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Experimental Investigation of Thermal Fatigue Die Casting Dies by Using Response Surface Modelling

机译:响应面建模的热疲劳压铸模实验研究

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Mechanical and thermal sequences impact largely on thermo-mechanical fatigue of dies in a die casting operations. Innovative techniques to optimize the thermo-mechanical conditions of samples are major focus of researchers. This study investigates the typical thermal fatigue in die steel. Die surface initiation and crack propagation were stimulated by thermal and hardness gradients, acting on the contact surface layer. A design of experiments (DOE) was developed to analyze the effect of as-machined surface roughness and die casting parameters on thermal fatigue properties. The experimental data were assessed on a thermo-mechanical fatigue life assessment model, being assisted by response surface methodology (RSM). The eminent valuation was grounded on the crack length, hardness properties and surface roughness due to thermal fatigue. The results were analyzed using analysis of variance method. Parameter optimization was conducted using response surface methodology (RSM). Based on the model, the optimal results of 26.5 μm crack length, 3.114 μm surface roughness, and 306 HV 0.5 hardness properties were produced.
机译:在压铸操作中,机械和热过程对模具的热机械疲劳影响很大。优化样品热机械条件的创新技术是研究人员的主要重点。本研究调查了模具钢中典型的热疲劳。通过作用在接触表面层上的热和硬度梯度来刺激模具表面的萌生和裂纹扩展。开发了实验设计(DOE),以分析加工后的表面粗糙度和压铸参数对热疲劳性能的影响。在响应热力学方法(RSM)的辅助下,在热机械疲劳寿命评估模型上评估了实验数据。显着的评估基于裂纹长度,硬度特性和由于热疲劳引起的表面粗糙度。使用方差分析法分析结果。使用响应面方法(RSM)进行参数优化。基于该模型,得出了裂纹长度26.5μm,表面粗糙度3.114μm和306 HV 0.5硬度性能的最佳结果。

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