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instrumentb2bNew Product Release | 1700 ℃ Infrared Ultra High Temperature Heating System Helps Breakthrough in Material Testing

In the fields of synthesis of ultra-high temperature materials, verification of aerospace thermal protection systems, and service evaluation of nuclear reactor materials, ultra-high temperature environments(>1500 ℃ has become the core support for breakthrough technological development.

howeverTraditional resistorsheatFaced with two core bottlenecks:

Limited heating rateThe heating rate of conventional resistance furnaces is generally lower than200℃/min;

Insufficient temperature limit:Due to the melting point and oxidation loss of the heating element material, the resistanceheatThe effective working temperature mostly stops at1500 ℃, unable to meethigh temperatureSynthesis and testing requirements for alloys and other materials

These limitations result in missing high-temperature phase transition kinetics data and insufficient verification of high difficulty thermal shock service performance, severely restricting the material research and development process.


In response to the above challengesRecently, our company has launched an upgradeInfrared ultra-high temperature heating systemBuilding a precise and controllable thermal field environment:

新品发布|1700℃红外超高温加热系统助力材料测试新突破

(New product launch time: early April 2025)


lBy using an infrared radiation source and combining it with reflective mirror focusing technology, the highest temperature breakthrough is achieved1700℃Up to 1800 ℃Heating rateextremelyenhancereachable30℃/sbased onhigh precisionPID algorithm dynamically adjusts radiation power to ensure high temperatureTemperature stabilityreach, achieve, attain±0.1℃levelDon't.

lconfigurationvacuum pumpWith the gas displacement unit, it can be evacuated toStandard AtmospherepressatmosphereComplete experiments under extremely difficult conditions in the environment.

lSupport customization of multiple optionsprogramDuan Sheng CoolingTemperature control.

lTo achieve full cycle observation of high-temperature processes, the systemCompatible with integrated microscopy optical systems, high-temperature Raman systems, etc

Øsuperhigh temperaturemicroscopicsystem

1modular designUpgrade Raman spectroscopy and other in-situ testing functions in the later stage.

2autofocusElectric objective lens lifting adjustment.

3405nmMonochromatic Kohler Illumination and ImagingSuppress long wavelength background of blackbody radiation and improve image clarityThe illumination field is uniform without dark angles.

4control softwareIntegrated control of mechanical adjustment, light source control, microscopic imaging and storage, automatic focusing, and other functions.


新品发布|1700℃红外超高温加热系统助力材料测试新突破

新品发布|1700℃红外超高温加热系统助力材料测试新突破


ØUltra high temperature Raman testing system (andTimegate Raman Adaptation

passTime gated detection technology (nanosecond level time gating) captures material characteristic Raman signals during heating intervals,filterLongwave blackbody radiationsuccessfully achieved17In situ analysis of ceramic lattice vibration modes at 00 ℃.

新品发布|1700℃红外超高温加热系统助力材料测试新突破

新品发布|1700℃红外超高温加热系统助力材料测试新突破

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