• Title/Summary/Keyword: PLA fiber

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Performance Evaluation of Bio-Composites Composed of Acetylated Kenaf Fibers and Poly(lactic acid) (PLA) (아세틸화 케나프 섬유와 폴리락트산으로 구성된 바이오복합재료의 물성 평가)

  • Chung, T.J.;Lee, B.H.;Lee, H.J.;Kwon, H.J.;Jang, W.B.;Kim, H.J.;Eom, Y.G.
    • Elastomers and Composites
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    • v.46 no.3
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    • pp.195-203
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    • 2011
  • Eco-friendly materials or bio-composites were made with poly(lactic acid) (PLA) as matrix polymer and kenaf fibers as filler. Also, acetylated kenaf fibers and compatibilizer were adopted in order to improve the interfacial adhesion between fiber and polymer. In this study, the effect of chemical modification and compatibilizer on the mechanical-viscoelastic and morphology properties of the bio-composites was discussed. The hydrophobic fibers by acetylation were known to show better interfacial bonding with the matrix polymer and resulted in improved performance and morphology. Viscoelastic property and glass transition temperature, however, were not nearly enhanced.

Effect of Manufacturing Factors on Mechanical Properties of the Rice-husk Powder Composites (왕겨분말 복합재료의 기계적 특성에 미치는 제조인자의 영향)

  • Choi J.Y.;Wang Renliang;Yoon H.C.;Lim J.K.
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.30 no.7 s.250
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    • pp.794-799
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    • 2006
  • In recent years, the use of natural fiber as reinforcement in polymer composites to replace synthetic fiber such as glass fiber is receiving increasing attention. Because of increasing usage according to the high demand, the cost of thermoplastic has increased rapidly over the past decades. We used a thermoplastic polymer(polypropylene) as the matrix and a lignocellulosic material(rice-husk flour) as the reinforcement filler to prepare a particle-reinforced composite to examine the possibility of using lignocellulosic material as reinforcement filler and to determine data of test results for physical, mechanical and morphological properties of the composite according to the reinforcement filler content in respect to thermoplastic polymer, In this study, PLA/PP rice-husk fiber-reinforced thermoplastic composites that made by the hot press molding method according to appropriate manufacturing process was evaluated as mechanical properties.

Study on Peel Strength Measurement of 3D Printing Composite Fabric by Using FDM (FDM 방식을 활용한 3D 프린팅 복합직물의 박리강력 측정 연구)

  • Han, Yoojung;Kim, Jongjun
    • Journal of Fashion Business
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    • v.23 no.2
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    • pp.77-88
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    • 2019
  • One way of appling 3D printing to garments is through the combination of 3D polymer filaments in textile fabrics. it is essential to understand the interface between the polymer and the 3D composite fabric in order to enhance the adhesion strength between the polymers and the peeling strength between the fabric and the polymer. In this study, the adhesion of composite printed specimens using a combination of fabric and polymers for 3D printing was investigated, and also the change in adhesion was investigated after the composite fabric printed with polymers was subjected to constant pressure. Through this process, the aims to help develop and utilize 3D printing textures by providing basic data to enhance durability of 3D printing composite fabrics. The measure of the peeling strength of the composite fabric prepared by printing on a fabric using PLA, TPU, Nylon polymer was obtained as follows; TPU polymer for 3D printing showed significantly higher peel strength than polymers of composite fabric using PLA and Nylon polymer. In the case of TPU polymer, the adhesive was crosslinked because of the reaction between polyurethane and water on the surface of the fabric, thus increasing the adhesion. It could be observed that the adhesion between the polymer and the fiber is determined more by the mechanical effect rather than by its chemical composition. To achieve efficient bonding of the fibers, it is possible to modify the fiber surface mechanically and chemically, and consider the deposition process in terms of temperature, pressure and build density.

A comparison of the fracture resistances of endodontically treated mandibular premolars restored with endocrowns and glass fiber post-core retained conventional crowns

  • Guo, Jing;Wang, Zhiming;Li, Xuesheng;Sun, Chaoyang;Gao, Erdong;Li, Hongbo
    • The Journal of Advanced Prosthodontics
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    • v.8 no.6
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    • pp.489-493
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    • 2016
  • PURPOSE. This in-vitro study aimed to evaluate the fracture resistances and failure modes of endodontically treated mandibular premolars restored with endocrowns and conventional post-core retained crowns. MATERIALS AND METHODS. Thirty mandibular premolars were assigned into three groups (n=10): GI, intact teeth; GE, teeth with endocrowns; GC, teeth with conventional post-core supported crowns. Except for the teeth in group GI, all specimens were cut to 1.5 mm above the cementoenamel junction and endodontically treated. Both endocrowns and conventional crowns were fabricated from lithium-disilicate blocks using a CEREC 3D CAD/CAM unit. All specimens were subjected to thermocycling and then to $45^{\circ}$ oblique compressive load until fracture occurred. The fracture resistance and failure mode of each specimen were recorded. Data were analyzed with one-way ANOVA and LSD Post Hoc Test (${\alpha}=.05$). RESULTS. The fracture resistances of GE and GC were significantly lower than that of GI (P<.01), while no significant difference was found between GE and GC (P=.702). As of the failure mode, most of the specimens in GE and GC were unfavorable while a higher occurrence of favorable failure mode was presented in GI. CONCLUSION. For the restoration of mandibular premolar, endocrown shows no advantage in fracture resistance when compared with the conventional method. Both of the two methods cannot rehabilitate endodontically treated teeth with the same fracture resistances that intact mandibular premolars have.

