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Failure analyses of cemented tungsten carbide extrusion die

机译:硬质合金碳化钨挤压模具的失效分析

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In this study, the failure of a cemented tungsten carbide extrusion die (WC-Co) which was designed for the production of 55 000 components but failed during production of third component has been investigated. The die is used for cold extrusion of auto parts components as sizing die. Sizes achieved by forging process are further refined to required fine tolerance. The component size is required to be controlled within ±20 μm. The investigations revealed that the failure is due to abusive machining of cemented tungsten carbide. Detail studies under different electrical discharge machining conditions have been made to investigate the formation of cracks and their morphology. The major cause of the failure is established as abusive electrical discharge machining conditions with higher pulse current, which lead to micro- to macrocracks at the machining stage. These cracks further enlarged under load conditions when extrusion was done. Based on this study experiments were performed under different machining conditions on the WC-Co material. Optimum parameters were established for machining and accordingly new die was designed and fabricated which is performing very well.
机译:在这项研究中,研究了一种硬质合金碳化钨挤压模具(WC-Co)的故障,该模具设计用于生产55,000个组件,但在生产第三组件时失败。该模具用于汽车零部件的冷挤压,作为定型模具。通过锻造工艺获得的尺寸会进一步细化至所需的精细公差。元件尺寸要求控制在±20μm以内。调查显示,故障是由于硬质合金碳化钨的滥用加工造成的。在不同的放电加工条件下进行了详细的研究,以研究裂纹的形成及其形态。导致故障的主要原因是由于脉冲电流较高而导致的滥用放电加工条件,在加工阶段会导致微裂纹或宏观裂纹。完成挤压后,这些裂纹在载荷条件下进一步扩大。基于此研究,在不同的加工条件下对WC-Co材料进行了实验。确定了用于加工的最佳参数,因此设计和制造了性能非常好的新模具。

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