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    • 1. 发明授权
    • Induction heating apparatus for drink can
    • 饮料罐感应加热装置
    • US5690851A
    • 1997-11-25
    • US539312
    • 1995-10-04
    • Tsuyoshi YoshiokaMasami MatsunagaTetsuya TakatomiHideo KanaiTsutomu Ishima
    • Tsuyoshi YoshiokaMasami MatsunagaTetsuya TakatomiHideo KanaiTsutomu Ishima
    • H05B6/10H05B6/36
    • H05B6/105H05B6/36
    • A drink can induction heating apparatus includes a ferrite core having a plurality of projected portions and recesses formed between the adjacent projected portions. When a drink can is set in a position to be heated, each of the projected portions is oriented toward a longitudinal axis of the drink can and a particular portion of a circumferential wall of the drink can. The apparatus further includes a saddle-shaped heating coil which is partly received in the recesses of the ferrite core and covers a region around the foregoing particular portions of the drink can in a non-contact manner, and an inverter for feeding the AC power to the heating coil. The inverter is arranged to produce the AC power at a resonance frequency which corresponds to one of 5 kHz to 15 kHz where equivalent resistance values of an aluminum can and a steel can approximate to each other.
    • 饮料可以感应加热装置包括铁氧体磁芯,其具有形成在相邻突出部分之间的多个突出部分和凹部。 当饮料罐被设置在待加热的位置时,每个突出部分朝向饮料罐的纵向轴线和饮料罐的周向壁的特定部分定向。 该装置还包括鞍形加热线圈,其部分地容纳在铁氧体磁芯的凹部中,并且以不接触的方式覆盖饮料罐的上述特定部分周围的区域,以及用于将AC电力馈送到 加热线圈。 逆变器被配置为产生相当于5kHz至15kHz之一的谐振频率的交流电力,其中铝罐和钢的等效电阻值可以相互接近。
    • 2. 发明授权
    • Method and apparatus for inspecting sealing defect of container
    • 检查容器密封缺陷的方法和装置
    • US08796628B2
    • 2014-08-05
    • US13511530
    • 2010-11-30
    • Taichi IjuinTomio YamauchiAkira KawazoeTetsuya Takatomi
    • Taichi IjuinTomio YamauchiAkira KawazoeTetsuya Takatomi
    • G01N21/35G01N21/3563G01M3/38G01N21/90
    • G01N21/35G01M3/38G01N21/3563G01N21/9054G01N21/9081
    • A method for inspecting sealing defects of a container using infrared light. Infrared light in a wavelength range of 1450 nm±20 nm is irradiated from a phototransmitter onto the sealed portion of a sample container Infrared light reflected from or transmitted through the sealed portion of the sample container is received by a photoreceiver, and transmitted to a photodetector through an optical fiber. The infrared light in a same wavelength range as the case of inspecting the sample container is irradiated onto the sealed portion of a container to be inspected. The infrared light reflected from or transmitted through the sealed portion of the inspected container is converted into the analog voltage value and transmitted to a controller. If the infrared light is reduced to be smaller than a threshold set on the basis of the sample container, the sealed portion of the inspected container is judged as a sealing defect.
    • 一种使用红外线检查容器的密封缺陷的方法。 波长范围为1450nm±20nm的红外光从光发射器照射到样品容器的密封部分。从或者通过样品容器的密封部分反射或透过的红外光被光接收器接收,并传输到光电检测器 通过光纤。 与检查样品容器的情况相同的波长范围的红外线照射到要检查的容器的密封部分上。 从被检查容器的密封部分反射或透过的红外光被转换为模拟电压值,并被传送到控制器。 如果将红外光减小到小于基于样品容器设定的阈值,则将被检查容器的密封部判断为密封缺陷。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR INSPECTING SEALING DEFECT OF CONTAINER
    • 检查集装箱密封缺陷的方法和装置
    • US20120267534A1
    • 2012-10-25
    • US13511530
    • 2010-11-30
    • Taichi IjuinTomio YamauchiAkira KawazoeTetsuya Takatomi
    • Taichi IjuinTomio YamauchiAkira KawazoeTetsuya Takatomi
    • G01N21/90
    • G01N21/35G01M3/38G01N21/3563G01N21/9054G01N21/9081
    • A method for inspecting sealing defects of a container using infrared light. Infrared light in a wavelength range of 1450 nm±20 nm is irradiated from a phototransmitter onto the sealed portion of a sample container. Infrared light reflected from or transmitted through the sealed portion of the sample container is received by a photoreceiver, and transmitted to a photodetector through an optical fiber. The infrared light in a same wavelength range as the case of inspecting the sample container is irradiated onto the sealed portion of a container to be inspected. The infrared light reflected from or transmitted through the sealed portion of the inspected container is converted into the analog voltage value and transmitted to a controller. If the infrared light is reduced to be smaller than a threshold set on the basis of the sample container, the sealed portion of the inspected container is judged as a sealing defect.
    • 一种使用红外线检查容器的密封缺陷的方法。 1450nm±20nm波长范围的红外光从光发射体照射到样品容器的密封部分上。 从样品容器的密封部分反射或透过的红外线由光接收器接收,并通过光纤传输到光电检测器。 与检查样品容器的情况相同的波长范围的红外线照射到要检查的容器的密封部分上。 从被检查容器的密封部分反射或透过的红外光被转换为模拟电压值,并被传送到控制器。 如果将红外光减小到小于基于样品容器设定的阈值,则将被检查容器的密封部判断为密封缺陷。