Effects of Manufacturing Technology on the Mechanical Properties of Alfa Fiber Non-woven Reinforced PMMA Composites

  • Wanassi, Bechir;Jaouadi, Mounir;Hassan, Mohamed Ben;Msahli, Slah
    • Composites Research
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    • v.28 no.3
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    • pp.112-117
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    • 2015
  • Mechanical properties of nonwoven alfa fiber based reinforced biocomposite were evaluated to assess the possibility of using it as a new material in engineering applications such as orthopedic application. Samples were fabricated by needle punching, thermal bonding and Hydroentanglement, by blending alfa fibers with wool fibers or Polypropylene fibers. The mechanical properties were tested and showed that the nonwoven NW3 (alfa fiber/PP/PLA, with hydroentanglement) is the best. It has a value of stress at break of 1.94 MPa, a strain of 54.2% and a young's module of 7.95 MPa, in a production normal direction. A biocomposite has been made with NW3 mixed with PMMA matrix. The use of nonwoven based alfa fiber in reinforcing the composite material increases its rigidity and the tensile strength; the elongation was found to be 1.53%, the Young's Module of 1.79 GPa and the tensile at break of 15.06 MPa. Results indicated that alfa fibres are of interest for low-cost engineering applications and can compete with glass fibres in orthopedic application.

Effect of salt additives on structure of biodegradable PLGA nanofibers (PLGA 나노섬유의 구조에 미치는 첨가제의 영향)

  • You, Young;Park, Won-Ho;Min, Byung-Moo;Lee, Seung-Jin
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.218-220
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    • 2003
  • 지방족 폴리에스터계 고분자인 폴리락타이드 (polylactide, PLA), 폴리글리콜라이드 (polyglycolide, PGA) 및 이들의 공중합체인 락타이드-글라이콜라이드 공중합체 (PLGA)는 생체 친화성이고 생분해성이며 물리적 강도가 우수하고 쉽게 성형할 수 있다. 그리고, 전기방사는 수 마이크로에서 수십 나노크기의 지름을 가지는 초극세 섬유인 나노섬유의 제조 기술로서 기존의 섬유 방사방식과는 근본적으로 다른 새로운 방사기술로 산업적인 융용 가능성이 무한한 미래지향적 기술로 최근 주목을 받고 있다. (중략)

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Tunable Low Phase-noise Microwave Generation Utilizing an Optoelectronic Oscillator and a Fiber Bragg Grating

  • Zhuansun, Xiaobo;Chen, Yiwang;Zhang, Pin;Yin, Qin;Ni, Jiazheng;Dong, Xiaohua
    • Current Optics and Photonics
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    • v.2 no.1
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    • pp.96-100
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    • 2018
  • A tunable low-phase-noise microwave generation structure that utilizes an optoelectronic oscillator (OEO) and a fiber Bragg grating (FBG) is proposed and experimentally demonstrated in this article. This structure has no particular requirement for the band width of the laser, and its tunability is realized through adjusting the central frequency of the tunable FBG. A detailed theoretical analysis is established and confirmed via an experiment. A high-purity microwave signal with a frequency tunable from 6 to 12 GHz is generated. The single-sideband phase noise of the generated signal at 10.2 GHz is -117.2 dBc/Hz, at a frequency offset of 10 kHz.

Biodegradation behaviors of PLGA nanofibers with different morphology (PLGA계 나노섬유의 형태에 따른 생분해거동)

  • You, Young;Park, Won-Ho;Min, Byung-Moo;Lee, Seung-Jin
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.10b
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    • pp.49-51
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    • 2003
  • 지방족 폴리에스터계 고분자인 폴리락타이드 (polylaccde, PLA), 폴리글리콜라이드 (polyglycolide, PCA) 및 이들의 공중합체인 락타이드-글리콜라이드 공중합체 (PLCA)는 생체친화성이고 생분해성이며 물리적 강도가 우수하고 쉽게 성형할 수 있다. 그리고, 전기방사는 수 마이크로에서 수십 나노크기의 지름을 가지는 초극세 섬유인 나노섬유의 제조기술로서 기존의 섬유 방사방식과는 근본적으로 다른 새로운 방사기술로 산업적인 웅용 가능성이 무한한 미래지향적 기술로 최근 주목을 받고 있다. (중략)

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Performance Study of Composite Air Filters Using Heterogeneous Fibers

  • Lee, Ji Soo;Oh, Yuree;Kim, Heejin;Park, Hyun-Seol;Yoon, Sam S.;Lee, Min Wook
    • Composites Research
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    • v.35 no.3
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    • pp.216-221
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    • 2022
  • Recently, the worldwide demand for disposable masks has increased due to COVID-19 infections and severe air pollution. Personal masks should reduce breathe resistance while maintaining filtering performance. In this study, a solution blowing process is used to produce composite nanofiber filters to co-spin two polymers at once. The manufacture process of the various fiber diameter filter was designed, and the filtration performance and differential pressure of the prepared filter was investigated. Poly vinylidene fluoride-hexafluoropropylene (PVDF-HFP) and Polylactic acid (PLA) fibers were chosen to be entangled together in a layer with a diameter of 1.05 ㎛ and 0.33 ㎛. Composite nanofilters showed up to 87% filtration efficiency and 32 Pa differential pressure.