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    • 22. 发明公开
    • HEAT RETENTIVE INDUCTIVE-HEATABLE LAMINATED MATRIX
    • 保温层可感应加热层压基体
    • EP1393594A2
    • 2004-03-03
    • EP02731913.6
    • 2002-05-21
    • Thermal Solutions, Inc.
    • CLOTHIER, Brian, L.
    • H05B6/10H05B6/06A47C7/74
    • A47C1/12A47C7/02A47C7/748H05B6/105H05B2213/06
    • An induction heatable body (22) that quickly heats to a desired temperature, retains heat long enough to be used in almost any application, and develops no hot spots even when heated by a heating source having an uneven magnetic field distribution. The induction-heatable body (22) achieves the foregoing while remaining relatively lightweight, inexpensive and easy to manufacture. The induction-heatable body (22) includes a plurality of induction-heatable layers (32a, b, c) each sandwiched between alternating layers of heat retentive material (34a, b, c). The induction-heatable layers (32a, b, c) consist of sheets of graphite material that can be inductively heated at magnetic field frequencies between 20 and 50 kHz. The heat-retentive layers (34a, b, c) consist of solid-to-solid phase change material such as radiation cross-linked polyethylene. A food delivery assembly (100) uniquely adapted and configured for maintaining the temperature of sandwiches, french fries, and other related food items is also disclosed. The fooddelivery assembly (100) includes a magnetic induction heater (110), a food container (112), and a delivery bag (114) for carrying and insulating the food container (112). An RFID-based induction heating/vending system for quickly and effectively heating, vending, and recollecting stadium seats (10) or other objects. The system includes a plurality of objects each including an induction-heatable body (22), a charging/vending station (12) for heating and vending the objects; a self-serve warming station (14) that may be used by consumers to reheat their objects; and a check-out station (16) that automatically collects objects from consumers after use.
    • 感应可加热体(22)迅速加热到所需温度,保持足够长的热量以用于几乎任何应用,并且即使当被具有不均匀磁场分布的加热源加热时也不会产生热点。 感应加热体(22)在保持相对轻量,便宜且易于制造的同时实现了上述效果。 感应可加热体(22)包括多个夹在保温材料(34a,b,c)的交替层之间的可感应加热层(32a,b,c)。 感应可加热层(32a,b,c)由石墨材料片构成,其可以在20和50kHz之间的磁场频率下被感应加热。 保温层(34a,b,c)由固体 - 固体相变材料如辐射交联聚乙烯组成。 还公开了独特地适配和构造用于保持三明治,炸薯条和其他相关食品的温度的食物输送组件(100)。 食物传送组件(100)包括磁感应加热器(110),食物容器(112)和用于携带和绝缘食物容器(112)的传送袋(114)。 基于RFID的感应加热/自动售货系统,用于快速有效地加热,自动售货和重新收集体育场座椅(10)或其他物体。 该系统包括多个物体,每个物体包括可感应加热的主体(22),用于加热和出售物品的充电/出售站(12) 一个可以由消费者用来重新加热它们的物体的自助式加温台(14) 和在使用后自动从消费者收集物品的结账站(16)。
    • 25. 发明授权
    • HEAT RETENTIVE INDUCTIVE-HEATABLE LAMINATED MATRIX
    • HEAT AMUSING INDUKTIVHEIZBARE层合的基
    • EP1393594B1
    • 2009-12-16
    • EP02731913.6
    • 2002-05-21
    • Thermal Solutions, Inc.
    • CLOTHIER, Brian, L.
    • H05B6/10H05B6/06A47C7/74
    • A47C1/12A47C7/02A47C7/748H05B6/105H05B2213/06
    • An induction heatable body (22) that quickly heats to a desired temperature, retains heat long enough to be used in almost any application, and develops no hot spots even when heated by a heating source having an uneven magnetic field distribution. The induction-heatable body (22) achieves the foregoing while remaining relatively lightweight, inexpensive and easy to manufacture. The induction-heatable body (22) includes a plurality of induction-heatable layers (32a, b, c) each sandwiched between alternating layers of heat retentive material (34a, b, c). The induction-heatable layers (32a, b, c) consist of sheets of graphite material that can be inductively heated at magnetic field frequencies between 20 and 50 kHz. The heat-retentive layers (34a, b, c) consist of solid-to-solid phase change material such as radiation cross-linked polyethylene. A food delivery assembly (100) uniquely adapted and configured for maintaining the temperature of sandwiches, french fries, and other related food items is also disclosed. The fooddelivery assembly (100) includes a magnetic induction heater (110), a food container (112), and a delivery bag (114) for carrying and insulating the food container (112). An RFID-based induction heating/vending system for quickly and effectively heating, vending, and recollecting stadium seats (10) or other objects. The system includes a plurality of objects each including an induction-heatable body (22), a charging/vending station (12) for heating and vending the objects; a self-serve warming station (14) that may be used by consumers to reheat their objects; and a check-out station (16) that automatically collects objects from consumers after use.
    • 27. 发明公开
    • MAGNETIC ELEMENT TEMPERATURE SENSORS
    • 具有磁元件温度传感器
    • EP2021751A2
    • 2009-02-11
    • EP07709919.0
    • 2007-01-03
    • Thermal Solutions, Inc.
    • CLOTHIER, Brian, L.ABBETT, Edwin, T.
    • G01K7/00
    • G01K7/36H05B6/062H05B2213/06
    • Small, low-cost wireless temperature sensors (26, 64, 96) are provided for sensing the temperature of an object (44). The temperature sensors (26, 64, 96) preferably include a plurality of individual, magnetically susceptible temperature sensor elements (28-34, 66, 92), as well as optional magnetic field-responsive data elements (38, 40, 20) adapted for attachment to object (44) or to a substrate (82) in turn attached to object (44). The temperature sensor elements (28-34, 66, 92) preferably have magnetic bodies (22, 70) exhibiting a re-magnetization response under the influence of an applied alternating magnetic field, which is different below and above a set point temperature, normally the Curie temperature of the magnetic body (22) or an adjacent sheath (74, 94). The temperature sensors (26, 64, 96) are used in conjunction with a detector (46) operable to generate a magnetic field of magnitude sufficient to cause re-magnetization responses of the temperature sensor elements (28-34, 66, 92) and optional data elements (38, 40, 20), to detect such responses, and to use the detected responses to determine the temperature of object (44) by means of a decoding algorithm. The temperature sensors (26, 64, 96) can be used in closed-loop heating systems (98) capable of controlling the heating of an object (114).