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    • 2. 发明授权
    • Heat-conducting mat for absorbing microwave and electromagnetic wave
energy
    • 用于吸收微波和电磁波能量的导热垫
    • US5155316A
    • 1992-10-13
    • US633113
    • 1990-12-24
    • Sou-Kuein Chiu
    • Sou-Kuein Chiu
    • A47J36/02B65D81/34H01Q17/00H05B6/64
    • H05B6/64A47J36/02B65D81/3446H01Q17/00B65D2581/3464B65D2581/3477B65D2581/3479B65D2581/3482B65D2581/3494
    • A heat-conducting mat for absorbing microwave and electromagnetic wave energy comprising: a basic metal material selected from the group including bronze, silver and soft iron, the basic metal material being pressed to form a piece of mat and capable to be rolled up; and a heat-conducting film being coated on the basic metal material; wherein the heat-conducting film comprising a heat-collecting coat comprising a first paste-like mixture of iron oxide powder, ruthenium, glass powder and medium; an electromagnetic wave energy absorbing coat comprising a second paste-like mixture of creaming gold, silver powder and the medium, the electromagnetic wave energy absorbing being printed and coated on the heat-collecting coat; and a protecting coat comprising a third paste-like mixture of iron oxide powder and glass powder, the protecting coat being coated on the electromagnetic wave energy absorbing coat so as to protect the basic metal material from generating static electricity or sparks. So that the piece of mat can be used for a microwave oven and an electromagnetic wave oven.
    • 一种用于吸收微波和电磁波能量的导热垫,包括:选自包括青铜,银和软铁的基本金属材料,基本金属材料被压制以形成垫子并能够卷起; 以及涂覆在所述基本金属材料上的导热膜; 其特征在于,所述导热膜包括集合涂层,所述集热涂层包含氧化铁粉末,钌,玻璃粉末和介质的第一糊状混合物; 一种电磁波能量吸收涂层,包括膏状金,银粉和介质的第二糊状混合物,电磁波能量吸收被印刷并涂覆在集热涂层上; 以及保护涂层,其包含氧化铁粉末和玻璃粉末的第三糊状混合物,所述保护涂层涂覆在所述电磁波能量吸收涂层上,以保护所述碱性金属材料不产生静电或火花。 所以这块垫可以用于微波炉和电磁波炉。
    • 3. 发明授权
    • Amphoteric ceramic microwave heating susceptor compositions with metal
salt moderators
    • 具有金属盐调节剂的两性陶瓷微波加热感受器组合物
    • US4965427A
    • 1990-10-23
    • US270179
    • 1988-11-14
    • Jonathan Seaborne
    • Jonathan Seaborne
    • B65D81/34
    • B65D81/3446B65D2581/3447B65D2581/3448B65D2581/3482B65D2581/3485B65D2581/3494Y10S99/14
    • Disclosed are improved ceramic compositions which are useful in the formulation of microwave susceptors and to the susceptors fabricated therefrom for disposable packages for the microwave heating of food items. The compositions include certain metal salts as time/temperature profile moderators in addition to a novel microwave absorbing material and a binder. Certain metal salts can be used to dampen or lower the final temperatures reached upon microwave heating the ceramic compositions. Other metal salts can be used to increase or accelerate the final temperature reached upon microwave heating. The microwave absorbing materials comprise selected ceramics in both their native and amphoteric forms. Such useful ceramics are those with residual lattice charges or an unbalance of charge in the fundamental framework or layers such as vermiculite, bentonite, hectorite, zeolites, selected micas including Glauconite, phlogopite and Biotite and mixtures thereof. These ceramics are activated to their amphoteric form by treatment with either acids or bases. The compositions provide good heat generation and a predeterminable upper temperature limit which is higher in the amphoteric form than in their native form. The ceramic materials are common and inexpensive.
    • 公开了改进的陶瓷组合物,其可用于微波感受器的制剂和由其制造的用于微波加热食品的一次性包装的基座。 除了新颖的微波吸收材料和粘合剂之外,组合物包括某些金属盐作为时间/温度曲线调节剂。 某些金属盐可用于抑制或降低微波加热陶瓷组合物时达到的最终温度。 其他金属盐可用于增加或加速微波加热达到的最终温度。 微波吸收材料包括天然和两性形式的选定的陶瓷。 这种有用的陶瓷是在基本框架或层中具有残余晶格电荷或电荷不平衡的那些,例如蛭石,膨润土,锂蒙脱石,沸石,选择的云母,包括Glauconite,金云母和Biotite及其混合物。 这些陶瓷通过用酸或碱处理而活化成它们的两性形式。 该组合物提供良好的发热和可预测的上限温度,其两性形式比其天然形式高。 陶瓷材料是常见的和便宜的。
    • 4. 发明授权
    • Amphoteric ceramic microwave heating susceptor compositions
    • 两性陶瓷微波加热感受器组合物
    • US4965423A
    • 1990-10-23
    • US272564
    • 1988-11-17
    • Jonathan Seaborne
    • Jonathan Seaborne
    • B65D81/34
    • B65D81/3446B65D2581/3447B65D2581/3482B65D2581/3494Y10S99/14
    • Disclosed are improved ceramic compositions which are useful in the formulation of microwave susceptors and to the susceptor articles fabricated therefrom for disposable packages for the microwave heating of food items. The compositions include a novel microwave absorbing material and a binder. The novel microwave absorbing materials comprise selected ceramics in both their native and amphoteric forms. Such ceramics are those with residual lattice charges or an unbalance of charge in the fundamental framework or layers such as vermiculite, bentonite, hectorite, selected micas including Glauconite, Phlogopite and Biotite and mixtures thereof. These ceramics are activated to their amphoteric form by treatment with either acids or bases. The compositions provide good heat generation and a predeterminable upper temperature limit which is higher in the amphoteric form than in their native form. The ceramic materials are common and inexpensive. Preferred compositions additionally include a temperature profile moderator which can be common salt.
