锻压技术
鍛壓技術
단압기술
FORGING & STAMPING TECHNOLOGY
2010年
1期
121-124
,共4页
韧件断裂准则%金属塑件成形%应力三轴度
韌件斷裂準則%金屬塑件成形%應力三軸度
인건단렬준칙%금속소건성형%응력삼축도
ductile fracture criteria%metal forming process%stress triaxiality
韧性断裂准则作为材料成形极限中的重要指标,对于准确预测金属内部和表面韧性破坏发生的时间和位置、工艺制定和模具设计具有重要的意义.以45钢为材料,采用不同形式的试件进行了拉伸、压缩、剪切、扭转等实验,并利用金属塑性成形模拟专业软件对实验过程进行数值模拟,对工程中广泛使用的11种韧性断裂准则进行分类对比研究.指出Normalized Cockroft & Latham和Brozzo断裂准则比较适用于高应力三轴度成形过程,而Ayada和Rice-Tracy断裂准则更适用于较低应力三轴度成形过程.
韌性斷裂準則作為材料成形極限中的重要指標,對于準確預測金屬內部和錶麵韌性破壞髮生的時間和位置、工藝製定和模具設計具有重要的意義.以45鋼為材料,採用不同形式的試件進行瞭拉伸、壓縮、剪切、扭轉等實驗,併利用金屬塑性成形模擬專業軟件對實驗過程進行數值模擬,對工程中廣汎使用的11種韌性斷裂準則進行分類對比研究.指齣Normalized Cockroft & Latham和Brozzo斷裂準則比較適用于高應力三軸度成形過程,而Ayada和Rice-Tracy斷裂準則更適用于較低應力三軸度成形過程.
인성단렬준칙작위재료성형겁한중적중요지표,대우준학예측금속내부화표면인성파배발생적시간화위치、공예제정화모구설계구유중요적의의.이45강위재료,채용불동형식적시건진행료랍신、압축、전절、뉴전등실험,병이용금속소성성형모의전업연건대실험과정진행수치모의,대공정중엄범사용적11충인성단렬준칙진행분류대비연구.지출Normalized Cockroft & Latham화Brozzo단렬준칙비교괄용우고응력삼축도성형과정,이Ayada화Rice-Tracy단렬준칙경괄용우교저응력삼축도성형과정.
Ductile fracture criterion is a key parameter in material forming limitation. Accuracy predicting surface and internal failure in plastic deformation process affect greatly the technology design of workpiece and die. Tension,com-pression,torsion and shearing test on 45 steel were utilized for providing the experimental values of the critical values at fracture,and 11 kinds of usually used ductile fracture criterions were selected to simulate the physical experiments and their relative accuracy for predicting and quantifying fracture initiation sites was investigated. The comparing re-suits show that metal forming process under high triaxiality can be estimated successively using both Normalized Cock-croft-latham and the Brozzo ductile fracture criteria,but the Ayada and general Riee-Tracey model work very well for the low triaxiality cases.