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    <subfield code="a">B-20528</subfield>
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    <subfield code="a">Enhancement of composite open-hole tensile strength via fine Z-pins arrangements</subfield>
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  <datafield tag="490" ind1="0" ind2=" ">
    <subfield code="v">International Journal of Mechanical Sciences, 236, p.107752, 2022</subfield>
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  <datafield tag="520" ind1="3" ind2=" ">
    <subfield code="a">The damage to structural performance caused by cut-out or holes is inevitable. In this paper, a new method to improve the tensile strength of open-hole laminates by using ultrasound-guided machine to control different fine Z-pin arrangement angles was proposed. The influence of systematically changing size parameters (0.11 mm, 0.28 mm and 0.5 mm diameters)and the direction of arrangement (unenhanced, parallel, vertical and 45&#xB0; to the loading direction, respectively)were investigated by experiments and simulations. The production process of &#xD8; 0.11 mm Z-pin with tensile strength up to 3500Mpa is firstly proposed. Z-pins with larger diameters have a certain inhibition effect on the depth of delamination damage, the connected resin-rich area seriously reduces the open-hole tensile strength when increasing the volume contents. In contrast, &#xD8; 0.11 mm Z-pins can effectively reduce the strain level around the notch compared with the unpinned specimen. &#xD8; 0.11 mm Z-pins aligned at 45&#xB0; to the loading direction resulted in a 9 percent increase in open-hole tensile strength and a 54.1 percent reduction in delamination damage area. Finally, the simulation optimization is used to find that the 30&#xB0; alignment has a better effect of suppressing delamination.</subfield>
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  <datafield tag="650" ind1="1" ind2="4">
    <subfield code="a">OPEN-HOLE LAMINATE</subfield>
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  <datafield tag="650" ind1="1" ind2="4">
    <subfield code="a">FINE Z-PINS ARRANGEMENT</subfield>
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    <subfield code="a">DIGITAL IMAGE CORRELATION</subfield>
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    <subfield code="a">ULTRASONIC C-SCAN</subfield>
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    <subfield code="a">X-RAY (?CT)TECHNOLOGY</subfield>
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    <subfield code="a">DAMAGE MECHANISM</subfield>
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    <subfield code="a">Gao, Y.</subfield>
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    <subfield code="a">Fei, S.</subfield>
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    <subfield code="a">Song, X.</subfield>
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    <subfield code="a">Ding, H.</subfield>
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    <subfield code="a">Wang, H.</subfield>
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    <subfield code="u">https://drive.google.com/file/d/141DJqQqKL8MN0WKq-qOz8_HUX3cNUQBz/view?usp=drivesdk</subfield>
    <subfield code="z">Para ver el documento ingresa a Google con tu cuenta: @cicy.edu.mx</subfield>
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    <subfield code="d">2025-06-25</subfield>
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    <subfield code="o">B-20528</subfield>
    <subfield code="r">2025-06-25 16:24:50</subfield>
    <subfield code="w">2025-06-25</subfield>
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