期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Experimental study on the meso-scale milling of tungsten carbide WC-17.5Co with PCD end mills 被引量:2
1
作者 Wei Zhao Asif Iqbal +2 位作者 Ding Fang Ning He Qi Yang 《Advances in Manufacturing》 SCIE CAS CSCD 2020年第2期230-241,共12页
Tungsten carbide is a material that is very difficult to cut,mainly owing to its extreme wear resistance.Its high value of yield strength,accompanied by extreme brittleness,renders its machinability extremely poor,wit... Tungsten carbide is a material that is very difficult to cut,mainly owing to its extreme wear resistance.Its high value of yield strength,accompanied by extreme brittleness,renders its machinability extremely poor,with most tools failing.Even when cutting with tool materials of the highest quality,its mode of cutting is mainly brittle and marred by material cracking.The ductile mode of cutting is possible only at micro leveIs of depth of cut and feed rate.This study aims to investigate the possibility of milling the carbide material at a meso-scale using polycrystaline diamond(PCD)end mills.A series of end milling experiments were performed to study the effects of cutting speed,feed per tooth,and axial depth of cut on performance measures such as cutting forces,surface roughness,and tool wear.To characterize the wear of PCD tools,a new approach to measuring the level of damage sustained by the faces of the cutter's teeth is presented.Analyses of the experimental data show that the effects of all the cutting parameters on the three performance measures are significant.The major damage mode of the PCD end mills is.found to be the intermittent micro-chipping.The progress of tool damage saw a long,stable,and steady period sandwiched between two short,abrupt,and intermittent periods.Cutting forces and surface roughness are found to rise with increments in the three cutting parameters,although the latter shows signs of reduction during the initial increase in cutting speed only.The results of this study find that an acceptable surface quality(average roughness Ra<0.2μm)and tool life(cutting length L>600mm)can be obtained under the conditions of the given cutting parameters.It indicates that milling with PCD tools at a meso-scale is a suitable machining method for tungsten carbides. 展开更多
关键词 Tungsten carbide Meso-scale milling Polycrystalline diamond(pcd)end mill Cutting force Surface roughness Tool wear
原文传递
增材制造钛合金的微铣削加工试验 被引量:1
2
作者 陈仲伟 吴贤 +2 位作者 赵孟 姜峰 朱来发 《南京航空航天大学学报》 CAS CSCD 北大核心 2024年第3期457-467,共11页
增材制造(Additive manufacturing,AM)技术制备的钛合金部件在航空航天领域具有广泛的用途,对增材制造钛合金精密零部件而言,铣削、抛光等后处理加工是必不可少的工序。本文选用聚晶金刚石(Polycrystalline diamond,PCD)微铣刀对锻造钛... 增材制造(Additive manufacturing,AM)技术制备的钛合金部件在航空航天领域具有广泛的用途,对增材制造钛合金精密零部件而言,铣削、抛光等后处理加工是必不可少的工序。本文选用聚晶金刚石(Polycrystalline diamond,PCD)微铣刀对锻造钛合金、激光选区熔化(Selective laser melting,SLM)技术制备的未经过热处理和经过热处理的钛合金进行微铣削试验,研究了3种不同制造工艺的钛合金材料的微铣削加工性能。结果表明:SLM-热处理钛合金的铣削力最大,这与其材料硬度最高有关。微铣削过程中,所有钛合金材料的逆铣侧顶端毛刺尺寸均要大于顺铣侧顶端毛刺尺寸。在不同制造工艺的钛合金材料中,SLM-钛合金生成的顶端毛刺宽度最小,这与其塑性最差有关。SLM-热处理钛合金获得的表面质量最好,这不仅与材料的硬度和塑性有关,同时还受到孔隙度的影响。 展开更多
关键词 锻造钛合金 激光选区熔化-钛合金 激光选区熔化-热处理钛合金 微铣削加工性能 聚晶金刚石微铣刀
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部