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The mechanical properties of low cis-butadiene modified HIPS

机译:低碳丁二烯改性臀部的力学性能

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摘要

In this paper, low cis-butadiene (LCPB) is used in the process of polymerization of HIPS to study the influence of the polymerization condition on the particle size of rubber and mechanical property. It can be discovered from the study that the particle size was increased from 300nm to 500nm with the decreasing stir. The test of mechanical property shows that with the increase of content of rubber, elongation at break and impact strength on cantilever increase, but stretching strength decreases. On condition of 100 rpm, when the content of rubber increases from 3% to 9%, elongation at break increases from 21.9% to 25.0%, stretching strength decreases from 30.5 MPa to 23.9 MPa, and the cantilever impact strength increases from 5.4KJ/m~2 to 9.3KJ/m~2. On condition of 200 rpm, when the content of rubber increases from 3% to 9%, elongation at break increases from 21.4% to 29.1%, stretching strength decreases from 28.7 MPa to 20.8 MPa, and the cantilever impact strength increases from 5.2KJ/m~2 to 8.1KJ/m~2.
机译:本文中,低碳丁二烯(LCPB)用于髋部的聚合方法中,研究聚合条件对橡胶和力学性能粒径的影响。可以从研究中发现,随着搅拌的降低,粒度从300nm增加到500nm。机械性能的试验表明,随着橡胶含量的增加,悬臂上断裂的伸长率和悬臂增加,但拉伸强度降低。上100rpm下,橡胶的增加当含量从3%至9%,断裂伸长率的增加从21.9%至25.0%,拉伸强度为30.5兆帕减小到23.9兆帕,从5.4KJ悬臂冲击强度的增加的条件/ m〜2至9.3kj / m〜2。在200 rpm的条件下,当橡胶含量从3%增加到9%时,断裂伸长率从21.4%增加到29.1%,拉伸强度从28.7MPa降低到20.8MPa,悬臂冲击强度从5.2KJ / m〜2至8.1kj / m〜2。

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