• 제목/요약/키워드: softener

검색결과 65건 처리시간 0.02초

텐셀직물(織物)의 바이오-유연가공(柔軟加工)에 의한 물성변화(物性變化) (II) - 역학적(力學的) 특성(特性)의 변화(變化) - (The Bio-Softning Finish of Tencel Fabric(II) - Change of Mechanical Properties -)

  • 송화순;김인영;오수민
    • 패션비즈니스
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    • 제5권2호
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    • pp.67-72
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    • 2001
  • Tencel fabric was treated with cellulase and softener. And then Mechanical properties were investigated. Basic characteristic values of clothing wearing were calculated. With the treatment of cellulase and softener treatment, WT, RT, LC, WC, RC of mechanical characteristics were increased, and G, 2HG, 2HG5, B, 2HB were decreased. B/W, $\sqrt[3]{B/W}$, $\sqrt{2HB/W}$, 2HB/B, W/T of Basic characteristic values of clothing wearing were decreased. WC/W, WC/T were increased, Therefore, drapability, crease resistance, pressing softness, air content were improved. In consideration of mechanical characteristics and basic characteristic values of clothing wearing depending on the softener, values of WT, WC/W, WC/T were bigger with the treatment of epoxy and snow softener than with the treatment of cation and blend softener. LC, WC, RC, B/W, $\sqrt[3]{B/W}$, $\sqrt{2HB/W}$, 2HB/B, W/T were bigger with the treatment of cation and blend softener than with the treatment of epoxy and snow softener. Thereofre, with the treatment of epoxy and snow softener, drapability, crease resistance, air content were improved. With the treatment of cation and blend softener, pressing softness were improved.

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세탁수처리제가 편성물의 역학적 특성치에 미치는 영향 (Effect of Aftertreatments for Washing on Mechanical Properties of Knitted Fabrics)

  • 김희은
    • 한국의류산업학회지
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    • 제3권2호
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    • pp.174-179
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    • 2001
  • This study investigated the effect of aftertreatments such as using the softener or starch on the mechanical properties of knitted fabrics. The mechanical properties of fabrics, hand value(HV) and total hand value(THV) were measured and calculated by the KES-F system. The main results are as follows: The values of tensile energy(WT), coefficient of friction(MIU) and geometrical roughness(SMD) were increased by softener but decreased by starch treatment. However, the values of tensile linearity(LT), bending(B, 2HB), thickness(T) and weight(W) were increased by starch but decreased by softener treatment. Tensile resilience(RT) was increased not only by softener but also by starch treatment. It showed that the levels of FUKURAMI, NUMERI and SOFUTOSA were increased by the treatment of softener and the levels of KOSHI and SHARI were increased by the treatment of starch. Total hand value(THV) was lower in fabric with starch treatment than fabric with none treatment.

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백상고지로부터 표백, 버진펄프와 혼합 및 유연제 처리에 의한 고급화장지 제조 (Manufacture of High Quality Premium Tissue from White Ledger by Bleaching, Blending with Virgin Pulp and the Addition of Softeners)

  • 고경무;남원석;백기현
    • 펄프종이기술
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    • 제34권4호
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    • pp.30-36
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    • 2002
  • This research was conducted to investigate the feasibility of using deinked pulp of white ledger(DIP) for the manufacture of high quality premium tissue. The three types of tissues were prepared using the softener treated bleached DIP, softener treated mixed pulp of unbleached DIP and virgin pulp, and untreated mixed pulp of bleached DIP and virgin pulp, respectively, and their tensile index. softness, and brightness were measured and compared. The bulk and surface softness increased only slightly by the addition of softener(0.2% mineral oil) into the bleached DIP. The tensile index was decreased by 15∼30%, and the brightness was the range of 86% to 87% ISO. The softener(0.2∼0.8% mineral oil or dialkyl imidazoline) treatment of mixed pulp of unbleached DIP and virgin pulp Improved the bulk and surface of tissue considerably. However, the brightness was low as 85% ISO or below. Although the softness of the tissue made from bleached DIP blended with virgin pulp was the lowest among three types of tissues evaluated, its tensile index was the highest and brightness was 87∼88% ISO. Based on the results, it may be predicted that the bleached DIP blended with virgin pulp is the best raw material for the manufacture of high quality premium tissue if softener treatment is applied to mixed pulp, because the softness can be improved by the addition of softener. In general, the softness of tissue was improved with the increase in the amount of softener: However, the tensile index inversely proportional to the amount of softener added. Dialkyl imidazoline was more effective than mineral oil with respect to the improvement in softness, even though the loss in tensile index was severe with the treatment of dialkyl imidazoline.

