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Process Window For Forming Of Micro Preforms At Different Temperatures

机译:用于在不同温度下形成微观的过程窗口

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Parts, which dimensions do not exceed the micro range are gaming more importance in today's goods due to miniaturization and function compaction of products. Thus, fabrication methods for these special, very small parts attract notice because whole processes or at least process parameters cannot be transferred into micro range. Nevertheless, this does not necessarily mean that size-effects are always detrimental, as there are some processes which can only be carried out in micro range such as the laser-based micro upsetting process. The basic characteristics of this process are presented in this paper such as its self-aligning capability. Due to the fact that the maximum achievable upset ratio in single stage upsetting decreases with decreasing sample size, the material accumulation represents a very good semi-finished product (preform) being formed in a succeeding upsetting process. A temperature- and time controlled forming unit has been developed and is directly adapted to the laser system which is required to generate the preform. Thus, either a pre-defined temperature of the preform or the down time gives the initial signal to start the forming process. In this paper, a mathematical model is very briefly discussed to determine the process window for forming preforms at certain well defined temperatures regarding size-effects.
机译:由于产品的小型化和功能压实,零件不超过微范围的零件在当今的商品中是更重要的。因此,对于这些特殊的,非常小的部件的制造方法吸引了通知,因为整个过程或至少过程参数不能转移到微距离中。然而,这并不一定意味着大小效应始终有害,因为存在一些过程,其只能在诸如基于激光的微镦镦过程的微观范围内进行。本文提出了该方法的基本特性,例如其自对准能力。由于在单阶段镦粗的最大可镦伤比率随着样品尺寸的降低而降低的情况下,材料累积表示在后续镦锻过程中形成的非常好的半成品(预制件)。已经开发了温度和时间控制的形成单元,并且直接适用于产生预制件所需的激光系统。因此,预先定义的预制件或下降时间的预定温度给出了启动成形过程的初始信号。在本文中,非常简要地讨论了数学模型以确定用于在关于尺寸效应的某些明确的温度下形成预成型件的过程窗口。

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