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首页> 外文期刊>Polymer Testing >Effect of filler loading on tensile and tear properties of SMR L/ENR 25 and SMR L/SBR blends cured via a semi-efficient vulcanization system
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Effect of filler loading on tensile and tear properties of SMR L/ENR 25 and SMR L/SBR blends cured via a semi-efficient vulcanization system

机译:填料用量对通过半高效硫化系统固化的SMR L / ENR 25和SMR L / SBR共混物的拉伸和撕裂性能的影响

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The effects of filler loading on the tensile and tear properties of SMR L/ENR 25 and SMR L/SBR blends using a semi-efficient vulcanization system was studied. Carbon black (N330), silica (Vulcasil C) and calcium carbonate were used as the fillers and the loading range was from 0 to 40 phr. Tensile strength, M300 (tensile stress at 300% elongation) and tear strength were determined using a Monsanto Tensometer (Model T10) operating at 50 cm/min. Results show that for the carbon black and silica-filled blends, elongation at break decreases, but tensile strength, M300 and tear strength increase with filler loading. The reverse behavior is obtained for the calcium carbonate-filled blends. This observation is attributed to the better rubber-filler interphase, interaction of carbon black and silica compared to the non-reinforcing nature of calcium carbonate, the dilution effect of which becomes more significant as the filler loading is increased. For a fixed filler loading, SMR L/ENR 25 blend consistently exhibits higher tensile strength, M300 and tear strength but lower elongation at break compared to SMR L/SBR blend. This finding is associated with the mutual rubber reinforcement between the two strain-induced crystallizable rubbers (i.e. SMR L and ENR 25), coupled with good rubber-filler interaction, particularly between silica and ENR 25 in the former blend. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 5]
机译:研究了填料填充量对使用半高效硫化系统的SMR L / ENR 25和SMR L / SBR共混物的拉伸和撕裂性能的影响。炭黑(N330),二氧化硅(Vulcasil C)和碳酸钙用作填充剂,填充量为0至40 phr。拉伸强度,M300(在300%伸长率下的拉伸应力)和撕裂强度使用Monsanto张力计(型号T10)以50厘米/分钟的速度测定。结果表明,对于炭黑和二氧化硅填充的混合物,断裂伸长率降低,但抗张强度,M300和撕裂强度随填充剂的添加而增加。对于碳酸钙填充的共混物,获得相反的行为。该观察结果归因于与碳酸钙的非增强性质相比更好的橡胶-填料界面,炭黑与二氧化硅之间的相互作用,碳酸钙的稀释作用随着填料含量的增加而变得更加显着。对于固定的填充量,与SMR L / SBR共混物相比,SMR L / ENR 25共混物始终表现出更高的拉伸强度,M300和撕裂强度,但断裂伸长率更低。该发现与两种应变诱导的可结晶橡胶(即SMR L和ENR 25)之间的相互橡胶增强以及良好的橡胶-填料相互作用有关,特别是前一种共混物中的二氧化硅和ENR 25之间。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:5]

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