Mechanical Testing Machine

Creep Testing Machine for High-Temperature Materials

The Creep Testing Machine for High-Temperature Materials is a fully computer-controlled, servo-driven system designed for precise long-term creep, stress-rupture, and stress-relaxation testing under elevated temperatures. Equipped with a high-stability servo loading platform, intelligent thermal control, multi-channel data acquisition, and automated loading processes, this system supports demanding research, quality inspection and material evaluation tasks.

This creep testing solution is suitable for high-temperature alloys, titanium alloys, ferrous metals, non-ferrous metals, bars, plates, and a wide range of advanced engineering materials.

Brand: SZBONAD

Product Number: BND-TCTM

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Advanced Creep Testing Machine for Metal & Alloy Evaluation

Key Applications

  • Uniaxial creep testing at 200–1200°C
  • Stress-rupture and long-term high-temperature endurance testing
  • Stress relaxation, tension relaxation and long-term deformation monitoring
  • High-temperature tensile testing, cyclic loading, low-cycle fatigue
  • Creep-fatigue interaction and segmented load control
  • Material behavior evaluation for aerospace, energy, automotive, metallurgy, and research institutions
  • Supports multi-station parallel testing without interference

Product Features

1. Fully Automated Testing Workflow

  • Automatic heating, soaking, loading, data recording, cooling, unloading
  • Real-time display of heating time, temperature stabilization, load application, test duration
  • Power-off protection with automatic unloading based on preset program

2. High-Precision Servo Load System

  • High stability and accuracy for long-duration tests
  • Servo motor controlled loading, smooth switching between force control and deformation control
  • Supports 12-segment loading paths with independent waveform and frequency control

3. Multi-Machine Management

  • Software can simultaneously control one or multiple machines
  • Independent test control and monitoring without mutual interference
  • Automatic plotting, curve refresh, fault self-diagnosis

4. Advanced Data Acquisition & Storage

  • Automatic recording of temperature, deformation, load, and time data
  • Historical data search by sample ID
  • Regression analysis, extrapolation, curve plotting
  • Automatic report generation, Excel export

5. Robust Temperature Control System

  • Temperature setting, segment curve drawing, real-time channel display
  • Multi-sensor protection with automatic alarm and log generation
  • Supports various furnace types (split type / cylindrical type)

6. Independent Operation Capability

  • If the main computer fails, the machine continues testing without data loss
  • Optional independent data-processing computer for backup & report generation

Compliance with International Standards

The machine fully conforms to major global standards for creep and stress-relaxation tests, including:

GB / ASTM / ISO / EN / JIS

  • JJG276-2009 High-Temperature Creep & Rupture Tester Verification
  • GB/T 2039-2012 Uniaxial Creep Testing Method
  • ASTM E139-11 Creep and Stress Rupture of Metallic Materials
  • GB/T 10120-2013 Tensile Stress Relaxation Test Method
  • ASTM E328-2013 Stress Relaxation of Materials
  • ASTM E2714-2013 Creep-Fatigue Testing Standard
  • GB/T 15248-2008 Low-Cycle Fatigue Test Method
  • HB5151, HB5150, MSRR9968 and other aerospace standards

Available Models

1. Electronic Creep Testing Machine

  • Servo control, 200–1200°C
  • Supports creep, stress-rupture, stress-relaxation, high-temperature tensile

2. Mechanical Creep Testing Machine

  • PLC-controlled lever loading system
  • Suitable for educational institutions, research labs, and production QC
  • High-resolved lever force system and stable mechanical transmission

3. Dual-Station High-/Low-Temperature Creep and Stress-Relaxation Testing Machine

  • Temperature range: –40°C to 250°C
  • Supports tension, compression, bending, cyclic loading
  • Ideal for metals and non-metals requiring variable temperature testing

Technical Specifications (Electronic High-Temperature Type)

Main Frame

Parameter Specification
Accuracy Class 0.5
Max Load 30 kN – 100 kN (Customizable)
Measurement Range 0.4%–100% Fs
Load Accuracy ≤ ±0.5%
Load Control Stability ≤ ±0.5%
Coaxiality ≤ 8%
Loading Precision ≤ ±0.5%
Crosshead Travel 120 mm
Crosshead Speed 0.01–100 mm/min
Servo Motor Power 400 W
Supply Voltage 220V 50Hz

High-Temperature Furnace

Parameter Specification
Temperature Range 200°C–1200°C
Effective Hot Zone 200 mm
Heating Method Three independent heating zones
Tube Size Φ110 × 420 mm
Temperature Deviation ±2°C (200–600°C); ±3°C (600–900°C); ±4°C (>900°C)
Temperature Gradient 2 / 3 / 4

Extensometer & Measurement

Parameter Specification
Deformation Range 0–10 mm
Resolution 0.001 mm
Error ≤0.002 mm

Power Consumption

  • Total Power: Approx. 5.0+ kW
  • High-temperature system: 4.5 kW
  • Control system: 0.4 kW
  • Measurement system: 0.05 kW

Industries Served

  • Aerospace engineering
  • Gas turbine & power generation
  • Metallurgy & heat-resistant alloy manufacturing
  • Material science laboratories
  • Automotive and new energy
  • Universities & research centers

Why Choose Our Creep Testing Machine?

  • Reliable long-duration stability (thousands of hours)
  • Precise & programmable multi-segment loading
  • High-temperature uniformity & safety protection
  • Multi-station management increases productivity
  • Full-test automation reduces operator workload
  • Complete compliance with major global standards
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