Heating Element Machinery | Heater Manufacturing Equipment

Manufacturer of heating element machinery: MgO filling, coil winding, bending, reducing & more. Custom industrial equipment engineered in China.

Machinery

Manufacturer of heating element machinery: MgO filling, coil winding, bending, reducing & more. Custom industrial equipment engineered in China.

Heater Feeder and Tester Machine

MAP-01 Heater Feeder and Tester Machine

The MAP-01 is an automatic feeding machine specifically designed to optimize the process of reducing electric heaters in various industrial applications. This innovative equipment integrates into the production line to efficiently feed tubes previously filled with MgO and subjected to heater tests, ensuring a continuous and automated flow towards the heater rolling machine.
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Tube and Bar Straightening Machine

ME01-13 Tube and Bar Straightening Machine

The ME01-13 Oblique Roller Straightening Machine is an advanced engineering solution designed for high-precision straightening of metal pipes and bars. This industrial straightening equipment effectively addresses common problems arising after processes such as drawing, rolling, or heat treatment, including bending, ovality, and uneven residual stress. Its operation is based on the use of multiple sets of oblique rollers that continuously straighten the material.
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Semi-automatic Tube Polishing Machine

MP01-1 Semi-automatic Tube Polishing Machine

The MP01-1 Semi-automatic Tube Polishing Machine is a robust and efficient solution specifically designed for polishing round and straight tubes, as well as for finishing electrical resistors. This industrial polishing equipment is ideal for achieving high-quality surfaces on a wide range of metallic materials, including stainless steel, copper, aluminum, and other alloys.
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Cartridge Heater Swaging Machine

HTC-40 Cartridge Heater Swaging Machine

The HTC-40 resistance swaging machine is a cutting-edge solution specifically designed for the manufacturing of electrical heaters and heating components. This robust and efficient equipment is ideal for tube diameter reduction (swaging) processes in small batches and with multiple specifications.
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Wire Coiling Machine

HT-B1 Wire Coiling Machine

The HT-B1 wire winding machine is a high-precision and versatile winding machine, specifically designed for the efficient manufacturing of electrical resistance coils, inductors, transformers, and other electronic components. This robust and adaptable equipment is the ideal solution for industries looking to optimize their precision winding processes and coil production.
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Universal CNC Bending Machine for Tubular Heaters

Universal Tubular Heater Bending Machine

The HTD-1 CNC tube bending machine is a high-performance industrial automation solution, specifically designed for bending and forming tubular electric heaters and heating elements. This 3-axis numerical control (CNC) equipment uses high-precision servomotors and an advanced PLC control system to transform straight tubes into complex geometries with exceptional repeatability and accuracy.
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Three-Guide MgO Filling Machine

HT-113 Three-Guide MgO Filling Machine

The HT-113 Three-Guide Magnesium Oxide (MgO) Powder Filling Machine represents the forefront of filling equipment for the tubular heater industry. Designed as a dust-free and environmentally friendly system, this machine has been manufactured referencing the characteristics of the most advanced imported equipment, consolidating itself as the ideal solution for the production of long and large-diameter heating tubes.
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Rolling Mill Machine

HTR-5000 Rolling Reducing Machine

Unlock unparalleled efficiency and elevate the quality of your heating elements with the HTR-5000 Roll Reducing Machine. Engineered for the demands of modern manufacturing, the HTR-5000 is more than just a machine; it’s a strategic investment in the future of your production line. At the core of every high-performance heating element lies perfectly densified Magnesium Oxide (MgO). The HTR-5000 employs advanced rotary swaging technology to transform low-density MgO powder into a compact, thermally efficient mass, ensuring: Superior Insulation: Eliminate air pockets and porosity, dramatically boosting the dielectric strength of your insulators for safer, higher-voltage operation with minimal leakage risk. Optimized Heat Transfer: Achieve maximum thermal conductivity, channeling heat efficiently from the resistive wire to the metal sheath. This translates into significant energy savings and extended product lifespan for your customers. Unwavering Reliability: Maintain precise wire centering within the tube, preventing short circuits and ensuring consistent performance across every single heating element.
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Industrial Machinery for Electric Heating Element Manufacturing

Heatecx designs and builds complete industrial machinery for the production of electric resistance heaters and heating elements: from magnesium oxide (MgO) filling to terminal assembly, including coil winding, bending, tube machining, and laser marking. Our range of heating element machinery covers the 20 critical stages of the production process, allowing manufacturers of tubular, cartridge, mineral-insulated (MI), band, and immersion heaters to build partial or fully automated lines matched to their production volume and the materials they process (Incoloy, Inconel, stainless steel, copper, titanium).

