• Title/Summary/Keyword: Nylon66

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Nylon 66 Viscosity Effect on Mechanical Properties of Nylon 66/Cloisite 93A Nanocomposite (Nylon 66/Cloisite 93A 나노복합체의 기계적 성질에 대한 Nylon 66 점도 효과)

  • Park, Sang-Cheol;Kim, Ho-Gyum;Min, Kyung-Eun
    • Polymer(Korea)
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    • v.37 no.1
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    • pp.100-112
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    • 2013
  • It is found that the commercialization of nylon 66/Cloisite 93A nanocomposite by applying melt intercalation is possible in the composite production facilities of the pilot scale which has been generalized today. The strength and modulus under tensile and flexural stress have been improved with the introduction of Cloisite 93A in nylon 66. Furthermore, it is found through the analysis of morphologic and crystallization behavior that the elements such as content of Cloisite 93A, viscosity of nylon 66 and the crystallization behavior have significantly influences on the characteristics of nanocomposite.

Effect of Filler Size on the Thermal Diffusivity of Nylon 66/SiC Composites (필러 크기가 Nylon 66/SiC 복합재료의 열확산도에 미치는 영향)

  • Kim, Sung-Ryong
    • Journal of Adhesion and Interface
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    • v.15 no.4
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    • pp.169-173
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    • 2014
  • The effect of filler sizes on the thermal diffusivity of Nylon 66/SiC composites was investigated. By loading 60 vol% of SiC fillers on Nylon 66, the thermal diffusivity of the composites increased more than 10 times than that of unfilled Nylon 66 and the thermal diffusivity of composites with filler sizes of $24{\mu}m$ and $76{\mu}m$ increased to $2.2{\times}10^{-2}cm^2/sec$ and $1.75{\times}10^{-2}cm^2/sec$, respectively. It is speculated that the smaller filler size ($24{\mu}m$) of SiC is more favorable for the formation of thermal conductive path that the larger size ($76{\mu}m$) of filler composites. The thermal diffusivity of Nylon 46/SiC 400 (60 vol%) composites was $1.61{\times}10^{-2}cm^2/sec$ that was lower than that of Nylon 66/SiC (60 vol%) composites.

Thermal and Surface Properties of PET/Nylon66/Clay Nanocomposites (PET/Nylon66/Clay 나노복합재료의 열적물성 및 표면특성)

  • Lee, Minho;Ku, Jahun;Min, Byung Hun;Kim, Jeong Ho
    • Applied Chemistry for Engineering
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    • v.22 no.5
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    • pp.490-494
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    • 2011
  • Nanocomposites of blends of polyethyleneterephthalate (PET) and polyamide66 (Nylon66) containing natural and organically modified montmorillonite clays (PM, $Cloisite^{(R)}$ 25A and 15A) were prepared by melt mixing. DSC results showed that the addition of clay changed the crystallization behavior of PET/Nylon66 nanocomposites. Clay C25A was observed to most significantly change the crystallization temperature than other clays in blends of PET and Nylon66, which may be caused by the difference in interaction with matrix polymers. AFM results also showed that the lowest value of surface roughness was observed for nanocomposites containing C25A indicating the smooth and relatively homogenous surface. Mechanical properties measurement showed the similar results. Contact angle was measured to study the difference in hydrophobicity. An increase in contact angle was observed for nanocomposites with C25A or C15A due to the increased hydrophobicity.

A study on the mechanical properties of reinforced Nylon66 for glass fiber type and its orientation (나일론66에서 유리섬유의 종류 및 애향에 따른 기계적 물성 연구)

  • Ryu, J.B.;Lyu, M.Y.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2009.05a
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    • pp.374-377
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    • 2009
  • Glass fiber reinforced nylon has been used in many plastic industries. Mechanical properties of reinforced plastics depend upon types of glass fiber as well as loading of glass fiber. Tensile properties of glass fiber reinforced nylon66 have been studied for different glass fiber types and sizes. Types of glass fibers were circular and flat, and diameters were 7, 10, and 13 micrometers. Orientations of glass fibers in the matrix of nylon66 have been analyzed through X-ray CT. Tensile specimens were prepared by cutting out of square plates of $100{\times}100{\times}3mm$ with different angles such as 0, 45, and $90^{\circ}$ to the flow direction. As the loading of glass fiber increases to 45 wt% tensile strength increases up 2.5 times compare with neat nylon66. Anisotropic tensile strength has been observed and minimum tensile strength was measured in the specimen cut from perpendicular to the flow direction.

