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首页> 外文期刊>Journal of Manufacturing Processes >Residual stress and fracture strength of brazed joint of ceramic and titanium alloy with the aid of laser deposited functionally graded material layers
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Residual stress and fracture strength of brazed joint of ceramic and titanium alloy with the aid of laser deposited functionally graded material layers

机译:激光沉积功能梯度材料层对陶瓷和钛合金钎焊接头的残余应力和断裂强度的影响

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摘要

To improve the strength of a ceramic (ZrC-SiC) and a titanium alloy (TC4) brazed joint, laser deposited functionally graded material layers (FGM layers) between ZrC-SiC and TC4 were designed to reduce the residual stress in the brazed joint. A simulation model of the brazed joint was created to investigate the mechanism of residual stress reduction due to FGM layers. The results show that the residual stress component in the normal direction of the brazing interface (normal stress) is tensile at the ZrC-SiC edges and the in-plane residual stress component on the brazing interface is compressive in the ZrC-SiC adjacent to the brazing seam. The adoption of the FGM layers significantly reduces both the normal residual stress and in-plane residual stress. During the shear test, the normal stress concentrates at the ZrC-SiC edges near the brazing seam. By applying fracture forces 645 N and 1365 N measured in shear experiments to the ZrC-SiC/TC4 joint model and ZrC-SiC/TC4-FGM joint model respectively, the local fracture stress in the normal direction is identified to be 648 MPa and 671 MPa from both models, respectively. Although the fracture force for both models are quite different due to the difference of residual stress produced by brazing, the identified local fracture stress is close each other. The predicted cracking initial position is around the corner of the ZrC-SiC close to the brazed zone which is the same as observed in experiments.
机译:为了提高陶瓷(ZrC-SiC)和钛合金(TC4)钎焊接头的强度,设计了在ZrC-SiC和TC4之间进行激光沉积的功能梯度材料层(FGM层),以减少钎焊接头中的残余应力。建立了钎焊接头的仿真模型,以研究由于FGM层而引起的残余应力减少的机理。结果表明,钎焊界面法向上的残余应力分量(法向应力)在ZrC-SiC边缘处是拉伸应力,而钎焊界面上的面内残余应力分量在ZrC-SiC的邻近界面处是压缩应力。钎焊缝。 FGM层的采用显着降低了法向残余应力和面内残余应力。在剪切试验期间,法向应力集中在钎焊缝附近的ZrC-SiC边缘。通过将剪切实验中测得的断裂力645 N和1365 N分别应用于ZrC-SiC / TC4接头模型和ZrC-SiC / TC4-FGM接头模型,确定法向方向的局部断裂应力为648 MPa和671两种型号的压力分别为MPa。尽管由于钎焊产生的残余应力的不同,两个模型的断裂力都存在很大差异,但是确定的局部断裂应力彼此接近。预测的开裂初始位置在ZrC-SiC靠近钎焊区的拐角附近,与实验中观察到的相同。

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