{"title":"A Narrowing Analysis on Sound Loss during Transmission on Perforated Natural Fiber Panels","authors":"Dr. Dolamani Sahu, Dr. Anil Kumari, Dr. Akanksha","doi":"10.17762/msea.v71i3s.27","DOIUrl":null,"url":null,"abstract":"Sound transmission misfortune (STL) is a learn about the sound energy that is kept from communicating through a wall or a parcel, it is fundamental, particularly for clamor protection applications. The principal point of this study is to explore and dissect the STL ability of punctured normal fiber sandwich boards, which went about as sound protection material. The target of this study is to decide the impact of hole width of the punctured board on STL, as well as to decide the ideal hybridization blend sandwich board of punctured board with normal fiber that conveys great STL. In this review, STL estimation was done by utilizing a two-load impedance tube strategy combined with LMS Test Lab programming and LMS SCADAS Mobile DAQ framework. Normal filaments utilized in this study are coconut fiber, oil palm fiber, and pineapple leaf fiber. The normal filaments were ready in round and hollow shapes with three unique thicknesses of 1 cm, 2 cm, and 3 cm to squeeze into the example holder of the impedance tube. Every regular fiber will be tried after it was hybridized with a punctured board of various hole breadth sizes and the STL estimation results are gotten and investigated. The estimation results show all examples had reached their most noteworthy STL at the recurrence range 3000 Hz to 4000 Hz. Furthermore, pineapple leaf fiber hybridized with a punctured board of 3 mm's whole breadth is viewed as the ideal blend where it accomplished the most noteworthy STL of 71.80 dB among all the test tests.","PeriodicalId":37943,"journal":{"name":"Philippine Statistician","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-07-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Philippine Statistician","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.17762/msea.v71i3s.27","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"Mathematics","Score":null,"Total":0}
引用次数: 0
Abstract
Sound transmission misfortune (STL) is a learn about the sound energy that is kept from communicating through a wall or a parcel, it is fundamental, particularly for clamor protection applications. The principal point of this study is to explore and dissect the STL ability of punctured normal fiber sandwich boards, which went about as sound protection material. The target of this study is to decide the impact of hole width of the punctured board on STL, as well as to decide the ideal hybridization blend sandwich board of punctured board with normal fiber that conveys great STL. In this review, STL estimation was done by utilizing a two-load impedance tube strategy combined with LMS Test Lab programming and LMS SCADAS Mobile DAQ framework. Normal filaments utilized in this study are coconut fiber, oil palm fiber, and pineapple leaf fiber. The normal filaments were ready in round and hollow shapes with three unique thicknesses of 1 cm, 2 cm, and 3 cm to squeeze into the example holder of the impedance tube. Every regular fiber will be tried after it was hybridized with a punctured board of various hole breadth sizes and the STL estimation results are gotten and investigated. The estimation results show all examples had reached their most noteworthy STL at the recurrence range 3000 Hz to 4000 Hz. Furthermore, pineapple leaf fiber hybridized with a punctured board of 3 mm's whole breadth is viewed as the ideal blend where it accomplished the most noteworthy STL of 71.80 dB among all the test tests.
声音传输不幸(STL)是对通过墙壁或包裹无法通信的声能的了解,它是基本的,特别是对于噪音保护应用。本研究的主要目的是探索和剖析穿孔普通纤维夹芯板作为隔音材料的STL性能。本研究的目的是确定穿孔板的孔宽度对STL的影响,以及确定理想的穿孔板与普通纤维的杂交混合夹芯板,以传递良好的STL。在这篇综述中,STL估计是通过利用双负载阻抗管策略,结合LMS Test Lab编程和LMS SCADAS Mobile DAQ框架进行的。本研究中使用的正常细丝是椰子纤维、油棕纤维和菠萝叶纤维。将普通细丝准备成圆形和中空形状,具有1cm、2cm和3cm的三种独特厚度,以挤压到阻抗管的示例支架中。将每根规则纤维与不同孔径的穿孔板杂交后进行试验,得到并研究了STL估计结果。估计结果表明,所有实例在3000 Hz至4000 Hz的重现范围内都达到了最值得注意的STL。此外,菠萝叶纤维与整个宽度为3mm的穿孔板杂交被视为理想的混合物,在所有测试中,它实现了71.80dB的最值得注意的STL。
期刊介绍:
The Journal aims to provide a media for the dissemination of research by statisticians and researchers using statistical method in resolving their research problems. While a broad spectrum of topics will be entertained, those with original contribution to the statistical science or those that illustrates novel applications of statistics in solving real-life problems will be prioritized. The scope includes, but is not limited to the following topics: Official Statistics Computational Statistics Simulation Studies Mathematical Statistics Survey Sampling Statistics Education Time Series Analysis Biostatistics Nonparametric Methods Experimental Designs and Analysis Econometric Theory and Applications Other Applications