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Design and Analysis of a Forging Die for Manufacturing of Multiple Connecting Rods

机译:用于制造多连杆的锻模的设计与分析

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This paper demonstrates to utilize the hammer capacity by modifying the die design such that forging hammer can manufacture more than one connecting rod in a given forging cycle time. To modify the die design study is carried out to understand the parameters that are required for forging die design. By considering these parameters, forging die is designed using design modelling tool solid edge. This new design now can produce two connecting rods in same capacity hammer. The new design is required to validate by verifying complete filing of metal in die cavities without any defects in it. To verify this, analysis tool DEFORM 3D is used in this project. Before start of validation process it is require to convert 3D generated models in to STL file format to import the models into the analysis tool DEFORM 3D. After importing these designs they are analysed for material flow into the cavities and energy required to produce two connecting rods in new forging die design. It is found that the forging die design is proper without any defects and also energy graph shows that the forging energy required to produce two connecting rods is within the limit of that hammer capacity. Implementation of this project increases the production of connecting rods by 200% in less than previous cycle time.
机译:本文演示通过改变模具设计,使得锻锤可以在给定的锻造循环时间内制造多于一个连接杆。为了修改模具设计研究,以了解锻造模具设计所需的参数。通过考虑这些参数,使用设计建模工具实心边缘设计锻模。这种新设计现在可以在相同的容量锤中生产两个连杆。新的设计是通过验证模腔中的金属完全归档而没有任何缺陷来验证。为了验证此项,在此项目中使用分析刀具Deform 3D。在开始验证过程之前,需要将3D生成的模型转换为STL文件格式,以将模型导入分析工具Deform 3D。在导入这些设计之后,分析它们以在新的锻造模具设计中生产两个连杆所需的空腔和能量。结果发现锻造模具设计是合适的,没有任何缺陷,并且能量图表明产生两个连杆所需的锻造能量在该锤容量的极限范围内。该项目的实施将连杆的生产增加200%,而不是之前的循环时间。

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