JP5748283B2 - container - Google Patents

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JP5748283B2
JP5748283B2 JP2011236726A JP2011236726A JP5748283B2 JP 5748283 B2 JP5748283 B2 JP 5748283B2 JP 2011236726 A JP2011236726 A JP 2011236726A JP 2011236726 A JP2011236726 A JP 2011236726A JP 5748283 B2 JP5748283 B2 JP 5748283B2
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lid
rotation support
container
rotation
main body
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JP2013095426A (en
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貴志 籔田
貴志 籔田
吉弘 和田
吉弘 和田
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Sanko Co Ltd
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Sanko Co Ltd
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本発明は、コンテナ本体の上面開口の開口縁に回動蓋を回動可能に連結して備えたコンテナに関する。   The present invention relates to a container provided with a rotating lid rotatably connected to an opening edge of an upper surface opening of a container body.

従来、この種のコンテナとして、コンテナ本体の上面開口の一開口縁に沿って設けられた複数の回動支持突部と、回動蓋の一外縁部に沿って設けられた複数の回動支持突部とが交互に並べられたものが知られている。このコンテナでは、蓋側の回動支持突部群のうち両端部の1対の回動支持突部から互いに逆向きに突出した1対の回動支持軸が、本体側の回動支持突部群のうち両端部の1対の回動支持突部に備えた回動支持孔に回動可能に軸支されている。また、残りの回動支持突部の間では、隣り合った回動支持突部の一方に備えた回動支持軸が他方に備えた軸受溝に受容されている(例えば、特許文献1参照)。   Conventionally, as this type of container, a plurality of rotation support projections provided along one opening edge of the upper surface opening of the container body and a plurality of rotation support provided along one outer edge of the rotation lid One in which protrusions are arranged alternately is known. In this container, a pair of rotation support shafts protruding in opposite directions from a pair of rotation support protrusions at both ends of the group of rotation support protrusions on the lid side are provided as rotation support protrusions on the main body side. The group is pivotally supported by a rotation support hole provided in a pair of rotation support protrusions at both ends of the group. Moreover, between the remaining rotation support protrusions, a rotation support shaft provided on one of the adjacent rotation support protrusions is received in a bearing groove provided on the other (for example, see Patent Document 1). .

特許第4051265号公報(図4,図7,図8)Japanese Patent No. 4051265 (FIGS. 4, 7, and 8)

しかしながら、上記した従来のコンテナでは、例えば落下してコンテナ本体の側面角部が床に打ち付けられてコンテナ本体が変形すると、回動支持軸が回動支持孔から抜けたり、回動支持軸が回動支持孔からずれて過大な負荷を受けることで破損したりして、回動蓋がコンテナ本体が外れる事態が生じ得た。   However, in the above-described conventional container, for example, if the container body is deformed by dropping and the side corners of the container body are hit against the floor, the rotation support shaft comes out of the rotation support hole or the rotation support shaft rotates. The rotating lid may be damaged due to an excessive load that is displaced from the dynamic support hole, and the container body may be detached from the rotating lid.

本発明は、上記事情に鑑みてなされたもので、従来より回動蓋がコンテナ本体から外れ難いコンテナの提供を目的とする。   The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a container in which a rotating lid is difficult to come off from a container body.

上記目的を達成するためになされた請求項1の発明に係るコンテナは、コンテナ本体の上面開口の一開口縁に設けた本体側回動支持突部と、回動蓋の一外縁部に設けた蓋側回動支持突部とを、コンテナ本体の上面開口の一開口縁に沿って隣り合わせに並べ、本体側回動支持突部及び蓋側回動支持突部の何れか一方から他方に向かって突出した回動支持軸が、他方に形成された回動支持孔に挿入されることで、回動蓋が回動可能に支持されて上面開口を開閉可能なコンテナであって、回動蓋を閉状態としたときに回動支持軸の軸方向で互い対向して回動支持軸が回動支持孔から抜ける方向への回動蓋の移動を規制しかつ、その規制を回動蓋の起立状態で解除可能な直動規制部を備えたコンテナにおいて、各蓋側回動支持突部は、閉状態の回動蓋の一外縁部から上方に突出しかつ回動蓋の回動軸と平行な支持板部と、支持板部の上端部を外側に湾曲又は屈曲させてなる溝部と、溝部の両端を閉塞する1対の閉塞板部とを備えて、本体側回動支持突部寄りの一方の閉塞板部に回動支持軸が突設され、コンテナ本体の一開口縁には、回動蓋を閉状態にしたときに、支持板部の外面に対向する段差面が形成され、支持板部の外面のうち本体側回動支持突部側の側縁部に沿ってそれぞれ突出形成された直動規制部としての蓋側係合リブと、段差面に突出形成されて、回動蓋を閉じたときに、蓋側係合リブに本体側回動支持突部と反対側から対向する直動規制部としての本体側係合リブとを備えたところに特徴を有する。 In order to achieve the above object, a container according to the invention of claim 1 is provided on a main body side rotation support protrusion provided on one opening edge of the upper surface opening of the container main body and on an outer edge portion of the rotation lid. The lid-side rotation support protrusions are arranged side by side along one opening edge of the upper surface opening of the container main body, and either the main body-side rotation support protrusion or the lid-side rotation support protrusion is directed to the other. projecting rotation support shaft, by being inserted into the rotation support hole formed in the other, the rotating lid is a reclosable container an upper opening and is supported rotatably, the times Dofuta When the closed state is established, the movement of the rotating lid in the axial direction of the rotating support shaft is opposed to each other and the movement of the rotating lid in the direction in which the rotating support shaft comes out of the rotation support hole is restricted. in containers having a linear restriction portion releasable state, the cover side rotation support protrusion is in the closed rotating lid A pair of support plates projecting upward from one outer edge and parallel to the pivot axis of the pivot lid, a groove formed by bending or bending the upper end of the support plate outward, and a pair of blocks closing both ends of the groove A rotation support shaft projecting from one closure plate near the main body side rotation support protrusion, and when the rotation lid is closed at one opening edge of the container main body A lid as a linear motion restricting portion formed with a stepped surface facing the outer surface of the support plate portion and projecting along the side edge portion on the main body side rotation support protrusion side of the outer surface of the support plate portion. The main body side as a linear motion restricting portion that protrudes from the side engaging rib and the stepped surface and faces the lid side engaging rib from the opposite side to the main body side rotation support protrusion when the rotation lid is closed It is characterized in that it has an engagement rib.

