Catalogue LFA 457 MicroFlash® - product brochure
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LFA 457 MicroFlash™
vity and thermal conductivity must be known. Engineers must select from a variety of test methods to characterize the diverse array of materials and configurations they employ in their designs. For ceramics, metals, com­posites, and multi-layer systems, the flash technique is an ideal choice. Easy sample preparation, fast testing times, and high accuracy are only some of
the advantages of this non­contact test method. NETZSCH offers a variety of flash systems to cover a broad range of applications and temperatures up to 2000°C. The NETZSCH LFA 457 MicroFlashm system is designed as a cost-effective, easy-to-operate, highly accurate instrument for testing between -125 and 1100°C.
What is the heating/cooling load of a building as a func­tion of the weather condi­tions and how can I improve it? How can I improve the heat transfer out of an elec­tronic component? What are the optimum materials and how do I design a heat exchanger manufacturer system to achieve a required efficiency? In order to answer questions like these, material proper­ties such as thermal diffusi-
For the measurement of low conductivity materials such as insulations, NETZSCH offers a broad selection of heat flow meters and guarded hot plate instru­ments. For the analysis of refractory materials, a hot wire system (TCT 426) is available. Differential scan­ning calorimeters (DSC 404 C) for the measurement of specific heat, and dilato-meters (DIL 402 C series) for the analysis of density and length changes up to high temperatures, are also avail­able.
Thermal Conductivity at RT in W/(mK)
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