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金屬薄板滾壓沖裁過程數值模擬及模具參數

Numerical simulation of metal sheet rotary blanking and die parameters

  • 摘要: 研究了在沒有壓下輥的情況下滾壓沖裁過程的運動學特性,據此提出了通孔滾壓沖裁模具的設計方案.在此基礎上,利用ABAQUS有限元軟件進行了基于Shear Failure韌性斷裂準則和任意拉格朗日一歐拉自適應網格技術的45號鋼薄板滾壓沖裁過程有限元仿真,分析了主要參數對斷面質量的影響.仿真結果表明:方形孔滾壓沖裁時,前后刃口依次經歷板帶彎曲、凸模壓入、裂紋產生和發展、斷裂和凸模拔出五個階段;滾壓沖裁斷面的主要質量缺陷包括斷面垂直度、毛刺、塌角、壓痕等;影響滾壓沖裁斷面質量的主要因素包括側隙、凸模高度、輥子半徑等.減小標稱側隙和凸模高度、增大輥子半徑均會使斷面質量提高,其中又以對斷面垂直度和毛刺高度的影響更為明顯.對于45號鋼一類的碳鋼,后刃口標稱側隙以板厚的5%-10%為宜,前刃口標稱側隙可以更小:輥子半徑應以大于板厚的100-150倍為宜;在保證板材完全斷裂的前提下,應使凸模高度盡量減小.

     

    Abstract: The kinematic characteristics of rotary blanking without press rollers was researched, and then a design scheme of dies was put forward for sheet metal rotary blanking. Finite element simulation of 45# steel sheet rotary blanking processes was performed by ABAQUS software based on shear failure criterion and arbitrary Lagrangian Eulerian adaptive meshing method, and the influence of technical parameters on machining quality was analyzed according to this simulation result. It is found that the front and rear cutting edges of square holes undergo five stages during rotary blanking:metal sheet bending, punch indentation, crack initiation and propagation, material fracture and separation, and punch pullout. Quality defects in rotary blanking processes appear as perpendicularity, burr, corner collapse, indentation, etc. The main factors which influence cutting quality perspicuously include nominal clearance, punch height, roller radius, and so on. Decreasing the nominal clearance, lessening the punch height and enlarging the roller can improve cutting quality, especially are good to cutting perpendicularity and burr height. For carbon steel such as 45# steel, the nominal clearance of the rear cutting edge should be 5% to 10% of metal sheet thickness and this value of the front cutting edge can be smaller. The roller radius should be 100 to 150 times greater than metal sheet thickness. On the condition that the metal sheet could be fully separated, the punch height should be as small as possible.

     

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