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首页> 外文期刊>Journal of Applied Polymer Science >Grafting of itaconic acid onto LDPE by the reactive extrusion: Effect of neutralizing agents
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Grafting of itaconic acid onto LDPE by the reactive extrusion: Effect of neutralizing agents

机译:通过反应挤出将衣康酸接枝到LDPE上:中和剂的作用

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摘要

Grafting of itaconic acid (IA) onto low-density polyethylene (LDPE) was performed by reactive extrusion where the initiator was dicumyl peroxide, and the neutralizing agents (NAs) were zinc oxides and hydroxides as well as magnesium oxides and hydroxides. The carboxyl groups were neutralized in molten LDPE directly in the course of acid grafting, and in prefabricated functionalized polyethylene (LDPE-g-IA). It was found that neutralizing agents introduced into the initial reaction mixture increase the yield of LDPE-g-IA while the carboxyl groups were neutralized partially or totally through chemical reactions. The physical structure of LDPE-g-IA did not in fact suffer any substantial changes. From the standpoint of neutralization activity, the NAs studied could be arranged as follows: Zn(OH)(2) > ZnO > Mg(OH)(2) > MgO. NA, added into the initial reaction mixture improved the grafting efficiency of IA onto LDPE. In case of the one-step process (neutralization simultaneously with grafting), the neutralizing effect appears stronger than that in the two-step process (neutralization of prepared LDPE-g-IA). This means that neutralization of carboxyl groups in IA was less effective when NA was introduced into LDPE-g-IA than for the case of the initial reactive mixture. Chemical neutralization of grafted IA results in products of improved resistance to thermal oxidation and thermal stability of melt. This result is of practical importance to the opportunities for widening the application range for PE modified by grafting IA, while preparing polymer blends to be compounded, processed, and used at elevated temperatures. (C) 2003 Wiley Periodicals, Inc. [References: 23]
机译:通过反应挤出将衣康酸(IA)接枝到低密度聚乙烯(LDPE)上,其中引发剂为过氧化二枯基,中和剂(NAs)为氧化锌和氢氧化物,以及氧化镁和氢氧化物。在酸接枝过程中直接在熔融的LDPE中以及在预制的官能化聚乙烯(LDPE-g-IA)中中和羧基。发现引入到初始反应混合物中的中和剂增加了LDPE-g-IA的产率,同时通过化学反应部分或全部中和了羧基。 LDPE-g-IA的物理结构实际上并未发生任何实质性变化。从中和活性的角度来看,所研究的NAs可以安排如下:Zn(OH)(2)> ZnO> Mg(OH)(2)> MgO。添加到初始反应混合物中的NA提高了IA在LDPE上的接枝效率。在一步法(与接枝同时中和)的情况下,中和效果似乎强于两步法(中和制备的LDPE-g-IA的中和)。这意味着当将NA引入LDPE-g-IA中时,IA中羧基的中和效果不如初始反应混合物。接枝IA的化学中和作用可提高产品的抗热氧化性和熔体热稳定性。该结果对于扩大通过接枝IA改性的PE的应用范围,同时制备要在高温下复合,加工和使用的聚合物共混物的机会具有实际意义。 (C)2003 Wiley Periodicals,Inc. [参考:23]

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