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Solution for the Location of Rock Cutting Elements Relative to the Rotation Center of Geohod

机译:相对于风电旋转中心的岩石切割元件定位解决方案

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The article presents the technical solution for the location of cutting elements relative to the rotation center of Geohod for destructing rocks with a strength up to 1 of Protodyakonov hardness. The relevancy of the research is considered. General information about Geohod is given. The features of working body of Geohod are described, in particular, the formation of a complex shape of the face and the working body, and it is also said that in the case of screw movement of working body of Geohod to the face, the points of working body form a helicoidal (helical) surface. To set the purpose and objectives of the study the geometric parameters of generatrix are justified. The parameter depending on the number of blades and on the radius of location of the blade’s cut is identified. Based on the study, the dependence of the number of blades on their location from the center to the periphery is determined. The design of blade working body of Geohod for rocks with a strength f <1 of Protodyakonov hardness is offered. Also the directions for further research have been identified, which include: the development of methods for calculating cutting forces for a technical solution for the location of cutting elements relative to the center of rotation of Geohod for destructing rocks up to 1 of Protodyakonov hardness; the application of this technique for obtaining variants of the blade working body of Geohod of different types.
机译:这篇文章提出了相对于Geohod旋转中心定位切削元件的技术解决方案,以破坏强度高达Protodyakonov硬度1的岩石。考虑该研究的相关性。给出了有关Geohod的一般信息。描述了Geohod的工作体的特征,特别是面部和工作体的复杂形状的形成,并且据说在Geohod的工作体螺旋移动到面部的情况下,要点主体的表面形成螺旋(螺旋)表面。为了设定研究的目的和目的,对母线的几何参数进行了证明。确定取决于刀片数量和刀片切口位置半径的参数。基于这项研究,确定了叶片数量从中心到外围的位置依赖性。提供用于强度f <1 Protodyakonov硬度的岩石的Geohod铲刀主体的设计。还确定了进一步研究的方向,包括:为技术解决方案开发计算切削力的方法,以解决相对于Geohod旋转中心的切削元件位置的问题,以破坏Protodyakonov硬度高达1的岩石;该技术在获得不同类型的Geohod叶片工作体的变型中的应用。

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