請求項の発明は、請求項に記載のコンテナにおいて、回動蓋は、閉状態から270度離れた垂下姿勢まで回動可能に構成され、コンテナ本体の一開口縁の上面には、回動蓋が垂下姿勢になったときに、支持板部が当接する上面当接部が設けられたところに特徴を有する。 According to a second aspect of the invention, in the container of claim 1, the rotating lid is configured to be rotated to a hanging position away 270 ° from the closed state, the upper surface of the first opening edge of the container body, times It has a feature in that an upper surface abutting portion with which the support plate abuts is provided when the moving lid is in the hanging posture.

請求項1のコンテナでは、回動蓋を閉状態にすると、コンテナ本体と回動蓋とにそれぞれ設けられた直動規制部が回動支持軸の軸方向で互い対向することで、回動支持軸が回動支持孔から抜ける方向への回動蓋の移動が規制される。しかも、その移動規制のための直動規制部が、本体側回動支持突部と回動蓋の一外縁部とにそれぞれ設けられるか、又は、蓋側回動支持突部とコンテナ本体の一開口縁とにそれぞれ設けられて、回動支持孔と回動支持軸の近傍に位置しているので、コンテナ本体が変形しても、回動支持軸が回動支持孔から抜けたり、ずれたりすることを確実に防ぐことができる。これにより、本発明のコンテナでは、従来より回動蓋をコンテナ本体から外れ難くすることができる。また、回動蓋を起立状態にすると直動規制部による回動蓋の移動規制が解除されるので、回動蓋をコンテナ本体に組み付ける際に、回動蓋を起立状態にして回動支持軸を回動支持孔に容易に挿入することができる。即ち、コンテナ本体に対する回動蓋の組み付けを容易に行うことができる。   In the container according to claim 1, when the rotation lid is in the closed state, the linear motion restricting portions respectively provided on the container body and the rotation lid are opposed to each other in the axial direction of the rotation support shaft. The movement of the rotation lid in the direction in which the shaft is removed from the rotation support hole is restricted. In addition, the linear movement restricting portion for restricting the movement is provided on each of the main body side rotation support protrusion and one outer edge of the rotation lid, or one of the lid side rotation support protrusion and the container main body. Since it is provided at each opening edge and is located in the vicinity of the rotation support hole and the rotation support shaft, even if the container body is deformed, the rotation support shaft may come out of the rotation support hole or be displaced. Can be surely prevented. Thereby, in the container of this invention, a rotation lid can be made hard to remove | deviate from a container main body conventionally. Further, when the rotating lid is in the standing state, the movement restriction of the rotating lid by the linear movement restricting portion is released, so that when the rotating lid is assembled to the container body, the rotating lid is set in the standing state and the rotation support shaft Can be easily inserted into the rotation support hole. That is, the rotating lid can be easily assembled to the container body.

さらに、回動蓋を閉状態にすると、蓋側回動支持突部が有する支持板部の外面に、コンテナ本体の一開口縁の段差面が外側から対向する。そして、支持板部の外面に突出形成された直動規制部としての蓋側係合リブに対して、段差面に突出形成された直動規制部としての本体側係合リブが対向して、回動支持軸が回動支持孔から抜ける方向への回動蓋の移動が規制される。また、蓋側係合リブは、支持板部を補強する役割も果たす。 Further, when the rotating lid is in the closed state, the stepped surface of the opening edge of the container body faces the outer surface of the support plate portion of the lid-side rotating support protrusion from the outside. And, with respect to the lid side engaging rib as the linear motion restricting portion formed to protrude on the outer surface of the support plate portion, the main body side engaging rib as the linear motion restricting portion formed to protrude on the step surface is opposed, The movement of the rotation lid in the direction in which the rotation support shaft is removed from the rotation support hole is restricted. Moreover, the lid side engaging rib also plays a role of reinforcing the support plate portion.

請求項のコンテナでは、回動蓋は、閉状態から270度離れた垂下姿勢まで回動すると、回動蓋の支持板部が、コンテナ本体の一開口縁の上面に設けた上面当接部と当接して、回動蓋の自重を受け止める。これにより、回動支持軸及び回動支持孔に対する負荷が軽減されてそれら回動支持軸及び回動支持孔の変形が抑えられ、この点においても従来より回動蓋をコンテナ本体から外れ難くすることができる。 In the container according to claim 2 , when the rotating lid rotates to a hanging posture separated by 270 degrees from the closed state, the upper surface contact portion provided on the upper surface of the one opening edge of the container main body of the rotating lid To contact the weight of the rotating lid. As a result, the load on the rotation support shaft and the rotation support hole is reduced, and deformation of the rotation support shaft and the rotation support hole is suppressed. Also in this respect, the rotation lid is less likely to be detached from the container body than before. be able to.

本発明の一実施形態に係るコンテナの斜視図The perspective view of the container which concerns on one Embodiment of this invention 回動蓋を閉状態にしたコンテナの斜視図Perspective view of the container with the rotating lid closed 折畳状態のコンテナの斜視図Perspective view of the container in the folded state 上部枠の斜視図Perspective view of upper frame 上部枠と回動蓋の一部を拡大した斜視図An enlarged perspective view of a part of the upper frame and the rotating lid 上部枠の一部を拡大した斜視図The perspective view which expanded a part of upper frame 回動蓋の全体の斜視図Full perspective view of the rotating lid 第1と第2の軸支持突部の斜視図Perspective view of first and second shaft support protrusions 回動蓋と上部枠の一部を破断した斜視図The perspective view which fractured | ruptured a part of rotation lid and upper frame 回動蓋と閉状態にしたコンテナの側断面図Side cross-sectional view of the container with the rotating lid and closed state 回動蓋を垂下姿勢にしたコンテナの側断面図Side cross-sectional view of container with swivel lid in hanging position 回動蓋と上部枠の一部を拡大した平断面図An enlarged plan view of a part of the rotating lid and upper frame 上部枠と回動蓋の一部を拡大した斜視図An enlarged perspective view of a part of the upper frame and the rotating lid

以下、本発明の一実施形態を図1〜図13に基づいて説明する。図1に示すように、本実施形態のコンテナ10は、上面開放の箱形状をなしたコンテナ本体10Hの上面に1対の回動蓋50,50を回動可能に組み付けてなる。   Hereinafter, an embodiment of the present invention will be described with reference to FIGS. As shown in FIG. 1, the container 10 of the present embodiment is formed by assembling a pair of rotating lids 50 and 50 on the upper surface of a container body 10 </ b> H having a box shape with an open upper surface.

