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首页> 外文期刊>Journal of Applied Polymer Science >Mechanical, Vulcametric, and Thermal Properties of the Different 5-ethylidene 2-norbornene Content of Ethylene-Propylene-Diene-Monomer Vulcanized with Different Types and Compositions of Peroxides
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Mechanical, Vulcametric, and Thermal Properties of the Different 5-ethylidene 2-norbornene Content of Ethylene-Propylene-Diene-Monomer Vulcanized with Different Types and Compositions of Peroxides

机译:不同类型和成分的过氧化物硫化的乙烯-丙烯-二烯-单体的不同5-亚乙基2-降冰片烯含量的机械,体积和热学性质

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摘要

Ethylene-propylene-diene-monomer (EPDM) rubber is an important commercial polymer. The vulcanization process significantly changes its thermal, mechanical, and vulcametric properties. This study was carried out to find optimum formulation of EPDM composite for a better application in automotive industry. Sixteen EPDM polymer samples having different 5-ethylidene 2-norbornene (ENB) and ethylene contents were vulcanized with different types and compositions of peroxide and coagents. The mechanical and vulcametric properties of these samples were measured and compared. The type of peroxide, coagent, and EPDM grade affected the mechanical, thermal, and vulcametric properties of the EPDM rubber to some extend. Use of aromatic peroxide and coagent increased the thermalstability slightly. Mechanical properties were changed very slightly with the change of peroxide type for the same content of peroxide and coagent. Scorch time and cure time decreased with initial increase of the peroxide content. EPDM compound vulcanized with BBPIB peroxide and TAC/S coagent has higher cure time than EPDM compound vulcanized with DMBPHa peroxide and TMPTMA coagent. Coran method was used for the modeling of experimental data. Velocity constant for the formation of peroxide radical and polymer radical were found for each case.
机译:乙丙丙烯二烯单体(EPDM)橡胶是重要的商业聚合物。硫化过程会显着改变其热,机械和硫化性能。进行这项研究是为了找到EPDM复合材料的最佳配方,以更好地应用于汽车工业。用不同类型和成分的过氧化物和助剂硫化了十六种具有不同的5-亚乙基2-降冰片烯(ENB)和乙烯含量的EPDM聚合物样品。测量并比较了这些样品的机械和硫化性能。过氧化物,助剂和EPDM等级的类型在一定程度上影响了EPDM橡胶的机械,热和硫化性能。使用芳族过氧化物和助剂会稍微提高热稳定性。对于相同含量的过氧化物和助剂,机械性能随过氧化物类型的变化而略有变化。随着过氧化物含量的最初增加,焦烧时间和固化时间减少。用BBPIB过氧化物和TAC / S助剂硫化的EPDM化合物的固化时间比用DMBPHa过氧化物和TMPTMA助剂硫化的EPDM化合物的固化时间更长。 Coran方法用于实验数据的建模。每种情况下都可以找到形成过氧化物自由基和聚合物自由基的速度常数。

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