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On justification of efficient Energy-Force parameters of Hydraulic-excavator main mechanisms

机译:关于液压挖掘机主要机理有效能力参数的理由

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The article formulates requirements for energy-efficient designs of the operational equipment of a hydraulic excavator (its boom, stick and bucket) and defines, for a mechanism of that equipment, a new term "performance characteristic". The drives of main rotation mechanisms of the equipment are realized by hydraulic actuators (hydraulic cylinders) and transmission (leverage) mechanisms, with the actuators (the cylinders themselves, their pistons and piston rods) also acting as links of the leverage. Those drives are characterized by the complexity of translating mechanical-energy parameters of the actuators into energy parameters of the driven links (a boom, a stick and a bucket). Relations between those parameters depend as much on the types of mechanical characteristics of the hydraulic actuators as on the types of structural schematics of the transmission mechanisms. To assess how energy-force parameters of the driven links change when a typical operation is performed, it was proposed to calculate performance characteristics of the main mechanisms as represented by a set of values of transfer functions, i.e. by functional dependences between driven links and driving links (actuators). Another term "ideal performance characteristic" of a mechanism was introduced. Based on operation-emulating models for the main mechanisms of hydraulic excavators, analytical expressions were derived to calculate kinematic and force transfer functions of the main mechanisms.
机译:本文制定了液压挖掘机(毛刺,棍子和铲斗)的可节能设计的要求,并为该设备的机制定义,新术语“性能特征”。通过液压致动器(液压缸)和变速器(杠杆)机构实现了设备的主旋转机构的驱动器,致动器(气缸本身,活塞和活塞杆)也用作杠杆的链接。这些驱动器的特征在于将致动器的机械能量参数平移到从动连杆(臂,棍子和铲斗)的能量参数的复杂性。这些参数之间的关系依赖于液压致动器的机械特性的类型,如传动机构的结构示意图类型。为了评估在执行典型操作时从动链路的节能参数如何改变,建议计算由一组传递函数的值表示的主要机制的性能特征,即通过从动链路和驱动之间的功能依赖性链接(执行器)。介绍了一种机制的另一个术语“理想性能特征”。基于用于液压挖掘机的主要机制的操作模拟模型,推导出分析表达,以计算主要机制的运动和力传递函数。

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