図2に示すように、コンテナ本体10Hは、その底部を構成する底部ベース11と上部を構成する上部枠20との間に、1対の跳上側壁40,40と1対の折曲側壁30,30とを備えている。また、底部ベース11及び上部枠20は、共に平面形状が長方形になっていて、図1に示すように、コンテナ本体10Hの上面開口10Kも長方形になっている。   As shown in FIG. 2, the container body 10 </ b> H has a pair of jumping side walls 40, 40 and a pair of bent side walls 30 between the bottom base 11 constituting the bottom and the upper frame 20 constituting the top. , 30. Further, the bottom base 11 and the upper frame 20 are both rectangular in plan shape, and the upper surface opening 10K of the container body 10H is also rectangular as shown in FIG.

図2に示すように、各折曲側壁30は、上下方向の中央に備えた中間ヒンジ30Aで上側折曲側壁31と下側折曲側壁32とに分割されて内側に2つ折り可能に構成され、各折曲側壁30の上下の両端部が、上部枠20と底部ベース11の各長辺部分に回動可能に連結されている。また、各跳上側壁40は、上端部のみが上部枠20の各短辺部分に回動可能に連結され、起立姿勢で1対の折曲側壁30,30の間に挟まれ、その起立姿勢から内側に回動して1対の折曲側壁30,30の間から上方に退き上部枠20の内部に収容されるようになっている。   As shown in FIG. 2, each bent side wall 30 is divided into an upper bent side wall 31 and a lower bent side wall 32 by an intermediate hinge 30 </ b> A provided at the center in the vertical direction, and can be folded inwardly. The upper and lower ends of each bent side wall 30 are rotatably connected to the long side portions of the upper frame 20 and the bottom base 11. Further, each of the jumping side walls 40 is pivotally connected to each short side portion of the upper frame 20 only at the upper end portion, and is sandwiched between the pair of bent side walls 30 and 30 in the standing posture, and the standing posture. It is turned inward from the inside and retracted upward from between the pair of bent side walls 30, 30 to be accommodated in the upper frame 20.

この構成により、コンテナ本体10Hは、図2に示した組立状態から1対の跳上側壁40,40、1対の折曲側壁30,30の順番で折り畳んで図3に示した折畳状態にすることができる。そして、折畳状態になると、下側折曲側壁32が底部ベース11の外縁部に備えた包囲壁11Aの内側に収容されると共に、上側折曲側壁31が上部枠20の内側に収容されて、上部枠20の下端部が包囲壁11Aの上面に当接する。   With this configuration, the container main body 10H is folded from the assembled state shown in FIG. 2 in the order of the pair of raised side walls 40, 40 and the pair of folded side walls 30, 30 to the folded state shown in FIG. can do. When in the folded state, the lower bent side wall 32 is accommodated inside the surrounding wall 11A provided at the outer edge of the bottom base 11, and the upper bent side wall 31 is accommodated inside the upper frame 20. The lower end portion of the upper frame 20 contacts the upper surface of the surrounding wall 11A.

なお、上側及び下側の折曲側壁31,32と跳上側壁40は、図2に示すように、それぞれ外縁部全体を構成する不透明な樹脂製の枠部材31H,32H,40Hと、それら枠部材31H,32H,40Hの内側開口を閉塞した無色透明な樹脂製の窓板部材31G,32G,40Gとを一体成形した構造になっている。   As shown in FIG. 2, the upper and lower bent side walls 31 and 32 and the raised side wall 40 are made of opaque resin frame members 31H, 32H, and 40H that constitute the entire outer edge, respectively, and the frames. It has a structure in which window plates 31G, 32G, and 40G made of colorless and transparent resin that close the inner openings of the members 31H, 32H, and 40H are integrally formed.

図1に示すように、1対の回動蓋50,50は、コンテナ本体10Hの上面のうち上面開口10Kの開口縁における1対の長辺部分(即ち、上部枠20における1対の長辺部分の上面)に回動可能に連結されている。これら回動蓋50,50は、図2に示すように、先端に波形湾曲部50Wを有し、回動蓋50,50が閉状態になると一方の回動蓋50の波形湾曲部50Wにおける山部分が他方の回動蓋50の波形湾曲部50Wにおける谷部分に収まる。   As shown in FIG. 1, the pair of rotary lids 50, 50 are a pair of long side portions (that is, a pair of long sides in the upper frame 20) at the opening edge of the upper surface opening 10 </ b> K of the upper surface of the container body 10 </ b> H. The upper surface of the portion is rotatably connected. As shown in FIG. 2, these rotary lids 50 and 50 have corrugated curved portions 50 </ b> W at their tips. The portion fits in a valley portion in the waveform curved portion 50 </ b> W of the other rotating lid 50.

また、各回動蓋50の外縁部における1対の短辺部分には、それぞれ矩形孔50Aが貫通形成されている。そして、回動蓋50を閉状態にすると、上部枠20の各短辺部分の上面から突出した断面矩形の上面突部20Aが矩形孔50Aを貫通して、回動蓋50の横ずれを規制する。   In addition, rectangular holes 50 </ b> A are formed through the pair of short sides at the outer edge of each rotating lid 50. When the rotating lid 50 is in a closed state, the upper surface protrusion 20A having a rectangular cross section protruding from the upper surface of each short side portion of the upper frame 20 passes through the rectangular hole 50A and restricts the lateral displacement of the rotating lid 50. .

さらに、各回動蓋50の外縁部における一方の短辺部分には、ロックスライダ60がスライド可能に組み付けられていて、両回動蓋50,50を閉状態にするとそれら両回動蓋50,50のロックスライダ60,60の先端が上部枠20における1対の短辺部分の内側面に突き合わされる。また、図1に示すように、上部枠20における1対の短辺部分の内側面には、それぞれ係合スリット20Bが形成されていて(図1には、一方の係合スリット20Bのみが示されている)、ロックスライダ60をスライドさせることで、ロックスライダ60の先端を係合スリット20Bに挿入して回動蓋50を閉状態に固定することができる。   Further, a lock slider 60 is slidably assembled to one short side portion of the outer edge portion of each rotary lid 50. When both the rotary lids 50, 50 are closed, the rotary lids 50, 50 are closed. The leading ends of the lock sliders 60, 60 are abutted against the inner surfaces of the pair of short sides of the upper frame 20. Moreover, as shown in FIG. 1, the engagement slit 20B is formed in the inner surface of a pair of short side part in the upper frame 20, respectively (only one engagement slit 20B is shown in FIG. 1). By sliding the lock slider 60, the tip of the lock slider 60 can be inserted into the engagement slit 20B and the rotating lid 50 can be fixed in the closed state.