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Improvement research for impact strength of nylon66/silicate composites (나일론66/실리케이트 복합체의 충격특성 개선 연구)

  • Lee, Bom Yi;Kim, Youn Cheol
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.7
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    • pp.4653-4658
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    • 2014
  • A study of the improvement in the impact strength is required to apply Nylon 66/silicate composites as an automobile material. Nylon 66/silicate composites were prepared using a twin screw extruder in case of a silicate treatment by ${\gamma}$-APS (S-silicate) and the addition of an octene ${\alpha}$ olefin grafted by maleic anhydride (PE-g-MAH). The chemical structure of the silane treated silicate was measured by Fourier transform infra-red (FT-IR) spectroscopy. The chemical reaction was confirmed by the decrease in the FT-IR intensity of the OH stretching vibration. The thermal properties, intercalation structure, and Izod impact strength were measured by DSC, TGA, XRD, and Izod impact tester. There was no significant effect on the degradation temperature of the Nylon66/silicate composite, but the crystallization temperature and crystallinity increased slightly in the case of the Nylon66/silicate composites. This suggests that the additives act as heterogeneous nuclei on the Nylon 66 matrix. The Izod impact test indicated that S-silicate enhanced the impact performance by up to 24%.

An Overstress Model for Non-proportional Loading of Nylon 66 (Nylon 66의 무비례 하중에 대한 과응력 모델)

  • Ho, Gwang-Su
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.25 no.12
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    • pp.2056-2061
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    • 2001
  • Non-proportional loading tests of Nylon 66 at room temperature exhibit path dependent behavior and plasticity-relaxation interactions. The uniaxial formulation of the viscoplasticity theory based on overstress (VBO), which has been used to reproduce the nonlinear strain rate sensitivity, relaxation, significant recovery and cyclic softening behaviors of Nylon 66, is extended to three-dimensions to predict the response in strain-controlled, comer-path tests. VBO consists of a flow law that is easily written for either the stress or the strain as the independent variable. The flow law depends on the overstress, the difference between the stress and the equilibrium stress that is a state variable in VBO. The evolution law of the equilibrium stress in turn contains two additional state variables, the kinematic stress and the isotropic stress. The simulations show that the constitutive model is competent at modeling the deformation behavior of Nylon 66 and other solid polymers.

Characterization of Electrospun Nylon 66 Fiberwebs (전기방사 나일론 66 섬유웹의 특성화)

  • Lee, Young-Soo;Park, Sung-Shin;Lee, Chung-Jung;Joo, Chang-Whan
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.165-168
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    • 2003
  • Nylon was the first commercialized synthetic fiber. It is a polyamide, derived from a diamine and dicarboxylic acid. The nylon fiber has outstanding durability and excellent physical properties such as stiffness, wear and abrasion resistance, friction coefficient and chemical resistance. Due to these properties of nylon 66, nano-sized fibers are produced by electrospinning method in this study. During the past years the nylon 66 fibers have been prepared by conventional melt spining. (omitted)

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Study on the Physical and Rheological Properties of Nylon66/MWCNT Composites (나일론66/MWCNT 복합체 물성 및 유변학적 특성 연구)

  • Kim, Do Eui;Kim, Youn Cheol
    • Applied Chemistry for Engineering
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    • v.24 no.2
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    • pp.214-218
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    • 2013
  • Nylon66/multi-walled carbon nano tube (MWCNT) composites were fabricated by twin screw extruder. The contents of MWCNT were 1, 3, 5, and 7 wt%. Thermal properties, dispersion, rheological and impact properties were measured by DSC, TGA, X-ray diffraction (XRD), SEM, Dynamic rheometer, and Izod impact tester. The effect of MWCNT on the non-isothermal crystallization of Nylon66 was confirmed by DSC. The complex viscosity at low frequency and the shear thinning tendency of the composites increased with MWCNT content. An increase in the elasticity was confirmed from the decrease in the slop of G'-G" plot. Izod impact strengths of the composites were analyzed as a measure of mechanical properties, which indicated that the composites exhibit a 60% enhancement for the impact strength when 3 wt% MWCNT was added. The dispersion of MWCNT within Nylon66/MWCNT composites was also checked by SEM.

