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The NC Mechanism of Reciprocating Rectilinear Movement at High Frequency Based on Two Symmetrical Cranks

机译:基于两个对称曲柄的高频往复直线运动的NC机制

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The reciprocating rectilinear moving mechanism is applied widely in the industry, which is now usually driven by the non-symmetrical mechanism. Due to the changing radial force generated by the slider, the big friction loss and the vibration noise are caused. And, the size of travel in reciprocating motion is fixed and can not be adjusted. In order to overcome these defections, the reciprocating rectilinear moving mechanism at high frequency driven by the stepper or servo motors based on two symmetrical cranks is innovated in this paper, in which the linear movement is converted by the two cranks. The radial forces in this innovated mechanism are quite symmetrical and balanced, so the friction loss can be almost ignored and the oscillation noise is very small too. Then, through programming, the angle range of stepper or servo motors can be controlled to output any required displacement and any required force. Thus, the scope of application of this mechanism is expanded extremely.
机译:往复式的直线移动机构广泛应用于行业,现在通常由非对称机构驱动。由于滑块产生的变化径向力,引起了大摩擦损失和振动噪声。并且,往复运动中的行进尺寸是固定的,无法调整。为了克服这些偏差,在由基于两个对称曲柄的步进或伺服电动机驱动的高频驱动的往复直线移动机构在本文中创新,其中线性移动由两个曲柄转换。这种创新机制中的径向力是相当对称和平衡的,因此摩擦损失几乎忽略,振荡噪声也很小。然后,通过编程,可以控制步进或伺服电动机的角度范围以输出任何所需的位移和任何所需的力。因此,这种机制的应用范围是极大的。

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