文章摘要
大厚度碳纤维复合材料变参数制孔工艺研究
Research on Variable Parameter Hole-making Process of Large-thickness Carbon Fiber reinforce plastic
投稿时间:2020-03-23  修订日期:2020-04-25
DOI:
中文关键词: 钻削  变参数  力热特性  加工质量
英文关键词: Drilling  Variable parameters  Thermodynamic characteristics  Processing quality
基金项目:国家重点研发计划资助(2018YFA0702803);辽宁省“兴辽英才计划”项目(XLYC1801008,XLYC1902014);商飞企业攻关项目(67924)
作者单位邮编
王小鞑 大连理工大学 116024
王福吉* 大连理工大学 116024
栗盛开 大连理工大学 
王帅飞 大连理工大学 
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中文摘要:
      如今大厚度碳纤维复合材料(CFRP)在飞机大型构件上广泛应用,经常需要对其进行大量的深孔加工。采用固定钻削参数加工工艺会导致钻削过程中热量严重累积,树脂高温软化,进而引起材料性能下降,严重影响制孔质量。因此为确定合适的加工工艺参数,需要研究深孔钻削过程中不同区段工艺对质量的影响。本文先对大厚度复合材料板钻削加工区段进行了划分,通过实验分析研究钻削过程中不同钻削区段的力热特性,得出了不同钻削区段合适的钻削参数,在此基础上,以加工质量和效率为目标,提出一种分区段变参数钻削大厚度复合材料板工艺方法,发现采用此种方法可以降低钻削过程产热以及出口位置轴向力,同时保证出口质量和孔壁质量,提高加工效率,是一种有效的新型加工工艺方案。
英文摘要:
      Nowadays large thickness Carbon fiber reinforce plastic (CFRP) are widely used in large aircraft component ,a lot of deep hole need to be processed on it. Using fixed drilling parameters can lead to serious heat accumulation and softening of resin at high temperature during drilling, then the material properties decline, the quality of the holes are seriously effected. Therefore, In order to select the appropriate processing parameters, it is necessary to study the influence of drilling technology in different sections on the hole quality during deep hole drilling. In this paper, the drilling section of large-thickness composite plate is divided, The Thermodynamic characteristics of different drilling sections in the drilling process are analyzed by experiments, and the appropriate drilling parameters for different drilling sections are obtained, On the basis of this, A method for drilling large-thickness composite material plates with variable parameters in different sections is proposed,which is aimed at improving drilling quality and efficiency. It is found that this method can reduce heat production and axial force at the exit position in drilling process, ensure the quality of exports and hole wall at the same time, improve processing efficiency. It is an effective new processing technology.
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