• 제목/요약/키워드: 열가소성 폴리우레탄

검색결과 46건 처리시간 0.019초

FDM 3D 프린팅 기술로 제작된 3D 프린팅 레이스/보일 복합직물의 역학적 특성 및 세탁성 평가 (Evaluation of Mechanical Properties and Washability of 3D Printed lace/voil Composite Fabrics Manufactured by FDM 3D printing Technology)

  • 이선희
    • 한국의류산업학회지
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    • 제20권3호
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    • pp.353-359
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    • 2018
  • In this study, fused deposition modellig(FDM) 3D printing technology has been applied directly to polyester voil fabric to produce 3D printed lace/voil composite fabrics. A stereolithograpy(STL) file with a lace type 3D modelling under the various thickness were prepared and transformed into a g-code file using a g-code generator. The extrusion conditions for FDM 3D printing were controlled by 50mm/s of nozzle speed, $235^{\circ}C$ of nozzle temperature, $40^{\circ}C$ of heating bed temperature. 3D printed lace/voil composite fabriscs manufactured by 3D printing based on FDM using a thermoplactic polyurethane(TPU) filaments were obtained. To evaluate the mechanical properties and washability of the fabricated 3D printed lace/voil composite fabric, KES-FB system test, washing fastness test and dry cleaning resistance test were conducted. As 3D printing thickness increased, KOSHI, NUMERI, and FUKURAMI of 3D printed lace/voil composite fabric increased. From the results of the primary hand value test, 3D printed lace/voil composite fabrics were confirmed to be applicable to women's summer garments. As a result of the washability and dry cleaning resistance test of the 3D printed lace/voil composite fabrics, all samples were graded 4-5.

TPU 재질을 적용한 다목적 고액분리 모듈의 여과판 구조해석 (Structural Analysis of TPU Membrane Plate in Multi-purpose Module for Solid-liquid Separation)

  • 정희숙;오두영;고동신;송형운
    • 유기물자원화
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    • 제25권1호
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    • pp.5-13
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    • 2017
  • 기존 국내 여과판의 재질은 주로 polypropylene 소재의 여과판을 사용하였으며 그 이유는 성형성이 좋고, 가격이 저렴하며 매우 보편적으로 보급된 소재이기 때문이다. 그러나 고압에 의해 한번 뒤틀려진 polypropylene 소재 여과판은 재사용이 어려우며 가압형 고액분리모듈의 연속 운전에 문제를 야기할 수 있다. 따라서 기존 polypropylene 소재보다 성능이 뛰어난 TPU(Thermoplastic Poly Urethane) 소재개발을 위해 새로운 소재에 대해 설계된 여과판의 구조적 안정성을 해석적 기법을 통해 예측하였다. 20 bar의 압력하중 하에서 TPU를 적용한 여과판은 최대 변형량이 27.85 MPa로 나타났으며 이 값은 TPU 응력-변형률(Stress-Strain) 한계치 이하 값으로 여과판 재질에 대한 구조적 안정성을 확보하였다.

신발용 직물의 투습방수 및 내열성 가공 (Water Vapour Permeable/Water Resistant and Heat Resistant Finishing of Footwear Fabric)

  • 이재호;최해욱
    • 접착 및 계면
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    • 제7권3호
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    • pp.16-25
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    • 2006
  • 내열성 및 투습방수기능을 가진 신발용 직물 및 부직포를 제조하기 위하여 스크린 방식으로 공정조건을 검토하고 투습방수 필름을 라미네이팅 한 후, 최종제품의 물성을 평가하였다. 결과는 다음과 같다. 열가소성 핫 멜트와는 달리 반응형 폴리우레탄 핫 멜트는 작업 이후에 적정한 내열성을 보유하는 것으로 나타났다. 최적의 용융접착 공정조건은 다음과 같다 ; 드럼 온도 $95^{\circ}C$, 호스 온도 $97^{\circ}C$, 공급파이프 온도 $100^{\circ}C$, 스크린 온도 $105^{\circ}C$이고, opposite roller의 압력은 $1kgf/cm^2$, laminating roller의 압력은 $3kgf/cm^2$이며, 가공속도는 15 m/min이다. 투습도는 필름의 두께가 증가함에 따라 투습도는 감소하였으나, 내수도는 증가하였고, 공기투과도는 필름의 영향이 지배적이었다.

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

  • 한유정;김종준
    • 패션비즈니스
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    • 제23권2호
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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.

대전방지 열가소성폴리우레탄 M/B를 이용한 코팅사 제조 조건이 대전방지성에 미치는 영향 (The Effect of Manufacturing Conditions of Coated Yarn Using Anti-Static Thermoplastic Polyurethane M/B on Anti-Static Resistance)

  • 정예담;권지은;권선민;채시현;조현제;김우석;김미경;김종원
    • 한국염색가공학회지
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    • 제35권1호
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    • pp.20-28
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    • 2023
  • In this study, TPU resin for coating was prepared by varying the mixing ratio of antistatic TPU and recycled TPU to manufacture permanent antistatic materials. The coated yarn was prepared by coating on the nylon yarn, and then the thermal, rheological, mechanical properties and antistatic properties were analyzed. In addition, antistatic properties and durability were confirmed after manufacturing UD fabrics using coated yarns. The mixing ratio of antistatic TPU and recycled TPU was most appropriate at 4:6, and the antistatic property had a surface resistance of 2.20 × 109 Ω and a static charge of 398 V. In the coating process, the coating speed was most appropriate at 0.21 m/s, and the surface resistance of the UD fabric manufactured with the coated yarn manufactured under this condition was 6.80 × 109 Ω and the static charge was 484 V. The UD fabric had a surface resistance of 7.21 × 109 Ω and a static charge of 517 V after washing 10 times, and it was confirmed that the permanent antistatic property was excellent.

TPU 소재를 이용한 3D 프린팅 로봇 손의 제어기 설계에 관한 연구 (A Study on the Controller Design of 3D Printed Robot Hand using TPU Material)

  • 최영림;박예은;김종욱;이선희
    • 한국의류학회지
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    • 제48권2호
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    • pp.312-327
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    • 2024
  • In this study, a rehabilitation 3D printed wearable device was developed by combining an assembly-type robot hand and an integral-type robot hand through fused deposition 3D printing manufacturing with various hardness TPU (Thermoplastic Polyurethane) filaments. The hardware configuration of the robot hand includes a controller designed with four motors, one small servo motor, and a circuit board. In the case of the assembly-type robot hand model, a 3D printed robot hand was assembled using samples printed with TPU of hardness 87A and 95A. It was observed that TPU with a hardness of 95A was suitable for use due to shape stability. For the integrated-type robot hand model, the external sample using TPU of hardness 95A could be modified through a cutting method, and the hardware configuration is the same as the assembly-type. The system structure of the 3D printed robot hand was improved from an individual control method to a simultaneous transmission method.Furthermore, the system architecture of an integrated 3D printed robotic hand rehabilitation device and the application of the rehabilitation device were developed.