なお、回動蓋50も上記した上側及び下側の折曲側壁31,32等と同様に、外縁部全体を構成する不透明な樹脂製の枠部材50Hと、その枠部材50Hの内側開口を閉塞した無色透明な樹脂製の窓板部材50Gとを一体成形した構造になっている。   As with the upper and lower bent side walls 31, 32, etc., the rotating lid 50 also closes the opaque resin frame member 50H constituting the entire outer edge and the inner opening of the frame member 50H. This is a structure in which the colorless and transparent resin window plate member 50G is integrally molded.

さて、回動蓋50をコンテナ本体10Hの上面に回動可能に連結するために、図4に示すように上部枠20における1対の長辺部分の上面には、それらの長手方向に沿って軸受突部群29Gが一列に並べて設けられると共に、図7に示すように、各回動蓋50には、上部枠20の長辺部分に対応した一外縁部に沿って軸支持突部群59Gが一列に並べて設けられている。   Now, in order to rotatably connect the rotation lid 50 to the upper surface of the container body 10H, the upper surface of the pair of long side portions in the upper frame 20 is arranged along the longitudinal direction as shown in FIG. Bearing projection groups 29G are provided in a line, and as shown in FIG. 7, each rotary lid 50 has a shaft support projection group 59G along one outer edge corresponding to the long side portion of the upper frame 20. They are arranged in a line.

まず、上部枠20の軸受突部群29Gについて詳説する。図4に示した軸受突部群29Gのうち両端部は、本発明に係る「本体側回動支持突部」に相当する1対の第1軸受突部21,21になっていて、それら1対の第1軸受突部21,21は、上部枠20の長辺部分における両端寄り位置に配置されている。そして、軸受突部群29Gのうち中央の第5軸受突部25と各第1軸受突部21との間に、それぞれ第1軸受突部21側から順番に第2軸受突部22、第3軸受突部23及び第4軸受突部24が間隔を空けて配置されている。即ち、第5軸受突部25の両側に第1〜第4の軸受突部21〜24がそれぞれ対をなして左右対称に配置されている。そして、これら第1〜第5の軸受突部21〜25によって軸受突部群29Gが構成されている。   First, the bearing projection group 29G of the upper frame 20 will be described in detail. Both end portions of the bearing projection group 29G shown in FIG. 4 are a pair of first bearing projections 21 and 21 corresponding to the “main body side rotation support projection” according to the present invention. The pair of first bearing protrusions 21, 21 are disposed at positions near both ends in the long side portion of the upper frame 20. The second bearing projection 22 and the third bearing projection 29 are arranged in order from the first bearing projection 21 side between the fifth bearing projection 25 in the center of the bearing projection group 29G and each first bearing projection 21. The bearing protrusion 23 and the fourth bearing protrusion 24 are arranged with a space therebetween. In other words, the first to fourth bearing protrusions 21 to 24 are arranged symmetrically on both sides of the fifth bearing protrusion 25 in pairs. The first to fifth bearing protrusions 21 to 25 constitute a bearing protrusion group 29G.

また、図5に示すように、上部枠20の長辺部分の上面のうち上面開口10Kから離れた外縁部には、軸受突部群29Gの間に上面段差突部28が設けられ、その上面段差突部28によってコンテナ本体10Hの上面に、本発明に係る段差面28Aが形成されている。そして、第1軸受突部21のうち上面段差突部28の上面より上側部分に回動支持孔21Cが形成されると共に、第2〜第5の軸受突部22〜25のうち上面段差突部28の上面より上側部分に軸受溝22C,23C,24C,25Cがそれぞれ形成されている。   Further, as shown in FIG. 5, an upper surface step protrusion 28 is provided between the bearing protrusion groups 29G on the outer edge portion of the upper surface of the long side portion of the upper frame 20 away from the upper surface opening 10K. A step surface 28A according to the present invention is formed on the upper surface of the container main body 10H by the step protrusion 28. A rotation support hole 21C is formed in the first bearing protrusion 21 above the upper surface of the upper surface step protrusion 28, and the upper surface step protrusion of the second to fifth bearing protrusions 22-25. Bearing grooves 22C, 23C, 24C, and 25C are formed in the upper part of the upper surface of 28, respectively.

図6に示すように、第1軸受突部21は、断面異形の筒体の上面を閉塞した構造をなしている。また、回動支持孔21Cは、第1軸受突部21のうち第2軸受突部22側を向いた側面に開口した丸孔になっている。そして、回動支持孔21Cの中心軸S1が上部枠20の上面における長辺部分の長手方向と平行になっている。なお、第1軸受突部21の側面における回動支持孔21Cの開口縁には、回動支持孔21Cの直径より大きな幅で回動支持孔21Cから第1軸受突部21の上面まで延びた陥没溝21Dが形成されている。   As shown in FIG. 6, the 1st bearing protrusion 21 has comprised the structure which obstruct | occluded the upper surface of the cross-sectionally deformed cylindrical body. Further, the rotation support hole 21 </ b> C is a round hole opened on the side surface of the first bearing protrusion 21 facing the second bearing protrusion 22. The central axis S1 of the rotation support hole 21C is parallel to the longitudinal direction of the long side portion on the upper surface of the upper frame 20. The opening edge of the rotation support hole 21C on the side surface of the first bearing protrusion 21 extends from the rotation support hole 21C to the upper surface of the first bearing protrusion 21 with a width larger than the diameter of the rotation support hole 21C. A recessed groove 21D is formed.

第2軸受突部22は、上部枠20の上面から起立し、回動支持孔21Cの中心軸S1と平行な矩形突壁22Dと、その矩形突壁22Dの両側縁部から上面開口10K側に突出した1対の下側支持壁22A,22Aと、矩形突壁22Dの上端縁から上面開口10K側に突出した上部突片22Bとを備えている。1対の下側支持壁22A,22Aの上端部は、矩形突壁22Dの上下方向における中間に位置しかつ、矩形突壁22D側が円弧状に窪んでいる。また、上部突片22Bは、先端に向かうに従って下方に向かうように湾曲している。これにより、第2軸受突部22のうち下側支持壁22A,22Aの上端部と上部突片22Bの下面との間には、回動支持孔21Cの軸方向から見て上面開口10K側に開放したC字形の軸受溝22Cが形成されている。   The second bearing protrusion 22 rises from the upper surface of the upper frame 20 and has a rectangular protrusion wall 22D parallel to the central axis S1 of the rotation support hole 21C, and from both side edges of the rectangular protrusion wall 22D to the upper surface opening 10K side. A pair of projecting lower support walls 22A, 22A and an upper projecting piece 22B projecting from the upper end edge of the rectangular projecting wall 22D toward the upper surface opening 10K are provided. The upper ends of the pair of lower support walls 22A, 22A are located in the middle of the rectangular protruding wall 22D in the vertical direction, and the rectangular protruding wall 22D side is recessed in an arc shape. Further, the upper protruding piece 22B is curved so as to go downward as it goes to the tip. Thereby, between the upper end part of lower support wall 22A, 22A and the lower surface of upper protrusion 22B among the 2nd bearing protrusions 22, seeing from the axial direction of the rotation support hole 21C, on the upper surface opening 10K side. An open C-shaped bearing groove 22C is formed.

