Study on the thermal assistance friction stir lap welding of aluminum alloy and CFRTP

IF 4.7 2区 材料科学 Q2 MATERIALS SCIENCE, COMPOSITES Polymer Composites Pub Date : 2024-04-18 DOI:10.1002/pc.28446
Yibo Sun, Yuan Zhang, Xiao Wei, Haiwei Long, Yang Sun, Xinhua Yang
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Abstract

With the rapid development of transportation and electronic equipment industries, lightweight requires reliable joining technology for metal/polymer. Preheating before welding is a potential way to improve the tensile properties of the joint and reduce the risk of defect formation. In this study, thermal assistance friction stir lap welding (TA‐FSLW) in joining 6061‐T6 aluminum alloy and carbon‐fiber‐reinforced thermoplastic (CFRTP) is investigated. The welds are evaluated by OM image segmentation and statistical calculation, temperature detection in thermal imaging, SEM and EDS of the fracture, tensile, and hardness analysis. From the quantitative analysis results of the width of the CFRTP side‐melting zone and the area of Al alloy fragments in the welding zone, the movement of the polymer chain in the CFRTP of joint is intensified by thermal assistance, which reduces the thickness of the melting zone on the side of the composite material. The area of metal fragments ranges from 100 to 2 × 106 μm2. The microscopic analysis results indicate that preheating enhances the initial thermal motion of molecules. Gaseous polymers are dissociated from the molten state, reducing the number of bubbles in the composite material. Small size fragments are inserted into the molten CFRTP and mechanical interlocking is enhanced due to the uniform interweaving of metals and polymers. A maximum tensile strength of 39.97 MPa is achieved, which increases by 37.6% compared with the conventional FSLW.Highlights Thermal assistance friction stir welding technology is applied to the welding of aluminum alloy with carbon‐fiber‐reinforced thermoplastic. The number and area of aluminum alloy fragments are counted and analyzed by the metal segmentation counting algorithms. Thermal assisted technology reduces the thickness of the melting zone of CFRTP and enhances the material flow and refinement of aluminum alloy fragments.
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铝合金与 CFRTP 热辅助搅拌摩擦搭接焊研究
随着运输和电子设备行业的快速发展,轻量化要求可靠的金属/聚合物连接技术。焊前预热是提高接头拉伸性能和降低缺陷形成风险的潜在方法。本研究探讨了热辅助搅拌摩擦搭接焊(TA-FSLW)在连接 6061-T6 铝合金和碳纤维增强热塑性塑料(CFRTP)时的应用。通过 OM 图像分割和统计计算、热成像中的温度检测、SEM 和 EDS 的断裂、拉伸和硬度分析,对焊缝进行了评估。从 CFRTP 侧熔区宽度和焊接区铝合金碎片面积的定量分析结果来看,接头 CFRTP 中聚合物链的运动在热辅助下加剧,从而减小了复合材料侧熔区的厚度。金属碎片的面积从 100 到 2 × 106 μm2 不等。微观分析结果表明,预热增强了分子的初始热运动。气态聚合物从熔融状态解离,减少了复合材料中气泡的数量。小尺寸碎片插入熔融 CFRTP 中,由于金属和聚合物均匀交织,机械互锁性得到增强。亮点 将热辅助搅拌摩擦焊接技术应用于铝合金与碳纤维增强热塑性塑料的焊接。通过金属分割计数算法对铝合金碎片的数量和面积进行计数和分析。热辅助技术减小了碳纤维增强热塑性塑料熔化区的厚度,增强了材料流动性和铝合金碎片的细化。
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来源期刊
Polymer Composites
Polymer Composites 工程技术-材料科学:复合
CiteScore
7.50
自引率
32.70%
发文量
673
审稿时长
3.1 months
期刊介绍: Polymer Composites is the engineering and scientific journal serving the fields of reinforced plastics and polymer composites including research, production, processing, and applications. PC brings you the details of developments in this rapidly expanding area of technology long before they are commercial realities.
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