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      초미세 발포 사출 시 핵 생성장치를 이용한 셀 크기의 변화 = Cell morphology of microcellular foaming injection molding products with pressure drop rate

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      https://www.riss.kr/link?id=A76214570

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      다국어 초록 (Multilingual Abstract)

      The industries use polymer materials for many purposes for they have many merits. The costs of these materials take up too great a proportion of the overall cost of products that use these materials as their major material. It is advantage for polym...

      The industries use polymer materials for many purposes for they have many merits. The costs of these materials take up too great a proportion of the overall cost of products that use these materials as their major material. It is advantage for polymer industries to reduce these costs. The microcellular foaming process was developed in the early 1980s to solve this problem and proved to be quite successful.
      Microcellular foaming process uses inert gases such as CO₂, N₂. As these gases solve into polymer matrices, many properties are changed. The microcellular foaming process makes the glass transition temperature of polymers to low, and diminish the residual stress of polymer matrices. Besides, the microcellular foaming process has several merits, impact strength elevation, thermal insulation, noise insulation, and raw material saving etc. This characteristic of microcellular foaming process has influenced by cell morphology. The cell morphology means cell size and cell density. The cell morphology has influenced by many factors. The examples of factor are pressure drop rate, foaming temperature, foaming time, saturation pressure, saturation time etc. Among their factors, pressure drop rate is the most important factor for cell morphology in microcellular foaming injection molding process. This paper describes about the cell morphology change in accordance with the pressure drop rate of microcellular foaming injection molding process.

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      목차 (Table of Contents)

      • ABSTRACT
      • 1. 서론
      • 2. 이론
      • 3. 실험
      • 4. 결론
      • ABSTRACT
      • 1. 서론
      • 2. 이론
      • 3. 실험
      • 4. 결론
      • 후기
      • 참고문헌
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