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6061铝水导激光加工工艺参数优化研究 被引量:2
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作者 曹治赫 乔红超 赵吉宾 《激光与红外》 CAS CSCD 北大核心 2021年第5期567-574,共8页
为研究水导激光加工关键工艺参数对6061铝切槽形状与组织性能的影响,利用自研的水导激光加工设备,对6061铝开展了包括激光功率、激光重复频率、进给速度及加工次数在内的多个关键工艺参数的多因素影响切槽实验。利用金相显微镜对加工沟... 为研究水导激光加工关键工艺参数对6061铝切槽形状与组织性能的影响,利用自研的水导激光加工设备,对6061铝开展了包括激光功率、激光重复频率、进给速度及加工次数在内的多个关键工艺参数的多因素影响切槽实验。利用金相显微镜对加工沟槽的深宽比、侧壁锥度及组织变化情况进行了测量与分析。实验结果表明:激光重复频率对沟槽宽度有较明显影响;较高的激光功率、较低的激光重复频率有利于形成侧壁垂直的沟槽;较高的激光功率、较低的激光重复频率、较低的进给速度以及多次加工有利于形成大深宽比的沟槽结构;所有的工艺参数下加工沟槽附近均未发现有热影响区等组织变化。根据上述实验结果提出了使用水导激光加工技术进行大深宽比、低热影响区结构加工的工艺参数优化方法。 展开更多
关键词 水导激光加工 大深径比结构 低热影响加工
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LCP挠性覆铜板紫外激光去膜工艺分析 被引量:1
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作者 程立 吴超 +1 位作者 陈燕 熊政军 《激光与光电子学进展》 CSCD 北大核心 2022年第17期243-251,共9页
液晶聚合物(LCP)是一种液晶聚合物,作为基板材料在微波/毫米波电路中表现优良,在5G封装中获得了广泛的关注。采用紫外纳秒激光对LCP挠性覆铜板进行去膜加工试验,在200 kHz重复频率下,采用控制变量的方法,研究了不同激光功率、扫描速度... 液晶聚合物(LCP)是一种液晶聚合物,作为基板材料在微波/毫米波电路中表现优良,在5G封装中获得了广泛的关注。采用紫外纳秒激光对LCP挠性覆铜板进行去膜加工试验,在200 kHz重复频率下,采用控制变量的方法,研究了不同激光功率、扫描速度和扫描层数对LCP材料去膜深度的影响。为了减小热影响对电子器件和柔性电路板的影响,结合LCP的特性和实际加工结果,进一步分析LCP基板边框处热影响区范围随激光参数的变化规律。试验结果表明,以低热影响加工为目标,当扫描层数为5,扫描速度为600 mm/s,激光平均功率为2.1 W时,均匀性较好,加工深度可达49.84µm,边框处热影响区较小,可达28.43µm。该试验结果为LCP基板在柔性电路封装中提供了理论基础。 展开更多
关键词 激光技术 紫外激光加工 液晶聚合物挠性覆铜板 去膜 低热影响
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Effects of inclusions on microstructure and properties of heat-affected-zone for low-carbon steels 被引量:4
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作者 ZHENG ChaoChao WANG XueMin +2 位作者 LI ShuRui SHANG ChengJia HE XinLai 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第6期1556-1565,共10页
The characteristics of inclusions in two types of low-carbon steels by different deoxidization methods have been investigated by using the welding thermal simulation, the optical microscopy and scanning electron micro... The characteristics of inclusions in two types of low-carbon steels by different deoxidization methods have been investigated by using the welding thermal simulation, the optical microscopy and scanning electron microscopy. In addition, the effects of inclusions on microstructure and properties of heat-affected-zone were studied. The nucleation and growth of intragranular acicular ferrite was observed in situ by the laser scanning confocal microscopy. The distribution of Mn element near the inclu- sion was also analyzed by the auger electron spectroscopy. The results showed that the inclusions in A1 killed steel are mainly aluminum oxides, manganese sulfide and titanium nitrides, and that the inclusions in Ti killed steel are mainly titanium oxide, manganese sulfide complex inclusion and single manganese sulfide. The auger electron spectroscopy showed that there is an Mn-depleted zone near the interface of TiOffMnS complex inclusion in the size of 1-3 gm. It could be the effective nucleus of intragranular acicular ferrite which could divide the prior austenite grains, inhibit the growth of low-temperature microstruc- ture, and refine the final microstructure, so as to improve the toughness of heat-affected-zone significantly. 展开更多
关键词 low-carbon steel INCLUSION intragranular acicular ferrite heat-affected-zone
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