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3D System and method for manufacturing ship propeller using 3D printer

机译:使用3d打印机制造船舶螺旋桨的3d系统和方法

摘要

A system for producing a propeller using a 3D printer, wherein a fluid induction rail is formed on the surface of the wing of the propeller to generate a propulsion force while the fluid is introduced from the front end of the wing and discharged to the second half while maximizing propulsion efficiency The method is disclosed. Ship propeller manufacturing system using a 3D printer includes a data generation unit for generating 3D modeling data for the ship propeller; And a propeller generator configured to generate the ship propeller based on the 3D modeling data received from the data generator, wherein the 3D modeling data is connected to a driving shaft and is provided in a cylindrical shape to rotate the shaft. And a plurality of wings and fluids provided to be connected along the outer circumferential surface of the hub on the surfaces of the respective blades for advancing from the front end portion to the rear end portion, wherein the plurality of fluid induction rails are formed to guide the progress of the fluid. 3D modeling data for. As a result, the ship propeller may be manufactured by a simple process, thereby lowering the production cost, and the time required for the process may be shortened, thereby enabling mass production.
机译:一种用于使用3D打印机生产螺旋桨的系统,其中在螺旋桨机翼的表面上形成流体感应导轨,以在流体从机翼的前端引入并排放到后半部分时产生推进力。同时最大化推进效率。公开了该方法。使用3D打印机的船舶螺旋桨制造系统包括:数据产生单元,用于为船舶螺旋桨产生3D建模数据;以及螺旋桨发生器被构造为基于从数据发生器接收的3D建模数据来产生船用螺旋桨,其中3D建模数据被连接到驱动轴并且被设置为圆柱形以旋转轴。并且设置有多个翼和流体,所述多个翼和流体设置成在各个叶片的表面上沿着轮毂的外周表面连接,以从前端部向后端部行进,其中,多个流体导入轨道形成为引导流体的进展。 3D建模数据。结果,可以通过简单的工艺来制造船用螺旋桨,从而降低生产成本,并且可以缩短该工艺所需的时间,从而可以进行批量生产。

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