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首页> 外文期刊>Surface & Coatings Technology >Influence of the structure of the composite: 'nitrided layer/PVD coating' on the durability of forging dies made of steel DIN-1.2367
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Influence of the structure of the composite: 'nitrided layer/PVD coating' on the durability of forging dies made of steel DIN-1.2367

机译:复合材料的结构:“氮化层/ PVD涂层”对DIN-1.2367钢制成的锻模的耐久性的影响

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The paper presents research results of the influence of the 'nitrided layer/PVD coating' composite structure on the durability of forging dies made of steel DIN-1.2367. Five structures of the composite with different PVD coating materials were investigated. The following types of PVD coatings were applied: TiN/Ti(C,N)(gradient), (Ti,Cr)N, (CrN/TiN)x3, (Cr/CrN)x3, CrN. The investigated composites were created by means of the surface 'duplex' treatment method in a two-stage separable cycle. The nitriding process was executed with the use of the regulated.-as nitriding method. whereas the PVD coatings were created by means of the arc-vacuum method. The paper presents results of materials investigations (metallographic analysis, X-ray diffraction phase analysis, adhesion scratch tests and thermal fatigue tests) as well as the results of laboratory forging tests executed in different conditions (two different temperatures of the forged material and two different temperatures of the die) for dies covered with each of the investigated composites. The wear intensity of the investigated dies was assessed by means of precise three-dimensional measurements while the wear mechanisms were investigated by optical microscopy. On the basis of the received results authors determined the influence of the composite structure and its material properties on the mechanisms and intensity of forging dies destruction. (C) 2003 Elsevier B.V. All rights reserved.
机译:本文介绍了“氮化层/ PVD涂层”复合结构对钢制DIN-1.2367锻模耐久性的影响的研究结果。研究了具有不同PVD涂层材料的复合材料的五种结构。涂覆了以下类型的PVD涂层:TiN / Ti(C,N)(梯度),(Ti,Cr)N,(CrN / TiN)x3,(Cr / CrN)x3,CrN。所研究的复合材料是通过表面“双工”处理方法在两个阶段的可分离循环中制成的。氮化处理是使用规定的氮化方法进行的。而PVD涂层是通过电弧真空法产生的。本文介绍了材料研究的结果(金相分析,X射线衍射相分析,附着力刮擦试验和热疲劳试验),以及在不同条件下(两种不同的锻造温度和两种不同的温度)进行的实验室锻造试验的结果。模具的温度)覆盖了每种研究的复合材料。通过精确的三维测量来评估所研究模具的磨损强度,同时通过光学显微镜研究磨损机理。根据收到的结果,作者确定了复合结构及其材料性能对锻造模具破坏机理和强度的影响。 (C)2003 Elsevier B.V.保留所有权利。

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