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    1. journal of cellular plastics, 2019
      title: tertiary amine catalysts in rigid polyurethane foams: a comparative study
      authors: s. patel, j. smith
      abstract: this study highlights the unique performance of dmcha in rigid foam systems, particularly its ability to delay gelation while maintaining sufficient blowing reaction rate.

    2. polymer engineering & science, 2020
      title: kinetic analysis of blowing and gel reactions in rigid polyurethane foam systems
      authors: h. kim et al.
      abstract: the use of dmcha was found to significantly improve foam cell structure uniformity and reduce defects caused by premature crosslinking.


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    1. ÀîÎÄÌÎ, ÕÅÏþÃ÷. n,n-¶þ¼×»ù»·¼º°·ÔÚ¾Û°±õ¥Ó²ÅÝÖеĴ߻¯ÐÐΪÑо¿[j]. ¾Û°±õ¥¹¤Òµ, 2021, 34(4): 23-28.
    2. Íõ־ǿ. ²»Í¬´ß»¯¼Á¶Ô¾Û°±õ¥Ó²ÅÝÐÔÄܵÄÓ°Ïì±È½Ï[j]. »¯¹¤ÐÂÐͲÄÁÏ, 2020, 48(6): 45-49.
    3. patel, s., & smith, j. (2019). tertiary amine catalysts in rigid polyurethane foams: a comparative study. journal of cellular plastics, 55(3), 312¨C325.
    4. kim, h., lee, k., & park, j. (2020). kinetic analysis of blowing and gel reactions in rigid polyurethane foam systems. polymer engineering & science, 60(4), 789¨C801.

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