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氧化锌掺杂水合镁的合成及其对聚丙烯阻燃性能和力学性能的影响。

Synthesis of Zinc Oxide Doped Magnesium Hydrate and Its Effect on the Flame Retardant and Mechanical Properties of Polypropylene.

作者信息

Li Xue, Zhang Hongbo, Liu Xiaoyuan, Lv Zhihui, Jin Yankui, Zhu Donghai, Dang Li

机构信息

School of Chemical Engineering, Qinghai University, Xining 810016, China.

State Key Laboratory of Plateau Ecology and Agriculture, Qinghai University, Xining 810016, China.

出版信息

Polymers (Basel). 2023 Oct 28;15(21):4248. doi: 10.3390/polym15214248.

Abstract

In this work, an effective flame retardant consisting of nanoscale zinc oxide doped on the surface of hexagonal lamellar magnesium hydrate (ZO@MH) has been successfully synthesized via a hydrothermal process. Approximately 3-methacryloxypropyltrimethoxysilane (KH-570) is chosen as a modifier of ZO@MH for the purpose of enhancing the interfacial interaction between ZO@MH and the polypropylene (PP) matrix and reducing the agglomeration of ZO@MH. Afterwards, ZO@MH and KH-570 modified ZO@MH (KZO@MH) filled PP (PP/ZO@MH and PP/KZO@MH) composites are respectively prepared via the melt blending method. The flame retardant and smoke suppression properties of PP/ZO@MH and PP/KZO@MH composites are estimated by a cone calorimetry test (CCT). The peak value of the heat release rate of the PP/40KZO@MH composite is 327.0 kW/m, which is 6.1% and 31.2% lower than that of the PP/40ZO@MH and PP/40MH composites, respectively. The lowest peak values of CO and CO production, 0.008 and 0.62 g/s, also appeared in the PP/40KZO@MH composite, which are 11.1% and 10.1% lower than those of the PP/40ZO@MH composite. Analysis of char residues indicates that nanoscale ZO and modification of KH-570 improve the amount and quality of char residues, which should be the main reason for the good flame retardant and smoke suppression properties of KZO@MH. Impact strength and nominal strain at break results show that the PP matrix is toughened by ZO@MH rather than KZO@MH. Tensile properties and the quantitative interfacial interaction calculated by the Turcsányi equation both prove the reinforcement of KZO@MH on the PP matrix.

摘要

在本工作中,通过水热法成功合成了一种由掺杂在六方片状氢氧化镁表面的纳米氧化锌组成的高效阻燃剂(ZO@MH)。选用约3-甲基丙烯酰氧基丙基三甲氧基硅烷(KH-570)作为ZO@MH的改性剂,以增强ZO@MH与聚丙烯(PP)基体之间的界面相互作用并减少ZO@MH的团聚。之后,通过熔融共混法分别制备了ZO@MH和KH-570改性的ZO@MH(KZO@MH)填充的PP(PP/ZO@MH和PP/KZO@MH)复合材料。通过锥形量热试验(CCT)评估PP/ZO@MH和PP/KZO@MH复合材料的阻燃和抑烟性能。PP/40KZO@MH复合材料的热释放速率峰值为327.0kW/m²,分别比PP/40ZO@MH和PP/40MH复合材料低6.1%和31.2%。PP/40KZO@MH复合材料中CO和CO₂生成的最低峰值分别为0.008和0.62g/s,比PP/40ZO@MH复合材料低11.1%和10.1%。残炭分析表明,纳米级ZO和KH-570的改性提高了残炭的量和质量,这应该是KZO@MH具有良好阻燃和抑烟性能的主要原因。冲击强度和断裂标称应变结果表明,PP基体由ZO@MH增韧而非KZO@MH。拉伸性能以及通过Turcsányi方程计算的定量界面相互作用均证明了KZO@MH对PP基体的增强作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0faf/10648635/df97aec56fc9/polymers-15-04248-g001.jpg

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