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首页> 外文期刊>Journal of Applied Polymer Science >Effect of the blooming of chemical curatives on the cyclic fatigue life of natural rubber filled with a silanized silica nanofiller
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Effect of the blooming of chemical curatives on the cyclic fatigue life of natural rubber filled with a silanized silica nanofiller

机译:化学硫化剂的起霜对填充有硅烷化二氧化硅纳米填料的天然橡胶的循环疲劳寿命的影响

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摘要

When partly soluble chemical curatives are mixed with raw rubber, they migrate to the rubber surface, which can be detrimental to the rubber properties. Two rubber compounds with different amounts of curatives were prepared by mixing natural rubber with a high loading of precipitated amorphous white silica nanofiller. The silica surfaces were pretreated with bis(3-triethoxysilylpropyl)-tetrasulfide coupling agent to chemically adhere silica to the rubber. The chemical bonding between the filler and rubber was optimized via the tetrasulfane groups of bis(3-triethoxysilylpropyl)- tetrasulfide by adding accelerator and activator. The rubber compounds were cured and stored at ambient temperature for up to 65 days. One compound showed extensive blooming as a function of storage time. The cyclic fatigue life of the rubber vulcanizates was subsequently measured at a constant strain amplitude and test frequency at ambient temperature. The blooming of the chemical curatives reduced the cyclic fatigue life of the rubber vulcanizate by more than 100%. The migrated chemical curatives produced a thin layer approximately 15 μm in size beneath the rubber surface. When the rubber was stressed repeatedly in the fatigue test, cracks initiated in this layer and subsequently grew, causing the fatigue life of the vulcanizate to decrease.
机译:当将部分可溶的化学固化剂与生橡胶混合时,它们会迁移到橡胶表面,这可能会损害橡胶性能。通过将天然橡胶与高含量的沉淀无定形白色二氧化硅纳米填料混合,可制得两种硫化剂含量不同的橡胶混合物。用双(3-三乙氧基甲硅烷基丙基)-四硫化物偶联剂预处理二氧化硅表面,以将二氧化硅化学粘附到橡胶上。通过添加促进剂和活化剂,通过双(3-三乙氧基甲硅烷基丙基)-四硫化物的四硫醚基团来优化填料和橡胶之间的化学键合。橡胶化合物被固化并在环境温度下保存长达65天。一种化合物表现出大量的起霜,这是储存时间的函数。随后在环境温度下以恒定的应变幅度和测试频率测量橡胶硫化橡胶的循环疲劳寿命。化学硫化剂的起霜使橡胶硫化橡胶的循环疲劳寿命降低了100%以上。迁移的化学固化剂在橡胶表面下方产生了一个约15μm的薄层。当橡胶在疲劳试验中反复受力时,裂纹在该层中开始并随后扩展,从而导致硫化橡胶的疲劳寿命降低。

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