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    • 3. 发明申请
    • ENCLOSURE WITH A CONDENSATION-RESISTANT INTERIOR SURFACE
    • 带防静电内饰表面的外壳
    • WO2016083931A1
    • 2016-06-02
    • PCT/IB2015/058721
    • 2015-11-11
    • SABIC GLOBAL TECHNOLOGIES B.V.
    • GASWORTH, Steven Marc
    • F21S8/10F21V3/04F21V15/01
    • F21V3/10F21S41/28F21S45/00F21S45/10F21S45/33F21S45/47F21V15/01F21V23/001
    • In an embodiment, an enclosure comprises walls forming the enclosure, wherein the enclosure comprises an internal space; an inhibiting element disposed in at least one wall, the inhibiting element having an internal inhibiting surface exposed to the internal space, wherein the inhibiting element has a transparency of greater than or equal to 20%; and a condensing element disposed in at least one other wall, the condensing element having an internal condensing surface exposed to the internal space; wherein at least one of the inhibiting element and the condensing element comprise a phase change material configured to form a temperature differential between an internal inhibiting surface temperature and an internal condensing surface temperature over a temperature range, and wherein when the temperature differential is formed, the internal inhibiting surface temperature is greater than the internal condensing surface temperature.
    • 在一个实施例中,外壳包括形成外壳的壁,其中外壳包括内部空间; 抑制元件设置在至少一个壁中,所述抑制元件具有暴露于所述内部空间的内部抑制表面,其中所述抑制元件具有大于或等于20%的透明度; 以及设置在至少一个其它壁中的聚光元件,所述聚光元件具有暴露于所述内部空间的内部冷凝表面; 其中所述抑制元件和所述聚光元件中的至少一个包括相变材料,所述相变材料构造成在温度范围内形成内部抑制表面温度和内部冷凝表面温度之间的温度差,并且其中当形成所述温度差时, 内部抑制表面温度大于内部冷凝表面温度。
    • 4. 发明申请
    • MATERIALS WITH ENHANCED THERMAL CAPABILITY UNDER TRANSIENT HEAT LOAD
    • 材料在瞬态热负荷下具有增强的热能力
    • WO2015125094A1
    • 2015-08-27
    • PCT/IB2015/051251
    • 2015-02-18
    • SABIC GLOBAL TECHNOLOGIES B.V.
    • GASWORTH, Steven Marc
    • B62D29/00C09K5/06B29C37/00
    • C09K5/063B29C37/0085B29C45/16B29C45/7207B29K2105/0047B29K2105/16B29K2995/0016B29L2009/00B29L2031/30C08J5/121C08J2300/12
    • In an embodiment a method of making an article, comprises: forming the article comprising a first portion comprising a polymer composition and a second portion, wherein a composition of the first portion and of the second portion are different; and processing the article at a manufacturing temperature that is greater than a Temperature A, wherein Temperature A is at least one of the heat deflection temperature, the glass transition temperature, the melting temperature, and the degradation temperature; wherein the first portion comprises at least one of (a) the polymer composition in the form of a filled, channeled structure and (b) a phase change material; wherein during the processing, an average temperature of the polymer composition is maintained below Temperature B, wherein Temperature B is at least one of the heat deflection temperature, the melting temperature, the glass transition temperature, and the degradation temperature.
    • 在一个实施方案中,制备制品的方法包括:形成所述制品,所述制品包括包含聚合物组合物和第二部分的第一部分,其中所述第一部分和所述第二部分的组成不同; 并且在大于温度A的制造温度下处理制品,其中温度A是热变形温度,玻璃化转变温度,熔融温度和降解温度中的至少一个; 其中所述第一部分包括以下中的至少一种:(a)所述聚合物组合物为填充的通道结构形式,和(b)相变材料; 其中在加工过程中,聚合物组合物的平均温度保持在温度B以下,其中温度B是热变形温度,熔融温度,玻璃化转变温度和降解温度中的至少一个。
    • 5. 发明申请
    • METHOD AND ARTICLE FOR EMITTING RADIATION FROM A SURFACE
    • 从表面发射辐射的方法和文章
    • WO2016084009A1
    • 2016-06-02
    • PCT/IB2015/059109
    • 2015-11-25
    • SABIC GLOBAL TECHNOLOGIES B.V.
    • GASWORTH, Steven Marc
    • C09K11/06C09K11/08
    • G02B6/0003C09K11/06C09K11/08C25B1/003G02B6/0031
    • In an embodiment, a radiation emitting device comprises a radiation emitting layer comprising a host material and a luminescent agent; and a radiation source that emits a source radiation; wherein the radiation emitting layer comprises an edge and two broad surfaces, wherein the edge has a height of d and the broad surfaces have a length L, wherein length L is greater than height d, and the ratio of L to d is greater than or equal to 10; and wherein the radiation source is coupled to the edge, wherein the source radiation is transmitted from the radiation source through the edge and excites the luminescent agent, whereafter the luminescent agent emits an emitted radiation, wherein at least a portion of the emitted radiation exits through at least one of the broad surfaces through an escape cone.
    • 在一个实施例中,辐射发射装置包括包含主体材料和发光剂的辐射发射层; 以及发射源辐射的辐射源; 其中所述辐射发射层包括边缘和两个宽表面,其中所述边缘具有d的高度,并且所述宽表面具有长度L,其中长度L大于高度d,并且L与d的比率大于或等于 等于10; 并且其中所述辐射源耦合到所述边缘,其中所述源辐射从所述辐射源通过所述边缘传输并且激发所述发光剂,之后所述发光剂发射发射的辐射,其中所述发射的辐射的至少一部分通过 通过逃生锥体的至少一个宽表面。
    • 6. 发明申请
    • METHOD AND DEVICE FOR HEATING A SURFACE
    • 用于加热表面的方法和装置
    • WO2016084008A1
    • 2016-06-02
    • PCT/IB2015/059108
    • 2015-11-25
    • SABIC GLOBAL TECHNOLOGIES B.V.
    • GASWORTH, Steven Marc
    • H05B3/00H05B3/20
    • H05B3/0033H05B3/20H05B2203/032H05B2214/02
    • In an embodiment, a heating device comprises a radiation source that emits a source radiation, a radiation emitting layer comprising an emitting layer host material and a luminescent agent, wherein the radiation emitting layer comprises an edge, an emitting layer first surface, and an emitting layer second surface; wherein the radiation source is coupled to the edge, wherein the source radiation is transmitted from the radiation source through the edge and excites the luminescent agent, whereafter the luminescent agent emits an emitted radiation, wherein at least a portion of the emitted radiation exits through the emitting layer second surface through an escape cone; an absorber layer, wherein the absorber layer comprises an absorber layer first surface and wherein the absorber layer first surface is in direct contact with the emitting layer second surface, wherein the absorber layer comprises an absorber that absorbs emitted radiation that escapes through the escape cone.
    • 在一个实施例中,加热装置包括发射源辐射的辐射源,包括发射层主体材料和发光剂的辐射发射层,其中辐射发射层包括边缘,发射层第一表面和发射 层第二面; 其中所述辐射源耦合到所述边缘,其中所述源辐射从所述辐射源通过所述边缘传输并且激发所述发光剂,之后所述发光剂发射发射的辐射,其中所述发射的辐射的至少一部分通过 发射层第二表面通过逃生锥; 吸收层,其中所述吸收层包括吸收层第一表面,并且其中所述吸收层第一表面与所述发光层第二表面直接接触,其中所述吸收层包括吸收通过所述逸出锥体逸出的辐射的吸收体。