首页> 外文期刊>Coatings >Microstructure and Wear of (CrN/CrAlN)/(CrAlN/VN) and (CrN/TiAlN)/(TiAlN/VN) Coatings for Molds Used in High Pressure Casting of Aluminum
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Microstructure and Wear of (CrN/CrAlN)/(CrAlN/VN) and (CrN/TiAlN)/(TiAlN/VN) Coatings for Molds Used in High Pressure Casting of Aluminum

机译:(CRN / CRALN)/(CRALN / VN)和(CRN / TiAlN)/(TiAln / VN)涂层用于铝的模具的微观结构和磨损

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Molds made of tool steels used in aluminum high-pressure die casting should routinely withstand tens of thousands of injection cycles, but repeated loading and temperature spikes result in their frequent premature wear. Extending their lifetime could be sought by nitriding or application of coatings of even higher hardness or both. Therefore, in the present experiment the arc-deposited Cr/(CrN)/nx(CrN/CrAlN)/mx(CrAlN/VN) or Cr/(CrN)/nx(CrN/TiAlN)/mx(TiAlN/VN) nano-multilayer stacks were deposited on glow discharge nitrided X40CrMoV5.1 steel. The scanning and transmission electron microscopy backed by Energy Dispersive X-ray Spectroscopy measurements of local chemical composition helped to confirm that the coatings are built of nanolayers of respective nitrides of period less than 10 nm. They also showed that droplets being characteristic for arc deposition method were enriched either in chromium, aluminum or vanadium but not in titanium. Both coatings presented comparable hardness of ~25 GPa, but the one covered with TiAlN/VN was roughly twice as wear resistant as the CrAlN/VN. Simultaneously, they were ~200 and ~100 more wear resistant than X40CrMoV5.1reference steel.
机译:由铝高压压铸件中使用的工具钢制成的模具应经常承受成千上万的注射循环,但重复装载和温度尖峰导致其频繁的过早磨损。通过氮化或施加甚至更高的硬度或两者的涂层可以寻求延长寿命。因此,在本实验中,电弧沉积的Cr /(CRN)/ NX(CRN / CRALN)/ MX(CRALN / VN)或CR /(CRN)/ NX(CRN / TiAlN)/ MX(TiAlN / Vn)纳米 - 叠加在闪光放电氮化X40Crmov5.1钢上的堆积。通过局部化学组合物的能量分散X射线光谱测量基于局部化学组合物的扫描和透射电子显微镜有助于确认涂层是由少于10nm的各个氮化物的纳米层。他们还表明,弧形沉积方法的特征性的液滴在铬,铝或钒中富集,但不含钛。两种涂层呈现出相当的硬度〜25GPa,但用TiAln / Vn覆盖的涂层大致两倍为耐磨损的耐磨性。同时,它们比X40Crmov51.1.1.1ducess钢耐磨〜200〜100多。

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