JB-TS6

JB-TS6

JB-TS6

Product catalog summary
Introduction
The JB-TS6 Intelligent Carbon Silicon Analyzer is a critical tool in the field of metallurgy, specifically for analyzing molten iron. It utilizes the phase diagram theory from metallography to predict and control the quality of castings. The technology is based on the cooling curve of molten iron, which acts as a 'fingerprint' for metallurgical quality, allowing for rapid prediction and control of the production process.

Specifications
  • Main Unit: Equipped with a military-level industrial motherboard, it operates under humidity levels of less than 76% and temperatures ranging from 0 to 50℃.
  • Display: Features a 19-inch TFT true color display for parameter visualization.
  • Power: Requires AC 220V 50Hz with a power consumption of 200W.
  • Analysis Time: Approximately 90 seconds.

Measuring Capabilities
The analyzer measures various parameters including the grade of molten iron, carbon equivalent, carbon and silicon content, degree of supercooling, nodularity, and tensile strength. It supports 10 calibration curves and target compositions.

Main Functions
  • Calculates the required addition of materials to achieve target compositions.
  • Records up to 5000 groups of analysis results in sequence.
  • Provides trend maps and differential diagrams of solidification temperature curves.
  • Automatically outputs test records to a USB drive.

Performance and Precision
  • Resolution: 0.1℃ (0-1370℃) with a precision of 0.1% F.S.
  • CE%: Range of 2.30%-4.83% with a precision of ±0.10%.
  • C%: Range of 2.20%-4.30% with a precision of ±0.05%.
  • Si%: Range of 0.20%-3.80% with a precision of ±0.10%.
  • SG%: Range of 60%-95% with a precision of ±10.0%.
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Catalog excerpts

JB-TS6-1

JB-TS6 Intelligent Carbon Silicon Analyzer Picture The technology of molten iron thermal analysis is from the phase diagram theory in metallography. It has already been widely used in iron liquid analysis and control before furnace in developed countries. It’s an indispensable detection method in advanced casting technology. It plays a very important role in the production of high quality castings. All people who work on casting technology know the carbon equilibrium phase diagram as the basic tool of metal materials research and production. Someone called the cooling curve in the casting thermal analysis as fingerprint of metallurgical quality. The basic principle of rapid prediction and forecast in the casting thermal analysis before furnace is based on the records of cooling curve of molten iron in a particular carbon cup by thermal analysis instruments. The iron carbon equilibrium phase diagram reflects the solidification process of molten iron composition and quantitative relations between the phase change temperature. The state of hot metal solidification phase Introduction change temperature has a certain relationship with the various properties of casting iron. We forecast the various parameters of metal materials through this kind of relationship and control the production process. The method of iron carbon equilibrium diagram is similar with molten iron cooling curve by thermal analysis technology. The differences between them is that the result of carbon equilibrium diagram is determined under an ideal state. But the cooling curve of thermal analysis technology is determined by the actual production of molten iron. Its composition is relatively complex. The shape of the cooling curve and standard condition have a certain difference. But this kind of difference can represent the actual state of the molten iron. We use the actual cooling curve of iron for quality analysis and control is more close to the production practice. The test result will be more accuracy with higher control precision. It will play a much more important role in the production.

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