Enhancing the Moisturizing Ability of the Skin Softener using Nanoemulsion Based on Phospholipid Liposome

  • Lee, Jinseo;Park, Su In;Heo, Soo Hyeon;Kim, Miok;Shin, Moon Sam
    • International Journal of Advanced Culture Technology
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    • 제8권1호
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    • pp.236-242
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    • 2020
  • In this paper, we present the improvement in low moisturizing ability and stability that existing skin softeners have due to the low oil content, by developing skin softener using nanoemulsion of phospholipid liposome, based on the properties of nanoemulsion in cosmetic formulation. In this study, two types of oil; dimethicone (DC 200/6cs) or medium chain triglyceride (MCT), and two kinds of lecithin; unsaturated or saturated were respectively applied to produce nanoemulsion. In the particle size analysis of nanoemulsion, the droplet size of nanoemulsion containing DC200/6cs and unsaturated lecithin was the smallest, and all nanoemulsion showed high stability in the measurement of zeta potential. Therefore, with the smallest particle size and high stability, moisture contents and trans epidermal water loss(TEWL) were measured using the skin softener of DC200/6cs and unsaturated lecithin contained nanoemulsion, and the measurement was compared with the non-oil skin softener and the skin softener with only small amount of oil. The results showed that the moisture content of the skin softener using nanoemulsion increased greatly than other two skin softeners, showing high hydration ability and water retention capacity, and TEWL decreased greatly, therefore preventing the evaporation of moisture from the skin. As a result, the oil content and stability of the skin softener was improved by utilizing nanoemulson based of phospholipid liposome, and it is expected to be used in various ways in cosmetic industry.

면섬유용 내구성유연제의 제조 및 유연특성 (Preparation and Characterization of Durable Softener for Cotton Fiber)

  • 이애리;김성래;함현식;박홍수
    • 한국응용과학기술학회지
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    • 제20권4호
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    • pp.341-345
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    • 2003
  • Organic acid salt of fatty polyamide (DDDT) and acrylate of fatty carbamide (DDTCA) were synthesized as a main component for the softener. O/W type non-ionic softener (NSC) was prepared by blending DDDT and DDTCA with beef tallow, lanolin anhydride. polyoxyethylene(7) stearyl ether, and polyoxyethylene(50) oleyl ether. After treatment of NSC to all cotton fabrics, the physical properties such as tear strength, crease recovery, and flexing abrasion resistance were measured. As a result of the measurement, NSC was proved to be durable non-ionic softener with good softness.

은행나무추출액과 실리콘유연제를 처리한 침장용 텐셀 자카드 직물의 역학적 특성변화와 감성평가 (Mechanical properties and sensibility of Tencel Jacquard fabrics treated with Ginkgo biloba extract and silicon softener)

  • 장연주;이정순
    • 감성과학
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    • 제13권2호
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    • pp.327-336
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    • 2010
  • 본 연구에서는 텐셀 자카드 직물에 은행나무 추출물(ginkgo biloba extract)과 실리콘 유연제(silicon softener)를 처리 할 때 실리콘유연제를 동시에 처리하는 방법과 은행나무추출액 처리하고 난 후에 다른 bath에서 실리콘유연제를 연속적으로 처리하는 방법 중 어느 것이 더 촉감이나 선호도에 더 영향을 주는지를 찾아내고자 하였다. 따라서 텐셀 자카드 직물에 은행나무추출액과 실리콘유연제를 처리하여 KES-FB system을 통하여 역학적 특성 및 객관적 태의 변화를 살펴보고, 침장용 직물이 가지는 개별 감각 및 종합 감각의 주관적 감성을 평가하였다. 이밖에도 침장용 직물에서 중요하게 여겨지는 소비자의 개별감각 요소를 평가하여 침장용 직물개발의 기초자료를 마련하고자 하였다. 텐셀 자카드 직물에 은행나무추출액과 실리콘유연제를 처리하게 되면 인장특성인 EM, WT, RT는 증가하여 신축성이 있고 형태안정성이 좋아지며, 인장특성 전단특성이 감소하여 유연성이 증가하고, 무게와 두께가 증가로 부피감이 커져, THV는 증가하였다. 주관적 감성 평가 결과 개별감각 중 부드러움, 따뜻함, 탄력감, 부피감은 증가하고 거침은 감소하는 것으로 평가하였다. 또한 부드러움, 부피감, 따듯함을 침장용 직물이 갖는 중요한 개별감각 요소로 평가하였다. 은행나무추출액과 실리콘유연제를 처리할 경우 촉감이 좋아지고 선호도가 높아지는 것으로 평가되었다.

