首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >The analysis of the fracture mechanism of thermal simulation CGHAZ of AHSS DP780: based on response surface method and quantum genetic algorithm
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The analysis of the fracture mechanism of thermal simulation CGHAZ of AHSS DP780: based on response surface method and quantum genetic algorithm

机译:热的断裂机理的分析模拟CGHAZ的唯有DP780:基于响应表面法和量子遗传算法

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摘要

AHSS is widely used in the automobile industry due to its lightweight and high strength. However, the larger carbon equivalent results in poor weldability and causes a severe performance decrease in the performance of the CGHAZ. The thermal simulation was utilized to analyze the fracture mechanism of the CGHAZ of DP780 high-strength steel, and the microstructure and mechanical properties of the CGHAZ were studied by combining the response surface method (RSM) and the quantum genetic algorithm (QGA). Results showed that the predominant fracture type of CGHAZ was a brittle fracture. Meanwhile, the analysis combining energy dispersive spectrometer (EDS) and metallographic showed that the precipitation of carbides, the increase of the content of upper bainite (UB), and the coarse grains were the main reasons for brittle fracture. When the peak temperature, heating rate, and cooling rate were 1100 degrees C, 60 degrees C/min, and 1300 degrees C/min, respectively, the maximum impact energy of CGHAZ was 7.83 J. The results of optimization combining RSM and QGA showed that the impact energy of CGHAZ was increased by 0.7%, and the error between the results of verification and optimization was 1.93%. Therefore, it has positive significance for reducing the brittleness of CGHAZ by adopting lower heat input and slower cooling rate.
机译:已经广泛应用于汽车行业它的重量轻,强度高。更大的碳当量导致贫穷可焊性,导致严重的性能CGHAZ的性能下降。利用热模拟分析DP780 CGHAZ的断裂机制高强度钢,和微观结构CGHAZ的力学性能进行了研究结合响应面法(RSM)和量子遗传算法(实现)。显示的主要断裂类型CGHAZ脆性断裂。结合能量色散光谱仪分析(EDS)和金相显示碳化物的沉淀,增加的上贝氏体含量(乌兰巴托)和粗谷物是脆性的主要原因骨折。率,和冷却速率是1100摄氏度,60度/分钟,1300度C /分钟,分别CGHAZ的最大冲击能量7.83 j .优化相结合的结果吗RSM和实现表明,能量的影响CGHAZ增加了0.7%,错误验证和结果之间的关系优化是1.93%。减少的积极意义脆性CGHAZ的采用低热量输入和冷却速度慢。

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