[Measurement Example] Measurement of Thermal Conductivity of High Thermal Conductivity Resin [TA]
TA
Thermal conductivity distribution measurement and the anisotropy of thermal diffusivity in each part can be evaluated.
In recent years, the miniaturization and high output of electronic devices have rapidly advanced, and as a result, thermal management (heat dissipation) has become a very important issue. Traditionally, heat dissipation has been maintained by using metals, but in recent years, it has begun to be replaced by "high thermal conductivity resins." High thermal conductivity resins are "lightweight" and have "moldability" compared to traditional metals, are "corrosion-resistant," and above all, have the advantage of being "low-cost." However, there is also the disadvantage of low thermal conductivity, and many material manufacturers are actively developing solutions to address this issue. It is expected that "high thermal conductivity resins" will become mainstream in the future. On the thermal properties blog, we introduce examples of thermal conductivity measurements of "high thermal conductivity resins." http://blog.thermal-measurement.info/archives/cat_50051425.html
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basic information
The thermal conductivity of high thermal conductivity resins varies not only with the type of resin but also with the molding conditions and the shape of the mold. Accurate evaluation is possible with Betel's measurement technology. We also accept commissioned measurements. <Measurement Items> ◇ Thermal conductivity of individual fillers in the resin ◇ Resin flow analysis during molding (variability of resin flow and heat distribution) ◇ Evaluation of anisotropy in the in-plane direction and thickness direction
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The price varies depending on the quantity and difficulty, so please contact us for more details.
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※The quantity and difficulty may vary, so please contact us for details.
Applications/Examples of results
Differences in thermal conductivity due to the type of resin. Differences in thermal conductivity due to gate position and mold shape. Differences in thermal conductivity due to the amount and type of filler.
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Leveraging the assembly technology cultivated over many years, we have expanded our business areas to include the development of precision component assembly, thermal property measurement devices, contract measurement services, and the development of medical and dental plastic products equipped with clean rooms. We deepen and integrate our "original products" from a unique manufacturing perspective, consolidating our know-how and technology. With "speedy decision-making and execution," which is a strength unique to Bethel, we provide high-quality products under the "Made by BETHEL" label. Our wish at Bethel is for our customers who use Bethel products to be satisfied with our products, manufacturing, and services, and to feel that they made the right choice in trusting our company. Furthermore, we hope that the satisfaction of our customers will lead to the happiness of each employee who works here.