Unlike a generic machinery distributor, Heatecx engineers every machine around the specific metallurgy and geometry of heating elements: tube diameter tolerances, the behavior of NiCr resistance wire under winding tension, uniform compaction of MgO powder, and control of thermal distortion during annealing. This vertical integration — we also manufacture the raw materials (wire, MgO powder, ceramics, tubing) these machines process — lets us tune each machine to the material's real-world behavior rather than a generic mechanical spec sheet.

Available Machine Categories

The table below summarizes the 20 machinery families we manufacture, organized by their function within the heating element production process:

Machine

Primary Function

Product Page

MgO Filling Machine

Compaction of magnesium oxide powder inside the metal tube

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Reducing Mill

Diameter reduction and core densification after MgO filling

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Coiling Machines

Precision winding of resistance wire (NiCr, FeCrAl) onto a core or mandrel

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Bending Machines

Forming of tubes and flat heaters into curved or helical geometries

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Straightening Machines

Correction of residual curvature in tubes and wire prior to machining

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Trimming Machine

Precision machining of ends and threads on tubular heaters

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Polishing Machines

Surface finishing (satin to mirror) of tubes and metal profiles

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Deburring Machines

Burr removal after cutting on tubes and metal profiles

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Tube Cutting

Precision dimensional cutting of metal tubes prior to filling or machining

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Tube Drawing Machines

Diameter reduction and dimensional tolerance adjustment of tubes

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Tube Mills

Tube forming from coiled sheet metal (tube milling)

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Welding Machines

Seal welding at tube ends and terminal joining

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Annealing Machine

Heat treatment to relieve stresses introduced during forming

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Vulcanizing Machines

Vulcanization of silicone and elastomer compounds in cables and heating pads

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Heating Element Terminals

Automated assembly of terminal pins onto the resistance coil

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Feeders And Testing

Automated part feeding and electrical continuity/insulation testing

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Marking Machines

Permanent laser marking of batch code, logo, and technical data on the finished part

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Temperature Controllers

Data loggers and PID controllers for in-plant process monitoring

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MI Cable Machinery

Specialized line for mineral-insulated cable: drying, cutting, powder extraction

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Multi-Tasking

Stations that integrate several operations (winding, welding, testing) into a single unit

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The Heating Element Manufacturing Process, Stage by Stage

Manufacturing a tubular heating element follows a fairly standardized production sequence across the industry, though the degree of automation varies enormously between a manual workshop and a high-volume plant:

  1. Tube and wire preparation. The metal tube is cut to length with a tube cutting machine and, if needed, its diameter is adjusted with a tube drawing machine. In parallel, the resistance wire is wound onto ceramic supports using a precision coiling machine.
  2. Insertion and filling. The resistance coil is centered inside the tube and compacted with MgO powder using the filling machine, ensuring homogeneous electrical insulation and high thermal conductivity.
  3. Reduction and compaction. The reducing mill decreases the tube's outer diameter, densifying the MgO and eliminating air gaps that would otherwise shorten the element's service life.
  4. Geometric forming. Depending on the final design, the heater is bent or coiled into a spiral using a bending machine, taking the shape required by the application (fryer, boiler, oven, injection mold).
  5. Heat treatment. Annealing relieves the mechanical stresses introduced during forming, preventing microcracks that would cause premature insulation failure.
  6. End machining. The trimming machine machines the ends for sealing and terminal assembly, holding tolerances that guarantee a hermetic fit.
  7. Terminal assembly. The terminal machine joins the terminal pin to the resistance coil, typically with integrated welding, leaving the heater ready for electrical connection.
  8. Sealing. Heating element sealant is applied at the ends to prevent moisture ingress, a critical step for the component's service life.
  9. Surface finishing. Polishing, deburring, and ultrasonic cleaning remove burrs and oxides, leaving a surface suitable for food-contact or controlled environments.
  10. Marking and traceability. Laser marking engraves batch code, rated voltage, and logo, meeting traceability requirements for export.
  11. Final testing. The feeder and testing station runs insulation resistance, electrical continuity, and dielectric strength tests before packaging.

Automation Levels and Control

Level

Description

Typical Control

Recommended Scenario

Manual

Operator controls each parameter directly

Switches, analog potentiometers

Prototyping shops, very short runs, or highly customized parts

Semi-automatic

Machine executes the cycle; operator loads/unloads and adjusts parameters

Basic PLC + monochrome or touch HMI

Medium-volume production, multiple product formats on the same line

Automatic

Full cycle with no manual intervention, automated feeding

Industrial PLC + color touch HMI + servo motors

High-volume series production, stable product format

Integrated / multi-function

Several consecutive operations on a single station

PLC with programmable recipes, batch traceability

Lines with limited floor space or seeking to reduce handling between stages

Depending on the model, Heatecx machines incorporate servo traction motors for winding and tube feed (ensuring constant tension and dimensional repeatability), PID controllers for thermal processes (annealing, drying, vulcanizing), and vision systems or proximity sensors for in-line quality control. Electrical cabinet protection ratings are typically specified as IP54 for standard workshop environments and IP65 where MgO dust or process liquids are present.