第4軸受突部24は、第2軸受突部22と同様の構造を有し、回動支持孔21Cの軸方向から見て上面開口10K側に開放したC字形の軸受溝24Cを備えている。   The fourth bearing protrusion 24 has a structure similar to that of the second bearing protrusion 22, and includes a C-shaped bearing groove 24C that is open to the upper surface opening 10K side when viewed from the axial direction of the rotation support hole 21C. .

第3軸受突部23は、上部枠20の上面から起立し、回動支持孔21Cの軸方向と平行な矩形突壁23Dと、矩形突壁23Dの幅方向の中央から上面開口10K側に突出した中央区画壁23Aと、矩形突壁23Dの上端縁から上面開口10K側に突出したフック壁23Bとを備えている。そして、フック壁23Bの下面に半円弧状の溝形状をなしかつ中央区画壁23Aによって2つに区画された1対の軸受溝23C,23Cが備えられている。   The third bearing protrusion 23 rises from the upper surface of the upper frame 20 and protrudes toward the upper surface opening 10K from the rectangular protrusion wall 23D parallel to the axial direction of the rotation support hole 21C and the center of the rectangular protrusion wall 23D in the width direction. The central partition wall 23A and a hook wall 23B protruding from the upper end edge of the rectangular protruding wall 23D toward the upper surface opening 10K. A pair of bearing grooves 23C, 23C are formed on the lower surface of the hook wall 23B in a semicircular groove shape and divided into two by a central partition wall 23A.

図5に示すように、第5軸受突部25は、第3軸受突部23の矩形突壁23Dより横幅が広い矩形突壁25Dと、第3軸受突部23の中央区画壁23Aより厚い中央区画壁25Aと、第3軸受突部23のフック壁23Bと同様のフック壁25Bとを有し、1対のフック壁25Bの下面に中央区画壁25Aによって2つに区画された1対の軸受溝25C,25Cを備えている。そして、上記した軸受溝22C,23C,24C,25Cと回動支持孔21Cとが同軸上に配置されている。   As shown in FIG. 5, the fifth bearing projection 25 includes a rectangular projection wall 25 </ b> D having a wider width than the rectangular projection wall 23 </ b> D of the third bearing projection 23 and a center thicker than the central partition wall 23 </ b> A of the third bearing projection 23. A pair of bearings having a partition wall 25A and a hook wall 25B similar to the hook wall 23B of the third bearing protrusion 23 and divided into two by a central partition wall 25A on the lower surface of the pair of hook walls 25B Grooves 25C and 25C are provided. The bearing grooves 22C, 23C, 24C, and 25C described above and the rotation support hole 21C are coaxially arranged.

図6に示すように、第1軸受突部21と第2軸受突部22との間の上面段差突部28の上面には、第1軸受突部21側の端部を段付き状に高くして本発明に係る上面当接部27Aが形成されている。また、その上面段差突部28の段差面28Aには、第1軸受突部21側の端部寄り位置に本発明に係る「直動規制部」及び「本体側係合リブ」としての本体側係合リブ26が形成されている。本体側係合リブ26は、段差面28Aから段付き状に突出して上下方向に延びている。また、本体側係合リブ26の両側面は、回動支持孔21Cの軸方向と直交した平坦面になっている。さらに、本体側係合リブ26の一方の側面は、上面当接部27Aのうち上面段差突部28の上面に対する段差面と面一になっていて、本体側係合リブ26の他方の側面は、第1軸受突部21の側面との間に隙間を空けて対向している。また、本実施形態では、第2軸受突部22と第3軸受突部23との間の上面段差突部28の上面にも、第2軸受突部22側の端部を段付き状に高くして本発明に係る上面当接部27Bが形成されると共に、第3軸受突部23と第4軸受突部24との間の上面段差突部28の上面にも、第4軸受突部24側の端部を段付き状に高くして本発明に係る上面当接部27Cが形成されている。   As shown in FIG. 6, on the upper surface of the upper surface step protrusion 28 between the first bearing protrusion 21 and the second bearing protrusion 22, the end on the first bearing protrusion 21 side is raised stepwise. Thus, the upper surface contact portion 27A according to the present invention is formed. Further, on the step surface 28A of the upper surface step protrusion 28, the main body side as the “linear motion restricting portion” and the “main body side engagement rib” according to the present invention is located near the end on the first bearing protrusion 21 side. Engagement ribs 26 are formed. The main body side engaging rib 26 protrudes in a stepped manner from the step surface 28A and extends in the vertical direction. Further, both side surfaces of the main body side engaging rib 26 are flat surfaces orthogonal to the axial direction of the rotation support hole 21C. Further, one side surface of the main body side engagement rib 26 is flush with the step surface of the upper surface contact portion 27A with respect to the upper surface of the upper surface step protrusion 28, and the other side surface of the main body side engagement rib 26 is The first bearing projection 21 faces the side surface with a gap. In the present embodiment, the end on the second bearing protrusion 22 side is also raised stepwise on the upper surface of the upper surface step protrusion 28 between the second bearing protrusion 22 and the third bearing protrusion 23. Thus, the upper surface contact portion 27B according to the present invention is formed, and the upper surface of the upper surface step protrusion 28 between the third bearing protrusion 23 and the fourth bearing protrusion 24 is also formed on the fourth bearing protrusion 24. An upper surface contact portion 27C according to the present invention is formed by raising the side end portion in a stepped shape.

