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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Friction plug repair welding of glass fiber-reinforced polyamide 6: Investigation of morphology, microstructure, and mechanical properties
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Friction plug repair welding of glass fiber-reinforced polyamide 6: Investigation of morphology, microstructure, and mechanical properties

机译:玻璃纤维增强聚酰胺的摩擦塞修复焊接6:形态学,微观结构和机械性能的研究

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Friction plug repair welding technology has been demonstrated to be effective to repair the glass fiber-reinforced polyamide 6 sheets in the present paper. Influences of repair hole geometries and parameters on joint morphology and mechanical performance were investigated. Results showed that defect-free repaired joints were produced with the utilization of tapered holes rather than cylindrical holes. Process parameters exerted significant influences on the cross-sectional profile and morphology of the joints. Defect-free repaired welds with larger stir zone thicknesses were produced with the proper increase of rotational speeds, but excessive rotational speeds caused the formation of cavities along the plug boundary and the reduction of stir zone thicknesses. The fluctuation of the wavy bottom interface increased under larger plunge rates and incomplete connections between stir zone and base material were observed under plunge rate of 25 mm/min. Extended dwell time led to larger stir zone thickness and improved joint morphology. Tensile tests showed that the strength of the repaired joints increased and then decreased with the enlargement of rotational speeds. Decreased plunge rate and extended dwell time led to promoted joint mechanical performance. Three failure modes were observed, which corresponded to low, middle, and high repaired weld strengths.
机译:已经证明摩擦塞修复焊接技术有效地在本文中修复玻璃纤维增​​强聚酰胺6片。研究了修复孔几何和参数对关节形态和机械性能的影响。结果表明,通过利用锥形孔而不是圆柱孔,产生无缺陷的修复接头。工艺参数对关节的横截面轮廓和形态产生了重大影响。通过适当增加的转速增加,生产具有较大搅拌区厚度的无缺陷的修复焊缝,但过度的转速导致沿插头边界形成腔的形成和搅拌区厚度的减少。波浪底界面的波动在较大的暴力速率下增加,并且在暴跌速率下观察到搅拌区和基材之间的不完全连接,在25mm / min的情况下观察到。延长停留时间导致较大的搅拌区厚度和改善的关节形态。拉伸试验表明,随着旋转速度的扩大,修复接头的强度增加然后降低。降低的暴力率和延长停留时间导致促进接头机械性能。观察到三种故障模式,其对应于低,中间和高修复的焊接强度。

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