    • 公开了改进的陶瓷组合物,其可用于微波感受器的制备和由其制造的感受器用品,用于微波加热食品的一次性包装。 组合物包括新型的微波吸收材料和粘合剂。 新型微波吸收材料以天然和两性形式包含选定的陶瓷。 这种陶瓷是在基本框架或层中的残余晶格电荷或电荷不平衡的那些,例如蛭石,膨润土,锂蒙脱石,选择的云母,包括Glauconite,Phlogopite和Biotite及其混合物。 这些陶瓷通过用酸或碱处理而活化成它们的两性形式。 该组合物提供良好的发热和可预测的上限温度,其两性形式比其天然形式高。 陶瓷材料是常见的和便宜的。 优选的组合物另外包括可以是常见盐的温度分布调节剂。
    • 8. 发明公开
    • Amphoteric ceramic microwave heating susceptor compositions
    • Amphotere,keramische Zusammensetzungen vonMikrowellenerwärmungszuszeptoren。
    • EP0296869A2
    • 1988-12-28
    • EP88305768.9
    • 1988-06-24
    • GENERAL MILLS, INC.
    • Seaborne, Jonathan
    • H05B6/64C04B35/00
    • B65D81/3446B65D2581/3447B65D2581/3482B65D2581/3494Y10S99/14
    • Disclosed are improved ceramic compositions which are useful in the formulation of microwave susceptors and susceptor articles fabricated therefrom for disposable packages for the microwave heating of food items. The compositions include a novel microwave absorbing material and a binder. The novel microwave absorbing materials comprise selected ceramics in both their native and amphoteric forms. Such ceramics are those with residual lattice charges or an unbalance of charge in the fundamental framework or layers such as vermiculite, bentonite, hectorite, selected micas including Glauconite, Phlogopite and Biotite and mixtures thereof. These ceramics are activated to their amphoteric form by treatment with either acids or bases. The compositions provide good heat generation and a predeterminable upper temperature limit which is higher in the amphoteric form than in their native form. The ceramic materials are common and inexpensive. Preferred compositions additionally include a temperature profile moderator which can be common salt.
    • 公开了改进的陶瓷组合物,其可用于制备微波感受器和由其制造的用于微波加热食品的一次性包装的感受器制品。 组合物包括新型微波吸收材料和粘合剂。 新型微波吸收材料包括天然和两性形式的选定的陶瓷。 这种陶瓷是具有残余晶格电荷或基本骨架或层的不平衡的那些陶瓷,例如蛭石,膨润土,锂蒙脱石,选择的云母,包括Glauconite,Phlogopite和Biotite及其混合物。 这些陶瓷通过用酸或碱处理而活化成它们的两性形式。 该组合物提供良好的发热和可预测的上限温度,其两性形式比其天然形式高。 陶瓷材料是常见的和便宜的。 优选的组合物另外包括可以是常用盐的温度分布调节剂。
    • 9. 发明授权
    • Amphoteric ceramic microwave heating susceptor compositions with metal
salt moderators
    • 具有金属盐调节剂的两性陶瓷微波加热感受器组合物
    • US5183787A
    • 1993-02-02
    • US557853
    • 1990-07-23
    • Jonathan Seaborne
    • Jonathan Seaborne
    • B65D81/34
    • B65D81/3446B65D2581/3447B65D2581/3448B65D2581/3482B65D2581/3485B65D2581/3494
    • Disclosed are improved ceramic compositions which are useful in the formulation of microwave susceptors and to the susceptors fabricated therefrom for disposable packages for the microwave heating of food items. The compositions include certain metal salts as time/temperature profile moderators in addition to a novel microwave absorbing material and a binder. Certain metal salts can be used to dampen or lower the final temperatures reached upon microwave heating the ceramic compositions. Other metal salts can be used to increase or accelerate the final temperature reached upon microwave heating. The microwave absorbing materials comprise selected ceramics in both their native and amphoteric forms. Such useful ceramics are those with residual lattice charges or an unbalance of charge in the fundamental framework or layers such as vermiculite, bentonite, hectorite, zeolites, selected micas including Glauconite, phlogopite and Biotite and mixtures thereof. These ceramics are activated to their amphoteric form by treatment with either acids or bases. The compositions provide good heat generation and a predeterminable upper temperature limit which is higher in the amphoteric form than in their native form. The ceramic materials are common and inexpensive.
    • 公开了改进的陶瓷组合物,其可用于微波感受器的制剂和由其制造的用于微波加热食品的一次性包装的基座。 除了新颖的微波吸收材料和粘合剂之外,组合物包括某些金属盐作为时间/温度曲线调节剂。 某些金属盐可用于抑制或降低微波加热陶瓷组合物时达到的最终温度。 其他金属盐可用于增加或加速微波加热达到的最终温度。 微波吸收材料包括天然和两性形式的选定的陶瓷。 这种有用的陶瓷是在基本框架或层中具有残余晶格电荷或电荷不平衡的那些,例如蛭石,膨润土,锂蒙脱石,沸石,选择的云母,包括Glauconite,金云母和Biotite及其混合物。 这些陶瓷通过用酸或碱处理而活化成它们的两性形式。 该组合物提供良好的发热和可预测的上限温度,其两性形式比其天然形式高。 陶瓷材料是常见的和便宜的。