Biaxial load test specimen, biaxial load test apparatus, and biaxial load test method

US2019072467A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2019072467-A1
Application numberUS-201716084304-A
CountryUS
Kind codeA1
Filing dateFeb 23, 2017
Priority dateMar 28, 2016
Publication dateMar 7, 2019
Grant date

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  1. Title

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  2. Abstract

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A biaxial load test specimen includes a main body and four arms. The main body has a plurality of through-holes aligned along axial directions of two load axes orthogonal to each other. The four arms extend from the main body in the respective axial directions of the load axes. Each of the arms has a plurality of slit grooves extending, on respective extensions of the through-holes aligned in the axial directions, along the respective axial directions.

First claim

Opening claim text (preview).

1 . A biaxial load test specimen, comprising: a main body having a plurality of through-holes aligned along axial directions of two load axes orthogonal to each other; and four arms extending from the main body in the respective axial directions of the load axes, wherein each of the arms has a plurality of slit grooves extending, on respective extensions of the through-holes aligned in the axial directions, along the respective axial directions. 2 . The biaxial load test specimen according to claim 1 , wherein a center line of each slit groove is positioned on a corresponding extension of the through-holes. 3 . The biaxial load test specimen according to claim 1 , wherein the slit grooves have a groove width equal to a diameter of the through-holes. 4 . A biaxial load test apparatus configured to perform a load test for a test specimen by applying a load to the test specimen along each of axial directions of a first load axis and a second load axis which are orthogonal to each other, the apparatus comprising: a first frame including a first loading unit configured to apply a tensile or compressive load to the test specimen along the axial direction of the first load axis; a second frame including a second loading unit configured to apply a tensile or compressive load to the test specimen along the axial direction of the second load axis; a first sliding unit configured to slide the first frame in the axial direction of the first load axis with respect to an installation surface; and a second sliding unit configured to slide the second frame in the axial direction of the second load axis with respect to the installation surface. 5 . A biaxial load test apparatus configured to perform a load test for a test specimen by applying a load to the test specimen along each of axial directions of a first load axis and a second load axis which are orthogonal to each other, the apparatus comprising: a frame to be installed on an installation surface; a first loading unit configured to apply a tensile or compressive load to the test specimen along the axial direction of the first load axis; a second loading unit configured to apply a tensile or compressive load to the test specimen along the axial direction of the second load axis; a first sliding unit configured to slide the first loading unit and the test specimen in the axial direction of the second load axis with respect to the frame; and a second sliding unit configured to slide the second loading unit and the test specimen in the axial direction of the first load axis with respect to the frame. 6 . The biaxial load test apparatus according to claim 5 , wherein the test specimen includes a main body having a plurality of through-holes aligned along axial directions of two load axes orthogonal to each other, and four arms extending from the main body in the respective axial directions of the load axes, wherein each of the arms has a plurality of slit grooves extending, on respective extensions of the through-holes aligned in the axial directions, along the respective axial directions. 7 . A biaxial load test method, comprising: providing at least one of the through-holes formed in the main body of the biaxial load test specimen according to claim 1 with a sealing plug configured to seal the at least one of the through-holes; applying a load to the arms of the biaxial load test specimen along the respective axial directions of the load axes; and in a state where the load is applied, applying a pulling load to pull out the sealing plug from the through-hole. 8 . A biaxial load test method, comprising: fixing a pipe to at least one of the through-holes formed in the main body of the biaxial load test specimen according to claim 1 ; applying a load to the arms of the biaxial load test specimen along the respective axial directions of the load axes; and in a state where the load is applied, filling one end side of the pipe with a fluid pressurized to a predetermined pressure. 9 . The biaxial load test apparatus according to claim 4 , wherein the test specimen includes a main body having a plurality of through-holes aligned along axial directions of two load axes orthogonal to each other, and four arms extending from the main body in the respective axial directions of the load axes, wherein each of the arms has a plurality of slit grooves extending, on respective extensions of the through-holes aligned in the axial directions, along the respective axial directions.

Assignees

Inventors

Classifications

  • Tensile · CPC title

  • Biaxial, the forces being applied along two normal axes of the specimen · CPC title

  • Manufacturing or preparing specimens · CPC title

  • Chucks, fixtures, jaws, holders or anvils · CPC title

  • G01N3/08Primary

    by applying steady tensile or compressive forces (G01N3/28 takes precedence) · CPC title

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What does patent US2019072467A1 cover?
A biaxial load test specimen includes a main body and four arms. The main body has a plurality of through-holes aligned along axial directions of two load axes orthogonal to each other. The four arms extend from the main body in the respective axial directions of the load axes. Each of the arms has a plurality of slit grooves extending, on respective extensions of the through-holes aligned in t…
Who is the assignee on this patent?
Mitsubishi Heavy Ind Ltd
What technology area does this patent fall under?
Primary CPC classification G01N3/08. Mapped technology areas include Physics.
When was this patent published?
Publication date Thu Mar 07 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).