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초음파 영상용 플라스틱 기반의 팬텀제작 및 특성 분석 (Analysis of Properties and Phantom Design Based on Plastic Hardener and Softener for Ultrasonic Imaging)

  • 이균정;박동희;신태민;서종범
    • 대한의용생체공학회:의공학회지
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    • 제29권4호
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    • pp.302-306
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    • 2008
  • Plastic hardener and softener based ultrasound phantoms were made in various constitutions and their acoustic properties were measured. Speed of sound is approximately $1.4\;mm/{\mu}sec$ in all the phantoms, which is about 7% less than that of in soft tissue. Attenuation coefficient is strongly dependent on the ratio between hardener and softener. In order to achieve the tissue level attenuation (0.5 dB/cm/MHz), 60% of hardener or less is required. The synthesized phantoms can be preserved for more than 6 months without structural degradation.

방향가공시 유연제 전처리에 의한 면편성물의 태변화 (Effect of Pretreatment by Softener on the Cotton Knit Handle in Fragrant Finishing)

  • 김혜림;송화순
    • 한국의류학회지
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    • 제28권3_4호
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    • pp.521-526
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    • 2004
  • The fragrant fabrics are prepared by the attaching microcapsules using acrylic binder. To improve the handle of fragrant fabrics, pretreatment by softener is suggested. The durability of fragrant fabrics and the change of their handle are investigated. It is carried out One-way ANOVA and Duncan test to determine bending properties, shear properties, surface properties of untreated, SO-MC and BI-MC by Kawabata system. BI-MC shows significant differences in B and 2HB. SO-MC shows significant differences in G and 2HG. It turned out the pretreatment by softener mitigated the effect of binder and makes fabrics softer than untreated fabrics.

피브릴화 조절을 통한 다양한 감성의 텐셀소재 개발(제1보) -가교체 처리를 통한 피브릴화 조절효과- (Development of Surface Modified Tencel Fabrics through the Control of Fibrillation(Part I) -Fibrillation Control Effect through Crosslinking Agent Treatment-)

  • 신윤숙;손경희
    • 한국의류학회지
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    • 제25권1호
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    • pp.144-153
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    • 2001
  • The effect of crosslinking on hand of the cellulase treated Tencel fabrics was investigated. Tencel fabrics were crosslinked with DMDHEU, mechanically prefibrillated, hydrolyzed by cellulase, and treated with softener. The treated fabrics were characterized by add-on, weight loss, DP rating, WRA, strength, SEM analysis and hand measurement. As DMDHEU concentration increased, weight loss of DMDHEU/cellulase treated fabrics decreased. However, cellulase treatment decreased DP properties and strength retention. Less fibrils were observed in the cellulase treated fabrics after DMDHEU treatment than the cellulase treated ones. It was confirmed that crosslinking with DMDHEU treatment was effective to control fibrillation. At 5% of DMDHEU concentration, DMDHEU/cellulase treated fabrics showed softer, smoother and bulkier hand compared with other treated fabrics. Among mechanical properties, bending and shearing properties were decreased progressively through DMDHEU, cellulase, and softener treatment. DMDHEU treatment contributed to impart resilience, cellulase treatment to bulkiness and softener treatment to smoothness. As the treatment of DMDHEU, cellulase, and softener progressed NUMREI, FUKURAMI, and THV increased with the exception of KOSHI.

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