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An aeroengine rotor assembly measurement device based on three-point weighing and three-objective optimization method

An aero-engine and rotor assembly technology, which is applied to measuring devices, electrical devices, optical devices, etc., can solve the lack of aero-engine rotor assembly, the inability to take into account the optimization of rotor unbalance and moment of inertia, and the inability to directly give stage rotors Problems such as optimal assembly phase

Inactive Publication Date: 2020-08-07
HARBIN INST OF TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The problem with this method is that the influence of the mass characteristics of the rotor on the assembly quality is not considered, and the optimization of the rotor unbalance and moment of inertia cannot be taken into account while the rotor coaxiality is up to standard.
The problem with this method is that the optimal assembly phase of the rotors at each stage cannot be directly given, and the assembly position can only be fitted layer by layer according to the rotor shape and position tolerance. Assembly position fitting, low assembly efficiency
[0006] At present, the domestic engine rotor assembly technology still largely depends on the operator's skill level and experience, and there is a lack of a high-speed and effective optimization method to guide the assembly of aero-engine rotors to meet the requirements of rotor coaxiality, unbalance and moment of inertia at the same time. indicators, greatly improving the efficiency of aero-engine rotor assembly and the pass rate of one-time assembly

Method used

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  • An aeroengine rotor assembly measurement device based on three-point weighing and three-objective optimization method
  • An aeroengine rotor assembly measurement device based on three-point weighing and three-objective optimization method
  • An aeroengine rotor assembly measurement device based on three-point weighing and three-objective optimization method

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specific Embodiment 1

[0079] according to figure 2 with image 3 As shown, the present invention provides an aeroengine rotor assembly measurement device based on three-point weighing. The device includes: a base 1, an air bearing shaft system 2, a load cell 3, a leveling and tilting platform 4, and a hydraulic card Disk 5, left column transverse guide 6a, right column transverse guide 6b, left column vertical guide 7a, right column vertical guide 7b, left lower horizontal rod 8a, left upper horizontal rod 8b, right lower horizontal rod 8c, the upper right lateral measuring rod 8d, the lower left telescopic inductive sensor 9a, the upper left telescopic inductive sensor 9b, the lower right lever-type inductive sensor 9c, the upper right lever-type inductive sensor 9d and the measured rotor 10;

[0080] The air bearing shaft system 2 includes an air bearing upper plate 2a, an air bearing main shaft 2b, an air bearing lower plate 2c, a circular grating ruler 2d, a circular grating reading head 2e, a cyl...

specific Embodiment 2

[0086] according to figure 1 As shown, the present invention provides a three-objective optimization method for aero-engine rotor assembly based on three-point weighing, which includes the following steps:

[0087] Step 1: Adjust the center of the leveling and tilting platform 4 to ensure that the centroid of the assembly reference plane is concentric with the axis of rotation of the leveling and tilting platform 4 axis system, and ensure that the assembly reference plane is parallel to the plane of the leveling and tilting platform 4 so that The assembly reference is the bottom surface of the bottom rotor, the axis of rotation of the air bearing shaft system 2 is the Z axis, the intersection of the axis of rotation and the upper surface of the air bearing plate 2a is the coordinate origin, and the straight line that passes the coordinate origin and is parallel to the base 1 It is the X axis, and the line that passes through the origin of the coordinate and is perpendicular to th...

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Abstract

The invention relates to an aero-engine rotor assembly measuring device and three-target optimization method based on three-point weighing. Based on a four-head measuring device, a concentricity errorof the radial assembling surface and a parallelism error of the axial assembling surface of each stage of rotor are extracted; based on a three-point weighing measuring device, radial coordinates ofthe centroid of each stage of rotor are extracted; based on a rotor assembly attitude transmission model, an optimal assembly angle of each stage of rotor is obtained through genetic optimization by taking the coaxiality, the unbalance amount and the rotational inertia of a rotor assembly as three optimization targets; and based on a torsion rod measuring device, the rotational inertia of the longitudinal axis of the assembly is obtained. The device and the method can effectively solve the over-standard problem of the coaxiality, the unbalance amount and the rotational inertia of the assembledaero-engine rotor, and have the characteristics of integrated measurement of rotor geometry and mass characteristics, high one-time assembly qualification rate and reduced engine vibration.

Description

Technical field [0001] The invention relates to the technical field of mechanical transfer, and is an aeroengine rotor assembly measurement device based on three-point weighing and a three-object optimization method. Background technique [0002] Aeroengines are the most precise and complex rotating machinery in contemporary industry. Assembly technology is the final stage of the engine manufacturing process, especially the core components represented by the high-pressure compressor rotor. The assembly quality directly affects the high-speed operation and stability of the engine Sex. [0003] Rotor coaxiality, rotor imbalance and excessive moment of inertia are all important causes of aircraft engine failures. How to achieve synchronous optimization of rotor coaxiality, imbalance and moment of inertia in the assembly stage has long troubled domestic and foreign aeroengine manufacturing industries. The key common technical issues. [0004] At present, domestic and foreign research t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01B7/312G01B7/30G01B11/26G01M1/12B23P19/00B23P19/10
CPCB23P19/00B23P19/10G01B7/30G01B7/312G01B11/26G01M1/122
Inventor 陈越崔继文谭久彬
Owner HARBIN INST OF TECH
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