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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Temperature and strain dependent fracture of AlSi coating in hot stamping of press hardening steel
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Temperature and strain dependent fracture of AlSi coating in hot stamping of press hardening steel

机译:热成形钢热冲压中AlSi涂层的温度和应变相关断裂

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摘要

In hot stamping severe tool wear occurs. The main tool wear mechanism is the so-called compaction galling, in which fractured particles from the coating of the part (blank) being build-up and become compacted upon the tools. Since fractured particles play an important role in the wear mechanism, fracture of the AlSi coating is investigated. For this purpose, simplified B-pillar parts are pressed at several temperatures to investigate the effect of temperature, strain and tool contact on the fracture behavior of the AlSi coating. Three positions which exhibit different strain modes are analysed by means of optical topography and optical microscopy measurements. The results indicate a strong correlation between the AlSi coating fracture, strain and temperature. For instance, at relatively low forming temperatures (i.e. 650 oC), mode I fracture as well as spallation of the coating and at higher temperatures (750 and 800 oC) mainly mode I coating fractures are observed. Interestingly, this type of mode I coating fractures are found to widen, eventually giving rise to mode II coating fractures along the coating-substrate interface. The onset strain of coating fracture is low and approximately at strains of 0.017, coating cracks are observed at all start temperatures. At contact-dominated regions, additional coating cracks are observed mainly due to a drop in blank temperature and added shear stresses due to the relative sliding between the blank and tools.
机译:在热冲压中,刀具磨损严重。主要的刀具磨损机制是所谓的压实磨损,其中来自零件涂层(毛坯)的断裂颗粒堆积并压实在刀具上。由于断裂颗粒在磨损机理中起着重要作用,因此研究了AlSi涂层的断裂。为此,简化的 B 柱部件在多个温度下被压制,以研究温度、应变和工具接触对 AlSi 涂层断裂行为的影响。通过光学形貌和光学显微镜测量分析了表现出不同应变模式的三个位置。结果表明,AlSi涂层断裂、应变与温度之间存在较强的相关性。例如,在相对较低的成型温度(即 650 oC)下,观察到 I 型断裂以及涂层剥落,而在较高温度(750 和 800 oC)下,主要观察到 I 型涂层断裂。有趣的是,这种类型的I型涂层裂缝被发现会变宽,最终导致沿涂层-基材界面的II型涂层裂缝。涂层断裂的起始应变较低,大约在0.017的应变下,在所有起始温度下都观察到涂层裂纹。在以接触为主的区域,观察到额外的涂层裂纹主要是由于毛坯温度的下降以及由于毛坯和刀具之间的相对滑动而增加的剪切应力。

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