GABLE FACE STRUCTURE OF CONTAINER AND CONTAINER THEREWITH

To provide a gable face structure of a container which prevents the warpage of a member due to the influence of heat at the time of welding, and improves appearance quality of a gable face of the container and production efficiency.SOLUTION: A gable face structure of a container includes a pair of g...

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Hauptverfasser: NISHIMURA SATORU, OKA NARUTOYO
Format: Patent
Sprache:eng ; jpn
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Zusammenfassung:To provide a gable face structure of a container which prevents the warpage of a member due to the influence of heat at the time of welding, and improves appearance quality of a gable face of the container and production efficiency.SOLUTION: A gable face structure of a container includes a pair of gable pillars 32, a gable upper beam, a lining plate 84 and an outer plate 88, and each of the pair of gable pillars 32 and the gable upper beam includes a lining plate receiving portion 36 to receive the lining plate 84. And the lining plate receiving portion 36 between the gable pillar 32 and the gable upper beam is formed by a pressing integrated by the gable pillar 32 and other portions of the gable upper beam. By this, compared with a conventional structure that fixes after welding the lining plate receiving portion made as an another member, the gable face structure is possible to improve production efficiency because the gable face structure can reduce the number of components, and does not need a welding process. Further because the warpage of the lining plate receiving portion 36 due to the influence of heat at the time of welding does not occur by a reason that the welding process does not need, the gable face structure is possible to improve appearance quality.SELECTED DRAWING: Figure 4 【課題】溶接時の熱の影響による部材の反りを防止し、コンテナの妻面の見栄え品質及び生産効率を向上する。【解決手段】コンテナの妻面構造は、一対の妻柱32、妻上梁、内張板84及び外板88を含み、一対の妻柱32及び妻上梁の各々が、内張板84を受けるための内張板受部36を含んでいる。そして、妻柱32と妻上梁との内張板受部36が、妻柱32及び妻上梁のその他の部分と一体のプレス加工品で形成されているものである。これにより、別部材として作製した内張板受部を溶接して固定する従来の構造と比較して、部品点数を削減することができると共に、溶接工程が不要になるため、生産効率を向上することが可能となる。更に、溶接工程が不要になることで、溶接時の熱の影響による内張板受部36の反りが発生しなくなるため、見栄え品質を向上することも可能となる。【選択図】図4