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An adjustable ship propeller with the hydrodynamic setting, adjusting spring stipulates and synchronization system

机译:具有水动力设置,调节弹簧规定和同步系统的可调式船舶螺旋桨

摘要

A marine propeller includes a hub rotatable about a longitudinal axis and having a plurality of blades extending radially outwardly therefrom and pivotable about respective radial pivot axes between a low pitch position and a high pitch position. Each blade has a hydrodynamic force characteristic which shifts the location of the resultant hydrodynamic force on the blade in a direction aiding up-pitching of the blade, and increasing the up-pitching pivot moment with decreasing angles of attack. A counteractive hydrodynamic force generating area is provided on the negative pressure backside surface of the blade and shifts the location of the resultant hydrodynamic force on the frontside surface forwardly with decreasing angle of attack. The blade is pivoted by increased water flow along the counteractive hydrodynamic force generating area with decreasing angles of attack, which increased water flow generates a backside hydrodynamic force on the blade at the counteractive hydrodynamic force generating area spaced from the pivot axis by a moment arm provided by the section of the blade between the pivot axis and the counteractive hydrodynamic force generating area, such that the backside hydrodynamic force acting on the moment arm pivots the blade to an increased pitch position. The counteractive hydrodynamic force generating area on the backside surface at the rearward trailing portion separates water flow along the backside surface at high angles of attack, and re-attaches water flow along the backside surface at low angles of attack to change the backside surface at the rearward trailing portion to a positive pressure area to generate the up-pitching moment. A disc has a plurality of guide slots each receiving and retaining a respective lever arm extending rearwardly within the hub from a respective blade. A biasing spring coaxial with the longitudinal axis of rotation of the hub biases the disc to in turn bias the lever arms and blades to the low pitch position. The disc is a generally flat planar plate-like member extending radially outwardly from the longitudinal axis at the rear of the hub and includes a preload mechanism accessible at the rear of the hub for adjusting the bias. The disc restricts movement of the lever arms along the guide slots such that the lever arms can move only in unison, which prevents blade flutter. Pivoting of the blades is controlled by both a) movement of the lever arms along the guide slots, and b) arcuate movement of the guide slots as the disc rotates about the longitudinal axis, such that pivoting of each blade from its low pitch position to its high pitch position requires both a) movement of the respective lever arm along its respective guide slot, and b) rotation of the disc to arcuately move the guide slot. IMAGE
机译:一种船用螺旋桨,其包括可绕着纵轴旋转的轮毂,该轮毂具有多个叶片,该叶片从其径向向外延伸,并可绕相应的径向枢轴在低俯仰位置和高俯仰位置之间枢转。每个叶片具有流体动力特征,该特征使所得的流体动力在叶片上的位置沿辅助叶片向上倾斜的方向移动,并随着攻角的减小而增大向上枢转力矩。在叶片的负压后侧表面上设置有反作用的水动力产生区域,并以减小的迎角向前移动所得的水动力在前侧表面上的位置。通过增加的水流沿反作用水动力产生区域以减小的迎角使叶片枢转,该增加的水流在由枢转轴隔开的反作用水动力产生区域上通过设置的力矩臂在叶片上产生背面水动力。通过叶片在枢转轴线和反作用流体动力产生区域之间的截面,使得作用在力矩臂上的背面流体动力将叶片枢转到增大的俯仰位置。在向后尾部的后表面上的反作用水动力产生区域以高迎角分离沿后表面的水流,并以低迎角将沿后表面的水流重新附着,以改变后表面的水流。向后的尾部到正压区域以产生向上俯仰力矩。盘具有多个引导槽,每个引导槽容纳并保持从各个叶片在毂内向后延伸的各个杠杆臂。与轮毂的纵向旋转轴线同轴的偏置弹簧偏置光盘,进而将杠杆臂和刀片偏置到低俯仰位置。盘是在毂的后部从纵向轴线径向向外延伸的大体平坦的平板状的板状构件,并且包括在毂的后部可接近的用于调节偏压的预紧机构。圆盘限制杠杆臂沿导向槽的移动,以使杠杆臂只能一致地移动,从而防止刀片晃动。刀片的枢转通过以下两种方式来控制:a)杠杆臂沿导向槽的运动,以及b)当圆盘绕纵向轴线旋转时,导向槽的弧形运动,以使每个刀片从其低螺距位置枢转至其高俯仰位置需要a)相应的杠杆臂沿其相应的导向槽移动,以及b)盘的旋转以弧形移动导向槽。 <图像>

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