机械与电子
機械與電子
궤계여전자
Machinery & Electronics
2015年
9期
11-15
,共5页
电连接器%可靠性%ANSYS 仿真%振动应力
電連接器%可靠性%ANSYS 倣真%振動應力
전련접기%가고성%ANSYS 방진%진동응력
electrical connectors%reliability%ANSYS simulation%vibration stress
深入研究和分析了 JF 系列某型电连接器的组件端子在随机振动应力作用下的接触失效情况,由组件端子的失效机理及其运动状态构建出理论力学模型,考虑理论模型分析及实际失效情况,提出组件端子在随机振动作用下的可靠性增长方法。构建 JF 系列某型电连接器的组件端子插拔力的数学模型并对插拔力进行了分析,确定了插拔力的变化趋势及各因素之间的关系。参照相关手册确定了组件端子插拔力的取值范围,得出在取值范围内振动应力作用下组件端子接触失效随插拔力的增加而降低的结论。建立 JF 系列某型电连接器单针孔接触对的有限元仿真模型,并利用此模型模拟了电连接器接触件的插合与分开过程,得到接触面最大和最小插拔力时的应力和应变分布图以及随时间变化图。
深入研究和分析瞭 JF 繫列某型電連接器的組件耑子在隨機振動應力作用下的接觸失效情況,由組件耑子的失效機理及其運動狀態構建齣理論力學模型,攷慮理論模型分析及實際失效情況,提齣組件耑子在隨機振動作用下的可靠性增長方法。構建 JF 繫列某型電連接器的組件耑子插拔力的數學模型併對插拔力進行瞭分析,確定瞭插拔力的變化趨勢及各因素之間的關繫。參照相關手冊確定瞭組件耑子插拔力的取值範圍,得齣在取值範圍內振動應力作用下組件耑子接觸失效隨插拔力的增加而降低的結論。建立 JF 繫列某型電連接器單針孔接觸對的有限元倣真模型,併利用此模型模擬瞭電連接器接觸件的插閤與分開過程,得到接觸麵最大和最小插拔力時的應力和應變分佈圖以及隨時間變化圖。
심입연구화분석료 JF 계렬모형전련접기적조건단자재수궤진동응력작용하적접촉실효정황,유조건단자적실효궤리급기운동상태구건출이론역학모형,고필이론모형분석급실제실효정황,제출조건단자재수궤진동작용하적가고성증장방법。구건 JF 계렬모형전련접기적조건단자삽발력적수학모형병대삽발력진행료분석,학정료삽발력적변화추세급각인소지간적관계。삼조상관수책학정료조건단자삽발력적취치범위,득출재취치범위내진동응력작용하조건단자접촉실효수삽발력적증가이강저적결론。건립 JF 계렬모형전련접기단침공접촉대적유한원방진모형,병이용차모형모의료전련접기접촉건적삽합여분개과정,득도접촉면최대화최소삽발력시적응력화응변분포도이급수시간변화도。
This paper studies the terminal contact failure of JF series electric connector under random vibration stress,and presents the relative motion state and mechanical model from the failure mechanisms of terminal contact parts.A reliability growth program for electrical connector under random vibration stress is then proposed based on theoretical model analysis and actual failures the mathematical model of insertion and extraction force of terminal parts of JF Series electrical connector is established and analyzed,to determine in the relationship between the variation tendencies of in-sertion and extraction force and other factors.The conclusion that the data range of the terminal compo-nent insertion and extraction force is determined with reference to the relevant manuals where contact failure reduces as the insertion and extraction force increase within the data range is reached.Good correlation be-tween the simulation results and those predicted from the theory models were obtained by establishing simu-lation experiment on the separation process of electric connector contact pair.The finite element simulation model of single pin and sock contact pair is developed, to simulate the dynamic behavior of the contacts,and to obtain the figure of the stress and strain distribution and variation with time for contacts at the time of the maximum and minimum insertion force.