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Cure and tear properties of ENR 25/SMR L and ENR 50/SMR L blends

机译:ENR 25 / SMR L和ENR 50 / SMR L混合物的固化和撕裂性能

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Curing characteristics of two rubber blends, namely, epoxidized natural rubber (ENR) 25/SMR L and ENR 50/ SMR L were studied using a Monsanto Moving Die Rheometer (MDR 2000), and the blend ratio was varied from 0-100% ENR. Also, a systematic study of tear strength of the blends was carried out before and after ageing at 100 degrees C for 48 h. A Monsanto Tensometer (Model T10) operating at 50 cm/min was used to determine the tear strength of the standard crescent test piece. The results indicate that scorch time and cure time decrease with increasing ENR contents, whereas maximum torque and torque difference show the contrary. This observation is attributed to the activation of an adjacent double bond by the epoxide group in ENR (shorter scorch and cure time) and consequently enhances curl to produce higher crosslink density (higher torque values). The effect of activation is more significant in ENR 50 than in ENR 25, due to the presence of more epoxide groups in the former. From viscous torque and loss tangent data, better resilience property of the blend can be obtained if the ENR content is less than 25%, or more than 50%. The tear strength increases with the ENR content up to a maximum value at about 50% ENR in the blend. This finding is ascribed to the increased energy dissipation, as indicated by the increase in tan delta with % ENR. However, tear strength of aged sample decreases with increasing ENR contents, due to the poor aging property of the ENR, especially ENR 50. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 30]
机译:使用孟山都移动模流变仪(MDR 2000)研究了两种橡胶共混物的硫化特性,即环氧化天然橡胶(ENR)25 / SMR L和ENR 50 / SMR L,其混合比在0-100%ENR之间变化。同样,在100摄氏度老化48小时之前和之后,对混合物的撕裂强度进行了系统的研究。使用以50厘米/分钟的速度运行的孟山都张力计(T10型)确定标准月牙形试样的撕裂强度。结果表明,焦烧时间和固化时间随ENR含量的增加而减少,而最大扭矩和扭矩差则相反。该观察结果归因于ENR中的环氧基团激活了相邻的双键(更短的焦烧和固化时间),因此增强了卷曲,从而产生了更高的交联密度(更高的扭矩值)。由于前者中存在更多的环氧基团,因此在ENR 50中活化作用比在ENR 25中更为显着。从粘性扭矩和损耗角正切数据,如果ENR含量小于25%或大于50%,则可以获得更好的共混物回弹性。撕裂强度随ENR含量的增加而增加,最高达到共混物中ENR的50%。该发现归因于能量耗散的增加,如tanδ随ENR百分比的增加所表明的。但是,由于ENR尤其是ENR 50的老化性能差,老化的样品的撕裂强度会随着ENR含量的增加而降低。(C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:30]

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