passage and element arrangement are selected to balance heat transfer and allowable pressure drop.

Multiple Element Materials

SS304, SS310S, Incoloy 800, Incoloy 840 and selected alloys are available according to temperature and air composition.

Stable Outlet Temperature

PID control, SCR regulation or staged power control can be used to maintain the required process-air temperature.

Flexible Installation

Inline, duct-connected, horizontal, vertical and equipment-integrated arrangements can be engineered for the site layout.

Insulated Heater Housing

Thermal insulation and external cladding can be supplied to reduce surface heat loss and improve site protection.

Control-System Integration

The heater can interface with fans, PLC systems, DCS signals and upstream or downstream process equipment.

Airflow Safety Interlocks

Fan status, airflow or differential-pressure signals can be interlocked with heater startup and shutdown.

Standalone or Packaged Supply

Supply scope can include the heater only, a heater with control cabinet, or an integrated air-heating package.

Typical Technical Parameters

The following parameters are for reference only. Final design is confirmed according to the operating medium, temperature, dimensions and project requirements.

ParameterCustomizable Range or Options
Product NameElectric Air Heater
Heating MediumClean air, process air or recirculated air
Heating PowerTypically 2 kW to 2000 kW, or engineered according to required heating duty
Inlet / Outlet TemperatureCustomized according to inlet condition, target outlet temperature and continuous operating requirement
AirflowProvide the airflow in m³/h or Nm³/h, or the mass flow rate, together with the corresponding pressure and temperature conditions.
Working PressureLow-pressure airflow or pressure-bearing construction according to the air system
Allowable Pressure DropCalculated according to fan capacity, duct size, element arrangement and process limits
InstallationInline, duct-connected, horizontal, vertical or equipment-integrated
ConnectionFlange, rectangular duct connection or custom interface
Housing MaterialCarbon steel, SS304, SS316L or selected material according to air composition and site environment
Heating Element MaterialSS304, SS310S, Incoloy 800, Incoloy 840 or selected alloy
Control MethodPID control, SCR power regulation, staged control or PLC control
Power Supply380-415 V, three-phase, 50/60 Hz, or customized for project requirements
Protection OptionsOver-temperature protection, fan or airflow interlock, differential-pressure monitoring, phase-loss and phase-sequence protection, earth-leakage protection, grounding and emergency stop
Optional SupplyControl cabinet, temperature sensors, insulated housing, support frame, system piping and explosion-proof design where applicable

Structure, Materials, Control and Safety

electric air heater heating element assembly

Structure of the Heater

The Electric Air Heater is normally built around a fabricated housing or pressure-bearing shell with an inlet, an outlet and an internal electric heating element assembly. The element arrangement is selected to provide sufficient heat-transfer area while keeping the air passage open and the pressure drop within the system limit.

A typical structure can include a carbon-steel or stainless-steel housing, tubular or finned tubular heating elements, element support plates, terminal box, thermal insulation, external cladding, temperature sensors, lifting points and mounting supports. Flanged removable element bundles can be used when maintenance access is required.

For equipment-integrated projects, the heater can also be supplied with a transition section, fan connection, duct interface, control cabinet, differential-pressure instrument and supporting frame. The final arrangement is confirmed according to airflow direction, installation space and maintenance access.

Materials and Customization

Material selection depends on outlet temperature, air cleanliness, humidity, dust content, corrosive components and operating environment. Carbon steel can be used for the external housing under suitable conditions. SS304 or SS316L can be selected for improved corrosion resistance, while SS310S, Incoloy 800, Incoloy 840 or selected alloys can be considered for heating elements exposed to higher temperatures.

The heater can be customized in heating power, housing shape, connection size, element diameter, element arrangement, insulation thickness, terminal-box direction, mounting orientation and maintenance method. The design should be confirmed from the actual process data rather than selected only by nominal power.

Where air contains moisture, dust, solvent vapor or corrosive components, the customer should provide the composition and concentration so that material compatibility, surface temperature and protection requirements can be evaluated.

electric air heater stainless steel materials
Control cabinet for electric air heater

Control System

The Electric Air Heater can be operated by an independent control cabinet or connected to the customer’s PLC or DCS. Common control options include PID temperature control, SCR power regulation, contactor-based staged control, local/remote operation and HMI display.

The primary control signal is normally based on outlet-air temperature. Inlet temperature, heating-element sheath temperature or downstream process temperature can also be monitored where required. Multiple heating stages can be sequenced to match changing airflow and process load.

The control logic can include fan-start confirmation before heater energization, power reduction when airflow decreases, alarm output, remote start/stop, operating-status feedback and delayed fan shutdown for heater cooldown.

Safety Protection

Safety protection should be matched to the airflow and installation method. Typical functions include independent over-temperature protection, fan interlock, airflow switch or differential-pressure monitoring, phase protection, leakage protection, grounding protection and emergency stop.

The heater should not be energized without confirmed airflow. For systems with large thermal inertia, the fan can continue running after power shutdown to remove residual heat. Element-sheath temperature monitoring can be added for high-temperature or variable-flow applications.

For hazardous-area projects, explosion-proof terminal-box and heater configurations can be evaluated according to the confirmed site classification. Certification requirements for the destination market should be confirmed before quotation and final design.

electric air heater safety terminal box

Typical Applications

Electric air heaters are used where controlled heated air is required for industrial drying, preheating, circulation and production equipment.

