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Скачать или смотреть Creep in Compression (1600°C) | ISO 3187 | VBCC | Creep Testing

  • Dr Viswabaskaran (VB Ceramics)
  • 2024-05-17
  • 292
Creep in Compression (1600°C) | ISO 3187 | VBCC | Creep Testing
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Описание к видео Creep in Compression (1600°C) | ISO 3187 | VBCC | Creep Testing

VBCC's Creep in Compression (1600°C) ISO 3187

Description:

Introducing the cutting-edge Creep in Compression 1600°C instrument for refractories, meticulously developed to meet the rigorous standards outlined in ISO 3187. Creep in Compression 1600°C is the most important thermophysical property for ceramic materials, especially for refractories used at high temperatures. The LVDT method (ISO 3187 standard) is an absolute method for the direct determination of the Creep in Compression 1600°C of refractory materials used in high-temperature applications.

VBCC's Creep in Compression 1600°C instrument tests refractories from ambient room temperature (RT) to an impressive 1600°C, making it a reliable choice for various applications. It includes a 40mm cylindrical standard-sized brick sample for testing and evaluation purposes. Using the LVDT Technique in compliance with ISO 3187 standards, our system ensures precise temperature readings with a remarkable 1°C accuracy at the dwell temperature. Its versatility shines through as it is suitable for a broad spectrum of refractories, making it an ideal choice for a range of industries. Designed with excellence in mind, it offers an indigenous solution for a trouble-free user experience. Equipped with an indigenous VBCC-Made Phase-Control Thyristor Controller, it enhances control and performance. The system features an imported LVDT from Mesotron, Germany, for consistent and reliable operation with 0.0001mm accuracy. For advanced temperature control, it utilizes a state-of-the-art TAIE Programmable PID Digital Temperature Indicator and Controller (8X18=144 segments), ensuring precise and efficient temperature management. Choose our system for reliable, precise, and versatile temperature control solutions. Don't forget to like, subscribe, and hit the notification bell to stay updated with our latest videos on cutting-edge technology and equipment. Thank you for watching!

This Creep in Compression 1600°C instrument is specifically tailored for high-temperature refractory industries. What sets VBCC apart is our commitment to providing high-quality solutions at a fraction of the cost of imported alternatives. Our Creep in Compression 1600°C instrument not only matches imports in performance but also delivers incredible value for your investment. It's built to last, with rugged durability, and our 24/7 service support ensures you're never left in the lurch. For high-quality research and precise measurements, VBCC's instrument is your trusted companion.

Methodology:

The test procedure as described in ISO 3187 involves testing a cubical sample of 50mm under specified conditions to a given temperature. The deformation of the test piece at constant temperature is recorded, and the percentage change is evaluated as a function of time. (Examples are provided in the graphs)

Please contact VB Ceramic Consultants at [email protected] or call us at 94440 12468 to learn more. Elevate your research and production with VBCC's Creep in Compression 1600°C instrument today.

Specifications:

Display: Computerized I-5 with 20” Monitor
Standard: ISO 3187 standards
Measuring Range: 0-5000 microns
Application: Applicable for refractory brick, refractory castables, plastic refractories, ramming mixes, powdered materials, granular materials, and refractory fibers.
Temperature Range: RT to 1600°C
Test Specimen Size & Numbers: W 50 X L 50 X D 50mm
Pressure Mode: Compression
Load: Load 1N to 1000N
Maximum Load: 0.5 N/mm² related to standard sample dimensions
Measuring Accuracy: ±1%
Program: Customizable Program Schedules
Software: Exclusive VBCC software, Data Acquisition and Analysis Centre
Data: Up to 60 data points per minute
For precise temperature control and advanced research capabilities, trust VBCC's Creep in Compression 1600°C instrument.

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