• Title/Summary/Keyword: Nylon 6

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Evaluation of mechanical properties and non-flammability of Nylon6 using melamine-based halogen-free flame retardant (Melamine계 난연제를 이용한 Nylon6의 난연성 및 물리적 특성 평가)

  • Kim Dong-Hak;Ryu Kwan-Suk;Son Young-Gon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.4
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    • pp.743-748
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    • 2006
  • We investigated the flame retardancy and the mechanical properties of Nylon6 by using melamine-based halogen-free flame retardants(melamine cyanurate:MC-100 and melamine phosphate:MP-100). We chose the UL-94 method for flame retardancy and measured the tensile strength, flexural strength, flexural modulus by using UTM and impact strength by using Izod impact tester. We also tested the effect of nano-clay on flammability and mechanical properties. We obtained the V0 grade when the concentration of flame retardant was over 5 wt%. The tensile strength and flexural strength decreased and flexural modulus increased with the concentration of both flame retardant systems. The results showed that MC-100 system was better than MPP-100 system. Because of poor dispersion, we did not obtain the synergistic effect of nano-clay.

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Concentration Effect of Silane Coupling Agents with Chloropropyl End Group on the Interfacial Characteristics of Glass/Nylon 6 Composites (유리섬유/나일론 6 복합재료의 계면특성에 미치는 Chloropropyl 말단기를 가진 실란결합체 농도의 영향)

  • Cho, Donghwan;Yun, Suk Hyang;Bang, Dae-Suk;Kim, Junkyung;Lim, Soonho;Park, Min
    • Journal of Adhesion and Interface
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    • v.5 no.1
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    • pp.21-28
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    • 2004
  • In this work, glass fiber/nylon 6 and woven glass fiber/nylon 6 composites have been fabricated using glass fiber reinforcements sized with 3-chloropropyltrimethoxysilane(CTMS) having a chloropropyl organo-functional group in the molecular chain end. The interfacial shear strength of glass fiber/nylon 6 composite was measured using a single fiber microbonding test and the interlaminar shear strength and the storage modulus of woven glass fabric/nylon 6 composites were measured using a short-warn shear test and a dynamic mechanical analysis, respectively, informing the effect of the concentration of CTMS on the properties. With increasing CTMS concentration, the interfacial properties of the composites were improved. The results on the interfacial shear strength, interlaminar shear strength, interlaminar failure pattern, and storage modulus with varying the CTMS concentration agree with each other.

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A Study on the Tensile Properties and Impact Behavior of Polyurethane/Nylon 6 Melt Blends (폴리우레탄/나일론 6 용융블렌드의 인장특성 및 충격거동에 관한 연구)

  • 지동선;김지혜;윤철수
    • Polymer(Korea)
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    • v.26 no.4
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    • pp.483-491
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    • 2002
  • Polyurethane (PU)/nylon 6 blends were prepared by melt blending with Haake Rheomix at $250^{\circ}C$. The compositions of PU/nylon 6 blends were 10/90, 20/80, 30/70, 40/60, and 50/50 (wt%). The effects of PU contents and blending time on the crystal structure, tan $\delta$, the tensile properties, and the impact behavior were investigated by means of WAXD and DMA, etc. The crystalline diffraction peaks are broadened, and their intensities are reduced with increasing PU contents and blending time. The glass transition temperature, the tensile strength, and the tensile modulus of the blends are also decreased and the elongation at break is increased. The influence of PU content on the crystal structure, tan 3, and the tensile properties of PU/nylon 6 blends is more significant than that of blending time. The impact strength of PU/nylon 6 (10/90 wt%) blends measured at 20 and $-35^{\circ}C$ could be greatly improved.

