Product Description
Ash Fusion Tester- TR-NACD2000
Application area
Suitable for measuring ash Fusion in coal ash forindustries such as electric power, coal, commodity inspection, environmentalprotection , metallurgy , papermaking , chemical industry, collate industry,science & research institution and inspection administration.
Technical Data
- Furnace Temperature Range: 0°C~1550°C
- Temperature Controlling Accuracy: < 5°C
- Resolution: 1°C
- Sample Quantity: 5 samples each time
- Laboratory Atmosphere: Oxidability or weak reducibility
- Power Supply: 220V, 50/60HZ
- Maximum Power: 5KW
- Cabinet Dimension: 850mmx400mmx600 mm
- Weight: 52kgs
- Temperature Rising Rate: 0-850°C-- 15-20°C/min; 850-900°C--1-15 °C
- /min; 900°C-1550°C-- 3°C±1°C/min
Advanced Multi-Sample TestingWith a multi-position ceramic holder, the TR-NACD2000 allows simultaneous testing of up to four samples, improving laboratory throughput and efficiency. Its programmable heating rate from 1C/min to 20C/min facilitates a wide range of testing scenarios, adapting to sample requirements for precision results.
High-Definition Imaging TechnologyEquipped with a high-resolution camera, this tester provides clear and accurate image capture at key ash fusion points, including softening, deformation, hemispherical, and flowing stages. The automatic image analysis enhances result reliability, eliminating manual interpretation errors.
User-Friendly Operation and ConnectivityThe TR-NACD2000 features a digital TFT touch screen and intuitive control software, making navigation and real-time test monitoring straightforward. Stored data can be exported via USB or Ethernet, enabling easy integration with laboratory information systems for seamless reporting.
Robust Safety and DurabilityConstructed with high-quality stainless steel and ceramic insulation, the device is engineered for longevity and stable performance. Over-temperature protection, electrical interlocks, and an integrated alarm system provide a safe working environment even during high-temperature operations.
FAQ's of Ash Fusion Tester- TR-NACD2000:
Q: How does the TR-NACD2000 Ash Fusion Tester ensure accurate temperature measurement during tests?
A: The TR-NACD2000 utilizes advanced thermal sensors and programmable temperature control, offering a measurement range from 800C to 1700C with an accuracy of 5C. Automated image analysis further refines identification of key ash fusion points for reliable results.
Q: What types of samples can be analyzed with this ash fusion tester?
A: This instrument is designed for testing coal and mineral samples to determine their ash fusion temperature characteristics, essential for assessment in energy, mining, and mineral processing industries.
Q: When should the atmosphere control option be utilized during testing?
A: Atmosphere control, allowing selection between air or reducing environments, should be set according to the specific requirements of the sample or the standardized testing procedure to ensure accurate and relevant results for various applications.
Q: Where can the TR-NACD2000 be installed for optimal performance?
A: The device operates best in laboratory environments with temperatures between 5C and 40C and humidity not exceeding 85%. Adequate space for its dimensions (560mm x 610mm x 740mm) and access to AC power are required for installation.
Q: What is the process for automatic image capture and analysis?
A: During heating, the high-definition camera system automatically captures images at predetermined points (softening, deformation, hemispherical, and flowing). The built-in software analyzes these images in real time, documenting results with minimal operator intervention.
Q: How can test data from the TR-NACD2000 be exported for analysis?
A: All test results and images can be quickly exported via USB or Ethernet connections, allowing users to integrate data into their laboratory information management systems or share with relevant stakeholders for further analysis.
Q: What benefits does the fully automatic operation of the TR-NACD2000 offer?
A: Full automation minimizes human error, enhances safety, and streamlines workflows for efficient, repeatable testing. It reduces operator workload while delivering consistently precise ash fusion temperature measurements for improved laboratory productivity.