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粘结剂喷射成型模拟及镁合金粘结机理分析

Simulation of Binder Jetting and Analysis of Magnesium Alloy Bonding Mechanism.

作者信息

Yang Qiang, Li Mei, Zhao Ze, Liao Ximeng, Li Junchao

机构信息

College of Materials Science and Engineering, Chongqing University, Chongqing, China.

出版信息

3D Print Addit Manuf. 2024 Apr 1;11(2):e751-e763. doi: 10.1089/3dp.2022.0252. Epub 2024 Apr 16.

Abstract

Binder jetting (3DP) is a kind of additive manufacturing at room temperature and atmospheric environment, which can reduce the risk of magnesium alloy forming. Magnesium alloy powder is bonded to a certain structure by a binder, so the appropriate binder is very important in 3DP. In this study, according to the characteristics of magnesium alloy, a simple and easy-to-obtain water-based low-molecular alcohol binder was used to reduce the difficulty of magnesium alloy 3DP. Additionally, we use COMSOL Multiphysics simulation software to establish a simulation model of the movement and deposition process of the binder. The results show that the increase in jet velocity will increase the quality and saturation of droplets. More importantly, the larger the jet velocity is, the larger the spreading width of the binder droplet after impacting the powder bed, which seriously affects the dimensional accuracy of the green part. In addition, lower binder saturation will weaken the formation of interparticle bonding neck and cannot form a stable structure. Furthermore, we analyzed the bond reactants of the binder and magnesium alloy powder, which eventually decompose into MgO, and the experimental results show that the final sintered sample has considerable performance.

摘要

粘结剂喷射(3DP)是一种在室温及大气环境下的增材制造技术,它可以降低镁合金成型的风险。镁合金粉末通过粘结剂粘结成一定结构,因此合适的粘结剂在3DP中非常重要。在本研究中,根据镁合金的特性,使用了一种简单易获得的水基低分子醇粘结剂来降低镁合金3DP的难度。此外,我们使用COMSOL Multiphysics模拟软件建立了粘结剂运动和沉积过程的模拟模型。结果表明,喷射速度的增加会提高液滴的质量和饱和度。更重要的是,喷射速度越大,粘结剂液滴撞击粉末床后的铺展宽度越大,这严重影响了生坯部件的尺寸精度。此外,较低的粘结剂饱和度会削弱颗粒间粘结颈的形成,无法形成稳定的结构。此外,我们分析了粘结剂与镁合金粉末的键合反应物,其最终分解为MgO,实验结果表明最终烧结样品具有相当的性能。

相似文献

1
Simulation of Binder Jetting and Analysis of Magnesium Alloy Bonding Mechanism.粘结剂喷射成型模拟及镁合金粘结机理分析
3D Print Addit Manuf. 2024 Apr 1;11(2):e751-e763. doi: 10.1089/3dp.2022.0252. Epub 2024 Apr 16.

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