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The Effect of Temperature on the Tear Behavior of Various Elastomers: Part 2-Application Considerations

机译:温度对各种弹性体撕裂行为的影响:第2部分应用注意事项

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Part 1 (Bafna, S. S., "The Effect of Temperature on the Tear Behavior of Various Elastomers," J. Test. Eval., Vol. 42, No. 3,2014, pp. 1-10) of this series discussed the tear behavior per ASTM D624-00 Type B (propagation) and Type C (initiation) for commercial sealing grade butyl, ethylene propylene diamine (EPDM), fluorosilicone (FS), and two fluorocarbon elastomers. Part 2 provides additional insight based on application considerations. The behavior of polychloroprene intended for shock and vibration isolation applications is compared to that of silicone and other elastomers intended for sealing applications (such as O-rings). The trend of tear strength for propagation being higher than or equal to (within measurement error) that for initiation is confirmed. This is shown to be an artifact of the difference in the ASTM D624-00 test specimen geometries. Propagation tear strength/energy values reported in literature are from the "trouser" tear (ASTM D624 Type-T or modification thereof) test, which leads to lower values than Type B. While Type-T is closer in deformation mode to pure tear, Types B and C more closely simulate tear damage in actual hardware. The polychloroprene grade tested is processed using transfer molding and has a much lower viscosity in the uncured state. After cure, its tensile strength is lower than that of all compression molding grades and its tensile elongation is the highest. However, its tear strength is higher than that of the silicone or FS grades tested, consistent with its application requirements. At the higher temperatures, the polychloroprene tear strength is higher than that of all the compression molding grades. A higher level of filler (as manifested by a high specific gravity), along with strain induced crystallization, helps explain this retention of tear properties with temperature. The tear strain at break generally increases with temperature but, if temperature is sufficiently above the glass transition temperature, then the tear strain actually decreases with temperature and thus non-monotonic behavior is observed. The poor tear properties of silicones and FS are confirmed.
机译:本系列的第1部分(Bafna,SS,“温度对各种弹性体的撕裂行为的影响”,J。Test。Eval。,第42卷,第3期,2014年,第1-10页)讨论了撕裂符合ASTM D624-00 B类(传播)和C类(起始)的要求,适用于商用密封级丁基橡胶,乙丙二胺(EPDM),氟硅氧烷(FS)和两种碳氟化合物弹性体。第2部分基于应用程序考虑因素提供了其他见解。将用于冲击和振动隔离应用的聚氯丁二烯的性能与用于密封应用的有机硅和其他弹性体(例如O形圈)的性能进行了比较。确认了传播的撕裂强度的趋势高于或等于引发的撕裂强度(在测量误差范围内)。这表明是ASTM D624-00测试样品几何形状差异的伪影。文献中报道的传播撕裂强度/能量值来自“裤子”撕裂(ASTM D624 Type-T或其变型)测试,其测试值低于B型。虽然T型在变形模式下更接近纯撕裂,类型B和C更接近地模拟实际硬件中的撕裂损坏。所测试的聚氯丁二烯等级使用传递模塑加工,并且在未固化状态下的粘度要低得多。固化后,其拉伸强度低于所有压缩成型等级,并且拉伸伸长率最高。但是,其撕裂强度高于测试的有机硅或FS等级,符合其应用要求。在较高的温度下,聚氯丁二烯的撕裂强度高于所有压缩成型等级。较高含量的填充剂(表现为高比重)以及应变诱导的结晶有助于解释这种撕裂性能随温度的保持情况。断裂时的撕裂应变通常随温度而增加,但是,如果温度充分高于玻璃化转变温度,则撕裂应变实际上随温度而降低,因此观察到非单调行为。证实了硅氧烷和FS的差的撕裂性能。

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