Uniaxial loading of a spherical working section to achieve a biaxial stress state test piece

A biaxial stress, working section technology, applied in the direction of applying stable tension/pressure to test the strength of materials, instruments, measuring devices, etc., can solve the problems of high test costs, limited load application methods, and many restrictions, and reduce Test difficulty and cost, small residual deformation, easy to observe the effect

Active Publication Date: 2021-07-02
BEIHANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] For the designed multi-axial fatigue test piece, the test is usually carried out on a multi-axial fatigue testing machine, which brings another difficulty in the research process, that is, the way of applying the load is greatly restricted
Using a multi-axial fatigue testing machine to load, the test cost is also high, and the load is usually a tensile torsion load, which is more limited

Method used

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  • Uniaxial loading of a spherical working section to achieve a biaxial stress state test piece
  • Uniaxial loading of a spherical working section to achieve a biaxial stress state test piece
  • Uniaxial loading of a spherical working section to achieve a biaxial stress state test piece

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Embodiment Construction

[0023] The present invention will be further described in detail below in conjunction with the accompanying drawings.

[0024] The uniaxial loading of the spherical working section of the present invention realizes the biaxial stress state. The test piece has a plate-like structure as a whole, a working section 1 with a rhombus structure in the middle, and clamping sections 2 with a rectangular structure on the left and right sides, and the working section 1 with a diamond structure. Both sides of the two diagonals are partially symmetrical. Such as figure 1 , figure 2 shown.

[0025] The ends of the clamping section 2 of the rectangular structure on both sides are respectively connected to the positions of the two opposite angles A and B in the working section 1 of the rhombus structure, and the middle bisector of the clamping section 2 in the left and right directions of the rectangular structure is connected with the clamping The diagonals of angle A and angle B are col...

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Abstract

The invention discloses a biaxial stress state test piece realized by uniaxial loading of a spherical working section. The lateral parts are symmetrical. There are spherical depressions and special-shaped holes designed on the working section; among them, the spherical depressions are designed on the front and back of the working section, located in the center of the working section; there are four special-shaped holes, which are respectively opened on the working section by its two angle bisectors on the four equally divided parts. The loading of the test piece is realized by a uniaxial fatigue testing machine. Under the designed spherical depression and special-shaped hole, a multiaxial stress state of horizontal tension and vertical compression is finally generated in the center of the entire test piece, forming a typical Tension / compression multiaxial stress state. The invention can realize the simulation of the tension and compression biaxial state at the center of the turbine disk, can partially replace the component-level assessment test, shorten the structural design period, and save the test cost.

Description

technical field [0001] The invention belongs to the technical field of mechanical structure strength assessment and simulation part design, and is a test piece aimed at the uniaxial loading of the spherical working section to realize the biaxial stress state. The force state can reflect the stress characteristics of the structure. Background technique [0002] At present, in typical structures of turbomachinery blades, discs, shafts, etc., including aeroengines and internal combustion engines, stress concentration locations such as hole edges and fillets are key parts that are prone to fatigue cracks and subsequent damage. In order to ensure the safety of these positions, it is usually necessary to carry out strength assessment through tests, especially fatigue strength assessment. For components, it is undoubtedly a long cycle and high cost to carry out component-level tests for overall structural assessment. At the same time, there are many uncontrollable factors in the t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N3/08G01N3/04G01N3/02
CPCG01N3/02G01N3/04G01N3/08
Inventor 魏大盛马梦弟王延荣蒋向华
Owner BEIHANG UNIV
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