High-Temperature Vickers Hardness Tester (ZD-HVZHT-50)
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Keywords:
High-Temperature Vickers Hardness Tester
High-Temperature Vickers Hardness Tester (ZD-HVZHT-50)
Keywords:
High-Temperature Vickers Hardness Tester
Products Detail
High-Temperature Vickers Hardness Tester (ZD-HVZHT-50)
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The ZD-HVZHT-50 High-Temperature Vickers Hardness Tester is designed for in-situ hardness testing under controlled high-temperature and inert gas environments. |
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Core PositioningIt enables precise Vickers hardness measurements of metals, ceramics, cemented carbides, coatings, and composite materials from room temperature up to 1200°C, making it suitable for materials research, quality evaluation, and advanced laboratory applications. |
Typical Applications
|
High-Temperature Hardness Testing
|
High-Temperature Material Characterization
|
Coating & Surface Engineering
|
Cutting Tool & Wear Material Evaluation
|
Research & Quality Control |
Test Materials
Metals and alloys,Ceramics,Cemented carbides,Composite materials,Thin-film and protective coatings,Heat-treated materials
Technical Specifications
|
Parameter |
Specification |
|
Model |
ZD-HVZHT-50 |
| Objective Lens |
10X/20X |
|
Indenter |
Diamond Vickers indenter (136° included angle), automatic switching |
|
Test Force Range |
0.2、0.3、0.5、1、2、2.5、3、5、10、20、30、50kgf |
|
Loading Mode |
Fully automatic, programmable |
| Dwell Time |
5–60 s |
|
Hardness Range |
5 - 3000 HV |
|
Temperature Range |
Room Temperature to 1200°C |
|
Heating Rate |
10–80°C/min |
| Temperature Stability |
±1°C |
| X-Y Stage Travel |
8 mm × 8 mm |
| X-Y Positioning Accuracy |
X-Y Positioning Accuracy |
| Z-Axis Travel |
12 mm |
| Z-Axis Positioning Accuracy |
±0.05 μm |
|
Maximum Specimen Size |
Φ15 × 10 mm |
|
Power Supply |
AC 220 V, 50/60 Hz |
|
Equipment Dimensions |
3000 mm × 1500 mm × 2000 mm(L × W × H) |
Key Features
|
In-Situ High-Temperature Testing
|
Automated Testing & Analysis
|
Precise Temperature Control
|
Inert Atmosphere Protection
|
|
Fracture Toughness as a Function of Temperature
|
High-Temperature Hardness Degradation Curve |
Comparison of Indentation Morphology at Different Temperatures |
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