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基于课程思政的复合材料修理技术课程教学设计研究——以胶接表面处理为例
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作者 汪余博 戴京涛 +2 位作者 苏洪波 王紫潇 李英睿 《中国教育技术装备》 2024年第2期42-45,共4页
介绍复合材料修理技术课程“胶接表面处理”知识点课例的课程思政教学设计过程。深入挖掘知识点的思政元素,重点分析思政元素与知识点的关系和融入方式,形成课程思政教学设计方案,总结思政元素与教学内容的融合思路,打通技能类课程思政... 介绍复合材料修理技术课程“胶接表面处理”知识点课例的课程思政教学设计过程。深入挖掘知识点的思政元素,重点分析思政元素与知识点的关系和融入方式,形成课程思政教学设计方案,总结思政元素与教学内容的融合思路,打通技能类课程思政元素与专业知识有机融合的路子,推动课程的课程思政建设。 展开更多
关键词 课程思政 胶接表面处理 教学设计
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复合材料胶接表面处理技术研究进展
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作者 王犇 陈霞 《中国科技期刊数据库 工业A》 2022年第8期100-103,共4页
随着树脂基碳纤维复合材料在航空工业领域的广泛应用,如何实现复合材料各部件之间的有效胶接已成为研究的重点。表面处理是保证有效胶接的重要前提之一,通过表面处理可改变复材表面的物理化学性质,如表面粗糙度,表面自由能,表面化学性... 随着树脂基碳纤维复合材料在航空工业领域的广泛应用,如何实现复合材料各部件之间的有效胶接已成为研究的重点。表面处理是保证有效胶接的重要前提之一,通过表面处理可改变复材表面的物理化学性质,如表面粗糙度,表面自由能,表面化学性质等。本文综述了目前在复合材料胶接工艺中使用到的表面处理方法,包含传统机械打磨法、带胶可剥布方法、等离子体处理法、激光表面处理法四个方面,总结了四种表面处理方式的优缺点,并对其未来的发展及应用进行了展望。 展开更多
关键词 复合材料 胶接表面处理技术 可剥布法 等离子体处理 激光表面处理
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An Experimental and Numerical Study of Effect of Textured Surface by Arc Discharge on Strength of Adhesively Bonded Joints
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作者 Mehdi Asgharifar Fanrong Kong +1 位作者 Blair Carlson Radovan Kovacevic 《Journal of Mechanics Engineering and Automation》 2012年第4期229-242,共14页
Aluminum alloys are being increasingly applied in the automotive industry as a means to reduce mass. Their application to the vehicle structure is typically via a combination of either mechanical or fusion joining wit... Aluminum alloys are being increasingly applied in the automotive industry as a means to reduce mass. Their application to the vehicle structure is typically via a combination of either mechanical or fusion joining with adhesive bonding. Correspondingly, there has been a large effort in improving the adhesive bonding characteristics by changing the surface properties using different surface treatment techniques. One such method is the atmospheric arc discharge process which develops a specific surface roughness which can be leveraged to improve adhesive bonding. In this paper the effect of a textured surface by arc discharge on the failure mode and strength of adhesively bonded aluminum alloy sheets is investigated. A single-lap joint configuration is used for simulation and experimental analysis. A two-dimensional (2D) finite element method (FEM) involving the morphology of treated surfaces and using interfacial elements based on a cohesive zone model (CZM) are used to predict the joint strength which is an enabler for faster product development cycles. The influence of arc process parameters: the arc current and the torch scanning speed, on the surface morphology and joint strength are explored in this study. Specifically, the present study shows that the surface treatment of aluminum alloys by arc discharge can strongly enhance adhesive bond strength. Additionally, arc treatment not only increases the joint strength but also improves the quality of bond along the interface (transition toward cohesive failure mode). The current FE simulation of adhesive joint using the elastic and elasto-plastic (non-linear) material properties for adherend and adhesive, respectively, and cohesive zone elements for interface shows an accurate prediction of the resulting joint strength. By inclusion of non-linear multi-scale geometry model via considering the surface topographical changes after surface treatment the FE joint strength prediction can be successfully implemented. 展开更多
关键词 Adhesive bonding finite element analysis arc discharge surface treatment aluminum alloys.
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