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    • 1. 发明授权
    • Container, lid body and method of seaming a container
    • 容器,盖体和接缝容器的方法
    • US08998017B2
    • 2015-04-07
    • US13989624
    • 2011-10-21
    • Kei OohoriKazuhiko TsukadaRyuichi Amagai
    • Kei OohoriKazuhiko TsukadaRyuichi Amagai
    • B65D41/00B65D6/30B21D51/32B21D51/40B65D6/02
    • B65D7/36B21D51/32B21D51/40B65D7/06
    • The present invention provides a container, a lid body and a method of seaming a container, in which the influence of a load at the time of seaming can be made as small as possible, in the container having a seaming flange portion and a seaming curl portion notched. In a container of a structure in which a seaming flange portion formed at an open end portion of a container body, and a seaming curl portion formed on a periphery of a bottom lid are seamed to be joined to each other, and in which a notch is formed in at least one of the seaming curl portion and the seaming flange portion, a short and small curl portion in which a width of protrusion of the seaming curl portion is partially short is formed in at least one of circumferentially opposite sides of the notched portion.
    • 本发明提供一种容器,盖体和使容器接合的方法,其中在具有接缝凸缘部分和接缝卷曲的容器中尽可能地缩小接缝时的负荷的影响 部分切口 在其中形成在容器主体的开口端部的接合凸缘部分和形成在底盖的周边上的接缝部分的结构的容器被接合在一起,并且其中凹口 形成在缝合卷曲部分和接缝凸缘部分中的至少一个上,在凹口部分的突出部分的宽度部分短的其中形成短而小的卷曲部分, 一部分。
    • 3. 发明申请
    • POLYGONAL DRAWN CONTAINER AND A FORMING METHOD THEREOF
    • 多边形集装箱及其形成方法
    • US20100025284A1
    • 2010-02-04
    • US12447063
    • 2007-10-24
    • Kei OohoriKazuhiko TsukadaToshifumi Takamatsu
    • Kei OohoriKazuhiko TsukadaToshifumi Takamatsu
    • B65D1/34B29C51/08B65D1/00B65D1/42
    • B21D22/26B21D51/18B65D1/34
    • A rectangular drawn container and a method for forming the same are provided which can prevent warpage of a bottom portion of a container in a simple way. In a rectangular drawn container that is provided with a polygonal bottom panel portion and a body portion of a polygonal tubular shape rising from peripheral edges of the bottom panel portion, a convex bead is formed on the bottom panel portion at a location in the vicinity of at least one bottom side rounded portion among bottom side rounded portions of the body portion, at an inner side of the container so as to extend in parallel to the at least one bottom side rounded portion at a predetermined distance therefrom. The bottom panel portion takes a rectangular shape, and the bead is arranged along a pair of bottom side rounded portions at long sides of the bottom panel portion.
    • 提供了矩形拉制容器及其形成方法,其可以以简单的方式防止容器底部的翘曲。 在设置有多边形底板部分和从底板部分的周边缘上升的多边形管状体的主体部分的矩形拉制容器中,在底板部分上的位于附近的位置处形成凸珠, 所述主体部分的底侧圆形部分中的至少一个底侧圆形部分位于所述容器的内侧,以便与所述至少一个底侧圆形部分平行地延伸至与其预定的距离。 底板部分呈矩形形状,并且沿着底板部分的长边沿着一对底侧圆形部分设置凸缘。
    • 8. 发明授权
    • Tension measurement apparatus
    • 张力测量装置
    • US08890516B2
    • 2014-11-18
    • US12864768
    • 2009-04-24
    • Kazuhiko TsukadaIppei FurukawaToshiro KidoMasashi Oikawa
    • Kazuhiko TsukadaIppei FurukawaToshiro KidoMasashi Oikawa
    • G01B7/24G01R33/18G01L5/10
    • G01L5/102
    • A tension measurement apparatus that can carry out tension measurement of superior reproducibility with high sensitivity even for a target object of a stranded wire structure is provided. A cylindrical magnetizer arranged to surround a portion of a long magnetic element that becomes the target object of measurement direct-current magnetizes the magnetic element in the longitudinal direction up to the range of approach to saturation magnetization. Using a Hall element (magnetic sensor) arranged in proximity to the magnetic element at the central region in the longitudinal direction of the magnetic domain, the spatial magnetic field intensity in the neighborhood of the surface of the magnetic element, greatly differing corresponding to stress variation, is detected. Based on the detection value, the tension acting on the magnetic element is measured. Accordingly, a measurement result of superior reproducibility with high sensitivity is obtained. The tension measurement apparatus is applicable even to a target object of a stranded wire structure.
    • 提供了即使对于绞线结构的目标物体也能够进行具有高灵敏度的优异再现性的张力测量的张力测量装置。 设置成围绕成为目标测量对象的长磁性元件的一部分的圆柱形磁化器直流将磁性元件沿纵向磁化直到接近饱和磁化的范围。 使用在磁畴的纵向方向上的中心区域处布置在磁性元件附近的霍尔元件(磁性传感器),磁性元件表面附近的空间磁场强度大大不同于应力变化 ,被检测到。 基于检测值,测量作用在磁性元件上的张力。 因此,获得具有高灵敏度的优异再现性的测量结果。 张力测量装置甚至可应用于绞线结构的目标物体。
    • 9. 发明申请
    • TENSION MEASUREMENT APPARATUS
    • 张力测量装置
    • US20100315076A1
    • 2010-12-16
    • US12864768
    • 2009-04-24
    • Kazuhiko TsukadaIppei FurukawaToshiro KidoMasashi Oikawa
    • Kazuhiko TsukadaIppei FurukawaToshiro KidoMasashi Oikawa
    • G01R33/18
    • G01L5/102
    • A tension measurement apparatus that can carry out tension measurement of superior reproducibility with high sensitivity even for a target object of a stranded wire structure is provided. A cylindrical magnetizer arranged to surround a portion of a long magnetic element that becomes the target object of measurement direct-current magnetizes the magnetic element in the longitudinal direction up to the range of approach to saturation magnetization. Using a Hall element (magnetic sensor) arranged in proximity to the magnetic element at the central region in the longitudinal direction of the magnetic domain, the spatial magnetic field intensity in the neighborhood of the surface of the magnetic element, greatly differing corresponding to stress variation, is detected. Based on the detection value, the tension acting on the magnetic element is measured. Accordingly, a measurement result of superior reproducibility with high sensitivity is obtained. The tension measurement apparatus is applicable even to a target object of a stranded wire structure.
    • 提供了即使对于绞合线结构的目标物体也能够进行具有高灵敏度的优异再现性的张力测量的张力测量装置。 设置成围绕成为目标测量对象的长磁性元件的一部分的圆柱形磁化器直流将磁性元件沿纵向磁化直到接近饱和磁化的范围。 使用在磁畴的纵向方向上的中心区域处布置在磁性元件附近的霍尔元件(磁性传感器),磁性元件表面附近的空间磁场强度大大不同于应力变化 ,被检测到。 基于检测值,测量作用在磁性元件上的张力。 因此,获得具有高灵敏度的优异再现性的测量结果。 张力测量装置甚至可应用于绞线结构的目标物体。