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Rheological and thermal performance of newly developed binder systems for ceramic injection molding

机译:新开发的用于陶瓷注射成型的粘合剂体系的流变学和热学性能

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摘要

In a novel binder system, carnauba wax was considered to replace the synthetic backbone polymers (polyolefins) enhancing the environmental sustainability of Ceramic Injection Molding (CIM) technology. The paper presents comparison of the rheological performance and thermal behavior of the aluminum oxide CIM feedstocks based on a binder containing carnauba wax with those consisting of a commercial binder. Further, acrawax (N, N'-Ethylene Bis-stearamide) has been considered as another possible substitute of polyolefins. For both proposed substitutes there is a significant reduction in viscosity, and in case of carnauba wax based feedstock also in processing temperature, which is essential for injection molding of reactive powders. Thermal characterization comprised analyses of single neat binders, their mixtures and mixtures with aluminum oxide. The presence of powder lowered melting temperatures of all tested binders except of polyolefin. Further depression in melting point of poly(ethylene glycol) is observed in combination with polyolefin in the presence of powder, and it is related to changes in size of the crystalline domains. © 2016 Author(s).
机译:在一种新颖的粘合剂体系中,巴西棕榈蜡被认为可以替代合成骨架聚合物(聚烯烃),从而增强陶瓷注射成型(CIM)技术的环境可持续性。本文介绍了基于含巴西棕榈蜡的粘结剂与由市售粘结剂组成的氧化铝CIM原料的流变性能和热行为的比较。此外,已将a蜡蜡(N,N′-乙烯双硬脂酰胺)视为聚烯烃的另一种可能的替代物。对于这两种提议的替代品,粘度均显着降低,对于巴西棕榈蜡基原料,其加工温度也降低了,这对于反应性粉末的注射成型至关重要。热表征包括对单一纯粘合剂,它们的混合物以及与氧化铝的混合物的分析。粉末的存在降低了除聚烯烃以外的所有测试粘合剂的熔融温度。在粉末的存在下,与聚烯烃组合,观察到聚乙二醇的熔点进一步降低,这与晶畴尺寸的变化有关。 ©2016作者。

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