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DZDR-S Transient Plane Source Thermal Conductivity Tester

Product ID:WLrd003

Price: US$3,580.00 ~ US$7,580.00 PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
  • Product Introduction
  • Other information
  • Model NumberDZDR -S
    Brand NameDAZHAN
    Payment TermsTT,PAYPAL,Alibaba.com Pay
    DZDR-S Transient Plane Source Thermal Conductivity Tester
    Product Introduction
    The DZDR-S Transient Plane Source (TPS) Thermal Conductivity Tester is an advanced thermal conductivity measurement instrument based on the Transient Plane Source technology. Developed for accurate thermal transport analysis, it provides stable performance, fast measurement speed, and intelligent data processing for various solid materials.
    The TPS thermal conductivity analyzer is suitable for measuring the thermal conductivity and heat transfer properties of metals, ceramics, alloys, minerals, polymers, composites, papers, textiles, foams, insulation materials, and building materials.
    With an intelligent color LCD interface, automated calculation system, and automatic test report generation, the DZDR-S provides an efficient solution for research laboratories, material development, quality control, and industrial applications.

     
    Performance Features
     Transient Plane Source (TPS) technology enables fast and accurate thermal conductivity measurement.
     Wide testing range suitable for various materials with different thermal properties.
     Intelligent human-machine interface with color LCD display.
     Simple operation and short testing time, improving laboratory efficiency.
     Automatic data acquisition, calculation, analysis, and report generation.
     Computer communication system supports intelligent data management.
     Built-in experiment records and standardized report templates.
     Compatible with printer output for direct test report printing.
     Stable measurement performance with high repeatability.

     
    Working Principle
    The DZDR-S thermal conductivity tester works based on the Transient Plane Source (TPS) method.
    A specially designed plane sensor is placed between two pieces of the tested material. During measurement, the sensor generates a controlled heat pulse while simultaneously monitoring temperature changes caused by heat diffusion into the sample.
    According to the relationship between temperature response and heating time, the system automatically calculates thermal conductivity and related thermal transport parameters.
    The TPS method provides fast testing speed, minimal sample preparation requirements, and reliable results for a wide range of materials.

     
    Applications
    The DZDR-S TPS Thermal Conductivity Tester is widely used in:
    Industry Applications
    Metal Materials Thermal conductivity testing of metals and alloys
    Ceramic Industry Ceramic heat transfer performance analysis
    Polymer Materials Polymer and composite thermal property testing
    Insulation Materials Testing of foam plastics, mineral wool, glass wool, rock wool
    Building Materials Cement walls, sandwich panels, composite boards testing
    Energy Materials Thermal performance evaluation of new materials
    Research Institutes Material thermal characterization and development
    Quality Control Product performance inspection and comparison
     
    Tested Materials
    The instrument supports thermal conductivity testing of:
     Metals and alloys
     Ceramics
     Minerals and rocks
     Polymers
     Composite materials
     Paper and textiles
     Foam plastics
     Polyurethane materials
     Phenolic foam
     Urea-formaldehyde foam
     Glass wool, rock wool, mineral wool
     Cement walls and concrete composite materials
     Glass fiber reinforced composite panels
     Honeycomb panels

     
    Technical Specifications
    Parameter Specification
    Model DZDR-S TPS Thermal Conductivity Tester
    Measurement Method Transient Plane Source (TPS) Method
    Thermal Conductivity Range 0.005–300 W/(m·K)
    Measurement Temperature Range Room Temperature–130
    Working Environment Temperature 0–40
    Probe Diameter 15 mm
    Measurement Accuracy ±3%
    Repeatability Error ≤3%
    Measurement Time 5–160 seconds
    Data Processing Automatic computer data processing
    Display Color LCD display
    Report Function Automatic test report generation
    Power Supply AC 220V
    Total Power Consumption <500W
     
    DZDR-S TPS Thermal Conductivity Tester vs Traditional Thermal Conductivity Instruments
    Feature DZDR-S TPS Analyzer Traditional Thermal Conductivity Tester
    Testing Method Transient Plane Source technology Usually steady-state methods
    Testing Speed 5–160 seconds Longer testing cycles
    Sample Preparation Simple Often requires complex preparation
    Material Compatibility Wide range of materials Usually limited materials
    Data Processing Automatic calculation and reporting Manual processing often required
    Operation Intelligent LCD interface Conventional operation
    Accuracy & Repeatability High stability and repeatability Depends on test conditions
     
    FAQ
    1. What is the TPS method used in the DZDR-S thermal conductivity tester?
    The TPS (Transient Plane Source) method measures thermal conductivity by analyzing heat diffusion through a material after applying a controlled heat pulse.
    2. What materials can be tested with this thermal conductivity analyzer?
    The instrument can test metals, ceramics, polymers, composites, insulation materials, building materials, textiles, and foam materials.
    3. How long does one measurement take?
    The typical measurement time is between 5 and 160 seconds, depending on material properties and test settings.
    4. What is the thermal conductivity measurement range?
    The DZDR-S covers a wide range from 0.005 to 300 W/(m·K), suitable for both insulating and highly conductive materials.
    5. Does the instrument generate test reports automatically?
    Yes. The built-in software can automatically process data, store experimental records, and generate standardized test reports.
    6. What are the advantages of TPS technology?
    TPS technology provides fast testing, high repeatability, minimal sample preparation, and suitability for many different material types.

     
    Product Summary
    The DZDR-S Transient Plane Source Thermal Conductivity Tester is a high-performance TPS thermal conductivity analyzer designed for accurate heat transfer measurement of metals, ceramics, polymers, composites, insulation materials, and construction materials. With fast testing, intelligent operation, and automated data analysis, it is an ideal solution for modern material thermal characterization.
     
     


     
     
  • FAQ
    1. What is the TPS method used in the DZDR-S thermal conductivity tester?
    The TPS (Transient Plane Source) method measures thermal conductivity by analyzing heat diffusion through a material after applying a controlled heat pulse.
    2. What materials can be tested with this thermal conductivity analyzer?
    The instrument can test metals, ceramics, polymers, composites, insulation materials, building materials, textiles, and foam materials.
    3. How long does one measurement take?
    The typical measurement time is between 5 and 160 seconds, depending on material properties and test settings.
    4. What is the thermal conductivity measurement range?
    The DZDR-S covers a wide range from 0.005 to 300 W/(m·K), suitable for both insulating and highly conductive materials.
    5. Does the instrument generate test reports automatically?
    Yes. The built-in software can automatically process data, store experimental records, and generate standardized test reports.
    6. What are the advantages of TPS technology?
    TPS technology provides fast testing, high repeatability, minimal sample preparation, and suitability for many different material types.

     
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