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EFFECTS OF POLYOLS AND VARIOUS ADDITIVES ON POLYURETHANE FOAM BLOWN BY DISTILLED WATER

机译:聚乙烯醇和各种添加剂对蒸馏水吹制聚氨酯泡沫的影响

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摘要

Polyurethane foam blown by CFCs has been widely used as insulator in various industries. But as these products deplete the ozone, people have attempted to develop new alternatives. So KOGAS had developed the PUF insulator blown by HCFC-141b and taken out a patent from Japan, Korea and France in 2000 year. But as HCFC-141b also depletes the ozone, KOGAS had developed the alternatives of HCFC-141b. Distilled water is one of the potential alternatives.rnRigid polyurethane foams (PUFs) were prepared from polymeric 4,4- diphenylmethane diisocyanate (PMDI), polyether polyols, 1,4-butane diol, silicone surfactant, amine catalysts, and distilled water. The density of the PUF reduced from 173.7 up to 41.7 kg/m3 with an increasing distilled water content from 0.5 up to 3.0 php (parts per hundred polyol by weight) at 0 php butane diol.rnThe results of a study on the effect of additives on the properties of the PUF showed that the cell size of the PUF reduced from 360 to 146 ㎛ as an increasing surfactant amount from 0 to 0.33 php, but the cell size did not change significantly when the amount of the surfactant exceeded 0.33 php. The reactivity on forming PUF increased with increasing catalyst and water content. Blowing catalyst promoted the blowing reaction, and gelling catalyst promoted the gelling reaction. The density and compressive strength of the PUF increased with increasing OH value and polyol functionality, but flexural strength did not always follow the same pattern.
机译:由氟氯化碳吹制的聚氨酯泡沫已在各种行业中广泛用作绝缘体。但是,随着这些产品消耗臭氧层,人们尝试开发新的替代品。因此,KOGAS研发了用HCFC-141b吹制的PUF绝缘子,并于2000年获得了日本,韩国和法国的专利。但是由于HCFC-141b也消耗了臭氧,因此KOGAS开发了HCFC-141b的替代品。蒸馏水是一种可能的选择。硬质聚氨酯泡沫(PUF)由聚合的4,4-二苯基甲烷二异氰酸酯(PMDI),聚醚多元醇,1,4-丁二醇,有机硅表面活性剂,胺催化剂和蒸馏水制得。在0 php丁二醇下,PUF的密度从173.7降低至41.7 kg / m3,蒸馏水含量从0.5升高至3.0 php(每100多元醇的重量份),增加了添加剂效果的研究结果PUF的性质的研究表明,随着表面活性剂的量从0增加到0.33php,PUF的孔尺寸从360减小到146㎛,但是当表面活性剂的量超过0.33php时,孔尺寸没有明显改变。形成PUF的反应性随催化剂和水含量的增加而增加。发泡催化剂促进发泡反应,而胶凝催化剂促进胶凝反应。 PUF的密度和抗压强度随OH值和多元醇官能度的增加而增加,但抗弯强度并不总是遵循相同的模式。

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  • 来源
  • 会议地点 Doha(QA);Doha(QA);Doha(QA);Doha(QA)
  • 作者单位

    RD Division, Korea Gas Corporation 973, Dongchun-Dong, Yeonsoo-Gu,Incheon, 406-130, South Korea,yblee@kogas.re.kr;

    RD Division, Korea Gas Corporation 973, Dongchun-Dong, Yeonsoo-Gu,Incheon, 406-130, South Korea, kevin@kogas.re.kr;

    RD Division, Korea Gas Corporation 973, Dongchun-Dong, Yeonsoo-Gu,Incheon, 406-130, South Korea, cshee@kogas.re.kr;

    Applied Rheology Center Department of Chemical and Biological Engineering Korea University, 5-Ga, Anam-Dong, Sungbuk-Gu,Seoul 136-701, Korea,kimwn@korea.ac.kr;

    Applied Rheology Center Department of Chemical and Biological Engineering Korea University, 5-Ga, Anam-Dong, Sungbuk-Gu,Seoul 136-701, Korea, wjseo@prosys.korea.ac.kr;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TE626.7;
  • 关键词

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