Industrial Drying Systems

Heating process air for material, component or surface drying.

Hot-Air Circulation Ovens

Supplying controlled heated air to ovens and recirculation loops.

Coating and Paint Drying

Preheating or maintaining drying air for coating and finishing lines.

Powder and Granule Processing

Providing process air for drying, fluidization or temperature conditioning.

Packaging and Printing Lines

Heating air for ink drying, film processing and production-line temperature control.

Electronics Manufacturing

Clean process-air heating for component drying and controlled production steps.

Chemical Process Air

Preheating compatible process air before reactors, dryers or treatment equipment.

Ventilation Air Preheating

Raising incoming industrial ventilation air to the required process temperature.

Combustion Air Preheating

Electric preheating of combustion-support air where process conditions allow.

Environmental Equipment

Heating air before adsorption, desorption, regeneration or emission-treatment sections.

Freeze Protection and Warm-Up

Providing heated air for equipment startup and low-temperature site conditions.

Custom Production Equipment

Integration into machinery requiring a stable source of heated process air.

How to Select the Right Electric Air Heater

Provide the following air, temperature, pressure, electrical and installation data so that heating power, materials, controls and safety interlocks can be selected.

1. Airflow

Provide m³/h, Nm³/h or mass flow under the stated operating condition.

2. Inlet Temperature

State the minimum, normal and maximum inlet-air temperature.

3. Required Outlet Temperature

Provide the target temperature and allowable control tolerance.

4. Working Pressure

Confirm whether the system is atmospheric, low-pressure or pressure-bearing.

5. Allowable Pressure Drop

State the maximum pressure loss permitted by the fan or process system.

6. Air Composition

Describe humidity, dust, oil mist, solvent vapor or corrosive components.

7. Operating Mode

Confirm continuous, intermittent, cyclic or variable-load operation.

8. Power Supply

Provide voltage, phase, frequency and available electrical capacity.

9. Installation Method

Choose inline, duct-connected, horizontal, vertical or equipment-integrated installation.

10. Connection Size

Provide flange standard, pipe diameter or rectangular duct dimensions.

11. Site Space

Provide layout limits, airflow direction and maintenance-access requirements.

12. Housing and Element Materials

State corrosion, cleanliness or high-temperature material requirements.

13. Control Method

Confirm PID, SCR, staged control, PLC, HMI or DCS interface requirements.

14. Safety Interlocks

Specify fan, airflow, differential-pressure, over-temperature and emergency-stop signals.

15. Site Classification

Provide indoor or outdoor conditions, ambient temperature, IP requirement and hazardous-area classification where applicable.

Frequently Asked Questions

Common questions about Electric Air Heater selection, customization and industrial use.

What is an Electric Air Heater?
An Electric Air Heater is an industrial electric heating unit used to raise the temperature of clean air, process air or recirculated air before the air enters a dryer, oven, production line or other process equipment.
How is it different from an Electric Duct Heater or Electric Inline Process Gas Heater?
An Electric Duct Heater is mainly intended for large-volume, low-pressure airflow in ventilation ducts. An Electric Inline Process Gas Heater is normally selected for pressure-bearing closed pipelines and gases such as nitrogen or compressed air. The Electric Air Heater page covers customized process-air heating units integrated with industrial equipment, drying systems and hot-air circulation systems.
What information is required to select the heater?
Please provide airflow, inlet temperature, required outlet temperature, working pressure, allowable pressure drop, air composition, power supply, installation dimensions, control method and site conditions.
Can the heater be supplied with a control cabinet?
Yes. The supply can include an independent control cabinet with PID control, SCR power regulation, staged control, PLC or HMI, together with temperature, airflow and fan-interlock signals according to the project.
Can high-temperature or explosion-proof designs be provided?
High-temperature materials and customized element arrangements can be evaluated according to the required outlet temperature and air composition. For hazardous-area applications, the site classification and destination-market certification requirements should be confirmed before the explosion-proof configuration is selected.

Why Choose Xiangyuan Machinery

Xiangyuan Machinery designs and manufactures industrial electric heaters, heating elements and control systems for customized process conditions. Each Electric Air Heater is selected around the customer’s airflow, temperature rise, pressure condition, material requirement and installation layout.

Thermal & Material Engineering

Custom thermal design based on airflow, inlet temperature, outlet temperature and operating pressure. Experience with air heaters, process-gas heaters, duct heaters and tubular heating elements.

Flexible Mechanical Arrangement

Material options including carbon steel, SS304, SS316L, SS310S, Incoloy 800 and Incoloy 840 where suitable.

Control & Safety Integration

Control options covering PID, SCR, staged control, PLC, HMI and remote signal interfaces. Airflow, temperature and electrical-protection logic can be integrated into the control scheme.

Complete Project Supply

Flexible supply scope: heater only, heater with control cabinet, or an integrated air-heating package. Manufacturing inspection, electrical testing and technical documentation can be prepared according to the project scope.

Tell Us Your Air Heating Conditions

Send the airflow, inlet and outlet temperatures, operating pressure, air composition, power supply and installation requirements. Xiangyuan Machinery will prepare a suitable technical proposal and quotation.

Request a Technical Quote