Thermal Deburring Machine

Thermal Energy Machine (TEM) — High-Efficiency Precision Deburring Solution

Featured Products

TEM-320I

The new TEM 320I deburring machine features a flexible, compact design with multiple configuration options. As a fully functional single-station unit, it includes all necessary capabilities to ensure a controlled deburring process and integrates seamlessly into lean, compact, and flexible deburring systems. The 320I's compact footprint requires minimal space, making it suitable not only for low-volume parts but also for mass production. This makes the 320I an extremely cost-effective solution for manufacturers handling diverse part types and batch sizes. It also easily integrates into connected production lines.

226 metric tons (2,224 kN)
Maximum Closing Pressure
2000°C+
Reaction Temperature
≥99.5%
Deburring rate
5-30 seconds
Single-cycle time
Thermal Deburring Machine TEM-320I - Exterior View
Thermal Deburring Machine TEM-320I – Side View
Close-up of the internal structure of a thermal deburring machine
Full View of Internal Equipment in Thermal Deburring Machine
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Product Image

TEM-320IMulti-angle display

Thermal Deburring Machine TEM-320I - Exterior View

Thermal Deburring Machine TEM-320I - Exterior View

Thermal Deburring Machine TEM-320I – Side View

Thermal Deburring Machine TEM-320I Side View

Close-up of the internal structure of a thermal deburring machine

Close-up of the internal structure of the thermal deburring machine

Full View of Internal Components of Thermal Deburring Machine

Full View of Internal Equipment in Thermal Deburring Machine

Key Features

Core Advantages: Ensures Efficient and Stable Deburring

Efficient Deburring

Instant flash deburring. Cycle time: seconds only. Far more efficient than traditional methods.

Suitable for complex structures

Handles complex structures such as cross-holes, internal cavities, and micro-burrs that are difficult to reach with traditional methods.

Internal channel processing

Effectively removes burrs from hidden areas such as cross-holes, blind holes, and intersecting holes.

Automated Operations

PLC control system with touchscreen operation; programmable parameters ensure consistent batch quality.

Stable Quality

Burr removal rate ≥ 99.5%, without compromising part dimensional accuracy, ensuring stable surface quality.

Reduce labor costs

Replace traditional manual deburring to significantly reduce labor costs and boost production efficiency.

Machine Tool Features and Advantages

TEM-320ICore Design Highlights

User-Friendly HMI Control

User-friendly HMI with touchscreen interface for quick parameter setup and fine-tuning, convenient machine monitoring and operation, and comprehensive fault diagnostics.

Durable

Combines a framework designed for sustained fatigue strength and performance with a hydraulic pressing cylinder to ensure reliable chamber closure. Maximum closing force up to 226 US tons (2,224 kN).

Simplified loading and unloading operations

Automated vertical sliding doors and ergonomic loading system (patent pending) significantly enhance operational efficiency and safety.

Modular housing shell

The low-noise hydraulic power unit reduces noise in the production environment and enhances operator safety. Its modular design simplifies maintenance and expansion.

Machine Specifications

TEM-320I Thermal Deburring Machine - Detailed Technical Specifications

ParameterSpecification Value
Machine tool bedHeavy-duty Welding Unit
Dimensions (W × D × H)1,196 × 2,960 × 2,860mm (pendant control not included)
Loading Height (from Ground)1,065mm (42")
Available Chamber (Diameter × Height)φ250 × 300mm (8 pcs × height)
Available Area (Diameter × Height)φ226 × 292mm
Maximum Chamber Pressure (Methane)φ25 0 mm = 16 bar (232 psi)
Part Loading (Standard)Manual Loading Device
Cycle Time (6 Hz @ 100% Stroke)Standard chamber: 52s + load/unload time (15s); Extended chamber: 68s + load/unload time (15s)
WeightApprox. 5,800 kg (12,800 lbs)
Noise Level≤80 dBA

Electrical Specifications

The control cabinet is integrated into the machine outside the noise-reduction enclosure. The machine is controlled by a programmable logic controller (PLC). The operator interface terminal is a touchscreen mounted on a pendant. The cycle can be sequenced; it can be started manually in single-step mode or automatically.

Power Supply Voltage:380 VAC/3 PH/50 Hz or 460 VAC/3 PH/60 Hz
Main Switch Capacity:25 kVA / 50 A CB
Control System:Siemens system or Mitsubishi system
Standard PLC:Mitsubishi

External requirements

Can be natural gas or methane.

Water Pressure:50 psi (3.4 bar)
Water Flow (Machine & Hydraulic):Approx. 19 L/min (5 GPM)
Cooling Requirements:30,000 BTU/hr
Water Temperature Requirement:Up to 85°F, 300 microns clean

Common Machining Parameters Table

Natural gas processing pressure for different materials (natural gas or methane may be used)

MaterialNatural Gas Pressure
Steel8-20 bar (116-290 psi)
Cast Iron5-20 bar (73-290 psi)
Zinc (Zn)5-10 bar (73-145 psi)
Aluminum5-10 bar (73-145 psi)
Brass8-25 bar (116-363 psi)

Note: Specifications are subject to change without notice.

Standard Configuration

  • Exhaust System
  • Built-in Oil Collection Tray
  • Machine diagnostics built into PLC
  • Modular sheet metal enclosure with service doors
  • Touchscreen Interface
  • Water-cooled chamber and closing plate

External / Optional Accessories

  • Hydraulic Loading Device
  • Double Shot

How it works

Complete workflow for efficient deburring

01

Part Loading

Place the workpiece to be processed into the dedicated fixture inside the equipment chamber, ensuring it is securely fixed and stable.

02

Sealed inflation

After cavity sealing, a precisely mixed oxygen and combustible gas blend is introduced with controllable pressure.

03

Thermal reaction

Ignition triggers instantaneous combustion, generating temperatures exceeding 2000°C, causing burrs to oxidize and burn under high heat.

04

Cleanliness Detection

Automated air vent cleaning, remove parts for quality inspection, and verify deburring effectiveness.

Device Structure

Core system ensuring stable device operation

Device Structure Diagram
1

Machine cavity

High-strength sealed chamber designed for high-temperature and high-pressure environments, available in multiple diameters.

2

Control System

PLC programmable controller for precise process parameter control with support for multiple recipe storage.

3

Operating System

Touchscreen HMI with parameter settings and real-time monitoring for simple, intuitive operation

4

Security System

Multi-layer safety protection: over-voltage, over-temperature, and leak detection with automatic pressure relief.

5

Gas System

Precisely mix oxygen with combustible gas to ensure stable and controllable reactions.

6

Automated System

Automatic clamping, automatic cycling, and automatic degassing; supports production line integration.

Application Scope

Precision deburring for parts across multiple industries

Automotive Industry

  • Engine components
  • Transmission Parts
  • Fuel System Parts
  • Brake system parts
  • Steering System Parts

Hydraulic Industry

  • Hydraulic Valve Body
  • Hydraulic Manifold Block
  • Flow channel components
  • Pump Body Parts
  • Hydraulic Cylinder Parts

Precision Machinery

  • Precision Gears
  • Bearing parts
  • Transmission parts
  • Complex structural components
  • Mold Components

Industrial Components

  • Pneumatic Components
  • Valve Parts
  • Connector
  • Various cast and forged components
  • Medical device components

Need thermal deburring equipment?

Submit your part drawings and machining requirements. Our engineering team will recommend the suitable equipment model for you.