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Thin Wall Ceramic Tubes by Extrusion of thermoplastic - ZrO_2 Compounds

机译:热塑性-ZrO_2复合物挤压成型的薄壁陶瓷管

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摘要

For various applications, for example as protective layer for a plastic shaft, filter structures, thermowells, and heat exchangers, ceramic tubes with a wall thickness less than 300 μm are interesting. Higher wear and lower filtration resistance, or faster heat transfer can be reached with such systems. Different binder systems like water based, duroplastic or thermoplastic binder systems are suitable to realise such finished and semi finished products. The problem with water based binder systems is the collapsing of the tubes after extrusion. Extruded duroplastic compounds cannot be recycled whereas thermoplastic binders can be recycled and do not collapse after extrusion. In this work, ZrO_2 powder, wax and polyethylene were mixed in different percentage by volume. It could be shown that different percentage by volume of ZrO_2 ceramic powder have an influence on the energy and time needed to homogenise the thermoplastic paste in the kneading process. For producing tubes with a thin wall thickness, the compound with 50 vol.-% ZrO_2 showed the best results in all tests.
机译:对于各种应用,例如作为塑料轴,过滤器结构,热套管和热交换器的保护层,壁厚小于300μm的陶瓷管是很有趣的。使用这种系统可以实现更高的磨损和更低的过滤阻力,或者更快的热传递。诸如水基,硬质或热塑性粘合剂体系之类的不同粘合剂体系适用于实现这种成品和半成品。水性粘合剂系统的问题是挤出后管子塌陷。挤出的硬质塑料化合物不能回收利用,而热塑性粘合剂可以回收利用,并且挤出后不会塌陷。在这项工作中,ZrO_2粉末,蜡和聚乙烯以不同的体积百分比混合。可以表明,不同体积百分比的ZrO_2陶瓷粉会影响在捏合过程中均化热塑性糊料所需的能量和时间。为了生产壁厚较薄的管,在所有测试中,ZrO_2含量为50%(体积)的化合物均显示出最佳结果。

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