机械工程学报
機械工程學報
궤계공정학보
Journal of Mechanical Engineering
2015年
17期
146-155
,共10页
李冬英%李梦奇%张根保%王扬%冉琰
李鼕英%李夢奇%張根保%王颺%冉琰
리동영%리몽기%장근보%왕양%염염
装配精度控制%元动作装配单元%误差源%装配位置误差%误差传递
裝配精度控製%元動作裝配單元%誤差源%裝配位置誤差%誤差傳遞
장배정도공제%원동작장배단원%오차원%장배위치오차%오차전체
assembly precision controlling%meta-action assembly unit%error source%assembly situation deviation%error propagation
机械产品装配误差源和误差传递规律分析,是装配精度预测与控制的前提工作.在对数控机床进行结构化分解至元动作的基础上,提出了元动作装配单元的概念.针对元动作装配单元层面影响装配质量的因素,将装配过程的误差源分为位置误差、形状误差、装配位置误差等五类误差源;建立各类误差源及其误差评价的统计模型;分析误差在零件间、零件内两特征间的传递和相互作用,构建误差传递链图、误差传递网络对五种误差源与配合误差进行形象化表达.综合误差传递链接图,建立面向整个产品误差传递及装配功能表达的装配误差网络图模型,为方便误差传递网络图中各类误差传递模型的计算与存储,又进一步构建了面向整个产品装配误差传递的链接矩阵.以某加工中心连续分度转台蜗杆转动元动作装配单元装配为例,验证误差源表达和误差传递模型的有效性.
機械產品裝配誤差源和誤差傳遞規律分析,是裝配精度預測與控製的前提工作.在對數控機床進行結構化分解至元動作的基礎上,提齣瞭元動作裝配單元的概唸.針對元動作裝配單元層麵影響裝配質量的因素,將裝配過程的誤差源分為位置誤差、形狀誤差、裝配位置誤差等五類誤差源;建立各類誤差源及其誤差評價的統計模型;分析誤差在零件間、零件內兩特徵間的傳遞和相互作用,構建誤差傳遞鏈圖、誤差傳遞網絡對五種誤差源與配閤誤差進行形象化錶達.綜閤誤差傳遞鏈接圖,建立麵嚮整箇產品誤差傳遞及裝配功能錶達的裝配誤差網絡圖模型,為方便誤差傳遞網絡圖中各類誤差傳遞模型的計算與存儲,又進一步構建瞭麵嚮整箇產品裝配誤差傳遞的鏈接矩陣.以某加工中心連續分度轉檯蝸桿轉動元動作裝配單元裝配為例,驗證誤差源錶達和誤差傳遞模型的有效性.
궤계산품장배오차원화오차전체규률분석,시장배정도예측여공제적전제공작.재대수공궤상진행결구화분해지원동작적기출상,제출료원동작장배단원적개념.침대원동작장배단원층면영향장배질량적인소,장장배과정적오차원분위위치오차、형상오차、장배위치오차등오류오차원;건립각류오차원급기오차평개적통계모형;분석오차재령건간、령건내량특정간적전체화상호작용,구건오차전체련도、오차전체망락대오충오차원여배합오차진행형상화표체.종합오차전체련접도,건립면향정개산품오차전체급장배공능표체적장배오차망락도모형,위방편오차전체망락도중각류오차전체모형적계산여존저,우진일보구건료면향정개산품장배오차전체적련접구진.이모가공중심련속분도전태와간전동원동작장배단원장배위례,험증오차원표체화오차전체모형적유효성.
Mechanism of error sourcing and propagation for rigid part assembly is the important work for mechanical precision predicting. The concept of meta-action assembly unit is proposed based on the structure decomposition using PFMA for CNC machine tool. The deviation source that affects assembly precision or accuracy is clustered into five types: Deviation of geometric location and orientation, variation of geometric form and deviation of part location and orientation etc. Error sources and statistical evaluation model is established. In addition, mechanism of deviation propagation between two mating surfaces or key characteristics is discussed. Propagation linkage graph and, the error propagation linkage network for five kinds of error sources are built to express the error in vision and cooperate with error in visual expression. Error transfer linkage figure is comprehensively considered, and build assembly linkage network model and error transfer function expression. To simplify the error transfer linkage in the network diagram calculation and save of all kinds of error propagation model, the linkage for the entire product assembly error propagation linkage matrix is built. Finally, an example with deviation sourcing and propagation is introduced to verify the effectiveness of each model.