高冲击聚苯乙烯塞助热成型变形行为的实验研究与本构模型

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL Mechanics & Industry Pub Date : 2020-01-01 DOI:10.1051/meca/2020084
O. Atmani, F. Abbès, Yuming Li, S. Batkam, B. Abbès
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引用次数: 4

摘要

本文对高冲击聚苯乙烯(HIPS)的插塞辅助热成形工艺进行了实验和数值研究。研究了该聚合物在不同温度和变形速率下的热力学性能。为了研究不同参数对实际条件下plug-assisted thermoforming过程的影响,我们在不同温度和plug- help速度下进行了“纯plug-only”试验。为了模拟HIPS的变形行为,我们提出了一个热弹粘塑性模型,并在Abaqus软件中实现了该模型。提出了一个热相关的摩擦模型,并在Abaqus软件中实现。在实际的插塞辅助热成形条件下,采用逆分析方法对模型参数进行了辨识。提出的模型通过“纯plug-only”试验和plug-assisted热成型酸奶容器进行了验证。
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Experimental investigation and constitutive modelling of the deformation behaviour of high impact polystyrene for plug-assisted thermoforming
This paper concerns the experimental and numerical study of the plug-assisted thermoforming process of high impact polystyrene (HIPS). The thermomechanical properties of this polymer were characterized at different temperatures and deformation rates. To study the influence of different parameters in the real conditions of plug-assisted thermoforming process, we carried out “plug-only” tests at different temperatures and plug velocities. To model the deformation behaviour of HIPS, we proposed a thermo-elastic-viscoplastic model, which we have implemented in Abaqus software. A thermo-dependent friction model was also proposed and implemented in Abaqus software. The parameters of the proposed models were identified by the inverse analysis method in the real conditions of plug-assisted thermoforming. The proposed models were validated with “plug-only” tests and plug-assisted thermoforming of yogurt container.
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来源期刊
Mechanics & Industry
Mechanics & Industry ENGINEERING, MECHANICAL-MECHANICS
CiteScore
2.80
自引率
0.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: An International Journal on Mechanical Sciences and Engineering Applications With papers from industry, Research and Development departments and academic institutions, this journal acts as an interface between research and industry, coordinating and disseminating scientific and technical mechanical research in relation to industrial activities. Targeted readers are technicians, engineers, executives, researchers, and teachers who are working in industrial companies as managers or in Research and Development departments, technical centres, laboratories, universities, technical and engineering schools. The journal is an AFM (Association Française de Mécanique) publication.
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