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HEAT TRANSFORMER THROUGH COMPOSITE WALLS
HEAT TRANSFORMER THROUGH COMPOSITE WALLS

HEAT TRANSFORMER THROUGH COMPOSITE WALLS

Price 21000 INR/ Piece

MOQ : 10 Pieces

HEAT TRANSFORMER THROUGH COMPOSITE WALLS Specification

  • Heating Capacity
  • 1 kW (Immersion Heating Element)
  • Features
  • Thermal Insulation, Leak Proof, Clear Observation Window, Easy to Operate
  • Accuracy
  • 0.5C (Temperature Measurement)
  • Control Type
  • Digital PID Controller
  • Display Type
  • Digital (LED/LCD)
  • Glass Type
  • Borosilicate observation window
  • Shape
  • Rectangular Frame
  • Power Supply
  • AC Mains (230V, 50Hz)
  • Temperature Resistance
  • Up to 120C
  • Usage
  • For Laboratory
  • Type
  • Laboratory Equipment for Thermal Studies
  • Dimension (L*W*H)
  • 1200 mm 600 mm 1000 mm (approx.)
  • Product Type
  • HEAT TRANSFORMER
  • Weight
  • 50-150 Kilograms (kg)
  • Equipment Type
  • Heat Transformer Apparatus
  • Equipment Materials
  • Stainless Steel/Aluminum with Insulated Support
  • Power
  • 230 V AC, 1-Phase, 50 Hz
  • Voltage
  • 230V
  • Material
  • Stainless Steel
  • Application
  • Laboratory
  • Capacity (Ltr)
  • 20 Litres (tank volume)
  • Operation Mode
  • Bench-top Demonstration
  • Overall Weight
  • Approx. 45 kg
  • Data Acquisition
  • Provision for Computer Interface (optional)
  • Composite Wall Composition
  • Three Layers: Metal, Insulation, and Polymer/Plastic
  • Color
  • Silver/White (standard finish depending on supplier)
  • Flow Type
  • Natural or Forced Convection (optional pump attachment)
  • Safety Features
  • Overheat Protection, ELCB, Grounding
  • Number of Thermocouples
  • 4-6 Channel (K-Type)
  • Heat Source
  • Immersion Heater
  • Measurement Points
  • Multiple - Across Composite Layers and Fluid
 

HEAT TRANSFORMER THROUGH COMPOSITE WALLS Trade Information

  • Minimum Order Quantity
  • 10 Pieces
  • Payment Terms
  • Cash in Advance (CID), Cash Advance (CA)
  • Supply Ability
  • 10 Pieces Per Month
  • Delivery Time
  • 1 Week
  • Main Domestic Market
  • All India
 

About HEAT TRANSFORMER THROUGH COMPOSITE WALLS



Discover a kingly bargain with the HEAT TRANSFORMER THROUGH COMPOSITE WALLS-a first-class, high-performance laboratory apparatus crafted for top-tier thermal analysis. Unlock precise results with 4-6 channel (K-Type) thermocouples and multiple measurement points across advanced composite layers of metal, insulation, and polymer/plastic. Equipped with a premium immersion heater and digital PID controller, this bench-top system offers robust safety with overheat, ELCB, and grounding features. Its stainless steel build and clear borosilicate observation window merge durability, easy operation, and unblemished accuracy at a competitive promotion rate. Ideal for research institutions and manufacturing exporters in India.

HEAT TRANSFORMER THROUGH COMPOSITE WALLS - Application & Special Features

This top-tier laboratory equipment is engineered for investigating heat transfer across various composite walls under natural or forced convection. It is ideal for educational demonstrations, research labs, and industry training centers. The apparatus features thermal insulation, leak-proof assembly, and a clear borosilicate observation window for meticulous analysis. It offers precise digital temperature control with 0.5C accuracy and user-friendly operation, making it perfectly suited for scientific and industrial studies involving three-layered composite walls.


Certifications, Payment Terms & Sample Policy

Obtain this advanced apparatus from a registered manufacturer, supplier, and exporter with necessary certifications for laboratory equipment quality. Competitive rates guarantee great value, and swift goods transport ensures stock ready for dispatch across India. Payment terms are flexible, supporting LC, TT, or online transactions per agreement. Sample policies are tailored-contact us for details. Every unit undergoes stringent quality checks for reliable laboratory use and prompt delivery, ensuring your research remains uninterrupted.


FAQ's of HEAT TRANSFORMER THROUGH COMPOSITE WALLS:


Q: How does the HEAT TRANSFORMER THROUGH COMPOSITE WALLS operate in a laboratory setting?

A: This equipment functions as a bench-top demonstration unit, utilizing an immersion heater to generate heat across a composite wall made of three layers. It measures temperature at multiple points using K-Type thermocouples, allowing for in-depth study of thermal properties under controlled settings.

Q: What unique features make this heat transformer ideal for research and teaching?

A: Its first-class features include a digital PID controller with 0.5C temperature measurement accuracy, clear borosilicate observation window for monitoring, and high-quality stainless steel frame. The provision for computer interface, leak-proof design, and advanced safety features further enhance its suitability for academic and industrial research.

Q: Where can the HEAT TRANSFORMER THROUGH COMPOSITE WALLS be used?

A: The apparatus is primarily designed for laboratory applications in universities, research institutes, and industry training centers. It's suitable for any setting requiring precise demonstration and study of heat transfer through composite walls.

Q: What is the process for data acquisition and monitoring in this setup?

A: Data can be monitored directly through the digital (LED/LCD) display or acquired via an optional computer interface. Multiple measurement points across each composite layer ensure comprehensive real-time data for thorough heat transfer analysis.

Q: How does the safety system improve equipment reliability?

A: It comes equipped with overheat protection, ELCB, and grounding features, ensuring secure operation throughout experiments. This Kingly apparatus minimizes operational risks and enhances laboratory safety standards.

Q: When should users consider forced convection in experiments?

A: Users may choose forced convection-using an optional pump-when simulating more dynamic fluid flow conditions across the composite wall, thus expanding the range of thermal phenomena studied.

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