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首页> 外文期刊>Applied Surface Science >A Computational Analysis And Suitability Assessment Of Cold-gas Dynamic spraying Of Glass-fiber-reinforced Poly-amide 6 For Use In direct-adhesion Polymer Metal Hybrid Components
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A Computational Analysis And Suitability Assessment Of Cold-gas Dynamic spraying Of Glass-fiber-reinforced Poly-amide 6 For Use In direct-adhesion Polymer Metal Hybrid Components

机译:直接粘合聚合物金属杂化部件的玻璃纤维增​​强聚酰胺6冷气动态喷涂的计算分析和适用性评估

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摘要

A transient non-linear dynamics computational analysis of cold-gas dynamic spraying (CGDS) of glass-fiber-reinforced poly-amide (nylon) 6 has been carried out using Ansys-Autodyn [Century Dynamics Inc., Ansys-Autodyn Version 11.0, User Documentation, Century Dynamics Inc. (a subsidiary of ANSYS Inc.), 2007] in order to assess the suitability of this spraying technology for coating of metal stampings used in polymer metal hybrid (PMH) load-bearing automotive component applications. In addition, the suitability of the CGDS is assessed with respect to a need for metal stamping surface preparation/treatment, the ability to deposit polymeric material without significant material degradation, the ability to selectively overcoat the metal stamping, the resulting magnitude of the polymer-to-metal adhesion strength, durability of the polymer/metal bond with respect to prolonged exposure to high-temperature/high-humidity and mechanical/thermal fatigue service conditions, and compatibility with the automotive body-in-white (BIW) manufacturing process chain. The analysis revealed that CGDS can be considered as a viable technology for coating of metal stampings used in PMH load-bearing automotive component applications.
机译:已使用Ansys-Autodyn [Century Dynamics Inc.,Ansys-Autodyn版本11.0,对玻璃纤维增​​强聚酰胺(尼龙)6的冷气动态喷涂(CGDS)进行了瞬态非线性动力学计算分析,用户文档,Century Dynamics Inc.(ANSYS Inc.的子公司),2007年],目的是评估这种喷涂技术对聚合物金属混合(PMH)承重汽车零部件应用中使用的金属冲压件涂层的适用性。此外,针对金属冲压表面准备/处理的需要,没有显着材料降解的沉积聚合物材料的能力,选择性覆盖金属冲压件的能力,聚合物的最终强度,评估了CGDS的适用性,对金属的粘合强度,相对于长时间暴露于高温/高湿和机械/热疲劳的使用条件下的聚合物/金属键的耐久性,以及与汽车白车身(BIW)制造工艺链的兼容性。分析表明,CGDS可被认为是用于PMH承重汽车零部件应用中的金属冲压件涂层的可行技术。

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