Selection Criteria

Criterion

Technical consideration

Target production volume

Determines whether a manual cell, semi-automatic station, or fully integrated automatic line is appropriate

Tube diameter and material

Each machine has a working range (mm) and material compatibility (stainless steel, Incoloy, copper, titanium) that must be checked against the product catalog

Product format mix on the same line

A mix of formats favors semi-automatic machines with fast tooling changeover over rigid 100% automatic lines

Available floor space

Multi-function stations reduce footprint but increase the impact of a machine stoppage on the entire line

Available electrical supply

Verify voltage (220V/380V/440V three-phase), frequency (50/60 Hz), and contracted power before specifying high-consumption equipment (annealing, welding)

Required traceability level

Export to regulated markets (EU, US) typically requires laser marking and batch-level process parameter logging

After-sales support and spare parts availability

Especially relevant for wear parts: cutting dies, rolling rollers, welding nozzles

Comparison: Manual vs. Semi-Automatic vs. Automatic

Aspect

Manual

Semi-Automatic

Automatic

Initial investment

Low

Medium

High

Labor required

High, specialized operator per station

Medium, one operator can supervise several stations

Low, general line supervision

Dimensional repeatability

Variable, depends on operator skill

High within each cycle

Very high, tolerances controlled by servo and sensors

Flexibility for format changes

Very high

High with tooling change

Low to medium, requires reprogramming or cell change

Typical payback period

N/A (low capex)

Medium term

Recovered through sustained volume

Common Failure Modes and Preventive Maintenance

Common failure

Typical cause

Preventive measure

Loss of winding tension

Worn tensioning roller or wire spool brake

Periodic inspection of the braking system and roller replacement based on usage hours

Irregular burrs or cuts

Worn cutting blades or dies

Consumable replacement plan based on cutting cycles, not just calendar time

Uneven MgO compaction

Miscalibrated filling pressure or residual moisture in the powder

Periodic calibration of the filling system and moisture control of stored MgO

PID drift during annealing

Degraded or miscalibrated temperature sensor

Annual thermocouple calibration and cross-check against a reference instrument

Intermittent PLC/HMI faults

Loose connections, conductive dust inside the electrical cabinet

Scheduled cabinet cleaning and verification of the declared IP protection rating

Misalignment on welding machines

Worn electrodes or nozzles

Consumable replacement per manufacturer recommendation and periodic geometric check

Applications by Industry

Industry

Typical use of the machinery

Home appliances

Production of heating elements for ovens, water heaters, fryers, and irons

Boilers and industrial heating

Manufacturing of immersion tubular heaters for boilers and tanks

Plastics injection molding

Hot-runner heaters produced with precision spiral bending machines

Food processing

Heating elements for industrial ovens and sterilization equipment, finished for food-contact suitability

Metallurgy and heat treatment

High-power heaters for annealing, quenching, and casting furnaces

Petrochemical

Heat tracing and immersion heaters manufactured to standards for classified areas

Semiconductors and electronics

Precision heating elements for controlled thermal process equipment

Application Case

A regional manufacturer of tubular heating elements for home appliances, producing approximately 8,000 units per month, was running independent manual winding and filling stations. The main bottleneck was variability in MgO filling, which generated a rejection rate of nearly 9% due to insufficient electrical insulation. After installing an automatic filling machine with real-time pressure control, integrated with a trimming machine for end machining and an automated testing station, the manufacturer cut rejections to under 1%, reduced per-unit cycle time by approximately 35%, and standardized batch-level process parameter logging — a requirement that allowed it to qualify as an approved supplier for an export customer.

Why Choose Heatecx

  • Direct manufacturer, not a middleman. We design and build the machinery in our own Shenzhen facility, allowing genuine tooling and process-parameter customization.
  • Vertical integration. We also manufacture the raw materials (resistance wire, MgO powder, ceramics, tubing) these machines process, giving us insight into material behavior that a generic machinery builder doesn't have.
  • Engineering support. Our technical team advises on line configuration based on the customer's final product, not just on selling a standalone machine.
  • 100% batch testing. Every machine is individually tested before shipment, with operating parameters logged.

Related Links

Individual machines let you automate the specific bottleneck in an existing plant, while a complete line integrates every stage under a single workflow and control system, reducing manual handling between stations but requiring greater upfront investment and layout planning.