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首页> 外文期刊>Acta Materialia >MODELING OF HOT ISOSTATIC PRESSING AND HOT TRIAXIAL COMPACTION OF Ti-6Al-4V POWDER
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MODELING OF HOT ISOSTATIC PRESSING AND HOT TRIAXIAL COMPACTION OF Ti-6Al-4V POWDER

机译:Ti-6Al-4V粉末的热等静压和三轴热压实模型

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摘要

The accuracy of a hybrid continuum-micromechanical model for predicting the rate-dependent consolidation of metal powder was established using measurements from hot isostatic pressing (HIP) and hot triaxial compaction (HTC) experiments. The experiments were performed with PREP Ti-6Al-4V powder encapsulated in thin-walled containers and yielded relative density vs time and height vs relative density data for direct comparisons with model predictions. The model was found to underpredict the den- sification rate in HIP, primarily during the early stages of consolidation, and the degree of consolidation during HTC. Adjustments to the values of the strain-rate sensitivity or a state variable representing the geometric structure of powder compacts resulted in good agreement between hybrid model predictions and measurements. The physical basis for discrepancies between predictions and measurements and justification for the postulated/required parameter adjustments were attributed to two factors: (1) differences in micro- structure between the unconsolidated powder and the fully consolidated material used in the compression testing to obtain the material coefficients for the model, and (2) interparticle bonding characteristics/par- ticle sliding effects not taken into account in determining the material properties for the model.
机译:使用来自热等静压(HIP)和热三轴压实(HTC)实验的测量结果,建立了用于预测金属粉末速率依赖性固结的混合连续体-微力学模型的准确性。实验是使用封装在薄壁容器中的PREP Ti-6Al-4V粉末进行的,得出相对密度与时间的关系以及高度与相对密度的数据,以直接与模型预测进行比较。人们发现该模型低估了HIP中的致密化率,主要是在合并的早期阶段以及HTC期间的合并程度。调整应变速率灵敏度的值或表示粉末压块几何结构的状态变量会导致混合模型预测和测量之间的良好一致性。预测和测量之间差异的物理基础以及对假定的/要求的参数调整的合理性归因于两个因素:(1)压缩试验中使用的未固结粉末和完全固结的材料之间的微观结构差异模型的系数,以及(2)在确定模型的材料特性时未考虑的颗粒间键合特性/颗粒滑动效应。

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