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Joule heating device selection Plus

Product introduction

The Joule heating device utilizes the phenomenon of the Joule effect of conductive materials themselves to apply an electrical environment, resulting in the material reaching extremely high temperatures (1000-3000 ℃) in a very short time (0-10 S), in order to investigate the physical properties changes of the material under extreme environmental and severe thermal shock conditions.

This product can provide an electrical environment for conductive and non-conductive materials and measure their temperature, with a temperature measurement range of 250~3000 ℃; This product is currently widely used in fields such as batteries, catalysis, ceramics, metal materials, etc. It can prepare nanoscale particles, single atom catalysts, high entropy alloys, etc. through rapid temperature rise and fall; The device can be customized for electrical environments and vacuum systems. Accessories include: control cabinet, vacuum chamber, electrode, vacuum pump, high-temperature sample stage, temperature measuring probe, and adapter cable.


Application field

battery

catalyze

ceramics

metallic material

Accessories introduction

German Opus probe (0ptris CTratio 2M model)

Higher accuracy (with an ambient temperature range of 23 ± 5 ℃, system accuracy of ± 0.5% measurement temperature+2 ℃; repeatability accuracy of ± 0.3% measurement temperature+2 ℃;

Observation windows that are largely resistant to dust, steam, and dirt. Accurate measurement can be carried out with up to 90% window pollution;

Fast response time, data acquisition cycle as low as 1ms;

Three temperature ranges are available: 550-3000 ℃, 275-1000 ℃ (to be ordered), and 400-1500 ℃ (to be ordered).


JH series accessories

Model: JHex-001;

Purpose: Provide a small vacuum environment with heating function, suitable for sample migration and experimentation in clean environments such as glove boxes.


Application case

Analysis of the Results of Biocarbon Flash Preparation of Graphene

The following figure is a comparison of Raman spectra between graphite and graphene. It can be seen whether it is graphene, and the key is to look at the 2D peak

The absence of a D peak indicates low impurities. When using 2D/G to measure the number of graphene layers, less than 1 indicates multiple layers, equal to 1 indicates double layers, and greater than 1 indicates single layers.

Our experimental results are as follows (prepared at 3000k):

微信圖片_20231030161645.png

Contact us

Bulk procurement, customized needs, technical consultation, etc., please leave your needs and contact information, we will get in touch with you as soon as possible

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