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ED-machinable ceramics with oxide matrix: Influence of particle size and volume fraction of the electrical conductive phase on the mechanical and electrical properties and the EDM characteristics

机译:具有氧化物矩阵的ED可加工陶瓷:电导电相对机电性能和EDM特性的粒度和体积分数的影响

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Structural and functional properties of ceramics can be beneficial in a variety of applications. The main drawback of ceramics is their complex and costly manufacturing cycle, in particular the final machining step. For customized parts, electrically conductive ceramics represent a cost efficient alternative to conventional ceramics since electrical discharge machining (EDM) can be applied. Ceramic composites consisting of a high content of oxide matrix and a second phase that provides electrical conductivity show promising properties in wear resistance, strength, and toughness. In this study, composites with yttria stabilized zirconia as matrix material and an electrically conductive tungsten carbide dispersion (TZP-WC) were investigated. The content of the conductive phase varied from 20 to 28 vol.-% and three different particle sizes were used. Ceramic blanks were manufactured by hot pressing and then tested with respect to mechanical and electrical properties. Wire as well as sinking EDM machining characteristics were analyzed. The necessary adaptions of the EDM processing parameters to the requirements of this specific material system were investigated. The variation of the conductive phase in the observed range caused only slight variations in mechanical properties. However, a strong impact of composition on EDM characteristics was found as the contributions of different material removal mechanisms are altered. Smaller particle sizes and higher contents of electrically conductive phase generally led to higher electrical conductivity, thereby improving the machining rate at a similar surface quality.
机译:陶瓷的结构和功能性质可以有利于各种应用。陶瓷的主要缺点是它们复杂且昂贵的制造周期,特别是最终加工步骤。对于定制部件,导电陶瓷代表传统陶瓷的成本有效的替代方法,因为可以应用电放电加工(EDM)。由高含量的氧化物基质和提供电导率的第二阶段组成的陶瓷复合材料在耐磨性,强度和韧性中显示出具有前景的性质。在该研究中,研究了具有氧化钇稳定的氧化锆作为基质材料的复合材料和导电碳化钨分散体(TZP-WC)。导电阶段的含量在20至28体内变化.-%和三种不同的颗粒尺寸。通过热压制造陶瓷坯料,然后相对于机械和电气性能进行测试。分析了电线以及沉没的EDM加工特性。研究了EDM处理参数对该特定材料系统要求的必要自适应。观察范围内导电相的变化仅引起了机械性能的轻微变化。然而,在改变不同材料去除机制的贡献,发现了组合物对EDM特征的强烈影响。较小的粒度和更高的导电相的内容物通常导致更高的导电性,从而提高了类似表面质量的加工速率。

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