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    • 1. 发明专利
    • Container aligning and feeding system
    • 集装箱起动和进给系统
    • JP2012246117A
    • 2012-12-13
    • JP2011120621
    • 2011-05-30
    • Shibuya Kogyo Co Ltd澁谷工業株式会社
    • NAKAMURA RYOHEIWATANABE NOBUYUKIYAMASHITA WAKIOTOKUNAGA KATSUMI
    • B65G47/08
    • PROBLEM TO BE SOLVED: To prevent producing an empty carrier to which no container is fed.SOLUTION: A plurality of housing parts for containers 2 one by one are arranged in a manner of surrounding a container storing part in the center of a rotary body, under which a rotational transfer means 8 which has carrier holding parts 40 respectively corresponding to the housing parts and is rotated in synchronous with the rotary body is arranged. The containers 2 respectively housed in the housing parts are allowed to fall at a container input position in an upright state and housed in the carriers 6. A container detecting sensor is arranged between the area where the containers 2 are housed in the housing parts from the storing part and the position where the containers 2 are allowed to fall. When the containers 2 are not in the housing parts, a feeding means 44 feeding the carriers 6 to the rotational transfer means 8 is temporarily stopped, and the carriers 6 corresponding to the housing parts having none of the containers 2 are not fed to the carrier holding parts 40.
    • 要解决的问题:为了防止产生没有容器进给的空载体。 解决方案:将容器2的多个容纳部件一个一个地布置成围绕旋转体的中心的容器存放部分,在该旋转传递装置8上分别具有载体保持部分40 并且与旋转体同步旋转。 分别容纳在壳体部分中的容器2被允许以直立状态落在容器输入位置并容纳在载体6中。容器检测传感器布置在容器2容纳在壳体部分中的区域 储存部件和允许容器2落下的位置。 当容器2不在壳体部分中时,将载体6馈送到旋转传递装置8的进给装置44暂时停止,并且与不具有容器2的壳体部分相对应的载体6不被馈送到载体 (C)2013,JPO&INPIT
    • 2. 发明专利
    • CAP INSPECTING EQUIPMENT
    • JPH11321989A
    • 1999-11-24
    • JP15516698
    • 1998-05-20
    • SHIBUYA KOGYO CO LTD
    • WATANABE NOBUYUKI
    • B65B57/02B67B3/26
    • PROBLEM TO BE SOLVED: To judge whether a cap is capped properly or not by providing an operating means for comparing the measured height of a detecting means and a predetermined reference value, and for correcting the height of a container detected basing on the difference, and by comparing the corrected container height and the predetermined value for judgement. SOLUTION: This equipment is provided with a detecting means 16 for detecting the height of a capped container 2 and judges whether a cap 12 is properly capped or not by comparing the height detected with a predetermined value for judgement. In this case, provided are a measuring means for measuring the height where the detecting means 16 is positioned and an operating means for comparing the measured height of the detective means 16 and the predetermined reference value and for correcting the height of the container 2 detected according to the difference. Whether the cap 12 is properly capped or not is judged by comparing the corrected height of the container 2 with the predetermined value for judgement.
    • 3. 发明专利
    • CAP INSPECTING APPARATUS
    • JPH11321988A
    • 1999-11-24
    • JP15234898
    • 1998-05-15
    • SHIBUYA KOGYO CO LTD
    • KAWASAKI YOSHIKAZUWATANABE NOBUYUKINAKAMURA RYOHEI
    • B65B57/02B67B3/26
    • PROBLEM TO BE SOLVED: To enable highly accurate inspection irrespective of variation in container mounting parts by detecting a container height before and after plugging, calculating for each container based on a detected height value of a container on a carry-in side and comparing a container height range considered to be normal after plugging with a detected container height value on a carry-out side. SOLUTION: A carried-in container height detection means 7 has an arithmetic processor 15 with cap height data C, a cap floating determination value D and a cap absence determination value E stored in a memory means 16. Where actually measured height data of a container before plugging is A, an upper limit (A+C+D) and a lower limit (A+C-E) where a height of a carried- out container is determined to be floating or absent are calculated from these data. Where height data of a container after plugging which is taken from a carry-out side is B, a determination means 18 compares the upper limit (A+C+D) and the lower limit (A+C-E) with the actually detected data B, and when (A+C+D)>B>(A+C-E), the data is determined to be normal and if the range is exceeded, the data is determined to be abnormal.