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Soundproofing and Mechanical Properties of Nanofiller-reinforced Polypropylene Composites : 나노 필러로 강화된 폴리프로필렌 복합재의 흡음 및 기계적 특성

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dc.contributor.advisor안성훈-
dc.contributor.author얀준-
dc.date.accessioned2017-07-13T06:21:08Z-
dc.date.available2017-07-13T06:21:08Z-
dc.date.issued2015-08-
dc.identifier.other000000066971-
dc.identifier.urihttps://hdl.handle.net/10371/118477-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 기계항공공학부, 2015. 8. 안성훈.-
dc.description.abstractNoise generally refers to unwanted sound or sound pollution which can cause serious harm to the human body and society. To prevent noise with sound absorbing materials has attracted much attention in many engineering fields nowadays. Recently, polymer absorbing materials have been fabricated for soundproofing application in many aspects of daily life. The advantages of such polymer absorbing materials are their high performance on soundproofing effect and internal properties such as light weight, specific strength, and low cost.

A kind of nanocomposite with clay reinforced polypropylene (PP) has been developed in order to investigate and understand its soundproofing and mechanical property. Clay is used as the reinforcement filler due to its nanometer dimension layered silicate which can dramatically change the mechanical and other performances at even very low filler concentration after homogeneous dispersion inside the host matrix. PP is used as the matrix material due to its attractive combination of low density and high heat distortion temperature.

The specimens made of this PP/Clay composites by injection molding machine are tested for their soundproofing property through impedance tube for sound transmission loss (TL) measurement. An optimum concentration of clay for proper performance ratio inside PP matrix is investigated in detail. Soundproofing property of pure PP, PP/Clay(0.9wt%), PP/Clay(4.8wt%), PP/Clay(6.5wt%) composites is discussed as a function of clay content with 29mm diameter specimens for high sound frequency. The soundproofing efficiency increases with clay content increasing from 0 to 6.5wt%. Compared with pure PP, average 8~20dB sound TL increases for PP/Clay(6.5wt%) composites at 3200~6400Hz. In general, 6.5wt% clay is the optimal amount for reinforcement to PP and this PP/Clay(6.5wt%) composite shows the best soundproofing. For mechanical properties, more clay filler specimens have higher storage modulus and loss modulus which can show better plastic property.

A mathematical equation for expressing the affecting factors of soundproofing property is developed with variables of sound frequency and clay weight percentage. Moreover, this equation shows perfect fitting curves which are similar to the results from experiment data. In addition, this kind of PP/Clay composites can be used for real products fabrication such as relay package and automotive interior parts.
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dc.description.tableofcontentsContents
Chapter 1. Introduction 1
1.1 Overview 1
1.2 Nanocomposites 2
1.3 Soundproofing properties and materials 3
1.4 Mechanical properties 6
Chapter 2. Materials and Specimens Fabrication 7
2.1 Overview 7
2.2 Polypropylene 7
2.3 Fillers 8
2.3.1 Talc 9
2.3.2 Nanoclays 11
2.3.3 Carbon nanotubes 12
2.4 Specimens fabrication 14
2.4.1 Solution blending 14
2.4.2 Specimens fabrication 17
Chapter 3. Soundproofing properties 19
3.1 Overview 19
3.2 Impedance tube test 20
3.3 Soundproofing effect results 21
3.3.1 PP/Talc composites 22
3.3.2 PP/Clay composites 23
3.3.3 PP/CNT composites 25
3.3.4 PP/Clay/CNT composites 26
3.3.5 Sound TL comparison 27
3.4 Microphone pulse analyzer test 28
3.5 Blind test 30
Chapter 4. Mechanical properties 31
4.1 Overview 31
4.2 Measurement devices 31
4.3 Measurement results 33
4.3.1 Density 33
4.3.2 Elongation 34
4.3.3 Poissons ratio 35
4.3.4 Stress-strain curve 36
4.3.5 Dynamic mechanical properties 37
4.4 Growth of mechanical properties with clay increasing 41
Chapter 5. Synergistic effects in nanocomposites 42
5.1 Overview 42
5.2 Synergistic effects on soundproofing property 44
5.3 Synergistic effects as a function of filler concentration… 49
Chapter 6. Equation building for soundproofing effect 52
6.1 Overview 52
6.2 Equation building 52
6.2.1 Theoretical hypothesis and parameter determination 53
6.2.2 Experimental data verification 57
Chapter 7. Applications 62
7.1 Overview 62
7.2 Soundproofing materials for automotive parts 63
7.3 Applications 64
7.3.1 In automotive 64
7.3.2 Sound cover for small devices 65
Chapter 8. Conclusions 66
Bibliography 68
초록 77
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dc.formatapplication/pdf-
dc.format.extent3986804 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectPP/Clay-
dc.subjectSoundproofing-
dc.subjectMechanical property-
dc.subjectSynergistic effect-
dc.subjectEquation-
dc.subject.ddc621-
dc.titleSoundproofing and Mechanical Properties of Nanofiller-reinforced Polypropylene Composites-
dc.title.alternative나노 필러로 강화된 폴리프로필렌 복합재의 흡음 및 기계적 특성-
dc.typeThesis-
dc.contributor.AlternativeAuthorYan Jun-
dc.description.degreeDoctor-
dc.citation.pagesxi,78-
dc.contributor.affiliation공과대학 기계항공공학부-
dc.date.awarded2015-08-
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