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Damping of Pressure Pulsations in Mobile Hydraulic Applications by the Use of Closed Cell Cellular Rubbers Integrated into a Vane Pump

机译:通过使用集成到叶片泵中的闭孔蜂窝状橡胶来抑制移动液压应用中的压力脉动

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摘要

The present study evaluates the potential of a bio-inspired pulsation damper in a vane pump used in mobile hydraulic applications.Pressure pulsations caused by such positive displacement pumps can lead to malfunctions and noise in a hydraulic system.A common measure to reduce pressure pulsations is the integration of pressure pulsation dampers downstream of the pump.This type of damping measure can also be found in biology as e.g.in the human blood circulatory system.Such working principles found in living organisms offer a high potential for a biomimetic transfer into technical applications.The newly developed bio-inspired damper consists of cellular rubbers with non-linear viscoelastic material properties.In order to evaluate the new damping method,pressure pulsations were measured at two different back pressures and at a wide engine speed range of the vane pump.For further assessment,different setups,varying the stiffness of the cellular rubber materials and the damper volume,were tested.Within the tested back pressures,the pressure pulsations could be reduced by up to 40%.The developed integrated pulsation damper offers a high potential to dampen pressure pulsations of positive displacement pumps used in mobile hydraulic applications operating below 10 bar.
机译:本研究评估了用于移动液压应用的叶片泵中生物启发式脉动阻尼器的潜力,这种正排量泵引起的压力脉动会导致液压系统故障和噪音,减少压力脉动的常见措施是这种阻尼措施也可以在生物学中找到,例如在人体血液循环系统中。这种在生物体内发现的工作原理为仿生转移到技术应用中提供了很高的潜力。新开发的生物启发阻尼器由具有非线性粘弹性材料特性的多孔橡胶组成。为了评估新的阻尼方法,在叶片泵的两种不同背压和较大发动机转速范围内测量了压力脉动。进一步评估,不同的设置,改变了多孔橡胶材料的刚度和阻尼器的体积,在经过测试的背压范围内,压力脉动最多可降低40%。开发的集成脉动阻尼器具有很大的潜力,可抑制10 bar以下移动液压应用中使用的容积泵的压力脉动。

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  • 来源
    《仿生工程学报(英文版)》 |2017年第4期|791-803|共13页
  • 作者单位

    Plant Biomechanics Group Freiburg, Botanic Garden, Faculty of Biology, University of Freiburg,Sch(a)nzlestr.1, 79104 Freiburg, Germany;

    Freiburg Materials Research Center(FMF), Stefan-Meier-Straβe 21, 79104 Freiburg, Germany;

    Plant Biomechanics Group Freiburg, Botanic Garden, Faculty of Biology, University of Freiburg,Sch(a)nzlestr.1, 79104 Freiburg, Germany;

    Competence Networks Biomimetic and BIOKON e.V., Sch(a)nzlestr.1, 79104 Freiburg, Germany;

    Plant Biomechanics Group Freiburg, Botanic Garden, Faculty of Biology, University of Freiburg,Sch(a)nzlestr.1, 79104 Freiburg, Germany;

    Freiburg Materials Research Center(FMF), Stefan-Meier-Straβe 21, 79104 Freiburg, Germany;

    Competence Networks Biomimetic and BIOKON e.V., Sch(a)nzlestr.1, 79104 Freiburg, Germany;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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