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Analysis of Fundamental Process Characteristics for Sinking-EDM of Cemented Carbides as a Function of Polarity

机译:水泥碳化物下沉基础工艺特征的分析,作为极性的函数

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Cemented carbides have a growing potential as a tool material in metal forming due to their great resistance to wear and increased compressive strength. The further spread for active elements in metal forming is conflicted by high costs and a lack of knowledge about the specific performance and interpretation of the applicable regulations. A key technology for the machining of cemented carbide forming dies is Electrical Discharge Machining (EDM) because of a difficult conventional machinability and specific material properties. However, machined carbide tools often show a toughness remaining below expectations. A possible explanation could be the extent of the manufacturing process related thermally affected rim zone. In addition, the polarity needs an evaluation for a basic understanding in regard to MRR. Therefore, a cemented carbide, a version with normal binder phase content, and a common tool steel as standard material are compared focusing on the material removal rate and formation of cracks in the rim zone for different polarizations.
机译:由于它们对耐磨性的耐受性和增加的抗压强度,粘合碳化物具有金属成形的工具材料的潜力。金属成形中的活性元素的进一步扩散是通过高成本和关于适用法规的具体绩效和解释的知识矛盾。由于难以常规的可加工性和特定材料特性,用于加工硬质合金成型模具的关键技术是电气放电加工(EDM)。然而,加工的硬质合金工具通常显示出低于预期的韧性。可能的解释可以是相关的制造过程相关的热影响RIM区域的程度。此外,极性需要评估MRR的基本理解。因此,将碳化物碳化物,具有正常的粘合剂相含量的形式,以及作为标准材料的共同工具钢的形式,聚焦在用于不同偏振的边缘区中的材料去除速率和形成裂缝。

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