Turbine blade air film cooling hole self-adaptive compensation machining method

A technology of adaptive compensation and turbine blades, which is applied in the direction of instruments, computer control, simulators, etc., can solve the problems of high migration cost and failure to reflect the error of the blade contour, and achieve low calculation, strong industrial practicability, and good sticky effect

Active Publication Date: 2020-09-25
SHANGHAI JIAO TONG UNIV
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Problems solved by technology

However, due to the small number of measurement points, it is more sensitive to the contour error at the measurement point and cannot reflect the contour error of other positions of the blade.
At the same time, it is necessary to redesign the measurement and adjust the algorithm for parts of different shapes, and the migration cost is high.

Method used

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  • Turbine blade air film cooling hole self-adaptive compensation machining method
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  • Turbine blade air film cooling hole self-adaptive compensation machining method

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Embodiment Construction

[0037] The following describes several preferred embodiments of the present invention with reference to the accompanying drawings, so as to make the technical content clearer and easier to understand. The present invention can be embodied in many different forms of embodiments, and the protection scope of the present invention is not limited to the embodiments mentioned herein.

[0038] In the drawings, components with the same structure are denoted by the same numerals, and components with similar structures or functions are denoted by similar numerals. The size and thickness of each component shown in the drawings are shown arbitrarily, and the present invention does not limit the size and thickness of each component. In order to make the illustration clearer, the thickness of parts is appropriately exaggerated in some places in the drawings.

[0039] Film cooling hole processing is an important link in the manufacture of aero-engines. Due to various errors in the process ...

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Abstract

The invention discloses a turbine blade air film cooling hole self-adaptive compensation machining method. The method comprises the following steps: installing a turbine blade on a follow fixture; performing online measurement on the curved surface profile of the turbine blade to obtain an actual measurement point cloud; extracting a fine and uniform standard attitude point cloud of the curved surface profile area from a design model; establishing a design model coordinate system, a machine tool coordinate system and a clamp coordinate system, and deriving a transfer matrix; converting an attitude point cloud into a clamp coordinate system, and converting the actual measurement point cloud into the clamp coordinate system; deriving a pose deviation; extracting hole position coordinates ofair film cooling holes, and converting the hole position coordinates into a machine tool coordinate system; establishing real hole site mapping; carrying out kinematic modeling; calculating coordinateparameters of all shafts of the machine tool to obtain the machining attitude of the air film cooling hole; and inputting the compensated air film cooling hole machining program into the machine tool. Due to the application of the method, the machining precision of the turbine blade air film cooling hole can be improved, and the robustness for the profile error and the pose error of the turbine blade is high.

Description

technical field [0001] The invention relates to the field of machining turbine blades, in particular to an adaptive compensation machining method for air film cooling holes of turbine blades. Background technique [0002] Turbine blades are key components in aero-engines, and the surface of modern aero-engine turbine blades contains many film cooling holes that communicate with the inner cavity. When the aero-engine is working, the cold air flow enters the combustion chamber from the inner cavity of the turbine blade through the air film cooling hole, and forms a layer of air film on the surface of the blade, which plays the role of heat insulation and cooling. The processing accuracy of the film cooling hole, including the position, angle, diameter, etc. of the hole, has a decisive influence on the cooling effect. [0003] In the precision machining of traditional castings, the fine datum is first processed according to the rough casting datum, and then the casting allowan...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G05B19/404
CPCG05B19/404G05B2219/45225
Inventor 朱思萌奚学程闫晓燊赵万生褚皓宇张瑞雪张敏陈晟
Owner SHANGHAI JIAO TONG UNIV
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