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Heat Transfer Through Composite Wall
Heat Transfer Through Composite Wall

Heat Transfer Through Composite Wall

Price 100 INR/ Unit

MOQ : 1 Unit

Heat Transfer Through Composite Wall Specification

  • Test Range
  • 0100C
  • Interface Type
  • Panel Mounted Controls
  • Usage
  • Heat Transfer Lab Equipments
  • Humidity
  • Relative, up to 90%
  • Measuring Range
  • Ambient to 100C
  • Response Time
  • Instantaneous
  • Max Height
  • 400 mm
  • Power Supply
  • 230 V AC, 50 Hz
  • Accuracy
  • 1C
  • Automation Grade
  • Manual
  • Operating Voltage
  • 230 V AC
  • Application
  • Heat Transfer Lab Equipments
  • Mounting Type
  • Table Top
  • Frequency
  • 50 Hz
  • Product Type
  • Heat Transfer Through Composite Wall
  • Port Size
  • 1/4 inch
  • Gas Pressure
  • Ambient
  • Number of Specimens
  • 3
  • Temperature
  • Ambient to 100C
  • Features
  • Easy-to-Operate, Robust Construction, High Accuracy
  • Specimen Size
  • 150 mm diameter, 25 mm thick
  • Resolution
  • 0.1C
  • Display Type
  • Digital
  • Machine Weight
  • Approx. 30 kg
  • Test Speed
  • Manual
  • Test Width
  • 150 mm
  • Control Mode
  • Digital Temperature Indicator/Controller
 

Heat Transfer Through Composite Wall Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Supply Ability
  • 100 Units Per Week
  • Delivery Time
  • 1 Week
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Export Market(s)
  • Africa, Middle East, Asia
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Heat Transfer Through Composite Wall

These products are manufactured by our skilled engineers using high-grade materials and innovative technology. The offered walls are available in different designs and other related specifications, in order to meet the variegated expectations of our valuable customers. Our provided range is rigorously tested by the team of our professionals. 

RANGE OF EXPERIMENTS TO BE CARRIED OUT :    
To determine total thermal resistance & thermal conductivity of composite wall.
To plot temperature gradient along composite wall structure.
The experiments can be conducted at various values of input & calculation can be made accordingly.
To plot Heat flux Vs thermal conductivity in composite structure.
EXPERIMENTAL SETUP :
1. Heater Assembly.
2. Test specimen MS 2 Nos. Bakelite 2 Nos. Wood 2 Nos.
3. Assembly Mounting frame.
4. Clamp Plates 2 Nos.
5. Set of thermocouples.
CONTROL PANEL :
1. 12 Channel Digital Temperature Indicator
2. Dimmerstat : 0 - 2 A.
3. Mains On/Off Switch.
4. Voltmeter : 0 - 250 V.
5. Ammeter : 0 - 3 A.
 SPACE REQUIRED :
1.5 m.(L)x 1.0 m(W) table top.
 Service Required :
230 v Ac Supply 50 Hz
WEIGHT :  70 Kg approx.



Comprehensive Study of Heat Transfer

Examine the unique thermal conductivity properties of brass, aluminum, and mild steel within a single apparatus. This equipment allows users to observe and analyze heat transfer through composite materials, fostering a deeper understanding of thermal resistance and conduction.


Precise Temperature Monitoring and Control

Accurate and real-time temperature measurement is achieved through multi-point thermocouples and a digital temperature controller, offering 1C accuracy and 0.1C resolution. The system is fully equipped to ensure reliable data collection for every experiment.


Safe and Efficient Laboratory Operation

The apparatus incorporates safety features such as over-temperature cut-off and is insulated to avoid heat loss. Its robust table-top design, user-friendly controls, and observation ports ensure safe use and convenient operation in any heat transfer laboratory.

FAQs of Heat Transfer Through Composite Wall:


Q: How does the composite wall apparatus demonstrate heat transfer mechanisms?

A: The apparatus utilizes a wall made of three distinct materialsbrass, aluminum, and mild steel. When the integrated heater is powered, heat flows through the materials, with temperatures measured at multiple points by thermocouples, illustrating different conductivities and the cumulative effect in a composite structure.

Q: What are the benefits of using multi-point thermocouples in experiments?

A: Multi-point thermocouples provide precise, real-time temperature readings at several locations across the wall. This allows for detailed thermal profiling and accurate calculation of thermal gradients, improving experimental outcomes and reliability.

Q: When should calibration of the apparatus be performed?

A: The equipment is factory calibrated before delivery, ensuring measurement accuracy from the outset. Regular calibration is recommended at intervals specified in laboratory quality protocols or after any significant maintenance.

Q: Where is this heat transfer apparatus typically utilized?

A: It is widely used in educational institutions, research laboratories, and industry training centers across India, particularly for teaching and demonstrating fundamental heat transfer concepts and material thermal conductivities.

Q: What is the process for conducting an experiment using this apparatus?

A: To begin, the sample wall is mounted, and power supplied to the heater. Water is circulated at the cooling end to maintain a steady-state gradient. Thermocouple data is recorded via digital controls, allowing observation and analysis of heat transfer across the composite wall.

Q: How does insulation contribute to minimizing heat loss in the setup?

A: The apparatus is insulated to reduce unwanted heat escape to the environment. This ensures that measured temperature gradients across the composite wall correspond directly to the intended experiment, enhancing precision and energy efficiency.

Q: What makes this apparatus particularly suitable for laboratory settings?

A: Its robust construction, easy-to-operate digital controls, over-temperature safety protection, and compliance with ISO 9001 make it reliable and ideal for repeated laboratory use, supporting both manual and highly controlled experimental requirements.

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