上部枠20の軸受突部群29Gに関しては以上であり、次に、回動蓋50の軸支持突部群59Gについて詳説する。図7に示すように、回動蓋50には、軸支持突部群59Gを設けるために、回動蓋50の一外縁部における両端寄り位置の間を、窓板部材50G側にずらして外縁切欠部50Pが形成され、その外縁切欠部50Pの内部に軸支持突部群59Gが設けられている。軸支持突部群59Gの両端部は、本発明に係る「蓋側回動支持突部」に相当する1対の第1軸支持突部51,51になっていて、それら1対の第1軸支持突部51,51の内側に間隔を空けて1対の第2軸支持突部52,52が配置され、さらに、1対の第3軸支持突部53,53の内側に間隔を空けて1対の第4軸支持突部54,54が配置されている。そして、1対の第4軸支持突部54,54の間の中心に対して第1〜第4の軸支持突部51〜54が左右対称に配置され、これら第1〜第4の軸支持突部51〜54によって軸支持突部群59Gが構成されている。   The bearing projection group 29G of the upper frame 20 has been described above. Next, the shaft support projection group 59G of the rotating lid 50 will be described in detail. As shown in FIG. 7, in order to provide the pivot cover 50 with the shaft support protrusion group 59G, the outer edge of the pivot cover 50 is shifted to the window plate member 50G side by shifting the position between both ends of the outer edge of the pivot lid 50 to the window plate member 50G side. A notch 50P is formed, and a shaft support protrusion group 59G is provided inside the outer edge notch 50P. Both end portions of the shaft support protrusion group 59G are a pair of first shaft support protrusions 51, 51 corresponding to the “lid-side rotation support protrusions” according to the present invention. A pair of second shaft support protrusions 52, 52 are arranged inside the shaft support protrusions 51, 51 with a space therebetween, and further, a space is formed inside the pair of third shaft support protrusions 53, 53. A pair of fourth shaft support protrusions 54, 54 are arranged. The first to fourth shaft support protrusions 51 to 54 are arranged symmetrically with respect to the center between the pair of fourth shaft support protrusions 54, 54. The protrusions 51 to 54 constitute a shaft support protrusion group 59G.

また、第1〜第4の軸支持突部51〜54は、外縁切欠部50Pの奥面から窓板部材50Gと平行になって突出した複数の蓋外縁突片70Aの先端に一体形成されている。具体的には、第1〜第4の軸支持突部51〜54は、何れも、図9に示すように蓋外縁突片70Aの先端から上側に起立した支持板部71と、支持板部71の上端部を外側に湾曲させてなる溝部72と、図8に示すように、溝部72の両端を閉塞する1対の閉塞板部73とを備えた構造になっている。また、上記した蓋外縁突片70Aと支持板部71とは同じ幅をなし、蓋外縁突片70Aの下面における両側縁部には、1対の外面サイドリブ70B,70Bが突出形成されると共に、支持板部71の外面における両側縁部には、1対の外面サイドリブ75A,75Bが突出形成され、それら1対の外面サイドリブ75A,75Bの上端部が閉塞板部73,73に繋がっている。さらに、支持板部71の下端部は、蓋外縁突片70Aの下面から突出していて、その支持板部71の下面と外面サイドリブ70B,70Bの下面と外面サイドリブ75A,75Bの下面が面一になっている。   The first to fourth shaft support protrusions 51 to 54 are integrally formed at the distal ends of a plurality of lid outer edge protrusions 70A that protrude in parallel with the window plate member 50G from the inner surface of the outer edge notch 50P. Yes. Specifically, each of the first to fourth shaft support protrusions 51 to 54 includes, as shown in FIG. 9, a support plate portion 71 that stands up from the tip of the lid outer edge protrusion piece 70 </ b> A, and a support plate portion. As shown in FIG. 8, a structure is provided with a pair of blocking plate portions 73 that close both ends of the groove portion 72 as shown in FIG. 8. Further, the lid outer edge protruding piece 70A and the support plate 71 have the same width, and a pair of outer side ribs 70B and 70B are formed to protrude from both side edges on the lower surface of the lid outer edge protruding piece 70A. A pair of outer surface side ribs 75 </ b> A and 75 </ b> B are formed to protrude from both side edges on the outer surface of the support plate portion 71, and the upper end portions of the pair of outer surface side ribs 75 </ b> A and 75 </ b> B are connected to the blocking plate portions 73 and 73. Further, the lower end portion of the support plate 71 protrudes from the lower surface of the lid outer edge protruding piece 70A, and the lower surface of the support plate 71, the lower surfaces of the outer side ribs 70B and 70B, and the lower surfaces of the outer surface side ribs 75A and 75B are flush with each other. It has become.

そして、本実施形態では、1対の第1軸支持突部51,51に備えた外面サイドリブ75A,75Bのうち第2軸支持突部52,52から離れた側の一方の外面サイドリブ75A,75Aが、本発明に係る「直動規制部」及び「蓋側係合リブ」になっている。   In the present embodiment, one of the outer surface side ribs 75A, 75A on the side away from the second shaft support protrusions 52, 52 among the outer surface side ribs 75A, 75B provided in the pair of first shaft support protrusions 51, 51. Are the “linear motion restricting portion” and the “lid side engaging rib” according to the present invention.

なお、図7に示すように、隣り合った第1と第2の軸支持突部51,52の間と、第2と第3の軸支持突部52,53の間と、第3と第4の軸支持突部53,54の間とには、蓋外縁突片70A,70Aの側部対向面の基端部を連絡するように連絡板70Cが形成され、図8に示すように、各連絡板70Cの下面の先端縁には、連絡リブ70Dが突出係止されている。   As shown in FIG. 7, between the adjacent first and second shaft support protrusions 51 and 52, between the second and third shaft support protrusions 52 and 53, and between the third and third shaft support protrusions 52 and 53. A connecting plate 70C is formed between the four shaft support protrusions 53 and 54 so as to connect the base end portions of the side facing surfaces of the lid outer edge protrusions 70A and 70A, as shown in FIG. A connecting rib 70D is projectingly locked to the leading edge of the lower surface of each connecting plate 70C.

