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首页> 外文期刊>Journal of Materials Science >Hard-skin development during binder removal from Al2O3-based green ceramic bodies
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Hard-skin development during binder removal from Al2O3-based green ceramic bodies

机译:从基于Al2 O3 的绿色陶瓷体中去除粘结剂时的硬皮形成

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摘要

A paraffin-based binder system was developed for low-pressure injection molding of very fine (0.4 μm) average particle size alumina ceramic bodies. Complex chemical reactions take place, during the process of binder removal, when the ceramic parts are fired in air. The effects of these chemical reactions become more pronounced at about 250°C, giving rise to a hard-skin and promoting cracks in the bodies with large cross-sections. The surface hardening occurs only when the bodies are fired in an oxygen-rich atmosphere. The hardness at the surface of the ceramic bodies fired in air at 250°C varies from about 0.4 to 1.2 GPa, depending on binder composition. Upon increasing temperature, the surface hardness decreases monotonically to more conventional values. Infrared absorption spectroscopy was used to study the debinding process and the chemical mechanism behind the hard-skin development in ceramic bodies fired in air. The experimental evidence suggests that cross-linkage between long carbon chains present in the binder and its interaction with the alumina powder surface is responsible for the high surface hardness observed in parts fired in air at 250°C.
机译:开发了一种基于石蜡的粘合剂系统,用于低压注塑平均粒径非常细(0.4μm)的氧化铝陶瓷体。当在空气中烧制陶瓷零件时,在去除粘结剂的过程中会发生复杂的化学反应。这些化学反应的作用在约250°C时变得更加明显,从而导致硬皮并促进大截面物体的裂纹。仅在将物体在富氧气氛中燃烧时才发生表面硬化。根据粘合剂的组成,在250°C的空气中烧成的陶瓷体表面的硬度约为0.4至1.2 GPa。随着温度的升高,表面硬度单调降低至更常规的值。红外吸收光谱法用于研究在空气中烧制的陶瓷体中脱脂过程和硬皮形成背后的化学机理。实验证据表明,粘合剂中存在的长碳链之间的交联及其与氧化铝粉末表面的相互作用是导致在250°C的空气中燃烧的零件具有较高的表面硬度的原因。

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  • 来源
    《Journal of Materials Science 》 |2002年第9期| 1801-1807| 共7页
  • 作者单位

    Instituto de Física Universidade Federal do Rio Grande do Sul;

    Instituto de Física Universidade Federal do Rio Grande do SulINMETRO—Instituto Nacional de Metrologia Normalização e Qualidade Industrial Campus Avançado de Xerém;

    Instituto de Física Universidade Federal do Rio Grande do SulINMETRO—Instituto Nacional de Metrologia Normalização e Qualidade Industrial Campus Avançado de Xerém;

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