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IMPACT OF DRAWING RATIO AND SHAPE ON THICKNESS DISTRIBUTION ALONG THE WALLS OF DEEP DRAWN CUPS

机译:拉伸比和形状对深拉杯壁厚度分布的影响

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Deep drawing is the process of converting a flat blank into cup shaped articles. In this process a punch forces the blank to take the shape of die cavity. Different shapes and sizes of products for automotive bodies, structural parts, utensils and beverage cans are manufactured by this process. Using bimetallic strip in preparing the various products by deep drawing has become the recent trend in manufacturing process. The main reason to carry out such a process is taking the advantages of different materials such as high strength, low density and corrosion resistibility, at the same time and in a single component. The cost of the component gets reduced too. In the deep drawn cups the thickness of the sheet metal varies throughout the walls of cup. This is undesirable as non uniform thickness leads to defects like cracks or failures. As thickness variation depends upon several parameters like limit drawing ratio, drawing force, sheet material, geometry of blank etc. it can be minimized by selecting optimum process parameters. This work is related to deep drawing of cups which are made using bimetallic strip. The objective of this work is to study the variation in thickness along the side walls of deep drawn cups which are made using bimetallic material i.e. Cu-Al and also to determine the optimum drawing ratio for producing a cup of specific size. The study was carried out in Amba Bhavani tool crafts and Metal Forming lab of CBIT. In this work the variation in thickness along the walls of cup for three different shapes, i.e: circular, square, heart. were investigated. The studies reveal that the variation in thickness is different for different shaped cups and also the variation in sheet thickness is different when Copper and Aluminium are in turn made as inside surfaces of bimetallic cups.
机译:深图是将扁平坯料转换成杯形制品的过程。在该过程中,冲孔迫使坯料采取模腔的形状。通过该过程制造了汽车体,结构部件,器具和饮料罐的不同形状和尺寸的产品。通过深度绘图使用双金属条在制备各种产品时,已成为最近制造过程的趋势。执行此类过程的主要原因是在同一时间和单个组分中采用不同材料的优点,如高强度,低密度和耐腐蚀性。组件的成本也降低了。在深绘制的杯子中,金属板的厚度在杯子的墙壁上变化。这是不希望的,因为不均匀的厚度导致裂缝或故障等缺陷。由于厚度变化取决于像极限拉伸比,拉伸力,片材,空白的几何形状等若干参数等。通过选择最佳工艺参数,可以最小化。这项工作与使用双金属条制造的杯子的深图。这项工作的目的是研究使用双金属材料的深拉杯侧壁的厚度的变化,其使用双金属材料,即Cu-A1,并确定产生一杯特定尺寸的最佳拉伸比。该研究进行了在Amba Bhavani工艺品和Cit的金属成型实验室中进行。在这方面,工作沿着杯子的厚度变化为三种不同的形状,即:圆形,方形,心脏。被调查了。研究表明,对于不同形状的杯子,厚度的变化是不同的,并且当铜和铝时,片材厚度的变化也不同,当铜和铝又在双金属杯的内表面形成时。

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