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首页> 外文期刊>International journal of automation technology >Utilization of CFRP in High-Speed Stamping Presses and its Gigacycle Fatigue Testing at Resonance Frequency
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Utilization of CFRP in High-Speed Stamping Presses and its Gigacycle Fatigue Testing at Resonance Frequency

机译:CFRP在高速冲压机中的应用及其共振频率下的千兆周期疲劳测试

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摘要

Carbon fiber reinforced polymer (CFRP) utilization meets the requirements of stiffness, damping, and light weight for enhanced performance of machine tools. Stamping presses are expected to function for billions of cycles, resulting in the fatigue of the employed materials and parts. High-speed stamping presses, such as the Bruderer BSTA-200, should fulfil the increasing customer requirement of enhancing both quality and quantity of the delivered parts. Among the quickest presses currently available in the market, these BSTA presses can reach speeds up to 2000 strokes per minute (spm) with a stroke of 8 mm and still continue operating for many decades. For this project, new requirements were defined: a 25% increase of the stamping speed reaching up to 2500 spm, while maintaining the same stroke of 8 mm. The ram was redesigned by making use of CFRP, and because of its high stiffness and strength, it enabled a weight reduction of 65%. Owing to the stamping force of 200 kN and the impact of the stamping process, the material of the ram is highly strained. A major concern in utilizing CFRP in machine tools is the fatigue and change in material properties with increasing stress cycles. Therefore, the fatigue behavior of CFRP had to be validated in the very high cycle fatigue (VHCF) range. This was performed using a newly developed fatigue test bench. To complete 109 cycles within a few weeks, the testing occurred at the specimen's resonance frequency with a constant and controlled strain of 0.1%. Aspects such as resonance frequency testing, heating of the specimen, and an accurate measuring system were considered. The specimens had to be designed and optimized for this type of testing, thus resulting in a cylindrical tube shape with a unidimensional (UD) arrangement of the fibers in longitudinal and transverse direction.
机译:碳纤维增强聚合物(CFRP)的使用满足了刚度,阻尼和重量轻的要求,以提高机床的性能。预计冲压机将运行数十亿次,从而导致所用材料和零件疲劳。高速冲压机,例如Br​​uderer BSTA-200,应满足日益增长的客户要求,以提高交付零件的质量和数量。在目前市场上最快的压力机中,这些BSTA压力机的冲程最高可达8毫米,每分钟可达到2000冲程(spm)的速度,并且仍可继续使用数十年。对于该项目,定义了新的要求:冲压速度提高25%,达到2500 spm,同时保持8 mm的相同行程。通过使用CFRP对撞锤进行了重新设计,并且由于其高刚度和强度,重量减轻了65%。由于200 kN的冲压力和冲压过程的影响,闸板的材料高度应变。在机床中使用CFRP的一个主要问题是疲劳和材料性能随应力循环的增加而变化。因此,必须在非常高的循环疲劳(VHCF)范围内验证CFRP的疲劳行为。这是使用新开发的疲劳试验台进行的。为了在几周内完成109个循环,测试以标本的共振频率进行,且恒定且受控应变为0.1%。考虑了诸如共振频率测试,样品加热和精确测量系统等方面。样本必须针对这种类型的测试进行设计和优化,从而形成圆柱管形状,并在纵向和横向方向上以一维(UD)排列纤维。

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  • 来源
    《International journal of automation technology》 |2020年第2期|311-325|共15页
  • 作者

  • 作者单位

    inspire AG 1 Technoparkstrasse Zürich 8005 Switzerland Institute for Machine Tools and Manufacturing (IWF) ETH Zürich Zürich Switzerland;

    inspire AG 1 Technoparkstrasse Zürich 8005 Switzerland;

    Institute for Machine Tools and Manufacturing (IWF) ETH Zürich Zürich Switzerland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CFRP fatigue testing; high speed stamping presses;

    机译:CFRP疲劳测试;高速冲压机;

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