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首页> 外文期刊>Engineering failure analysis >Erosion process analysis of die-casting inserts for magnesium alloy components
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Erosion process analysis of die-casting inserts for magnesium alloy components

机译:镁合金压铸件的冲蚀过程分析

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Erosion of die materials during die filling has long been regarded as possible damage mechanism of dies in high-pressure die casting (HPDC) of magnesium alloys. Melt impingement and erosion have also been proposed as important steps leading to die washout. However, little information on direct measurements of any type of die insert erosion in HPDC is available. The present analysis shows the insert surface states and chemical compositions of a failed die obtained from a die casting plant. Results show the presence of numerous micro-holes, microcavities and cracks on die surface. The diameter of the smaller microholes is about 9μm, whilst that of the larger microholes is over 100μm. Mechanisms causing insert erosion are discussed. Erosion takes place through depression, plastic deformation and tearing actions resulting from both impact pressure and high-velocity lateral jets. These damage mechanisms create pits on the surface of eroded samples.
机译:长期以来,一直认为模具材料在冲模中的冲蚀是镁合金高压压铸(HPDC)中模具的可能损坏机理。还提出了熔体冲击和侵蚀作为导致冲模的重要步骤。但是,很少有关于直接测量HPDC中任何类型的模具插入物腐蚀的信息。本分析显示了从压铸厂获得的失效模具的镶件表面状态和化学成分。结果显示在模具表面上存在大量的微孔,微腔和裂缝。较小的微孔的直径约为9μm,而较大的微孔的直径超过100μm。讨论了导致刀片腐蚀的机理。冲蚀是由于冲击压力和高速侧向射流引起的凹陷,塑性变形和撕裂而发生的。这些损坏机制会在腐蚀样品的表面上产生凹坑。

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