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Ultrasound devulcanization of silica filled silicone rubber: Processing, properties and molecular aspects.

机译:二氧化硅填充的硅橡胶的超声脱硫:加工,性能和分子方面。

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Continuous devulcanization of precipitated and fumed silica filled silicone rubber (PDMS) is carried out using a single screw extruder based ultrasound co-axial reactor. An increase of the reactor throughput is achieved during the devulcanization in the presence of water. Process characteristics including ultrasound power consumption and die entrance pressure are measured. Structural characteristics and mechanical properties of virgin vulcanizates, devulcanized and revulcanized PDMS are investigated indicating the process is suitable for devulcanization of peroxide cured industrial rubbers. Unique correlation between gel fraction and crosslink density is obtained for PDMS devulcanized at various processing conditions. The existence of strong interaction between precipitated silica and PDMS is detected via rheological measurements. These investigations are supplemented by proton NMR studies with measurements of T2 relaxation time and diffusivity. It is found that the devulcanization process leads to formation of sol with high molecular weight and branching. In addition, ultrasound treatment of unfilled cured PDMS disks under static conditions is carried out to show the phenomenon of bubble formation (cavitation) in solid state.
机译:使用基于单螺杆挤出机的超声同轴反应器对沉淀和气相二氧化硅填充的硅橡胶(PDMS)进行连续脱硫。在水存在下的脱硫过程中实现了反应器产量的增加。测量包括超声功率消耗和模具入口压力在内的工艺特性。研究了原始硫化,硫化和硫化的PDMS的结构特征和机械性能,表明该方法适用于过氧化物硫化的工业橡胶的硫化。对于在各种加工条件下脱硫的PDMS,获得了凝胶分数和交联密度之间的独特关联。通过流变学检测可以发现沉淀的二氧化硅与PDMS之间存在强相互作用。通过质子核磁共振研究补充了这些研究,并测量了T 2 弛豫时间和扩散率。发现脱硫过程导致形成具有高分子量和分支的溶胶。另外,在静态条件下对未填充的固化PDMS盘进行超声处理,以显示固态气泡形成(空化)现象。

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