Hangzhou Jiayue Intelligent Equipment Co., Ltd.
Hangzhou Jiayue Intelligent Equipment Co., Ltd.

Scientific Instruments Series: Precisely Unveiling the Physical Properties of High-Temperature Melts

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Melts are materials in a liquid state under high temperatures, such as electrolytes in metallurgy, molten salts for thermal energy storage in solar power systems, liquid metals like tin, indium, lead-bismuth, molten glass, molten steel, and slags. These materials are often highly corrosive or volatile at high temperatures, making their physical properties difficult to measure. However, in practical applications and engineering fields, these physical parameters are indispensable.

With years of research and development, and through several rounds of upgrades and iterations, CHJT INTELLIGENT has launched a series of instruments designed to test the physical properties of high-temperature melts. These instruments are tailored to the unique characteristics of materials such as molten salts, slags, liquid metals, glass, and more. They offer specialized testing solutions for parameters such as density, viscosity, surface tension, electrical conductivity, and crystallization temperature.

High temperature melt physical roperty tester

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This device is specially designed for measuring the density, surface tension, electrical conductivity, and crystallization temperature of high-temperature melt samples. It is primarily used for measuring the physical properties of materials like oxides, glass, and slags under 1600°C, ensuring precise data capture.

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1. The basket structure is made of corundum material, effectively reducing corrosion caused by sample evaporation or direct contact.

2. Silicon carbide sheath thermocouples prevent corrosion from molten salts and allow direct temperature measurement, ensuring accuracy.

3. Imported components ensure measurement precision and data reliability.

Molten salt physical property tester

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This instrument primarily measures thermal properties such as density, electrical conductivity, crystallization temperature, and surface tension of high-temperature liquid samples. Its unique furnace design provides inert gas protection while enabling convenient and quick switching between different parameter measurements.

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1. Integrated multi-parameter measurement in a single device for functional efficiency.

2. Modular design allows easy switching between various tests.

3. Custom-developed software with a user-friendly interface and simple operation.

4. Direct sample temperature measurement ensures greater accuracy.

Molten Salt Viscometer

This viscometer is based on rotational measurement methods and is designed for measuring the viscosity of high-temperature liquid melts. It is available in two models: one specifically for molten salts (MSLV) and another for general melt use (MRV), with the ability to operate in vacuum or gas-protected environments.

1. Direct measurement method for real-time viscosity results.

2. MSLV’s double-suspension connection technology is ideal for measuring viscosities between 2~50 cP.

3. MSLV rotor design is more targeted and versatile.

4. MRV is positioned to replace imported products.

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Oscillating Cup Viscometer

This metal viscometer, developed based on the torsional pendulum method, provides non-contact, high-resolution measurements and is particularly suited for high-density, low-viscosity alloys or metals.

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1. Non-contact sealed measurement requires less experimental material and avoids contamination while ensuring stable and even heating of the sample.

2. Optical sensing provides high-resolution timing, with a precision of up to 0.1ms, offering high accuracy and repeatability in viscosity measurements.

3. The top choice for metal viscosity testing.

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Conclusion
The introduction of our series of testing and analysis instruments has solved the problem of obtaining crucial high-temperature melt data for many clients, filling a gap in the market. Looking ahead, CHJT INTELLIGENT will stay true to our mission, continuing to focus on the field of high-temperature melt properties. We remain dedicated to researching and developing scientific instruments that perform under extreme conditions, driving innovation and iteration. Our goal is to become a global leader in high-temperature melt property testing, spearheading industry development and supporting technological breakthroughs in more fields.


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