工程设计学报
工程設計學報
공정설계학보
JOURNAL OF ENGINEERING DESIGN
2015年
4期
381-386
,共6页
纵向振动系统%非谐振设计%全谐设计%谐振特性
縱嚮振動繫統%非諧振設計%全諧設計%諧振特性
종향진동계통%비해진설계%전해설계%해진특성
longitudinal vibration system%non-resonant design%w hole resonant design%vibration characteristic
在传统的齿轮纵向振动系统中,齿轮与变幅杆耦合处振幅较小,导致齿轮端面输出振幅偏小,满足不了齿轮超声加工的要求。基于非谐振设计理论和全谐设计理论,设计了一种新型齿轮纵向振动系统,该振动系统由齿轮与圆柱杆耦合振动单元、换能器、半波长圆锥形变幅杆组成,齿轮与变幅杆耦合处振幅较大,增大了齿轮端面的输出振幅。圆锥变幅杆形状参数固定时,齿轮分度圆直径和圆柱杆直径对齿轮端面的输出振幅没有影响,减小圆锥变幅杆小端直径可以增大齿轮端面的输出振幅。通过有限元分析和谐振特性实验验证这种新设计方法的可行性。研究结果为齿轮振动系统提供了一种新的设计方法,对齿轮超声加工工艺的工程应用具有重要意义。
在傳統的齒輪縱嚮振動繫統中,齒輪與變幅桿耦閤處振幅較小,導緻齒輪耑麵輸齣振幅偏小,滿足不瞭齒輪超聲加工的要求。基于非諧振設計理論和全諧設計理論,設計瞭一種新型齒輪縱嚮振動繫統,該振動繫統由齒輪與圓柱桿耦閤振動單元、換能器、半波長圓錐形變幅桿組成,齒輪與變幅桿耦閤處振幅較大,增大瞭齒輪耑麵的輸齣振幅。圓錐變幅桿形狀參數固定時,齒輪分度圓直徑和圓柱桿直徑對齒輪耑麵的輸齣振幅沒有影響,減小圓錐變幅桿小耑直徑可以增大齒輪耑麵的輸齣振幅。通過有限元分析和諧振特性實驗驗證這種新設計方法的可行性。研究結果為齒輪振動繫統提供瞭一種新的設計方法,對齒輪超聲加工工藝的工程應用具有重要意義。
재전통적치륜종향진동계통중,치륜여변폭간우합처진폭교소,도치치륜단면수출진폭편소,만족불료치륜초성가공적요구。기우비해진설계이론화전해설계이론,설계료일충신형치륜종향진동계통,해진동계통유치륜여원주간우합진동단원、환능기、반파장원추형변폭간조성,치륜여변폭간우합처진폭교대,증대료치륜단면적수출진폭。원추변폭간형상삼수고정시,치륜분도원직경화원주간직경대치륜단면적수출진폭몰유영향,감소원추변폭간소단직경가이증대치륜단면적수출진폭。통과유한원분석화해진특성실험험증저충신설계방법적가행성。연구결과위치륜진동계통제공료일충신적설계방법,대치륜초성가공공예적공정응용구유중요의의。
In existing gear longitudinal vibration system ,the amplitudes of gear and horn are small at the connection site ,so the output amplitude of gear is small and cannot meet the requirement of gear ultrasonic machining .Based on non‐resonant design theory and w hole resonant design theory ,a new gear longitudinal vibration system ,w hich consisted of a coupling vibration unit of gear and cylinder rod ,a half‐wavelength cone horn and a transducer ,was designed .The ampli‐tudes of gear and horn were large at the connection site of this new system ,and the output ampli‐tude of gear was increased as well .When the parameters of cone horn were certain ,the diameters of gear and cylinder rod made no influence on the output amplitude of gear .How ever ,the smaller the diameter of the small‐end cone horn was ,the larger the output amplitude of gear was .The feasibility and effectiveness of this new design method was verified by finite element analysis and resonant vibration experiment .A new design method for gear vibration system is provided w hich has important significance to the engineering application of gear ultrasonic machining .