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Interaction of heat checks in aluminum pressure casting dies and their effect on fatigue life

机译:热检查在铝压铸模具中的相互作用及其对疲劳寿命的影响

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Pressure casting dies are exposed to harsh service conditions consisting of cyclic thermal and mechanical loading and thus undergo thermo-mechanical fatigue. Due to cyclic plastic deformation of the material near the surface of the dies the loading conditions gradually change because of the formation of tensile residual stresses which add to the stress field from external loading. This change in the stress field influences the nucleation and the growth of cracks. Typically after a few thousand casting cycles a network of heat checks forms. In such a network crack shielding has a big influence on the evolution of the crack array. Firstly, it influences the propagation rates of the cracks and secondly it may change the propagation direction compared to the case where no neighbors are present. The crack growth rate and the length at which the cracks stop growing are also influenced by the thermo-physical and mechanical properties of the die material. It was found that the shielding effects of neighboring cracks are of equal importance. Crack deflection caused by the presence of neighboring cracks can lead to break-outs at the surface ensued by fast degradation eventually necessitating the replacement of the die. Consequently, the focus in this work is put on the investigation of the interaction of cracks in a network and their effect on the fatigue life. The problem is tackled by means of an automated strategy based on the finite element method.
机译:压力铸造模具暴露于由循环热和机械负载组成的苛刻服务条件,从而经过热机械疲劳。由于在模具表面附近的材料循环塑性变形,因此由于形成拉伸残余应力,该循环条件逐渐变化,其从外部加载添加到应力场。压力场的这种变化会影响核心和裂缝的生长。通常在几千个铸造周期之后,热量检查形式。在这种网络裂缝屏蔽对裂缝阵列的演变具有很大的影响。首先,它影响裂缝的传播速率,其次,与存在邻居的情况相比,它可以改变传播方向。裂纹生长速率和裂缝停止生长的长度也受到模具的热物理和机械性能的影响。发现邻近裂缝的屏蔽效应具有相同的重要性。由相邻裂缝的存在引起的裂缝偏转可能导致表面在表面上断开,随着快速的降级最终需要更换模具。因此,在这项工作中的重点是调查网络中裂缝的相互作用及其对疲劳寿命的影响。通过基于有限元方法的自动化策略来解决问题。

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