材料工程
材料工程
재료공정
JOURNAL OF MATERIALS ENGINEERING
2008年
z1期
127-134
,共8页
俞来明%傅雅琴%石琢%朱春燕%高磊
俞來明%傅雅琴%石琢%硃春燕%高磊
유래명%부아금%석탁%주춘연%고뢰
隔声性能%玻璃纤维%环氧树脂%复合材料%多层结构
隔聲性能%玻璃纖維%環氧樹脂%複閤材料%多層結構
격성성능%파리섬유%배양수지%복합재료%다층결구
acoustic insulation%glass fabric%epoxy resin%composites%multiplayer structure
根据Kirchhoff-Mindlin理论要求,多层结构面板的隔声性能要考虑到复合结构中流体层和固体层之间的整个交互作用:复杂的声波传递过程中在固体和流体层之间多次反射和系统共振,通过对隔声性能与填充在两层面板之间物质密度的关系,以及对硬质物体的组合和空气层厚度的研究,来探讨评价隔声可变因素及对空腔共振约束的隔声低谷的影响.以玻璃纤维为增强材料,环氧树脂为基体,制备复合树脂板,并设计了多层复合结构,利用混响室-静音箱法对材料隔声性能进行了测试分析.研究表明:多层玻璃纤维织物增强环氧树脂复合材料呈一定的刚性,在各频率的隔声量随着复合材料厚度的增加而增加;声音传播过程中所产生的弯曲波对柔性材料隔声性能的影响远大于对刚性材料的影响.不同颗粒填充多层介质复合材料平均隔声量随材料面密度的增加而增加,与材料面密度的指数成良好的线性相关性.
根據Kirchhoff-Mindlin理論要求,多層結構麵闆的隔聲性能要攷慮到複閤結構中流體層和固體層之間的整箇交互作用:複雜的聲波傳遞過程中在固體和流體層之間多次反射和繫統共振,通過對隔聲性能與填充在兩層麵闆之間物質密度的關繫,以及對硬質物體的組閤和空氣層厚度的研究,來探討評價隔聲可變因素及對空腔共振約束的隔聲低穀的影響.以玻璃纖維為增彊材料,環氧樹脂為基體,製備複閤樹脂闆,併設計瞭多層複閤結構,利用混響室-靜音箱法對材料隔聲性能進行瞭測試分析.研究錶明:多層玻璃纖維織物增彊環氧樹脂複閤材料呈一定的剛性,在各頻率的隔聲量隨著複閤材料厚度的增加而增加;聲音傳播過程中所產生的彎麯波對柔性材料隔聲性能的影響遠大于對剛性材料的影響.不同顆粒填充多層介質複閤材料平均隔聲量隨材料麵密度的增加而增加,與材料麵密度的指數成良好的線性相關性.
근거Kirchhoff-Mindlin이론요구,다층결구면판적격성성능요고필도복합결구중류체층화고체층지간적정개교호작용:복잡적성파전체과정중재고체화류체층지간다차반사화계통공진,통과대격성성능여전충재량층면판지간물질밀도적관계,이급대경질물체적조합화공기층후도적연구,래탐토평개격성가변인소급대공강공진약속적격성저곡적영향.이파리섬유위증강재료,배양수지위기체,제비복합수지판,병설계료다층복합결구,이용혼향실-정음상법대재료격성성능진행료측시분석.연구표명:다층파리섬유직물증강배양수지복합재료정일정적강성,재각빈솔적격성량수착복합재료후도적증가이증가;성음전파과정중소산생적만곡파대유성재료격성성능적영향원대우대강성재료적영향.불동과립전충다층개질복합재료평균격성량수재료면밀도적증가이증가,여재료면밀도적지수성량호적선성상관성.
When the acoustic insulation provided by panel walls of multiplayer structure,the full interaction between the fluid (air) and the solid layers is thus taken into account and the calculation does not involve limiting the thickness of any layer,based on the Kirchhoff-Mindlin theories.Transmission of sound waves gives rise to a complex dynamic system with multiple reflections within the solid and fluid layers and the resonance of the system.The effect of the acoustic insulation is considered by attributing a complex density to the air filling the space between two wall panels.Several experiments were then performed for different combinations of wall and air layer thickness,to assess the variable factor of acoustic insulation.The glass fabric/epoxy resin composites were prepared;using epoxy as matrix,the glass fabric as reinforced materials,and the multiplayer structure panel was designed.The sound insulation property and the interior structure of the composites were analyzed by the double channel acoustic instrument,SEM,and so forth.The results show that the glass fabric/epoxy resin composites with multiplayer structure present certain rigidity,sound transmission loss at different frequency increases with the thickness of the composite material increases;flexural waves generated in the process of sound transmission have greater effects of acoustic insulation on flexible materials than rigid materials.Average sound transmission loss of the multiplayer structure panel filled with different particles increases with surface density of the composite material increases,and they form good linear relationship.