首页> 外文会议>ASME international mechanical engineering congress and exposition >USE OF ATRILAYER SHELL MODEL TO DETERMINE INTRINSIC STRESS WITHIN TITANIUM-SILICON CARBONITRIDE COATING
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USE OF ATRILAYER SHELL MODEL TO DETERMINE INTRINSIC STRESS WITHIN TITANIUM-SILICON CARBONITRIDE COATING

机译:利用衬里壳模型确定钛硅碳氮化物涂层内在应力

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Thin films of titanium-silicon carbonitride (TiSiCN) with titanium adhesion layers were deposited at approximately 280°C on horizontally and vertically-mounted strips of 301-stainless steel by reactive magnetron sputtering. Considerable differences in the mid-deflections and radii of curvature between the vertical and horizontal samples were observed. Cross-sectional characterizations done on a TEM revealed a columnar growth and uniform microstructure. A finite-element model of the tri-layer sandwich structure using Mesh-Tie constraints was developed to estimate the intrinsic stress levels in the overcoat as probable functions of substrate location and orientation. The computational model in the absence of intrinsic stress was validated by analytical expressions for multilayer films. The initial stress state parameter was varied in Abaqus until consistency in curvature-values was achieved with the physical measurement obtained from an optical setup specially-constructed for this purpose. The difference in the S11/S22 principal stresses provided the intrinsic stress estimate. The calculated values of intrinsic stress were then applied to an FEA test model with fixed constraints to computationally determine the stress reduction for individual samples.
机译:通过反应磁控溅射,将具有钛粘附层的碳氮化钛硅薄膜(TiSiCN)在大约280°C的水平和垂直安装的301不锈钢带上沉积。观察到垂直和水平样品之间的中间挠度和曲率半径有相当大的差异。在TEM上进行的横截面表征显示出柱状生长和均匀的微观结构。建立了使用网格约束约束的三层夹心结构的有限元模型,以估计外涂层中的固有应力水平,这可能是基底位置和方向的函数。通过多层膜的解析表达式验证了不存在固有应力的计算模型。在Abaqus中改变初始应力状态参数,直到通过为此目的专门构造的光学装置获得的物理测量结果达到曲率值的一致性为止。 S11 / S22主应力的差异提供了固有应力估算值。然后,将固有应力的计算值应用于固定约束的FEA测试模型,以计算确定各个样品的应力降低。

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