This invention relates to a metal backplate having a foldable structure with bending-resilience property in order to meet a flattening surface demand.
The foldable stainless metal backplates, listed for sale, have thicknesses between 30˜150 μm processed by wet etching on the flexible parts, and normally have plain surfaces. However, it requires the stainless metal backplates to have a thickness of 40 μm with tensile strength over 2000 N/mm{circumflex over ( )}2 or to be etched patterns on the flexible parts for having an enhanced bending resilience property to be able to pass the folding times test.
Nevertheless, that when the tensile strength of the stainless backplates have a thickness of 40 μm been enhanced over 2000 N/mm{umlaut over ( )} 2 will lead to the backplates too rigid to withstand a 200K times folding test, and that when the flexible parts have been etched with patterns will cause internal stress change so as to crook the metal backplates and fail a flattening maintenance of the metal backplate.
Based on the aforementioned defects, this invention aims to provide a metal backplate having a foldable structure with bending resilience to meet the demand of the flattening maintenance of the metal backplate.
Based on the purpose of this invention, which provides the metal backplate having two plain parts along its longitudinal direction, and a flexible part lying between the plain parts and having a thickness less than that of the plain parts. The plain parts and the flexible part have a thickness difference between 20˜40 μm.
The flexible part is composed of a first surface and a second surface deployed underneath the first surface. The first surface is etched or etched partially with a plurality of curved first openings forming a first array in staggered arrangement. The total area of the first openings amount to 45%˜86% of that of the first area. Preferably, the first openings are etched in S-shape, and the total area of first openings amount to 80%˜85% of that of first area.
Wherein, the metal backplate has a width Y perpendicular to its longitudinal direction X, a first opening having a width W parallel to the width direction Y, a first span P1 spacing out the adjacent first spans P1, and the width W is triple of the first span P1.
Besides, the first opening has a length L parallel to the longitudinal direction X, and a second span P2 spaces out the adjacent first openings. The length L is longer than the second span P2.
Furthermore, the second surface is etched a multiple of first openings forming a second array in staggered arrangement, and the first openings on the first array and on the second array are arranged in staggered rows along the longitudinal direction X.
Preferably, the flexible part has a thickness less than 35 μm after etching process. Besides, the plain parts have at least one surface etched with a plurality of second openings forming a third array, and a third span spaces out the adjacent second openings. The third spans keep a fixed distance or a gradually increased distance as being away from the flexible part.
This invention further provides a foldable display panel device including a display panel and the aforesaid metal backplate deployed underneath the display panel.
For a better understand of the embodiment, the structure and the performance of this invention; hereinafter, the embodiments along with the illustrations will be stated accordance with the specification.
Please refer to the
Please refer to
The metal backplate has a width direction Y rectangular to a longitudinal direction X, and the first opening 10 has a width W parallel to the width direction Y. The first span P1 spaces out the adjacent first openings 10 along the width direction Y. The width W is in triple of the first span P1.
Besides, the first openings 10 has a length L parallel to the longitudinal direction X, and a second span P2 spaces out the adjacent first openings 10 along the longitudinal direction X. The length L is longer than the second span P2.
The second surface B2 is etched a plurality of the first openings 10 forming the second array in staggered arrangement, and the first openings 10 on the first array and on the second array are staggered in rows along the longitudinal direction X. Please refer to
0≤Sa+Sb≤2Sc,when Sc−Sa≤35(μm),Sc−Sb≤35(μm)
Wherein, the Sa is the depth of the first openings 10 on the first surface B1 of the metal backplate, Sb being the depth of the first openings 10 on the second surface B2 and Sc is the thickness of the metal backplate.
Please refer to
0≤Da+Db≤Dc,whenDa+Db≤Dc(μm),Dc−(Da+Db)≤35(μm)
Wherein, Da is the etching depth of the first opening 10 on the first surface B1 of the metal backplate, Db being the etching depth of the first opening 10 on the second surface B2 of the metal backplate and Dc is the thickness of the metal backplate.
In this embodiment, the preferable etching depth of the Da and the Db is 20 μm, shown as in table 1, while the others have depths over 20 μm failing to achieve an ideal bending performance as 20 μm, shown as in table 1.
Furthermore, at least one of the plain parts A has etched a plurality of the second openings 20 forming the third array, and the third span P3 spaces out the adjacent second openings 20 and keeps a fixed distance or a gradually increased distance as being away from the flexible part B. Please refer to
This invention further provides a foldable display panel device including a display panel and the aforesaid metal backplate deployed underneath the display panel. In order to decrease the unidirectional stress concentration and to improve the warpage problem of the metal backplate, the first openings 10 are etched in S shape, arranged in staggered arrangement and in staggered rows on the upside and the reverse side of the flexible part B to meet the demand of the metal backplate with bending resilience yielded by rigidity property.
Number | Date | Country | Kind |
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110109453 | Mar 2021 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
11227515 | Kim | Jan 2022 | B2 |
11416032 | Jung | Aug 2022 | B2 |
20150055287 | Seo | Feb 2015 | A1 |
20210165447 | Wang | Jun 2021 | A1 |
20210165454 | Dong | Jun 2021 | A1 |
20220293870 | Park | Sep 2022 | A1 |
20220309964 | Wang | Sep 2022 | A1 |
Number | Date | Country | |
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20220300039 A1 | Sep 2022 | US |