机床与液压
機床與液壓
궤상여액압
MACHINE TOOL & HYDRAULICS
2014年
1期
12-16
,共5页
姜文彪%吴勇波%范玉峰
薑文彪%吳勇波%範玉峰
강문표%오용파%범옥봉
无心磨削%超声振动%振动板%工件转速%微细工件
無心磨削%超聲振動%振動闆%工件轉速%微細工件
무심마삭%초성진동%진동판%공건전속%미세공건
Centerless grinding%Ultrasonic vibration%Vibrating regulator%Workpiece rotation speed%Microscale parts
提出一种用于微细工件加工的新型无心磨削技术。该技术采用超声椭圆振动板取代传统无心磨床中导轮,在加工中超声椭圆振动板和托板共同支撑和控制工件的运动。通过FEM优化设计超声振动板的结构;利用测试系统对其性能进行测试,确保超声振动板端面振动轨迹可以通过施加在PZT上的输入参数来控制;通过工件转速评价装置证实振动板端面超声椭圆振动能精确控制工件旋转速度。在改进后的无心磨床上对工件进行磨削实验,结果表明:硬质合金材料工件磨削后其直径为0.06 mm,长度为15 mm,长径比达到250,证实了该技术对微细工件加工的有效性。
提齣一種用于微細工件加工的新型無心磨削技術。該技術採用超聲橢圓振動闆取代傳統無心磨床中導輪,在加工中超聲橢圓振動闆和託闆共同支撐和控製工件的運動。通過FEM優化設計超聲振動闆的結構;利用測試繫統對其性能進行測試,確保超聲振動闆耑麵振動軌跡可以通過施加在PZT上的輸入參數來控製;通過工件轉速評價裝置證實振動闆耑麵超聲橢圓振動能精確控製工件鏇轉速度。在改進後的無心磨床上對工件進行磨削實驗,結果錶明:硬質閤金材料工件磨削後其直徑為0.06 mm,長度為15 mm,長徑比達到250,證實瞭該技術對微細工件加工的有效性。
제출일충용우미세공건가공적신형무심마삭기술。해기술채용초성타원진동판취대전통무심마상중도륜,재가공중초성타원진동판화탁판공동지탱화공제공건적운동。통과FEM우화설계초성진동판적결구;이용측시계통대기성능진행측시,학보초성진동판단면진동궤적가이통과시가재PZT상적수입삼수래공제;통과공건전속평개장치증실진동판단면초성타원진동능정학공제공건선전속도。재개진후적무심마상상대공건진행마삭실험,결과표명:경질합금재료공건마삭후기직경위0.06 mm,장도위15 mm,장경비체도250,증실료해기술대미세공건가공적유효성。
A new centreless grinding technique was proposed for the process of microscale parts. Instead of using a regulating wheel,an ultrasonic vibrating regulator was employed to support the workpiece and control the rotational speed of the workpiece with the blade. The dimensions of the regulator were determined by FEM analysis. In order to confirm the motion of the end face of the regu-lator could be controlled by the parameters applying to the PZT,a measuring system was construed to measure the performance of the regulator. The rotation speed control test was used to confirm the workpiece rotation speed could be precisely controlled by the ultrason-ic motion of the regulator. A regulator was installed on an existing centreless grinder to perform actual microscale centreless grinding operations involving a tungsten carbide workpiece 60 μm in diameter and 15 mm in length. The experimental result proves the validity of the new centreless grinding technique.