声学技术
聲學技術
성학기술
Technical Acousitics
2013年
5期
416-420
,共5页
徐宁%徐颖%邹伟仁%王常力
徐寧%徐穎%鄒偉仁%王常力
서저%서영%추위인%왕상력
玻璃纤维%复合材料%隔声%吻合效应
玻璃纖維%複閤材料%隔聲%吻閤效應
파리섬유%복합재료%격성%문합효응
glass fiber%composite%sound insulation%coincidence effect
选择树脂基玻璃纤维复合材料板,测量其辐射效率和损耗因子,研究纤维排布方式及纤维用量的影响,结果表明,纤维正交和单向铺设对玻璃纤维板辐射效率的影响基本相同,纤维的用量在10%~70%变化时,也没有明显的变化;对损耗因子的影响,在160~1000Hz范围内,单向玻纤复合材料板的阻尼比正交排布的低,而在2000~8000 Hz范围两者基本相同的。在中低频范围内,正交排布比单向排布对阻尼的影响更加显著。通过测试复合材料和金属铁的隔声量,在160~8000Hz范围内,玻璃纤维复合材料板没有出现隔声谷。提出纤维复合材料板中纵波波速公式,计算复合材料板的隔声量,与测量结果吻合良好。
選擇樹脂基玻璃纖維複閤材料闆,測量其輻射效率和損耗因子,研究纖維排佈方式及纖維用量的影響,結果錶明,纖維正交和單嚮鋪設對玻璃纖維闆輻射效率的影響基本相同,纖維的用量在10%~70%變化時,也沒有明顯的變化;對損耗因子的影響,在160~1000Hz範圍內,單嚮玻纖複閤材料闆的阻尼比正交排佈的低,而在2000~8000 Hz範圍兩者基本相同的。在中低頻範圍內,正交排佈比單嚮排佈對阻尼的影響更加顯著。通過測試複閤材料和金屬鐵的隔聲量,在160~8000Hz範圍內,玻璃纖維複閤材料闆沒有齣現隔聲穀。提齣纖維複閤材料闆中縱波波速公式,計算複閤材料闆的隔聲量,與測量結果吻閤良好。
선택수지기파리섬유복합재료판,측량기복사효솔화손모인자,연구섬유배포방식급섬유용량적영향,결과표명,섬유정교화단향포설대파리섬유판복사효솔적영향기본상동,섬유적용량재10%~70%변화시,야몰유명현적변화;대손모인자적영향,재160~1000Hz범위내,단향파섬복합재료판적조니비정교배포적저,이재2000~8000 Hz범위량자기본상동적。재중저빈범위내,정교배포비단향배포대조니적영향경가현저。통과측시복합재료화금속철적격성량,재160~8000Hz범위내,파리섬유복합재료판몰유출현격성곡。제출섬유복합재료판중종파파속공식,계산복합재료판적격성량,여측량결과문합량호。
To investigate effects of fiber arrangement and amount on sound transmission of resin-based glass fiber composite plates, the relevant radiation ratio and loss factor have been measured. The experiments identify that the radiation ratios of orthogonal and parallel arrangements are the same, as well as when the fiber amount increased from 10% to 70%. As for the effect on the loss factor, the damping ratio of parallel arrangement is lower than that of orthogonal arrangement in the frequency range of 160 Hz to 1000 Hz. The damping ratios of orthogonal and parallel arrangements are close to each other from 2000 Hz to 8000 Hz. In medium and low frequency range, the orthogonal arrangement affects the damping ratio more significantly than the parallel arrangement does. Comparing the sound transmission losses of resin-based glass fiber composite plates with iron, it is found that there is no sound insulation valley in the sound transmission loss curve of the composite s plates. The calculation method of the longitudinal wave has been developed. The calculation results are in agreement with the experimental results.