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Foaming polypropylene prepared by a novel one-step silane-grafting and crosslinking method

机译:一种新颖的一步式硅烷接枝交联法制备的发泡聚丙烯

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摘要

High-melt-strength polypropylene (HMSPP) used for foaming was prepared by a novel one-step of silane grafting and crosslinking of a normal isotactic polypropylene (IPP) in a twin-screw extruder. The HMSPP has been achieved using vinyl unsaturated silane with long chain as a grafting monomer, benzoyl peroxide (BPO) as an initiator, styrene as a coagent, trace amounts of water as a catalyst for crosslinking. The function of each agent in the formulation for the IPP modification was investigated. The results indicate that all of the agents are effective and necessary, and the proportions of the components, especially BPO, highly influenced the melt flow rate (MFR) of the HMSPP. Due to the presence of traced water in the system, the crosslinking of IPP is accompanied by the grafting of silane, which leads to a one-step production of crosslinked IPP. A high-qualified foam with uniform, closed and independent cells were fabricated from the HMSPP with appropriate MFR. With the decrement of the MFR of the HMSPP, the average size of the cells and the number of the unclosed cells decrease while the density of the cells increases.
机译:用于发泡的高熔体强度聚丙烯(HMSPP)是通过新颖的一步法在双螺杆挤出机中进行硅烷接枝和普通等规聚丙烯(IPP)交联而制备的。使用具有长链的乙烯基不饱和硅烷作为接枝单体,过氧化苯甲酰(BPO)作为引发剂,苯乙烯作为助剂,微量水作为交联催化剂可以实现HMSPP。研究了每种试剂在IPP改性制剂中的功能。结果表明,所有试剂都是有效和必要的,而且组分(尤其是BPO)的比例对HMSPP的熔体流动速率(MFR)有很大影响。由于系统中存在微量水,IPP的交联伴随着硅烷的接枝,从而一步一步生产出交联的IPP。由具有适当MFR的HMSPP制造出具有均匀,闭合和独立气泡的高质量泡沫。随着HMSPP的MFR的降低,孔的平均大小和未闭合孔的数量减少,而孔的密度增加。

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