The thermal conductivity lambda (λ) of a solid, a fluid or a gas may basically be understood as the speed at which a defined amount of heat travels as it goes through a particular substance. A low λ value means low thermal conductivity.
For both liquids and gases lambda highly depends on the temperature, whereas pressure dependence is comparitively low. The measure for lambda is W/(m*K) (Watts per Meter and Kelvin).
Typical lambda values for different fluids
| Fluid | Thermal conductivity λ (W/(m*K)) | 
| gasoline | 0,140 | 
| glycerin | 0,286 | 
| machine oil | 0,126 | 
| ethanol | 0,185 | 
| water @ 50°F (10°C) | 0,580 | 
| water @ 140°F (60°C) | 0,644 | 
Lambda measurement for fluids, pastes and gels (flucon LAMBDA)
flucon's Measuring system LAMBDA allows you to determine the temperature-dependent thermal conductivity of liquids, pastes or gels with ease. With its hot-wire technology the LAMBDA is both precise and comfortable to handle. Its measuring range from 0,01 to 2 W/(m*K) and its temperature range -50°C to 150°C (HT version for even higher temperatures available) make it the perfect tool for your thermal fluid analysis.

Workflow for the determination of the thermal conductivity (flucon fluid analysis)
flucon not only offers their portable LAMBDA measuring system but also in-house fluid analysis in our own high pressure laboratory. Customers may send in small samples (300 ml) of the fluid they would like to have tested and then the following steps will be performed:
- Laboratory measurement of the thermal conductivity as a function of temperature and pressure using a transient measuring method preventing an influence of convective flow of heat on the measuring result
- Mathematical description of the pressure/temperature-dependant thermal conductivity
- Graphical data preparation
| 카테고리 | 제목 | 작성자 | 조회수 | |
|---|---|---|---|---|
| E-BEAM EVAPORATION | TUTORIALS FOR ELECTRON BEAM (E-BEAM) EVAPORATION file | YEONJIN | 2614 | TUTORIALS FOR ELECTRON BEAM (E-BEAM) EVAPORATION file | 
| THERMAL EVAPORATION | TUTORIALS FOR THERMAL EVAPORATION file | YEONJIN | 2269 | TUTORIALS FOR THERMAL EVAPORATION file | 
| SPUTTERING | WHAT IS SPUTTERING? file | YEONJIN | 2511 | WHAT IS SPUTTERING? file | 
| ION MILLING | WHAT IS ION MILLING? file | YEONJIN | 2612 | WHAT IS ION MILLING? file | 
| 재료시험기 | FINAT Standards | 관리자 | 1611 | FINAT Standards | 
| 재료시험기 | PSTC Standards | 관리자 | 1720 | PSTC Standards | 
| 재료시험기 | EN Standards | 관리자 | 1305 | EN Standards | 
| 재료시험기 | ISO Standards | 관리자 | 1967 | ISO Standards | 
| 재료시험기 | ASTM Standards file | 관리자 | 3943 | ASTM Standards file | 
| 열전도도측정기 | Fundamentals of measuring λ | 관리자 | 1335 | Fundamentals of measuring λ | 
| 열전도도측정기 | 유체의 열전도도 | 관리자 | 1302 | 유체의 열전도도 | 
| 점도계 | The QVis Quartz sensor | 관리자 | 992 | The QVis Quartz sensor | 
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