首页> 外国专利> METHOD OF PRODUCING A ROTOR SHAFT OF LOW-PRESSURE GAS TURBINE ENGINE COMPRESSOR AND ROTOR SHAFT OF LOW-PRESSURE COMPRESSOR, MADE ACCORDING TO THIS METHOD (VARIANTS)

METHOD OF PRODUCING A ROTOR SHAFT OF LOW-PRESSURE GAS TURBINE ENGINE COMPRESSOR AND ROTOR SHAFT OF LOW-PRESSURE COMPRESSOR, MADE ACCORDING TO THIS METHOD (VARIANTS)

机译:根据该方法(各种)制造低压燃气轮机压缩机的转子轴和低压压缩机的转子轴的方法

摘要

FIELD: engines and pumps.;SUBSTANCE: rotor axis KND GTD ("КНД ГТД") is perform as reel-disc, while assembling four-stage (by number of discs) construction. The shaft is made in three steps. At the first stage, the assembly units, i.e. the shaft front and rear bearing journals, discs and spacers are produced. At the second stage, mentioned units are gathered to three mounting sections to be coupled to compose the rotor shaft. Every section is a nonseparable structure. The front bearing journal, first and second stage discs and spacer are fitted in the first section. The second section includes the third stage disc, rear trunnion bearings and spacer. The third section - the fourth stage disc. In the third step, the sections are sequentially connected via spacers and complete the installation by attaching the drive of the fourth stage. Discs at all levels include the rim, rolling in the ring blade to the hub. Radius Rd2 of the first stage disc of the rotor shaft to the outer surface of the rim, in the middle plane of blade (0.54÷0.77) of radius Rf.p. of peripheral circuit of flow part. The exterior surface of the rim discs operate at an angle relative to the generator of rotor shaft axis coinciding with the angle of forming the internal flow path part. The number and frequency of placement slots for rotor blades of increase in the direction of the working fluid flow from the first drive to the third.;EFFECT: improvement of technological parameters for manufacturing a low-pressure compressor necessary to increase the efficiency, and expanding the gas-dynamic stability margin in the full range of compressor operation modes with a 2-fold increase in the rotor shaft resource without increasing the material consumption of the compressor.;19 cl, 2 dwg
机译:领域:发动机和泵。物质:转子轴KND GTD(“КНДГТД”)作为卷盘,同时组装四级(按盘数)构造。轴分为三个步骤。在第一阶段,生产装配单元,即轴前后轴承轴颈,制动盘和垫片。在第二阶段,将提到的单元收集到三个安装部分,以进行耦合以组成转子轴。每个部分都是不可分割的结构。前轴承轴颈,第一和第二级盘以及垫片安装在第一部分中。第二部分包括第三级盘,后耳轴轴承和垫片。第三部分-第四阶段光盘。在第三步中,各部分通过垫片顺序连接,并通过安装第四级驱动器完成安装。各个级别的盘片都包括轮辋,在环形叶片中滚动到轮毂。转子轴第一级圆盘的半径R d2 到轮辋外表面,在半径R fp 的叶片中平面(0.54÷0.77)中流动部分的外围电路。轮辋盘的外表面相对于转子轴轴线的发生器以与形成内部流路部分的角度一致的角度操作。转子叶片的放置槽的数量和频率沿从第一驱动器到第三驱动器的工作流体流的方向增加。效果:改善制造低压压缩机所需的技术参数,以提高效率并扩大在不增加压缩机材料消耗的情况下,在整个压缩机工作模式下的气动力稳定性裕量,转子轴资源增加了2倍; 19 cl,2 dwg

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