功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2012年
17期
2408-2411
,共4页
复合材料%电磁屏蔽效能%分层多尺度%代表性体积单元%等效电磁参数
複閤材料%電磁屏蔽效能%分層多呎度%代錶性體積單元%等效電磁參數
복합재료%전자병폐효능%분층다척도%대표성체적단원%등효전자삼수
composites%electromagnetic shielding effectiveness%hierarchical multi-scale%representative volume ele~ ments%equivalent electromagnetic parameters
为建立复合材料宏细观尺度之间电磁响应的关联性,将分层多尺度计算方法应用于纤维复合材料电磁屏蔽效能计算。为准确描述复合材料宏细观之间的联系,以电磁屏蔽效能为衡量标准,确定了复合材料细观结构的代表性体积单元(RVE)。根据电磁场媒质本构方程计算了RVE的等效电磁参数。采用分层多尺度方法计算复合材料宏观构件的电磁屏蔽效能。结果表明工作频率越高则复合材料的RVE越小;所设计的纤维复合材料结构在工作频率2~18GHz范围内具有38dB以上的电磁屏蔽效能,且电磁屏蔽效能随工作频率增加而下降。研究方法适用于求解细观结构相分散均匀或分布有规律的任意形状复合材料宏观构件电磁屏蔽效能。
為建立複閤材料宏細觀呎度之間電磁響應的關聯性,將分層多呎度計算方法應用于纖維複閤材料電磁屏蔽效能計算。為準確描述複閤材料宏細觀之間的聯繫,以電磁屏蔽效能為衡量標準,確定瞭複閤材料細觀結構的代錶性體積單元(RVE)。根據電磁場媒質本構方程計算瞭RVE的等效電磁參數。採用分層多呎度方法計算複閤材料宏觀構件的電磁屏蔽效能。結果錶明工作頻率越高則複閤材料的RVE越小;所設計的纖維複閤材料結構在工作頻率2~18GHz範圍內具有38dB以上的電磁屏蔽效能,且電磁屏蔽效能隨工作頻率增加而下降。研究方法適用于求解細觀結構相分散均勻或分佈有規律的任意形狀複閤材料宏觀構件電磁屏蔽效能。
위건립복합재료굉세관척도지간전자향응적관련성,장분층다척도계산방법응용우섬유복합재료전자병폐효능계산。위준학묘술복합재료굉세관지간적련계,이전자병폐효능위형량표준,학정료복합재료세관결구적대표성체적단원(RVE)。근거전자장매질본구방정계산료RVE적등효전자삼수。채용분층다척도방법계산복합재료굉관구건적전자병폐효능。결과표명공작빈솔월고칙복합재료적RVE월소;소설계적섬유복합재료결구재공작빈솔2~18GHz범위내구유38dB이상적전자병폐효능,차전자병폐효능수공작빈솔증가이하강。연구방법괄용우구해세관결구상분산균균혹분포유규률적임의형상복합재료굉관구건전자병폐효능。
In order to establish the correlation of electromagnetic response between macro-scale and meso-scale of composites, the hierarchical multi-scale calculation method was applied to the calculation of electromagnetic shielding effectiveness of fiber composites. In order to describe the relationship between macro-scale and meso- scale of composites accurately, representative volume elements (RVE) of the composites meso-structure was determined by the measure criterion of electromagnetic shielding effectiveness. The equivalent electromagnetic parameters were calculated by the constitutive equation of electromagnetic field medium. The electromagnetic shielding effectiveness of fiber composites macro component was calculated by hierarchical multi-scale calcula- tion method. The results showed that: the RVE of composites becomes smaller with the increasing of working frequency, the electromagnetic shielding effectiveness of fiber composite structures was above 38dB in the range of working frequency from 2 to 18GHz, and the electromagnetic shielding effectiveness decrease with increasing of working frequency. The research method was suitable to solve electromagnetic shielding effectiveness of composites macro component of arbitrary shape which has uniform dispersion and regular distribution of meso- structure phase.