光学精密工程
光學精密工程
광학정밀공정
OPTICS AND PRECISION ENGINEERING
2010年
2期
426-433
,共8页
郑新毅%贾振元%任小涛%王福吉
鄭新毅%賈振元%任小濤%王福吉
정신의%가진원%임소도%왕복길
电火花加工%小孔%放电参数%圆柱度评定%正交试验
電火花加工%小孔%放電參數%圓柱度評定%正交試驗
전화화가공%소공%방전삼수%원주도평정%정교시험
Electrical Discharge Machining(EDM)%small hole%discharge parameter%cylindricity evaluation%orthogonal experiment
为实现电火花加工小孔圆柱度误差的合理控制,通过工艺试验研究了放电参数与小孔圆柱度间的规律.提出了多截面直角坐标测量方法,用线切割对已加工小孔的工件进行轴向和径向切割,以产生反映小孔特征的母线基准和圆基准;然后,用万能工具显微镜对这两个基准上的特征点进行测量,最终实现小孔圆柱度的定量评定.在此基础上,采用正交试验研究了放电参数(开路电压、电流,脉宽,脉间,抬刀周期)对小孔圆柱度的影响.结果表明,脉宽对圆柱度的影响最为显著,开路电压次之,其余3个参数的影响较弱;实验获得了以圆柱度误差最小为评价目标的一组放电参数:开路电压110 V,电流0.6 A,脉宽150 μs,脉间120 ,425 μs,刀周期1+2 s.验证实验得到了平均半径为0.301 84 mm的小孔,其圆柱度误差为0.021 mm,说明用该方法控制电火花加工小孔的圆柱度是有效的.
為實現電火花加工小孔圓柱度誤差的閤理控製,通過工藝試驗研究瞭放電參數與小孔圓柱度間的規律.提齣瞭多截麵直角坐標測量方法,用線切割對已加工小孔的工件進行軸嚮和徑嚮切割,以產生反映小孔特徵的母線基準和圓基準;然後,用萬能工具顯微鏡對這兩箇基準上的特徵點進行測量,最終實現小孔圓柱度的定量評定.在此基礎上,採用正交試驗研究瞭放電參數(開路電壓、電流,脈寬,脈間,抬刀週期)對小孔圓柱度的影響.結果錶明,脈寬對圓柱度的影響最為顯著,開路電壓次之,其餘3箇參數的影響較弱;實驗穫得瞭以圓柱度誤差最小為評價目標的一組放電參數:開路電壓110 V,電流0.6 A,脈寬150 μs,脈間120 ,425 μs,刀週期1+2 s.驗證實驗得到瞭平均半徑為0.301 84 mm的小孔,其圓柱度誤差為0.021 mm,說明用該方法控製電火花加工小孔的圓柱度是有效的.
위실현전화화가공소공원주도오차적합리공제,통과공예시험연구료방전삼수여소공원주도간적규률.제출료다절면직각좌표측량방법,용선절할대이가공소공적공건진행축향화경향절할,이산생반영소공특정적모선기준화원기준;연후,용만능공구현미경대저량개기준상적특정점진행측량,최종실현소공원주도적정량평정.재차기출상,채용정교시험연구료방전삼수(개로전압、전류,맥관,맥간,태도주기)대소공원주도적영향.결과표명,맥관대원주도적영향최위현저,개로전압차지,기여3개삼수적영향교약;실험획득료이원주도오차최소위평개목표적일조방전삼수:개로전압110 V,전류0.6 A,맥관150 μs,맥간120 ,425 μs,도주기1+2 s.험증실험득도료평균반경위0.301 84 mm적소공,기원주도오차위0.021 mm,설명용해방법공제전화화가공소공적원주도시유효적.
In order to control the cylindricity errors of small holes machined by Electrical Discharge Machining (EDM), the relations between the electrical parameters and the cylindricity of small holes was studied by technologic experiments. In the courof studying, a multi-cross section measuring method in a Cartesian coordinate was proposed. The Wire Electrical Discharge Machining(WEDM) was used to cut the processed workpieces in axial and radial directions to obtain the generatrix datum and circle datum of machined small holes, then the characteristic points of two data were measured by an universal tool microscope, and the cylindricity quantitative evaluation of the small holes was realized. Based on the method above, an orthogonal experiment was carried out, and the effect of some main electrical parameters (voltage, current, pulse duration, pulse interval and tool-lifting) on the cylindricity of small holes was studied. The results indicate that the pulse width affects cylindricity most distinctly, the voltage comes second, and the effect of rest parameters show a bit weaker.A sets of discharge parameters are achieved to purchase the least cylindricity error, which are V=110 V, I=0.6 A, t_(on)=150 μs, t_(off)=120 μs and tool-lifting time=1+2 s. In the experiment, a small hole with a average radius of 0.301 84 mm can offer the cylindricity of 0.021 mm,which means the presented method is effective to control the cylindricty of the small holes machined by EDM.