随机取向碳纳米管填料微铣削聚合物微注射试样

C. Pagano, A. Attanasio, L. Rebaioli, E. Ceretti, I. Fassi
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引用次数: 1

摘要

近年来,碳纳米管(CNT)复合材料在多个工业领域的应用日益受到关注。引起人们越来越多关注的主要原因是CNTs的增强作用。然而,当需要小的特征时,复合材料的使用受到制造过程中的技术问题的限制。多级工艺链可以利用合适工艺的优势,加强对填料取向的控制。研究了POM/CNT和LCP/CNT复合材料微注射试样铣削微观特征的可行性。采用实验设计的方法研究合适的实验设计,研究材料和工艺参数对切削性能和特征几何形状的影响。pom基复合材料表现出更好的可加工性,可以制造更精确的特征,而LCP表现出高切削力和扩散毛刺的存在,无法制造非常小的特征。
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Micro milling of polymeric micro injected specimens with randomly oriented carbon nanotube fillers
The interest in the application of carbon nanotube (CNT) composites is recently increasing in several industrial sectors. The main reason for this growing attention is the reinforcing effect of the CNTs. However, the composite use is limited by technological issues concerning the manufacturing processes when small features are required. A multistage process chain could exploit the advantages of suitable processes to enhance the control of the filler orientation. This paper investigates the feasibility of milling micro features on micro injected specimens of POM/CNT and LCP/CNT composites. Design of experiment is used to study a suitable experimental design to investigate the influence of the material and the process parameters on the machinability and the feature geometry. POM-based composites showed a better machinability and allowed a fabrication of more accurate features, while LCP showed high cutting forces and the presence of diffused burrs, preventing the fabrication of very small features.
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来源期刊
International Journal of Machining and Machinability of Materials
International Journal of Machining and Machinability of Materials Engineering-Industrial and Manufacturing Engineering
CiteScore
2.40
自引率
0.00%
发文量
22
期刊介绍: IJMMM is a refereed international publication in the field of machining and machinability of materials. Machining science and technology is an important subject with application in several industries. Parts manufactured by other processes often require further operations before the product is ready for application. Machining is the broad term used to describe removal of material from a workpiece, and covers chip formation operations - turning, milling, drilling and grinding, for example. Machining processes can be applied to work metallic and non metallic materials such as polymers, wood, ceramics, composites and special materials. Today, in modern manufacturing engineering, there has been strong renewed interest in high efficiency machining.
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