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Shenyang Rongye Experimental Instrument Manufacturing Co., Ltd

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    zxm_sydd@126.com

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    13909823973

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    Room 1512, No. 1-4-3, 20th Central Street, Shenyang Economic and Technological Development Zone, Liaoning Province

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Aluminum electrolyte physical property comprehensive tester

NegotiableUpdate on 02/08
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Overview
The RT-6B aluminum electrolyte physical property comprehensive tester is a high-precision molten salt physical property testing equipment, mainly used to measure the density, surface tension, conductivity, and initial crystallization temperature of aluminum electrolyte.
Product Details

Aluminum electrolyte physical property comprehensive testerMain functions:

The RT-6B aluminum electrolyte physical property comprehensive tester is used at a temperature of 1100 degrees, mainly for measuring the density, surface tension, conductivity, and initial crystallization temperature of aluminum electrolyte. In addition, the thermal weighing system and precise positioning system of the equipment can be used to carry out corresponding research work, such as studying the volatilization loss of aluminum electrolytes.

Measurement methods and accuracy

Measurement of molten salt conductivity: CVCC method is used, with a measurement range of 0.5-15 S · cm ⁻¹ and an accuracy of 1.5%.

Measurement of molten salt density: Archimedes method is used, with a measurement range of 1-5 g/cm ³ and an accuracy better than 1.0%.

Measurement of surface tension of molten salt: Using the pull tube method, the measurement range is (10~200) × 10 ⁻³ Nm ⁻¹, with an accuracy of 2%.

Measuring the initial crystallization temperature of molten salt: using the step cooling curve method, with a measurement range of 200-1000 ℃ and an accuracy of ± 2 ℃.

Aluminum electrolyte physical property comprehensive testerCharacteristics:

High precision measurement: The RT-6 molten salt property comprehensive tester has over 30 years of mature experience and technology in molten salt property testing, which can ensure the accuracy and reliability of measurement results.

High degree of automation: The equipment has automatic data collection and analysis functions, greatly saving the time and energy of experimental personnel and improving the efficiency of high-temperature experiments.

Easy to operate: The equipment adopts an aluminum alloy frame structure, which is convenient for experimental operation. At the same time, the measurement and control software adopts a one click start and full process control method, without the need for manual intervention.

Safe and reliable: The equipment is designed with full consideration of safety factors, such as using ceramic fiber integrated furnaces, stainless steel furnace shells, etc., to ensure the safety and reliability of the experimental process.