Effect of Various Sizing Agents on the Properties of Nylon6/Carbon Fiber Composites Prepared by Reactive Process (다양한 사이징제가 반응중합에 의해 제조된 나일론 6/탄소섬유 복합체의 물성에 미치는 영향)

  • Park, Ha-Neul;Lee, Hak Sung;Huh, Mongyoung
    • Composites Research
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    • v.31 no.6
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    • pp.299-303
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    • 2018
  • In order to improve the interfacial bonding force and reaction polymerization degree of the carbon fiber reinforced nylon 6 composite material, the surface of the existing epoxy-sizing carbon fiber was desized to remove the epoxy and treated with urethane, nylon and phenoxy sizing agent, was observed. The interfacial bond strength of the resized carbon fiber was confirmed by IFSS (Interfacial Shear Strength) and the fracture surface was observed by scanning electron microscope. The results showed that the interfacial bonding strength of the carbon fiber treated with nylon and phenoxy sizing agents was higher than that of urethane - based sizing. It has been found that the urethane - type resizing carbon fiber has lower interfacial bonding strength than the conventional epoxy - sizing carbon fiber. This result shows that the interfacial bonding between carbon fiber and nylon 6 is improved by removing low activity and smoothness of existing carbon fiber.

Dyeing Properties of Nylon Fabric with Reactive Dyes Having Different Reactive Group

  • Lee, Byung-Sun;Lee, Jin-Ah;Lee, Kwon-Sun;Park, Jong-Ho;Kim, Sung-Dong
    • Textile Coloration and Finishing
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    • v.18 no.5 s.90
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    • pp.1-7
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    • 2006
  • The dyeing properties of the several reactive dyes possessing different types of the reactive group on nylon 6 fabric have been investigated. Dyeing of nylon fiber with commercial reactive dyes was dependent on the dye bath pH. As pH increased, the extent of exhaustion decreased due to the deprotonation of the amino end group. But, the extent of fixation increased because of the enhanced reactivity with nylon fiber. It was found that all reactive dyes could be applied to nylon 6 reasonably at pH 5-6. But, the conflicting requirements of dye exhaustion and covalent bond formation limited the extent of fixation efficiency. The best method to improve the extent of the fixation efficiency of the reactive dyes was the conversion of sulphatoethylsulphone group to vinylsulphone group before dyeing with trisodium phosphate. The converted Supra type reactive dye gave the highest extent of fixation efficiency, which was about 90%.

A Study on the Mechanical Properties and Color Fastness of Polypropylene Knit (폴리프로필렌 편성물의 역학적 성능과 염색견뢰도에 관한 연구)

  • Kwon, Myoung-Sook
    • Journal of the Korean Society of Costume
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    • v.58 no.1
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    • pp.1-8
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    • 2008
  • The purpose of this study was to investigate the mechanical properties and hand values of polypropylene knit and to analyze its color-fastness for light, laundering and abrasion, comparing to nylon and polyester knits. The results of this study were as follows: 1. Polypropylene stretched more with less force than nylon and polyester and its elastic recovery and shape stability were better than nylon and polyester. 2. Polypropylene was more flexible than nylon and polyester. 3. Polypropylene stretched more easily for shearing but its recovery from shearing was less than nylon and polyester. 4. Polyester had smoother surface than nylon and polyester. 5. Polypropylene was compressed more easily than polyester with less force but less than nylon. Its recovery from compression was more than nylon and polyester. 6. Polypropylene had lower KOSHI and SHARI values and higher FUKURAMI value than nylon and polyester. It had better T.H.V. value than nylon but less than! polyester. 7. Color fastness of polypropylene for lanudering, light, and abrasion in wet and dry conditions was good except polypropylene dyed with red color.

Thermal Comfort and Tactile Wearing Performance of Wool/nylon Fabrics for Tra-biz Garment (울/나일론 tra-biz 의류용 직물 소재의 열적 쾌적성과 착용특성)

  • Kim, Hyun Ah
    • Fashion & Textile Research Journal
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    • v.18 no.6
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    • pp.878-888
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    • 2016
  • In this study, wool/nylon(50/50%) blend yarn and its fabrics for tra-biz(complex word of travel+business) garment were prepared, and its wear comfort characteristics were investigated through thermal manikin and human-body wearing experiment. In addition, tactile wearing performance from fabric mechanical properties and the dimensional stability and the pilling of the fabric specimen during wearing and dry-cleaning were measured and compared with those of wool 100% fabric specimen. Heat keepability of the wool/nylon(50/50%) blend fabric by thermal manikin experiment was superior than that of wool 100% fabric, this result was verified with human-body wearing experiment and its result coincided well with this experimental result. Tactile wearing performance of the wool/nylon(50/50%) fabric from fabric mechanical properties measured by FAST system was better than that of the wool 100% fabric. The dimensional stability of the wool/nylon(50/50%) fabric was more stable than that of the wool 100% fabric. Because relaxation shrinkage was lower and hygral expansion of wool 100% fabric was more high. However, the breathability and pilling property of the wool/nylon(50/50%) fabric were inferior than those of the wool 100% fabric. The possibility of application for tra-biz garment of wool/nylon(50/50%) blend fabric was observed because of good heat keepability, tactile wearing performance and washing fastness.

