Deformation limit evaluation method for sheared surface of metal sheet, crack prediction method, and press die designing method
US-2020292429-A1 · Sep 17, 2020 · US
US10996150B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10996150-B2 |
| Application number | US-201816342860-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 27, 2018 |
| Priority date | Jun 29, 2017 |
| Publication date | May 4, 2021 |
| Grant date | May 4, 2021 |
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A jig assembly for measuring the tensile strength of an electrode at a bend having a similar radius to a core, an apparatus for measuring bending tensile strength including the jig assembly, and a method for measuring bending tensile strength that measures the tensile strength of an electrode at a bend having a similar radius to a core using the apparatus for measuring bending tensile strength are provided. The jig assembly of the present disclosure includes a fixing unit configured to fix a first end part of a sample, and a plate shaped bending jig configured to provide a one point bend to a lengthwise direction cross section of the sample and to guide a second end part of the sample toward a tensile testing load unit. According to the present disclosure, it is possible to measure the tensile strength of the electrode under a similar condition to a winding process before the electrode is used in real winding applications.
Opening claim text (preview).
What is claimed is: 1. A jig assembly comprising: a fixing unit configured to fix a first end part of a sample; a plate shaped bending jig configured to provide a one point bend on a lengthwise direction cross section of the sample and to guide a second end part of the sample toward a tensile testing load unit; a support spaced from and separate from the fixing unit, the support being configured to fix the bending jig at two ends of the bending jig. 2. The jig assembly according to claim 1 , wherein the bending jig has a flat rectangular parallelepiped shape having a bottom face and a front end part in a shape of a semi-sphere or a semi-polygonal prism, the bottom face and the front part being configured to provide the one point bend. 3. The jig assembly according to claim 2 , wherein the front part has a predetermined radius or cross-section. 4. The jig assembly according to claim 3 , wherein the cross section of the front end part has a semi-circular shape with the radius of 0.25 to 0.5 mm. 5. The jig assembly according to claim 2 , wherein the fixing unit comprises: a base configured to support the first end part of the sample such that the first end part of the sample is disposed higher than the bottom face of the bending jig; and a fixing plate configured to fix the first end part of the sample to the base. 6. The jig assembly according to claim 5 , wherein the bending jig is located relative to the base such that an angle between the sample extending from the base to the bending jig is from 0 to 10°. 7. The jig assembly according to claim 5 , further comprising: a sample location center setting jig which is disposed in the fixing plate to set a center location of the sample. 8. The jig assembly according to claim 5 , further comprising: a bottom plate coupled to the support and the base, wherein the support comprises: a block installed at the bottom plate; a jig fixing block installed at the block and having a slot into which the bending jig is inserted on an upper surface of the jig fixing block; and a wing bolt to fix the bending jig mounted in the jig fixing block. 9. The jig assembly according to claim 5 , further comprising: a bottom plate coupled to the support and the base, wherein the base and support are provided on opposite ends of the bottom plate, and the base comprises: a vertical fixing block standing upright from the bottom plate; and a horizontal fixing block connected and fixed to the vertical fixing block at a right angle to extend toward the bending jig such that the first end part of the sample is placeable on the horizontal fixing block. 10. The jig assembly according to claim 5 , wherein the fixing plate comprises: a clamp block configured to directly press the first end part of the sample against the base; and a toggle clamp configured to apply a force to the clamp block. 11. The jig assembly according to claim 10 , further comprising: a screw configured to move the clamp block towards the base to press the first end part of the sample so that the first end part of the sample is fixable between the base and the clamp block to prevent the first end part of the sample from moving. 12. An apparatus for measuring bending tensile strength, comprising: a fixing unit configured to fix a first end part of a sample; a plate shaped bending jig configured to provide a one point bend on a lengthwise direction cross section of the sample and to guide a second end part of the sample toward a tensile testing load unit; and a tensile strength measuring device configured to be connectable to the second end part of the sample such that the second end part of the sample passes around the bottom face of the bending jig of the jig assembly, the tensile strength measuring device including a tensile testing load unit arranged in a vertical direction, in order to measure a tensile strength while bending the sample. 13. The apparatus for measuring bending tensile strength according to claim 12 , wherein the tensile testing load unit of the tensile strength measuring device includes a table, a lower crosshead, and an upper crosshead above a bed, wherein the table is movable up and down by a hydraulic cylinder, the lower crosshead is movable up and down along a vertical screw bar that is operated by a motor, and the upper crosshead is movable up and down with the movement of the table, and wherein the jig assembly is installed between the lower crosshead and the upper crosshead or between the table and the lower crosshead. 14. A method for measuring bending tensile strength using the apparatus for measuring bending tensile strength defined in claim 12 , the method comprising: fixing a first end part of a sample using the fixing unit of the jig assembly; placing the sample under the bending jig and bending up the sample while being wound on the bending jig; connecting a second end part of the sample to the tensile strength measuring device; and applying a force to the second end part of the sample and calculating the tensile strength from a force at a point in time when the sample is broken. 15. The jig assembly according to claim 1 , further comprising: a bottom plate coupled to the support and the fixing unit, wherein the fixing unit and support are provided on opposite ends of the bottom plate.
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