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首页> 外文期刊>Journal of Materials Engineering and Performance >Temperature-Dependent Fatigue Strength of Diamond Coating-Substrate Interface Quantified via the Shear Failure Stress
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Temperature-Dependent Fatigue Strength of Diamond Coating-Substrate Interface Quantified via the Shear Failure Stress

机译:通过剪切破坏应力量化金刚石涂层-基体界面的温度相关疲劳强度

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摘要

A dynamic 3D-finite element method (FEM) thermomechanical model is employed for quantifying the temperature-dependent fatigue strength of nanocrystalline diamond (NCD) coating-substrate interface. This model simulates dynamically the inclined impact test on NCD-coated cemented carbide inserts considering the temperature-dependent residual stresses in the NCD coating structure. A fatigue damage of the NCD coating-substrate interface develops after a certain number of repetitive impacts depending on the applied impact load and temperature. After the interface fatigue failure, the high compressive residual stresses of the NCD coating structure are released, and the detached coating hikes up at a certain maximum height (bulge formation). The critical impact forces for avoiding the fatigue failure of the NCD coating-substrate interface, and the subsequent film detachment after 10(6) impacts at various temperatures were determined by conducting inclined impact tests up to 400 A degrees C. Considering the critical impact forces, using the mentioned FEM model, the related shear failure stresses in the NCD coating-substrate interface at various temperatures were predicted.
机译:动态3D有限元方法(FEM)热力学模型用于量化纳米晶体金刚石(NCD)涂层-基底界面的温度相关疲劳强度。考虑到NCD涂层结构中与温度有关的残余应力,该模型动态模拟了对NCD涂层硬质合金刀片的倾斜冲击试验。取决于施加的冲击载荷和温度,经过一定次数的重复冲击后,NCD涂层-基材界面的疲劳损伤就会发展。在界面疲劳失效之后,NCD涂层结构的高压缩残余应力被释放,并且脱离的涂层在一定的最大高度处上升(凸出)。通过进行高达400 A摄氏度的倾斜冲击试验,确定了避免NCD涂层-基材界面疲劳破坏的临界冲击力,以及在各种温度下10(6)冲击后的后续膜分离。 ,使用提到的有限元模型,预测了在不同温度下NCD涂层-基底界面中的相关剪切破坏应力。

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