Dyeing Properties of Nylon 6 Ultramicrofiber (나일론 6 초극세 섬유의 염색성)

  • ;;;Tomiji Wakida
    • Textile Coloration and Finishing
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    • v.14 no.6
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    • pp.319-327
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    • 2002
  • Nylon 6 ultramicrofiber(UMF, monodenier 0.074d) and regular staple fiber(monodenier 2.05d) were dyed with acid and disperse dyes to investigate the effect of the difference of the fiber fineness. Also X-ray diffraction pattern, birefringence, DSC thermogram, moisture regain and water absorption of these fibers are measured. The dyeing rate of nylon UMF with acid dyes is increased compared with that of regular fiber, but not increased for disperse dyes. Also the saturation dye uptake of UMF with acid dyes is higher than that of regular fiber, while it is unchanged for disperse dyes. The moisture regain of UMF is similar to the regular fiber, whereas the water absorption of UMF is two times th그n that of the regular fiber. The crystallinity percentage of UMF is higher than that of regular fiber.

Effect of Heat Treatment on Dyeing and Physical Properties of Nylon 6 Ultramicrofiber (초극세 나일론 6 섬유의 염색성 및 물성에 미치는 열처리의 영향)

  • 정동석;이두환;이문철
    • Textile Coloration and Finishing
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    • v.14 no.6
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    • pp.328-334
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    • 2002
  • Nylon 6 staple ultramicrofiber(UMF, 0.074) and regular staple fiber (Regular, 2.0d) were annealed at In, 130, 160 and $180^\circ{C}$ under tension free for 10 min and U min. The treated fibers were dyed with Acid Red 18 and Blue n3. They were adjusted at PH 5.0 of dye bath in buffer solution of $CH_3COOH/CH_3/COONa(0.1mo1/1)$. Liquor ratio was kept at 1000:1. Dyeing rate of UMF annealed at $100^\circ{C}$ was decreased, but was increased for regular nylon. Also dye equilibrium of UMF at $100^\circ{C}$ was increased for Acid Red 18, but was decreased for Acid Blue 83. The intensities of X-ray diffraction peaks of UMF increased with increasing annealing temperature. Also the crystallinity of heat-sotted fibers by DSC thermogram was well agreed with the tendency of density Amino end group, moisture regain and water absorbency were decreased with increasing annealing temperature.

A Study on Synthesis and Mechanical Properties of Wax-Impregnated Nylon 6 (왁스(wax) 함침형 나일론 6의 합성과 그의 기계적 성질에 관한 연구)

  • 강석춘;정대원
    • Transactions of the Korean Society of Automotive Engineers
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    • v.7 no.7
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    • pp.268-277
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    • 1999
  • In order to make an advanced dry-friction engineering material, wax-impregnated nylons were synthesized by anionic polymerization of $\varepsilon$-caprolactam in the presence of apraffin wax. DNX-125S, which has lowest melting point among four different kinds of waxs investigated, showed excellent miscibiility with $\varepsilon$-carprolactam and no effect on the polymerization reaction. Five different kinds of wax-impregnated nylons from of DNW-125S content 0% to 8% were synthesized and tested. Among the samples, wax-free nylon has the highest yield and tensile strength and hardness, while the specimen with2% wax has the largest elongationi and energy absorption to break. The wax-impregnated nylon with a wax content 6% showdd the smallest friction coefficient under slow sliding speed and low load. Bus as the sliding speeds were increased to high, thespcieimen with 8% wax has better friction property.

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