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    • 53. 发明授权
    • Coarse-particle microcapsule preparation
    • 粗颗粒微胶囊制剂
    • US07575804B2
    • 2009-08-18
    • US11813677
    • 2006-01-14
    • Gabriele Lang-WittkowskiEkkehard JahnsMarkus Steffen
    • Gabriele Lang-WittkowskiEkkehard JahnsMarkus Steffen
    • B32B5/66
    • F28D20/023B01J2/20C04B20/1033C04B2103/0065C04B2103/0066C09K5/063Y02E60/145Y10T428/2982Y10T428/2991Y10T428/2993Y10T428/2995Y10T428/2996Y10T428/2998C04B14/024C04B2103/0071C04B24/08
    • The present invention relates to a coarse-particled microcapsule preparation comprising microencapsulated latent heat accumulators and one or more polymeric binders, the ratio of surface area to volume of the particles obeying the following relationship: Surface ⁢ ⁢ area 2 Volume 3 ≥ 2.5 , and to processes for its production and its use in heat exchangers and building materials.
    • 本发明涉及包含微囊化潜热蓄热器和一种或多种聚合物粘合剂的粗颗粒微胶囊制剂,所述颗粒的表面积与体积的比率遵循以下关系: 表面 area 2 mroot> 3 > = 2.5 以及其生产过程及其在热交换器和建筑材料中的应用。
        • 54. 发明申请
        • THERMAL BARRIER LINER FOR CONTAINERS
        • 集装箱用热障板
        • US20090095758A1
        • 2009-04-16
        • US12249356
        • 2008-10-10
        • Jason Morgan KellyHerbert Bruce SmithRay Alan TomsDaniel Alan Thiemann
        • Jason Morgan KellyHerbert Bruce SmithRay Alan TomsDaniel Alan Thiemann
        • B65D81/38B23P17/00
        • B65D17/4012B65D81/3811F28D20/023Y10T29/49
        • A thermal barrier liner is provided to maintain a beverage within a container at a desired temperature. The thermal barrier liner is preferably sprayed coated onto the internal surface of the container. The thermal barrier liner may be provided in various embodiments including a closed cell substrate, a base layer having gas or liquid filled microcapsules, a base layer having microencapsulated solid-liquid phase change material, or combinations thereof. In the closed cell substrate embodiments, when the thermal barrier liner is under pressure within the container such as prior to the container being opened, the thermal barrier liner maintains a minimum profile or thickness. However, when the container is opened and as pressure is released within the container, the barrier liner expands to achieve equilibrium. The expanded or thickened barrier liner provides an effective thermal barrier thereby maintaining the beverage at a desired temperature for a longer period of time. The thermal barrier liner may be formed from some liner materials currently used as protective liners, but supplemented with a foaming agent to create cellular structures. For the embodiments utilizing gas or liquid filled microcapsules, voids created by the microcapsules enhance the thermal barrier characteristics of the liner. For the embodiment utilizing encapsulated solid-liquid phase change material, the microcapsules change phase from a solid to liquid state absorbing heat as the container increases in temperature.
        • 提供了一种隔热衬里以将容器内的饮料保持在期望的温度。 隔热衬垫优选喷涂在容器的内表面上。 可以在各种实施例中提供热障衬里,包括封闭的单元基板,具有气体或液体填充的微胶囊的基底层,具有微囊化的固 - 液相变材料的基层或其组合。 在闭孔衬底实施例中,当热障衬里处于容器内的压力下时,例如在容器打开之前,热障衬里保持最小的轮廓或厚度。 然而,当容器打开并且当压力在容器内释放时,阻隔衬套膨胀以实现平衡。 膨胀或增稠的阻挡衬垫提供有效的热障碍,从而将饮料保持在期望的温度更长的时间段。 热障衬里可以由目前用作保护衬垫的一些衬垫材料形成,但是补充有发泡剂以产生细胞结构。 对于使用气体或液体填充的微胶囊的实施方案,由微胶囊产生的空隙增强了衬垫的热障特性。 对于利用封装的固 - 液相变材料的实施例,随着容器温度的升高,微胶囊将从固体向液体状态改变。
        • 58. 发明授权
        • Thermal control of automotive interiors with phase change material
        • 具有相变材料的汽车内饰的热控制
        • US07320357B2
        • 2008-01-22
        • US10474854
        • 2002-04-13
        • Barbara Hildegard Pause
        • Barbara Hildegard Pause
        • B60H1/00F28D15/00
        • B60N2/56B60H1/00285B60H1/00492B60H1/3235B60R2013/0287C09K5/063F28D20/02F28D20/023Y02E60/145Y02P20/124Y02T10/88Y10S165/902
        • The inventive method includes the utilization of different phase change materials with different melting temperature ranges in each of the headliner (3), the seats (7), and the instrument panel (12) of an automobile in order to save energy while improving thermal comfort for the passengers. When used in the seats (7), the phase change material can be included in the seat heater system. Preferable phase change materials are alkyl hydrocarbons and mixtures thereof, salt-hydrates, metals, alloys, poly-alcohols, and eutectics with phase changes within the desired temperature ranges and with appropriate heat storage capacities. Preferably, the phase change materials are directly incorporated in a polymeric compound structure, in an elastomeric compound structure, or in a foam structure in order to enhance the overall thermal capacity. When used in the seats (7), the phase change material incorporated in a polymeric or elastomeric structure is formed into a mesh-like material (9) and attached to a knitted spacer fabric (6).
        • 本发明的方法包括在汽车的顶篷(3),座椅(7)和仪表板(12)中使用具有不同熔融温度范围的不同相变材料,以便节省能量,同时改善热舒适性 为乘客。 当在座椅(7)中使用时,相变材料可以包括在座椅加热器系统中。 优选的相变材料是烷基烃及其混合物,盐水合物,金属,合金,多元醇和共晶体,其相变在期望的温度范围内并具有合适的储热能力。 优选地,相变材料直接结合在聚合化合物结构中,以弹性体复合结构或泡沫结构结合,以增强整个热容量。 当在座椅(7)中使用时,结合在聚合物或弹性体结构中的相变材料形成为网状材料(9)并且连接到编织间隔织物(6)上。