図7に示すように、第1〜第4の軸支持突部51〜54における各閉塞板部73の外側面には、同軸上に第1〜第5の回動支持軸21J〜25Jが設けられている。第1回動支持軸21Jは、第1軸支持突部51のうち第2軸支持突部52との反対面から突出している。第2回動支持軸22Jは、第1と第2の軸支持突部51,52の対向面間に差し渡され、第3回動支持軸23Jは、第2と第3の軸支持突部52,53の対向面にそれぞれ形成されて、間隔を空けて突き合わされている。また、第4回動支持軸24Jは、第3と第4の軸支持突部53,54の対向面の間に差し渡され、第5回動支持軸25Jは、両第4軸支持突部54,54の対向面にそれぞれ形成されて、間隔を空けて突き合わされている。また、第1〜第5の回動支持軸21J〜25Jは、断面円形の棒状をなしている。さらに、両持ち状態の第2及び第4の回動支持軸22J,24Jは、片持ち状態の第1及び第3及び第5の回動支持軸21J,23J,25Jに比べて径が小さくなっている。   As shown in FIG. 7, first to fifth rotating support shafts 21 </ b> J to 25 </ b> J are provided coaxially on the outer surface of each closing plate portion 73 in the first to fourth shaft support protrusions 51 to 54. It has been. The first rotation support shaft 21 </ b> J protrudes from the surface of the first shaft support protrusion 51 opposite to the second shaft support protrusion 52. The second rotation support shaft 22J is interposed between the opposing surfaces of the first and second shaft support protrusions 51 and 52, and the third rotation support shaft 23J is the second and third shaft support protrusions. It forms in the opposing surface of 52,53, respectively, and is faced | matched at intervals. The fourth rotation support shaft 24J is interposed between the opposing surfaces of the third and fourth shaft support protrusions 53 and 54, and the fifth rotation support shaft 25J is both the fourth shaft support protrusions. They are formed on opposite surfaces of 54 and 54, and are abutted with an interval. Further, the first to fifth rotation support shafts 21J to 25J have a rod shape with a circular cross section. Further, the second and fourth rotation support shafts 22J and 24J in the both-end support state have a smaller diameter than the first, third and fifth rotation support shafts 21J, 23J and 25J in the cantilever state. ing.

回動蓋50の軸支持突部群59Gに関しては以上である。図1に示すように、回動蓋50が上部枠20に組み付けられた状態では、上記した軸支持突部群59Gを構成する第1〜第4の軸支持突部51〜54と、軸受突部群29Gを構成する第1〜第5の軸受突部21〜25は交互に並び、それらの両端部では、1対の第1軸受突部21,21の内側に1対の第1軸支持突部51,51が配置された状態になる。そして、図12に示すように、第1回動支持軸21Jが回動支持孔21Cに挿入され、第2回動支持軸22Jが軸受溝22Cに受容され、図示しないが、第3回動支持軸23Jが軸受溝23Cに受容され、第4回動支持軸24Jが軸受溝24Cに受容され、第5回動支持軸25Jが軸受溝25Cに受容される。これにより、回動蓋50が上部枠20に対して回動可能に連結されている。   This is the end of the shaft support protrusion group 59G of the rotating lid 50. As shown in FIG. 1, in a state where the rotating lid 50 is assembled to the upper frame 20, the first to fourth shaft support protrusions 51 to 54 constituting the shaft support protrusion group 59G described above, and the bearing protrusion The first to fifth bearing protrusions 21 to 25 constituting the group 29G are alternately arranged, and at both ends thereof, a pair of first shaft supports are provided inside the pair of first bearing protrusions 21 and 21. The protrusions 51 and 51 are arranged. Then, as shown in FIG. 12, the first rotation support shaft 21J is inserted into the rotation support hole 21C, and the second rotation support shaft 22J is received in the bearing groove 22C. The shaft 23J is received in the bearing groove 23C, the fourth rotation support shaft 24J is received in the bearing groove 24C, and the fifth rotation support shaft 25J is received in the bearing groove 25C. Thereby, the rotation cover 50 is connected with respect to the upper frame 20 so that rotation is possible.

また、回動蓋50を上部枠20に組み付けるには、上部枠20の上方で回動蓋50を起立状態にして1対の第1軸支持突部51,51の間を湾曲状に弾性変形させ、両第1軸支持突部51,51の第1回動支持軸21J,21Jを1対の第1軸受突部21,21の側面における回動支持孔21C,21Cの開口に突き合わせ、回動蓋50を弾性復元させる。すると、その弾性復元の過程で第1回動支持軸21J,21Jが回動支持孔21C,21Cに挿入されると共に、第3及び第5の回動支持軸23J,25Jが上面開口10K側から第3及び第5の軸受突部23,25のフック壁23B,25Bの先端下縁部に摺接して軸受溝23C,25Cに受容され、さらに、第2及び第4の回動支持軸22J,24Jが、第2及び第4の軸受突部22,24の上部突片22B,22Bを弾性変形させながら軸受溝22C,24Cに押し込まれる。このようにして、回動蓋50が上部枠20に組み付けられている。   In order to assemble the rotating lid 50 to the upper frame 20, the rotating lid 50 is raised above the upper frame 20, and the elastic deformation between the pair of first shaft support protrusions 51, 51 is performed in a curved shape. The first rotation support shafts 21J and 21J of the first shaft support protrusions 51 and 51 are brought into contact with the openings of the rotation support holes 21C and 21C on the side surfaces of the pair of first bearing protrusions 21 and 21, respectively. The moving lid 50 is elastically restored. Then, the first rotation support shafts 21J and 21J are inserted into the rotation support holes 21C and 21C in the process of elastic recovery, and the third and fifth rotation support shafts 23J and 25J are inserted from the upper surface opening 10K side. The third and fifth bearing protrusions 23 and 25 are received in the bearing grooves 23C and 25C in sliding contact with the lower end edges of the hook walls 23B and 25B, and further, the second and fourth rotation support shafts 22J, 24J is pushed into the bearing grooves 22C and 24C while elastically deforming the upper protrusions 22B and 22B of the second and fourth bearing protrusions 22 and 24, respectively. In this way, the rotating lid 50 is assembled to the upper frame 20.

本実施形態のコンテナ10の構成に関する説明は、以上である。次に、このコンテナ10の作用効果について説明する。コンテナ10では、回動蓋50を閉状態にすると、回動蓋50の各第1軸支持突部51における支持板部71に対して、コンテナ本体10Hの一開口縁に設けた段差面28Aが外側から対向する(図10参照)。そして、支持板部71のうち第1回動支持軸21J側に備えた外面サイドリブ75Aに、段差面28Aに形成された本体側係合リブ26が第1軸受突部21と反対側から対向する(図12参照)。これにより、回動蓋50における回動軸方向の両端寄り位置で、それぞれ第1回動支持軸21Jが回動支持孔21Cから抜ける方向への回動蓋50の移動が規制される。しかも、その移動規制のための本体側係合リブ26及び外面サイドリブ75Aが、回動支持孔21Cと第1回動支持軸21Jの近傍に位置しているので、例えば、コンテナ本体10が落下して床に打ち付けられることでコンテナ本体10Hが変形しても、第1回動支持軸21Jが回動支持孔21Cから抜けたり、ずれたりすることを確実に防ぐことができる。これにより、本実施形態のコンテナ10では、従来より回動蓋50をコンテナ本体10Hから外れ難くすることができる。   This completes the description of the configuration of the container 10 of the present embodiment. Next, the effect of this container 10 is demonstrated. In the container 10, when the rotating lid 50 is closed, a step surface 28 </ b> A provided at one opening edge of the container main body 10 </ b> H with respect to the support plate portion 71 in each first shaft support protrusion 51 of the rotating lid 50. Opposite from the outside (see FIG. 10). And the main body side engaging rib 26 formed in the level | step difference surface 28A opposes the 1st bearing protrusion 21 from the opposite side to the outer surface side rib 75A provided in the 1st rotation support shaft 21J side among the support plate parts 71. (See FIG. 12). As a result, the movement of the rotary lid 50 in the direction in which the first rotary support shaft 21J is removed from the rotary support hole 21C is restricted at positions closer to both ends of the rotary lid 50 in the rotational axis direction. In addition, the main body side engaging rib 26 and the outer surface side rib 75A for restricting the movement are located in the vicinity of the rotation support hole 21C and the first rotation support shaft 21J. Even if the container main body 10H is deformed by being struck against the floor, it is possible to reliably prevent the first rotation support shaft 21J from coming off or shifting from the rotation support hole 21C. Thereby, in the container 10 of this embodiment, the rotation lid | cover 50 can be made hard to remove | deviate from the container main body 10H conventionally.

