{"title":"The phase transition behavior of polybutene in partial melting/polybutene/polypropylene","authors":"Enci Zhu, Ruosong Hao, Zhipeng Liu, Weixuan Shi, Tong Wu, Shicheng Zhao","doi":"10.1002/pol.20240578","DOIUrl":null,"url":null,"abstract":"<p>Polybutene (PB) is a typical polymer with various crystal forms: I, II, III, and I′. Among them, the mechanical properties of Form I PB is better but only Form II crystal can be obtained from the melt due to the kinetic advantage and then transform to Form I slowly. While the slow phase transition rate restricts its application. Partial melting is applied to accelerate the phase transition, which was studied by Flash DSC. The results indicated that the phase transition behavior during partial melting shows dependence on the isothermal crystallization temperature and 70 °C is optimal, which can reduce the phase transition time from 20 h to 200 s. As the crystallization temperature determined, stepwise crystallization was used to accelerate the phase transition. The influence of nucleating temperature and time was investigated and the results indicated that 0 °C and 2 s are the best temperature and time, respectively. With stepwise crystallization, the phase transition time was further reduced to 50 s. Moreover, stepwise crystallization can increase the content of Form I crystal from 80.0% to 98.2%. The mechanism of phase transition during partial melting was proposed according to the results, which can supplement the existing phase transition mechanism.</p>","PeriodicalId":16888,"journal":{"name":"Journal of Polymer Science","volume":"62 23","pages":"5372-5383"},"PeriodicalIF":3.9000,"publicationDate":"2024-09-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Polymer Science","FirstCategoryId":"92","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1002/pol.20240578","RegionNum":3,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"POLYMER SCIENCE","Score":null,"Total":0}
引用次数: 0
Abstract
Polybutene (PB) is a typical polymer with various crystal forms: I, II, III, and I′. Among them, the mechanical properties of Form I PB is better but only Form II crystal can be obtained from the melt due to the kinetic advantage and then transform to Form I slowly. While the slow phase transition rate restricts its application. Partial melting is applied to accelerate the phase transition, which was studied by Flash DSC. The results indicated that the phase transition behavior during partial melting shows dependence on the isothermal crystallization temperature and 70 °C is optimal, which can reduce the phase transition time from 20 h to 200 s. As the crystallization temperature determined, stepwise crystallization was used to accelerate the phase transition. The influence of nucleating temperature and time was investigated and the results indicated that 0 °C and 2 s are the best temperature and time, respectively. With stepwise crystallization, the phase transition time was further reduced to 50 s. Moreover, stepwise crystallization can increase the content of Form I crystal from 80.0% to 98.2%. The mechanism of phase transition during partial melting was proposed according to the results, which can supplement the existing phase transition mechanism.
聚丁烯(PB)是一种典型的聚合物,具有多种晶体形态:I、II、III 和 I′。其中,I 型 PB 的机械性能较好,但由于动力学优势,只能从熔体中获得 II 型晶体,然后缓慢转变为 I 型。而缓慢的相变速率限制了其应用。为了加速相变,我们采用了部分熔化的方法,并通过闪烁 DSC 对其进行了研究。结果表明,部分熔化过程中的相变行为与等温结晶温度有关,70 °C是最佳温度,可将相变时间从20小时缩短至200秒。研究了成核温度和时间的影响,结果表明 0 °C 和 2 s 分别是最佳温度和时间。此外,分步结晶还能将形式 I 晶体的含量从 80.0% 提高到 98.2%。根据研究结果提出了部分熔化过程中的相变机理,这可以补充现有的相变机理。
期刊介绍:
Journal of Polymer Research provides a forum for the prompt publication of articles concerning the fundamental and applied research of polymers. Its great feature lies in the diversity of content which it encompasses, drawing together results from all aspects of polymer science and technology.
As polymer research is rapidly growing around the globe, the aim of this journal is to establish itself as a significant information tool not only for the international polymer researchers in academia but also for those working in industry. The scope of the journal covers a wide range of the highly interdisciplinary field of polymer science and technology.