首页> 外文会议>Addcon 2001 Conference Oct 8-9, 2001 Berlin, Germany >Neoalkoxy Titanate and Zirconate Coupling Agent Additives in Thermoplastics
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Neoalkoxy Titanate and Zirconate Coupling Agent Additives in Thermoplastics

机译:热塑性塑料中的新烷氧基钛酸酯和锆酸酯偶联剂添加剂

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Ti or Zr coupling agents chemically bridge two dissimilar species such as an inorganic filler/particulate and organic polymer via proton coordination on non-silane reactive substrates such as CaCO_3 and carbon black without the need of water of condensation as with silanes. Minor amounts of thermally stable neoalkoxy titanate and zirconate additives provide a means for post reactor, in-situ metallocene-like repolymerization catalysis of a filled or unfilled polymer during the plastication phase resulting in: significantly faster thermoplastic processing at lower temperatures; lower polymer recrystallization time; and the copolymerization of dissimilar polymers. Examples: both 40% CaCO_3 filled and unfilled PP compounds experienced respective reductions of 35.5% and 42% in injection mold cycle time and 22% and 11% in process temperature; 17% "pyrophosphato titanate coupled conductive carbon black (CB)" in LDPE provides the same Positive Temperature Coefficient effect as 25% untreated CB; a 39.7% reduction in the recrystallization time of PPS; a ten-fold increase in the elongation of a PET/PC regrind alloy; and the regeneration of recycled blends of LDPE and PP regrinds. The catalysis effect is shown to be permanent and recyclable. Coupling agent liquid, powder and pellet forms, dosage, data and applications methodology in compounding, injection and blow molding are discussed. New and novel transparent and permanent antistatic agents based on the formation of bipolar layers of dissimilar trineoalkoxy zirconates are shown to be non-blooming, non-moisture dependent providing volume as well as surface ESD effects.
机译:Ti或Zr偶联剂通过质子配位在非硅烷反应性基材(例如CaCO_3和炭黑)上通过质子配位,化学桥接两种不同的物质,例如无机填料/颗粒和有机聚合物,而无需像硅烷一样需要缩合水。少量热稳定的新烷氧基钛酸酯和锆酸酯添加剂为增塑阶段填充或未填充聚合物的后反应器原位茂金属状再聚合催化提供了一种手段,从而导致:在较低温度下明显加快了热塑性加工;缩短聚合物重结晶时间;以及异种聚合物的共聚。实例:40%CaCO_3填充和未填充的PP化合物的注射成型周期时间分别降低了35.5%和42%,过程温度降低了22%和11%; LDPE中17%的“焦磷酸钛酸酯偶联导电炭黑(CB)”具有与25%的未处理CB相同的正温度系数效果; PPS的重结晶时间减少了39.7%; PET / PC再生合金的伸长率提高了十倍;以及LDPE和PP再生料的再生混合物的再生。显示出催化作用是永久的和可回收的。讨论了偶联剂的液体,粉末和颗粒形式,剂量,数据以及在复合,注塑和吹塑中的应用方法。基于异丁烯三烷氧基锆酸酯双极性层形成的新型和新型透明和永久性抗静电剂被证明是非起霜,不依赖水分的,可提供体积和表面ESD效果。

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