首页> 外文会议>2010 12th IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >Non-uniform thermal properties of an alumina granule/epoxy potting compound
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Non-uniform thermal properties of an alumina granule/epoxy potting compound

机译:氧化铝颗粒/环氧树脂灌封料的不均匀热性能

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In harsh environments, including high shock and vibration, magnetic devices such as transformer coils are potted to enhance thermal performance and provide mechanical protection. One potting compound frequently used is epoxy containing alumina particles. A nominally isotropic and uniform potting compound consisting of about 70 to 80% by volume 14–28 mesh (0.6 to 1.2 mm across) alumina granules in low viscosity epoxy was tested to determine its thermal properties. Examination by optical microscopy revealed that there was significant variation in volume fraction of alumina particles by location. The specific heat and thermal conductivity of the compound were measured using a Differential Scanning Calorimeter and guarded heater method based on the ASTM D5470-06. The thermal properties were found to vary with time, location, and temperature; with the specific heat ranging from 1.00 J/g°C ± 14% at 25°C to 1.22 J/g°C ± 12% at 125°C and an apparent thermal conductivity of 2.56 W/m·K ± 23%. Users of such compounds should be aware that the thermal properties are not necessarily constant in time or uniform, and assuming that they are could lead to significant errors when modeling their performance.
机译:在包括高冲击和振动在内的恶劣环境中,应灌封诸如变压器线圈之类的磁性设备,以增强热性能并提供机械保护。常用的一种灌封化合物是含环氧的氧化铝颗粒。测试了由低粘度环氧树脂中约70至80体积%的14-28目(0.6至1.2毫米宽)氧化铝颗粒组成的名义各向同性和均一的灌封料,以确定其热性能。通过光学显微镜检查发现,氧化铝颗粒的体积分数在位置上有显着变化。使用差示扫描量热仪和基于ASTM D5470-06的保护加热器方法测量化合物的比热和导热率。发现热性能随时间,位置和温度而变化。比热范围从25°C时的1.00 J / g°C±14%到125°C时的1.22 J / g°C±12%,表观导热系数为2.56 W / m·K±23%。此类化合物的用户应注意,热性能不一定在时间上恒定或均匀,并假设在对它们的性能进行建模时可能导致重大错误。

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