A Study on the Manufacturing Method of Natural Stretch Yarns using Nylon 66 (Nylon 66를 이용한 Natural Stretch Yarns 제조방법에 관한 연구)

  • Park, Seong-Woo;Seo, Mal-Yong;Hong, Sang-Ki;Choi, Hae-Chung;Choi, Bo-Yun
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2011.03a
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    • pp.96-96
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    • 2011
  • 본 연구에서는 스포츠 캐주얼 웨어(스노우보드복, 골프복, 등산복 등)로 사용되는 신축성 소재의 개발로 Stretch성을 부여하기 위하여 Nylon 66 POY 소재의 가연가공 기술을 통하여 Mechanical Stretch 성능이 발현되는 소재를 개발하고자 한다. 섬유소재에 일반적으로 신축성을 부여하기 위해서는 Spandex(Polyurethane, PU)를 방적공정에서 복합 제조하는 Core Yarn과 장섬유에 Spandex를 피복하는 Covering Yarn(직물용) 형태가 있는데, Spandex로 인한 신축성은 200~800% 발현되나 PU를 사용함에 따라서 공정추가에 대한 원가상승, 균제도 불량, 몰림현상 및 PU 수축에 의한 중량감이 있으며, 또한 PU에 의한 견뢰도불량, 피복사의 벗겨짐성 등 외관상 트러블 발생빈도가 높다. 이에 따라 Spandex를 사용하지 않고 단일소재로서 사가공기술에 의해 Stretch성이 부여되는 소재를 개발하고 이의 기술을 상용화 하고자 한다. Nylon 66 POY 소재를 Disc 가연기, Pin 가연기 등의 설비를 이용하여 70d급 원사의 가연가공 공정을 진행하였다. 그리고 개발된 원사의 섬도(d), 강도(g/d), 신도(%), 크림프율(%)의 물성 시험을 통하여 Nylon66의 공정상 변화인자에 따른 기본 물성 및 Stretch 발현성을 분석하여 최적의 설비 및 공정조건을 확립하였다.

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A Study on the PP/PS Blends with Nylon 6 Reactive Compatibilizers (Nylon6계 반응 상용화제에 의한 PP/PS 블렌드에 관한 연구)

  • 서성식;이기윤;김성희;김동철;이승구
    • Polymer(Korea)
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    • v.26 no.1
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    • pp.71-79
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    • 2002
  • RPP(maleic-anhydride grafted PP)and OPS(oxazoline grafted PS) do not react to each other, and thus show immiscibility. In this study, Nylons was added to RPP/OPS blend systems, as a reactive compatibilizer for enhancing the miscibility of the blends. When Nylon6 was added to the blends of RPP and OPS, RPP/Nylon6/OPS was produced. The effects of the molar ratio of Nylon6 on the RPP-Nylon6-OPS reaction were studied. Torque test and FT-IR analysis have been carried out to investigate the reaction of RPP/Nylon6/OPS system. The reaction torgue ratio and reaction efficiency show the maximum values at 1 : 0.66 : 1 and 1 : 1 : 1 (in moles) for RPP/Nylon6/OPS. In the RPP/Nylon6/OPS blends, their mechanical properties were changed with the molar ratio of Nylon6 and showed the highest value at molar ratio of 1.5. Physical properties and compatibility of RPP/Nylon6/OPS were compared with those of PP/Nylon6/OPS. Consequently, RPP/Nylon6/OPS plays a proper role as a reactive compatibilizer to the PP/PS blend system.