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首页> 外文期刊>Journal of Materials Science >Young’s modulus of low-pressure cold sprayed composites: an analysis based on a minimum contact area model
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Young’s modulus of low-pressure cold sprayed composites: an analysis based on a minimum contact area model

机译:低压冷喷涂复合材料的杨氏模量:基于最小接触面积模型的分析

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摘要

A theoretical and mathematical model based on minimum contact area (MCA) is developed to explain the bonding that takes place in the low-pressure gas dynamic spray (LPGDS) process. It is shown that by normalizing this MCA it is possible to compare the relative elastic modulus as a function of porosity. Theoretical predictions of relative elastic modulus are compared against results obtained through acoustic analysis and it is found that the correlation between is dependent on the porosity. For low porosity, the experimental and theoretical results differ substantially, while for higher porosity there seems to be good agreement between the two. To explain this behaviour it is theorized that full adiabatic shear bands (ASB) are created between only some of the particles. The higher porosity causes higher strain in the samples and thus more local deformation of the particles. This, in turn, causes more actual ASB formation. Since the theoretical model assumes full ASB formation, only the higher porosities cause enough strain to have a comparable relative elastic modulus. For the lower porosities, the local strain is less, and some of the bonds will not achieve full ASB formation. For these cases, the relative elastic modulus will be lower than that predicted.
机译:建立了基于最小接触面积(MCA)的理论和数学模型,以解释在低压气体动态喷涂(LPGDS)过程中发生的结合。结果表明,通过对该MCA进行归一化,可以比较相对弹性模量与孔隙率的关系。将相对弹性模量的理论预测与通过声学分析获得的结果进行比较,发现两者之间的相关性取决于孔隙率。对于低孔隙度,实验和理论结果有很大的不同,而对于较高孔隙度,两者之间似乎有很好的一致性。为解释此行为,理论上仅在某些粒子之间创建了完整的绝热剪切带(ASB)。较高的孔隙率在样品中引起较高的应变,从而导致颗粒的局部变形更大。反过来,这会导致形成更多实际的ASB。由于理论模型假定完全形成了ASB,因此只有较高的孔隙率才会导致足够的应变,从而具有可比较的相对弹性模量。对于较低的孔隙率,局部应变较小,某些键将无法完全形成ASB。对于这些情况,相对弹性模量将低于预期。

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