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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >Effect of direct metal laser sintering build parameters on defects and ultrasonic fatigue performance of additively manufactured AlSi10Mg
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Effect of direct metal laser sintering build parameters on defects and ultrasonic fatigue performance of additively manufactured AlSi10Mg

机译:直接金属激光烧结构建参数对含有Alsi10mg的缺陷和超声疲劳性能的影响

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摘要

The high cycle fatigue behaviour of additively manufactured AlSilOMg is evaluated using ultrasonic fatigue as a means to accelerate fatigue testing. Build parameters during the additive manufacturing process are varied, and their effect on defect type, size, and distribution is determined. These defects are further found to influence fatigue behaviour, which is analysed using a Murakami area~(1/2) model. Finally, the ultrasonic fatigue test results are interpreted in the context of applied stress intensity factor and an optimized fatigue limit fit. Two different kinds of physical behaviour, representing Murakami dependence and a long crack regime, are found to better correlate the fatigue life behaviour than the Murakami model alone. With this information, we can tailor defect size, type and distribution, within the context of an optimized processing route, to obtain necessary high cycle fatigue properties.
机译:使用超声疲劳作为加速疲劳试验的手段评估含有加成制造的Alsilomg的高循环疲劳行为。在添加剂制造过程中构建参数改变,并确定它们对缺陷类型,尺寸和分布的影响。进一步发现这些缺陷影响疲劳行为,使用Murakami区域〜(1/2)模型分析。最后,在施加的应力强度因子和优化的疲劳极限配合的背景下解释超声疲劳试验结果。据发现,两种不同种类的物理行为,代表Murakami依赖和长裂缝制度,可以更好地关联疲劳寿命行为而不是穆拉克萨米模型。通过这些信息,我们可以在优化的处理路线的上下文中定制缺陷尺寸,类型和分布,以获得必要的高循环疲劳性能。

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