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Supplier: M.A.E. Apparecchiature Elettroniche srl
Description: CTS45 is a probe for measuring the conductivity in laboratory on samples , length: 45 cm, that offers the possibility to perform a practical and fast measurement of the thermal conductivity (or thermal resistivity) of the medium in which it is inserted at a high
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Supplier: NETZSCH-Gerätebau GmbH
Description: method for direct determination of the thermal conductivity, based on the measurement of the temperature increase of a linear heat source/hot wire (cross-wire technique, according to ISO 8894-1) or at a specific distance from a linear heat source
- Computer Interface: Yes
- Display Options: None
- Temperature Control: Yes
- Temperature Range: 20 to 1500 C
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Supplier: M.A.E. Apparecchiature Elettroniche srl
Description: CTS120 is a probe, for measures in the soil (length = 120 cm), that offers the possibility to perform a practical and fast measurement of the thermal conductivity (or thermal resistivity) of the medium in which it is inserted at a high accuracy level. It works in
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Supplier: ASTM International
Description: 1.1 This test method covers the use of a transient hot wire liquid thermal conductivity method and associated equipment (the System) for the determination of thermal conductivity, thermal diffusivity and volumetric heat capacity of aqueous engine
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Supplier: ASTM International
Description: 1.1 This test method covers the determination of thermal conductivity of non-carbonacious, dielectric refractories. 1.2 Applicable refractories include refractory brick, refractory castables, plastic refractories, ramming mixes, powdered materials, granular materials, and refractory
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Supplier: ASTM International
Description: 1.1 This test method covers the determination of the thermal conductivity of non-carbonaceous, dielectric refractories. 1.2 Applicable refractories include refractory brick, refractory castables, plastic refractories, ramming mixes, powdered materials, granular materials, and
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Supplier: ASTM International
Description: 1.1 This test method covers the determination of thermal conductivity of non-carbonacious, dielectric refractories. 1.2 Applicable refractories include refractory brick, refractory castables, plastic refractories, ramming mixes, powdered materials, granular materials, and refractory
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Supplier: Det-Tronics
Description: destructive hot-wire measurements such as thermal conductivity and catalytic element sensors. In addition, the PIRVOL can replace expensive gas chromatographs in many gas exploration drilling applications.
- Application: Personal Exposure Monitoring, Confined Space Monitoring, Ambient Air Monitoring, Process Gas
- Electrical Outputs: Analog Current
- General Gas Types: Combustible Gas
- Instrument Type: Monitor
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Description: temperature resistance, corrosion resistance, and bio-inertness are all characteristics of alumina. Because of its high temperature stability and thermal conductivity, it is ideal for high temperature applications such as thermocouple protection in high temperature measurement.
- Material Type: Alumina / Aluminum Oxide
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Description: temperature resistance, corrosion resistance, and bio-inertness are all characteristics of alumina. Because of its high temperature stability and thermal conductivity, it is ideal for high temperature applications such as thermocouple protection in high temperature measurement.
- Material Type: Alumina / Aluminum Oxide
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measurement accuracy, achieved due to optimal thermal coupling makes your application cutting edge in the industry. Available as wired and SMD versions with Pt100 or Pt1000. Standard versions available*: P14 2FW Thermo (P1K0 (read more)
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generates thermoelectric potential, and the resistance value of the thermal resistor changes with temperature), and then transmits the electrical signal to the temperature display and control system through the connecting wire, thereby realizing real-time measurement and monitoring of aluminum liquid (read more)
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More Information Top
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Thermal Conductivity 30/Thermal Expansion 18
with the Modified Hot Wire Thermal Conductivity Measurements .
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Saturated liquid thermal conductivity correlations for some new refrigerants
‘Polarized transient hot wire thermal conductivity measurements ’, Fluid Phase Equilibria, 80, 275—286.
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Thermal Conductivity of Molten Lead-Free Solders
J. Bilek, J. Atkinson, and W. Wakeham, “Validation of FE Model for Transient Hot Wire Thermal Conductivity Measurements ,” Proc.
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Measuring system with a dual needle probe for testing the parameters of heat-insulating materials
J. 55 22 [9] Sylos Cintra J and Santos W 2000 Numerical analysis of sample dimensions in hot wire thermal conductivity measurements J. Eur.
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Transient hot plate method with two temperature measurements for thermal characterization of metals
[3] De Sylos Cintra J and Dos Santos W N 2000 Numerical analysis of sample dimensions in hot wire thermal conductivity measurements J. Eur.
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The application of the artificial neural network and hot probe method in thermal parameters determination of heat insulation materials Part 1 - thermal model c...
[20] J. Sylos Cintra and W. Santos, “Numerical analysis of sample dimen- sions in hot wire thermal conductivity measurements ,” Journal of the European Ceramic Society, vol.
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Table of contents
Validation of FE Model for Transient Hot Wire Thermal Conductivity Measurements ..
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Springer Handbook of Experimental Fluid Mechanics
E 14, 1435–1440 (1981) 3.144 R.A. Perkins, A. Laesecke, C.A. Nieto de Castro: Polarized transient hot - wire thermal conductivity measurements , Fluid Phase Equilibr.
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http://dspace.mit.edu/bitstream/handle/1721.1/41224/213500188-MIT.pdf?sequence=2
3.4 Coupled effects on hot - wire thermal conductivity measurement . . . .
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Generalised hot wire method for thermal conductivity measurements
Generalised hot wire methodfor thermal conductivity measurements .
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