Nanofiber thermal interface material

    公开(公告)号:US10590539B2

    公开(公告)日:2020-03-17

    申请号:US15903420

    申请日:2018-02-23

    Abstract: A nanofiber structure is described that is composed of a substrate and a layer of oriented nanofibers. Nanofibers of the layer can be oriented in a common direction. An angle of the common direction can be selected so that nanofibers of the sheet are oriented at an angle with respect to an underlying substrate even if the underlying substrate is not planar. The angle can be used to adapt the sheets to demands as a thermal interface material.

    NANOFIBER THERMAL INTERFACE MATERIAL
    13.
    发明申请

    公开(公告)号:US20180245219A1

    公开(公告)日:2018-08-30

    申请号:US15903420

    申请日:2018-02-23

    Abstract: A nanofiber structure is described that is composed of a substrate and a layer of oriented nanofibers. Nanofibers of the layer can be oriented in a common direction. An angle of the common direction can be selected so that nanofibers of the sheet are oriented at an angle with respect to an underlying substrate even if the underlying substrate is not planar. The angle can be used to adapt the sheets to demands as a thermal interface material.

    NANOFIBER SHEET
    14.
    发明申请
    NANOFIBER SHEET 审中-公开

    公开(公告)号:US20180210238A1

    公开(公告)日:2018-07-26

    申请号:US15928675

    申请日:2018-03-22

    Abstract: A nanofiber sheet is described that is composed of a substrate and a layer of oriented nanofibers. Nanofibers of the sheet can be oriented in a common direction. In some orientations, light absorbent sheets can absorb over 99.9%, and in some cases over 99.95%, of the intensity of light incident upon the sheet. Methods for fabricating a light absorbent sheet are also described.

    Sheet for producing multilayer optical recording medium, multilayer optical recording medium, and adhesive
    16.
    发明授权
    Sheet for producing multilayer optical recording medium, multilayer optical recording medium, and adhesive 有权
    用于生产多层光学记录介质的片材,多层光学记录介质和粘合剂

    公开(公告)号:US09028941B2

    公开(公告)日:2015-05-12

    申请号:US14019597

    申请日:2013-09-06

    CPC classification number: G11B7/24024 G11B7/256 Y10T428/21

    Abstract: A sheet for producing a multilayer optical recording medium comprises optical recording layers and adhesive layers laminated on one another, wherein the adhesive layer comprises an adhesive comprising a polymer as a main component, the polymer includes fluorine-containing monomer and/or silicon-containing monomer as a constituent monomer component, the adhesive layer has no domain structure or has a domain structure of 110 nm or less, a total content of the fluorine-containing monomer and the silicon-containing monomer is 10 to 100 mass % when a monomer total amount as the constituent monomer component in the polymer is 100 mass %. According to the sheet for producing a multilayer optical recording medium, a multilayer optical recording medium can be produced which can detect reflected light having sufficient intensity from the interface between the optical recording layer and the adhesive layer and which generates less scattered light in the adhesive layer and causes less noise.

    Abstract translation: 用于制造多层光学记录介质的片材包括彼此层叠的光学记录层和粘合剂层,其中所述粘合剂层包括以聚合物为主要成分的粘合剂,所述聚合物包括含氟单体和/或含硅单体 作为构成单体成分,粘合层不具有畴结构或具有110nm以下的畴结构,当单体总量为1〜10质量%时,含氟单体和含硅单体的总含量为10〜100质量% 聚合物中的构成单体成分为100质量%。 根据用于制造多层光学记录介质的片材,可以制造能够从光学记录层和粘合剂层之间的界面检测具有足够强度的反射光并且在粘合剂层中产生较少散射光的多层光学记录介质 并产生较少的噪音。

    Heat radiant heater
    18.
    发明授权

    公开(公告)号:US12200830B2

    公开(公告)日:2025-01-14

    申请号:US17622056

    申请日:2020-06-29

    Abstract: A thermal radiation heater includes: a heater element layer including a planar conductive body; at least one front surface side layer including an outermost layer and provided close to a front surface of the heater element layer; and at least one back surface side layer including an outermost layer and provided close to a back surface of the heater element layer. The outermost layer close to the front surface has an emissivity of 0.7 or more, and the outermost layer close to the back surface has an emissivity of 0.6 or less.

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