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Custom Conventional In Situ Tensile Heating/Cooling Stage

The in situ tensile heating/cooling stage is a product designed for studying the stress-strain properties of samples under variable temperature conditions.

 

The product utilizes liquid nitrogen or compressor cooling and resistance heating methods to achieve dynamic stress-strain characterization of materials within temperature ranges of -190℃ to 600℃ (selectable model) or RT to 1000℃ (selectable model). It can be combined with microscopic analysis and electrical analysis to observe material states during testing, such as phase transformation, crack initiation and propagation, fracture, bending, and high-temperature creep.

 

The in situ tensile module can perform tension and compression in constant force or constant speed modes, or execute reciprocating motion according to programmed segments.

 

The product needs to be used with a temperature controller, a refrigeration controller (optional), and an in situ tensile controller. The accompanying PC software facilitates temperature and mechanical parameter setting, as well as data acquisition.

 

↑ Functions of the In Situ Tensile Stage


↑ Customizable Various Types of Fixtures

 

Heating/Cooling Methods: Liquid nitrogen or compressor cooling / Resistance heating

Temperature Range: -190℃  ~ 600℃  / RT ~ 1000℃  (Selectable Model)

Temperature Stability: ±0.1℃  (<600℃ ) / ±1.0℃  (>600℃ )

Temperature Resolution: 0.1℃ 

Heating/Cooling Rate: 0 ~ 30°C/min

Sample Stage: Silver; 12mm * 36mm / 12mm * 12mm

Sample Chamber Height: 17mm

Force Capacity: 0 ~ 5000N * (Optional: 500N, 1000N, 2000N, 5000N, etc.)

Force Accuracy: 0.5% F.S.

Displacement Distance: 40mm (Bidirectional, Selectable Model)

Tensile Speed: 0.1 ~ 60 mm/min

Displacement Accuracy: ±1μm

Mechanical Modes: Tension (Heating/Cooling), Compression, Bending, Shear

Force application mode can be set to constant speed or constant force

Programmable control, allowing setting of constant temperature or programmed temperature ramps. High temperature control accuracy, fast heating/cooling rates.

Sample Thickness: 0.001 ~ 5mm, Minimum Sample Length: 20mm

Compatible with microscopes, spectrometers, DIC, and video extensometers, etc.

Hermetic chamber for permanent protective gas atmosphere

Supports horizontal and vertical installation

Accepts various customization requirements


 

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