1. 北京航空航天大学机械工程及自动化学院,北京,100191
2. 北京市高效绿色数控加工工艺及装备工程技术研究中心,北京,100191
3. 北京航天新风机械设备有限责任公司,北京,100854
纸质出版:2019
移动端阅览
蒋振邦,袁松梅,李真,李麒麟,宋肖珺,李燕. 镁基碳纤维增强复合材料超声辅助切削试验研究[J]. 航空制造技术, 2019, 62(11): 55-62.
JIANG Zhenbang, YUAN Songmei, LI Zhen, LI Qilin, SONG Xiaojun, LI Yan. Research on Ultrasonic Assisted Cutting Carbon Fiber Reinforced Mg-Matrix Composite. Aeronautical Manufacturing Technology, 2019, 62(11): 55-62.
蒋振邦,袁松梅,李真,李麒麟,宋肖珺,李燕. 镁基碳纤维增强复合材料超声辅助切削试验研究[J]. 航空制造技术, 2019, 62(11): 55-62. DOI: 10.16080/j.issn1671–833x.2019.11.055.
JIANG Zhenbang, YUAN Songmei, LI Zhen, LI Qilin, SONG Xiaojun, LI Yan. Research on Ultrasonic Assisted Cutting Carbon Fiber Reinforced Mg-Matrix Composite. Aeronautical Manufacturing Technology, 2019, 62(11): 55-62. DOI: 10.16080/j.issn1671–833x.2019.11.055.
为研究镁基碳纤维增强复合材料(C
f
/Mg)的切削力与已加工表面质量,开展了硬质合金铣刀与硬质合金钻头超声辅助切削试验研究。通过正交试验得到,超声辅助铣削Cf/Mg复合材料时铣削力随每齿进给量及铣削深度的增加而明显增大,随主轴转速的增加而减小;试验中,在超声辅助铣削时每齿进给量0.025mm、铣削深度0.2mm、转速6000r/min加工参数下铣削力最小,每齿进给量0.025mm、铣削深度0.2mm、转速4000r/min 加工参数下表面质量较好;采用硬质合金钻头进行单因素钻削试验时,轴向钻削力随主轴转速的升高而减小;与传统钻削相比,超声辅助钻削能减小轴向钻削力,在机床转速6000r/min、机床进给速度100mm/min加工参数下超声辅助钻削相比传统钻削可减小约36% 的轴向钻削力;超声辅助钻削相比传统钻削能改善钻孔出口的毛刺、分层等缺陷。
This paper aims to study the machinability of carbon fiber reinforced Mg-matrix composite (C
f
/Mg)
the ultrasonic assisted cutting experiments of carbide milling cutters and carbide drill bits are carried out. Through orthogonal test
it is found that the milling force of ultrasound-assisted milling Cf/Mg composite increases with the increase of feed and milling depth of each tooth
and decreases with the increase of spindle speed. In the test
when ultrasonic assisted milling is carried out
the feed per tooth is 0.025mm
the milling depth is 0.2mm
and the milling force is the minimum under the processing parameters of 6000r/min. The feed per tooth is 0.025mm
the milling depth is 0.2mm
and the
surface quality under the processing parameters of 4000r/min is relatively good. When single factor drilling test is carried out with carbide bit
the axial drilling force decreases with the increase of spindle speed. Compared with traditional drilling
ultrasonic assisted drilling can reduce the axial drilling force. Compared with traditional drilling
ultrasonic assisted drilling can reduce the axial drilling force by about 36% when the machine speed is 6000r/min and the feed speed of the machine is 100mm/min. Compared with traditional drilling
ultrasonic assisted drilling can decrease burr and stratification at the drilling exit.
0
浏览量
98
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621
