Large deformation and thickening test piece of metal sheet biaxial tension

A biaxial stretching and metal sheet technology, applied in the direction of analysis materials, instruments, measuring devices, etc., can solve the problems of cross arm breakage, uneven thickness distribution, unsuitability for large deformation induced micro or macro mechanical properties, etc., to prevent excessive Effect of early fracture, prevention of premature cracking, and reduction of stress concentration

Inactive Publication Date: 2018-11-23
HEFEI UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] 2) The measurement and calculation methods of stress and strain in the central area of ​​the specimen, especially the determination of the stress in the central area;
[0012] Among these different types of cross-shaped specimens, the slit / groove type on the arm has been studied the most. The advantage is that the slit / groove on the arm can greatly reduce or even eliminate the shear stress in the central area, so that the stress in the central deformation area The principal axis coincides with the tensile direction, so that it is convenient to measure and calculate the stress value in the central area; the disadvantage is that this kind of test piece is only suitable for reinforced materials, and the deformation of the central area will not be large, because only when the seam / groove area After the metal has entered the strengthening stage, the stress in the central test area can reach a sufficiently high level, and the cross arm often breaks before the central area
The thinned test piece in the central area can cause a large deformation in the central area, but the change of the original properties of the material after the metal peeling needs to be considered when processing this test piece, and the first failure at the boundary between the central area and the thinned area will hide some Intrinsic properties of materials
Considering the inhomogeneity of the actual microstructure and the inhomogeneity of the thickness distribution of the steel plate with rough surface, the thinned cross tensile specimen in the central area is not suitable for the study of the micro- or macro-mechanical property changes induced by large deformation.

Method used

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  • Large deformation and thickening test piece of metal sheet biaxial tension
  • Large deformation and thickening test piece of metal sheet biaxial tension
  • Large deformation and thickening test piece of metal sheet biaxial tension

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0042] see Figure 1-a , Figure 1-b and Figure 1-c , this embodiment is the first type of test piece, that is, a thickened cross-shaped test piece around the periphery of the center point, and an arc-shaped gap is set between two adjacent cross arms, and the gap between the arc-shaped gap and the cross arms on both sides For tangential connection, it can reduce the stress concentration in the transition zone between the arms and effectively reduce the cross-sectional area of ​​the central zone to increase the deformation of the central intersection zone.

[0043] The thickened plates 1 on the four cross arms respectively extend towards the direction of the central crossing area, and extend to the periphery of the central point of the central crossing area for a circle, that is, two parts of the same thickness are symmetrically glued on both sides of the test piece to realize the surrounding of the central point. Thickened in a week.

Embodiment 2

[0045] see Figure 2-a , Figure 2-b and Figure 2-c , this embodiment is the second type of test piece, that is, a thickened cross-shaped test piece extending toward the center without contact with each other, and a circular arc transition is made between two adjacent cross arms to reduce the stress concentration in the transition area between the arms ;

[0046]The thickened plates 1 on the four cross arms respectively extend toward the direction of the central intersection area to form extensions, and the extensions do not touch each other at the central intersection area, that is, the two sides of the four cross arms are symmetrically glued to eight parts of the same thickness to achieve The non-contact thickening extending toward the center increases the load-transmitting capacity of the cross arm.

Embodiment 3

[0048] see Figure 3-a , Figure 3-b , Figure 3-c and Figure 3-d , this embodiment is the third type of test piece, that is, a cross-shaped test piece that extends to the center without contacting each other and is thickened with protrusions between the arms. Stamping to prevent premature cracking of the transition zone between the arms, so that the central cross zone can achieve large deformation;

[0049] The thickened plates 1 on the four cross arms respectively extend toward the direction of the central intersection area to form extensions, and the extensions do not touch each other at the central intersection area, that is, eight parts of the same thickness are symmetrically glued to both sides of the test piece, thereby increasing the thickness of the cross section. Large cross arm transfer load capacity.

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Abstract

The invention discloses a metal plate two-way stretching large-deformation thickened test piece. The metal plate two-way stretching large-deformation thickened test piece is of a cross structure divided into four cross arms and a central crossed area. The four cross arms are equal in length and width, thickening plates are symmetrically arranged on the upper side and the lower side of each arm, and thus a three-layer composite plate structure is formed. According to the metal plate two-way stretching large-deformation thickened test piece, the feature of a test area material is not changed, the load transmitting capability of the cross arms is enlarged, stress concentration in a transition area between every two adjacent cross arms is relieved, large test piece central area deformation is obtained, and thus the practicability of stress strain of the test material in a two-way stretching test is improved.

Description

technical field [0001] The invention discloses a metal plate biaxially stretched large deformation and thickened test piece, specifically a plate biaxially stretched test piece, belonging to the technical field of sheet metal plastic forming. Background technique: [0002] In the field of sheet metal plastic forming, plastic yielding behavior has always been an important research focus, especially with the continuous introduction of many new processes, new structures, new material sheets and some new forming processes, the yield behavior (including initial yield and subsequent Yield) is the key to get accurate results in theoretical analysis and finite element analysis. [0003] The traditional test methods used for the research of yielding behavior have certain limitations. The application of thin-walled pipes under the action of axial load and internal pressure, axial load and torsional load can realize different strain paths, but there is a certain gap in performance bet...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N3/02
CPCG01N3/02G01N2203/0272
Inventor 赵坤民陈梁玉丁志杨陈还吴寒严建文
Owner HEFEI UNIV OF TECH
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