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首页> 外文期刊>Tribology in Industry >Ejection Performance of Coated Core Pins Intended for Application on High Pressure Die Casting Tools for Aluminium Alloys Processing
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Ejection Performance of Coated Core Pins Intended for Application on High Pressure Die Casting Tools for Aluminium Alloys Processing

机译:用于铝合金压铸模具的涂层芯销的顶出性能

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In high pressure die casting (HPDC) process of aluminium alloys cast alloy soldering severely damages tool surfaces. It hampers casting ejection, reduces the casting quality and decreases the overall production efficiency. Thin ceramic PVD (physical vapor deposition) coatings applied on tool surfaces successfully reduce these effects. However, their performance is still not recognised for surfaces with various topographies. In this investigation, soldering tendency of Al-Si-Cu alloy toward EN X27CrMoV51 steel, plasma nitrided steel, CrN and TiAlN duplex PVD coatings is evaluated using ejection test. The coatings were prepared to a range of surface roughness and topographies. After the tests sample surfaces were analysed by different microscopy techniques and profilometry. It was found that the ejection performance is independent of the chemical composition of investigated materials. After the ejection, the cast alloy soldering layer was found on surfaces of all tested materials. This built-up layer formed by effects of mechanical soldering, without corrosion reactions. Coated samples displayed a pronounced dependence of ejection force on surface roughness and topography. By decreasing roughness, ejection force increased, which is a consequence of intensified adhesion effects. Presented findings are a novel information important for efficient application of PVD coatings intendent for protection of HPDC tools.
机译:在铝合金的高压压铸(HPDC)工艺中,铸造合金焊接会严重损坏工具表面。它会阻碍铸件的弹出,降低铸件质量并降低整体生产效率。涂在工具表面上的薄陶瓷PVD(物理气相沉积)涂层可成功减少这些影响。但是,对于具有各种形貌的表面,其性能仍然未被认可。在这项研究中,使用喷射试验评估了Al-Si-Cu合金对EN X27CrMoV51钢,等离子氮化钢,CrN和TiAlN双相PVD涂层的焊接趋势。将涂层制备成一定范围的表面粗糙度和形貌。测试后,通过不同的显微镜技术和轮廓测定法分析样品表面。发现喷射性能与所研究材料的化学组成无关。弹出后,在所有测试材料的表面上都发现了铸造合金焊接层。该堆积层是通过机械焊接的效果形成的,没有腐蚀反应。涂层样品显示出喷射力对表面粗糙度和形貌的明显依赖性。通过降低粗糙度,喷射力增加,这是增强的粘附效果的结果。提出的发现是一种新颖的信息,对于有效保护打算保护HPDC工具的PVD涂层很重要。

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