Segmented chip formation during machining under the influence of different atmospheres

F. Schaper, B. Lengacker
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引用次数: 0

Abstract

Abstract High temperatures and a pronounced segmented chip are characteristic of titanium machining processes. The formation of segmented chips induces an alternating high frequency mechanical load on the tool and thus promotes tool failure. The presence of oxygen triggers a multitude of chemical interactions during the chip forming process. However, the oxygen content’s impact during titanium machining, especially on the chip formation, is unknown. In order to draw conclusions on this process, the machining tests were carried out while varying the oxygen content. The thus produced chips were metallographically examined. The varying degree of segmentation could then be visualized by boundary etching and subsequently be evaluated.
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加工过程中不同气氛影响下的切屑形成
高温和明显的切屑是钛加工的特点。切屑的形成会对刀具产生高频机械负荷,从而导致刀具失效。在切屑形成过程中,氧气的存在引发了大量的化学相互作用。然而,氧含量在钛加工过程中的影响,特别是对切屑形成的影响,是未知的。为了得出结论,在不同的氧含量下进行了加工试验。对所制备的薄片进行金相检验。不同程度的分割可以通过边界蚀刻可视化,随后进行评估。
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