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Application of rapid tooling for sheet metal forming: Flexible drawing die with punches built by SLS technique and by copying process

机译:快速工具在金属板成形中的应用:用SLS技术和复制过程用冲孔柔性拉模模具

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The Rapid Prototyping (RP) process is evolving beyond just making three-dimensional models and it is beginning to have an impact on tool construction. The sheet metal forming industries are reluctant to implement the Rapid Tooling (RT) process until the costs and time effectiveness have been proved: resulting cost cuts over conventional methods can be significant but justifying the necessary equipment can be difficult. One reason is that benefits of RP are not always easy to quantify; another is that the financial staff may not understand the need for a new technology that can radically change the way a company produces prototypes. An AISI 304 benchmark was selected. Usually it is produced in three steps: drawing; trimming and bending. The combination of prototype drawing dies and laser cutting instead of trimming can answer many questions regarding the development of metal sheet components. This paper regards the evaluation of the possibility to turn out a small batch or sampling production of sheet metal formed by means of flexible drawing die whit punch built using Selective Laser Sintering (SLS) and with one built by copying process applied to a original part produced by stereolithography (SLA). The results show that both these solutions may be successfully used even if the punch built by SLS technique guaranties higher volume production and parts quality.
机译:快速的原型(RP)过程正在不仅仅是制造三维模型,并且开始对工具结构产生影响。钣金成型行业不愿意实现快速工具(RT)过程,直到证明成本和时间效率:由于传统方法的成本切割可能是显着的,但证明必要的设备可能是困难的。一个原因是RP的益处并不总是容易量化;另一个是,金融人员可能不了解对新技术的需求可以从根本上改变公司生产原型的方式。选择了AISI 304基准。通常它是三个步骤制作:绘图;修剪和弯曲。原型绘制模具和激光切割而不是修剪的组合可以回答有关金属板组件的发展的许多问题。本文关于评估通过使用选择性激光烧结(SLS)构建的柔性拉伸模具丝绒冲床,以及通过应用于原始部件的复制过程建造的柔性拉伸模具丝绒打孔,评估了通过柔性拉伸模具丝绒打孔的钢板或采样生产的可能性。通过立体化(SLA)。结果表明,即使由SLS技术构建的冲孔保证批量生产和零件质量,也可以成功使用两种解决方案。

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