Developing Polypropylene Bonded Hindered Phenol Antioxidants for Expanding Polypropylene Applications in High Temperature Conditions

Gang Zhang, Changwoo Nam, Mike Chung Tc
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引用次数: 4

Abstract

Polypropylene (PP) represents about a quarter of commercial plastics produced around the world. Despite its huge commercial success, PP polymer is not suitable for the applications that require long-term exposure to high temperatures (>80°C), due to its chemical and physical stability. The PP chain is prone to the oxidative chaindegradation and exhibits a relatively low material softening temperature. This paper discusses a new research approach by developing the PP-bonded hindered phenol (PP-HP) antioxidants to address this scientifically challenging issue. We have investigated two PP-HP structures, one with two methylene units adjacent to the hindered phenol group (HP-L) and one without this spacer (HP-S). In general, PP-HP polymers are advantaged with the ability to incorporate a suitable concentration of HP antioxidant groups with homogeneous distribution along the polymer chain, which provide effective protection to the PP chains from oxidative degradation. In addition, the specific PP-HP-L structure can also engage in a facile crosslinking reaction to form a 3-D network during the oxidation reaction. In one accelerated oxidation test in air at 190-210°C, the regular commercial PP polymer (containing common antioxidants and stabilizers) degrades within a few minutes; a PP-HP-L copolymer with about 1 mol% HP-L group shows almost no detectable weight loss after 24 hrs. In an ASTM endurance test at 140°C in air, the commercial PP shows 1% weight loss within about 10 days. On the other hand, the PP-HP-L polymer lasts for more than 30 years. Overall, the experiment results present the potential of expanding PP applications into a much higher temperature range (>140°C) under oxygen oxidative environments
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聚丙烯键合受阻酚抗氧剂的研制及其在高温条件下扩大聚丙烯应用
聚丙烯(PP)约占全球商业塑料产量的四分之一。尽管在商业上取得了巨大的成功,但由于PP聚合物的化学和物理稳定性,它不适合需要长期暴露在高温(>80°C)下的应用。PP链容易发生氧化链降解,材料软化温度较低。为解决这一具有科学挑战性的问题,本文探讨了一种新的研究方法,即开发PP-HP键合受阻苯酚(PP-HP)抗氧化剂。我们研究了两种PP-HP结构,一种是在受阻苯酚基团附近有两个亚甲基单元(HP-L),另一种是没有这种间隔(HP-S)。一般来说,PP-HP聚合物具有在聚合物链上均匀分布合适浓度的HP抗氧化基团的能力,可以有效地保护PP链免受氧化降解。此外,特定的PP-HP-L结构还可以在氧化反应中进行容易的交联反应,形成三维网络。在190-210℃的空气加速氧化试验中,常规的商用PP聚合物(含有常见的抗氧化剂和稳定剂)在几分钟内降解;HP-L基团约为1 mol%的PP-HP-L共聚物在24小时后几乎没有可检测到的重量下降。在空气中140°C的ASTM耐久性测试中,商用PP在大约10天内失重1%。另一方面,PP-HP-L聚合物的使用寿命超过30年。总的来说,实验结果显示了在氧氧化环境下将PP应用范围扩大到更高温度范围(>140°C)的潜力
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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