{"title":"Multi-Visco-Elastic Contact Model in Discrete Element Method - Numerical Simulations of Margarine’s Dynamics during Manufacturing Process -","authors":"Y. Shimizu, Kosuke Masuda, T. Sadakane","doi":"10.1678/RHEOLOGY.42.177","DOIUrl":null,"url":null,"abstract":"The multi-visco-elastic contact model embedded in the Discrete Element Method (DEM), which was developed by authors previous study (Shimizu et al., 2012) 1) is applied to simulations of margarine’s dynamics in a pin machine, in order to improve margarine’s uniformity during manufacturing process. The results are compared with those using the linear contact model. Also, parametric studies are conducted by changing the operational conditions. As a result, it was found that the new developed multi-visco-elastic contact model represents margarine’s dynamics well during manufacturing process. The following results are considered from the numerical simulations, that is, (1) the migration process is slower than that of granular material, which is often modeled by using the linear contact model in the DEM, also the loaded torque on the machine is around 30 % from the case of using the linear contact model, (2) the migration proceeds mainly in the circumferential direction rather than in the radial direction, as movement of the bulk in the circumferential direction is much larger than that in the radial one, (3) performance of migration in the circumferential direction improves by increasing rotational speed, which is not expected in the radial direction though. Further studies to examine load characteristics of the machine are needed to use the model as a design tool for improvement of the machine’s performance and development of new machines.","PeriodicalId":17434,"journal":{"name":"Journal of the Society of Rheology, Japan","volume":"68 1","pages":"177-183"},"PeriodicalIF":0.0000,"publicationDate":"2014-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of the Society of Rheology, Japan","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1678/RHEOLOGY.42.177","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The multi-visco-elastic contact model embedded in the Discrete Element Method (DEM), which was developed by authors previous study (Shimizu et al., 2012) 1) is applied to simulations of margarine’s dynamics in a pin machine, in order to improve margarine’s uniformity during manufacturing process. The results are compared with those using the linear contact model. Also, parametric studies are conducted by changing the operational conditions. As a result, it was found that the new developed multi-visco-elastic contact model represents margarine’s dynamics well during manufacturing process. The following results are considered from the numerical simulations, that is, (1) the migration process is slower than that of granular material, which is often modeled by using the linear contact model in the DEM, also the loaded torque on the machine is around 30 % from the case of using the linear contact model, (2) the migration proceeds mainly in the circumferential direction rather than in the radial direction, as movement of the bulk in the circumferential direction is much larger than that in the radial one, (3) performance of migration in the circumferential direction improves by increasing rotational speed, which is not expected in the radial direction though. Further studies to examine load characteristics of the machine are needed to use the model as a design tool for improvement of the machine’s performance and development of new machines.
将作者(Shimizu et al., 2012)开发的离散元法(DEM)中嵌入的多粘弹性接触模型(1)应用于人造黄油在销机中的动力学模拟,以提高人造黄油在制造过程中的均匀性。并与线性接触模型的计算结果进行了比较。同时,通过改变操作条件进行参数化研究。结果表明,所建立的多粘弹性接触模型较好地反映了人造黄油在制造过程中的动力学特性。数值模拟结果表明:(1)颗粒物料的迁移过程比颗粒物料的迁移过程慢,颗粒物料的迁移过程通常采用DEM中的线性接触模型,并且使用线性接触模型的情况下,机器上的负载扭矩约为30%;(2)颗粒物料的迁移主要是在周向而不是径向进行的;(3)增加转速可以改善颗粒在周向上的迁移性能,但在径向上却没有达到预期的效果。需要进一步研究机器的负载特性,将该模型作为改进机器性能和开发新机器的设计工具。