また、回動蓋50を起立状態にすると図13に示すように、外面サイドリブ75Aと本体側係合リブ26とが対向しなくなり、回動蓋50の移動規制が解除されるので、回動蓋50をコンテナ本体10Hに組み付ける際に、回動蓋50を起立状態にして、例えば、湾曲変形させた後、弾性復元させて1対の第1回動支持軸21J,21Jを1対の回動支持孔21C,21Cに容易に挿入することができる。即ち、コンテナ本体10Hに対する回動蓋50の組み付けを容易に行うことができる。   Further, when the rotating lid 50 is raised, as shown in FIG. 13, the outer surface side rib 75A and the main body side engaging rib 26 do not face each other, and the movement restriction of the rotating lid 50 is released. When assembling 50 to the container body 10H, the rotating lid 50 is raised, for example, bent and deformed, and then elastically restored, and the pair of first rotating support shafts 21J and 21J is rotated as a pair. It can be easily inserted into the support holes 21C and 21C. That is, the rotation lid 50 can be easily assembled to the container body 10H.

さらには、本実施形態のコンテナ10では、回動蓋50を閉状態から270度離れた垂下姿勢まで回動して開くと、第1軸支持突部51及び第2軸支持突部52における支持板部71,71が、コンテナ本体10Hの一開口縁に備えた上面当接部27A,27B,27Cに当接する(図11参照)。これにより、垂下姿勢の回動蓋50の自重を上面当接部27A,27B,27Cにて受け止めることでき、第1回動支持軸21J及び回動支持孔21Cに対する負荷が軽減されて第1回動支持軸21J及び回動支持孔21Cの変形が抑えられる。このことによっても、従来より回動蓋50をコンテナ本体10Hから外れ難くすることができる。   Furthermore, in the container 10 of the present embodiment, when the rotation lid 50 is rotated and opened from the closed state to the hanging posture separated by 270 degrees, the first shaft support protrusion 51 and the second shaft support protrusion 52 support. The plate portions 71 and 71 come into contact with the upper surface contact portions 27A, 27B, and 27C provided at one opening edge of the container body 10H (see FIG. 11). As a result, the weight of the rotary lid 50 in the hanging position can be received by the upper surface contact portions 27A, 27B, and 27C, and the load on the first rotary support shaft 21J and the rotary support hole 21C is reduced. Deformation of the dynamic support shaft 21J and the rotation support hole 21C is suppressed. This also makes it difficult to remove the rotating lid 50 from the container body 10H.

[他の実施形態]
本発明は、前記実施形態に限定されるものではなく、例えば、以下に説明するような実施形態も本発明の技術的範囲に含まれ、さらに、下記以外にも要旨を逸脱しない範囲内で種々変更して実施することができる。
[Other Embodiments]
The present invention is not limited to the above-described embodiment. For example, the embodiments described below are also included in the technical scope of the present invention, and various other than the following can be made without departing from the scope of the invention. It can be changed and implemented.

(1)前記実施形態では、折り畳み可能なコンテナ本体10に回動蓋50,50を備えたコンテナ10に本発明を適用した一例を示したが、折り畳み不能なコンテナ本体に回動蓋を備えたコンテナに本発明を適用してもよい。 (1) In the said embodiment, although the example which applied this invention to the container 10 provided with the rotation lid | cover 50,50 in the foldable container main body 10 was shown, the container main body which was not foldable was equipped with the rotation lid | cover. The present invention may be applied to a container.

10 コンテナ
10H コンテナ本体
10K 上面開口
20 上部枠
21 第1軸受突部(本体側回動支持突部)
21C 回動支持孔
21J 第1回動支持軸(回動支持軸)
26 本体側係合リブ(直動規制部)
27A,27B,27C 上面当接部
28 上面段差突部
28A 段差面
50 回動蓋
51 第1軸支持突部(蓋側回動支持突部)
71 支持板部
72 溝部
73 閉塞板部
75A 外面サイドリブ(直動規制部,蓋側係合リブ)
DESCRIPTION OF SYMBOLS 10 Container 10H Container main body 10K Upper surface opening 20 Upper frame 21 1st bearing protrusion (main body side rotation support protrusion)
21C rotation support hole 21J first rotation support shaft (rotation support shaft)
26 Body side engagement rib (linear motion restricting part)
27A, 27B, 27C Upper surface contact portion 28 Upper surface step protrusion 28A Step surface 50 Rotating lid 51 First shaft support protrusion (lid-side rotation support protrusion)
71 Support plate portion 72 Groove portion 73 Closure plate portion 75A Outer side ribs (linear movement restricting portion, lid side engagement rib)

Claims (2)

コンテナ本体の上面開口の一開口縁に設けた本体側回動支持突部と、回動蓋の一外縁部に設けた蓋側回動支持突部とを、前記コンテナ本体の上面開口の一開口縁に沿って隣り合わせに並べ、前記本体側回動支持突部及び前記蓋側回動支持突部の何れか一方から他方に向かって突出した回動支持軸が、他方に形成された回動支持孔に挿入されることで、前記回動蓋が回動可能に支持されて前記上面開口を開閉可能なコンテナであって、
記回動蓋を閉状態としたときに前記回動支持軸の軸方向で互い対向して前記回動支持軸が前記回動支持孔から抜ける方向への前記回動蓋の移動を規制しかつ、その規制を前記回動蓋の起立状態で解除可能な直動規制部を備えたコンテナにおいて、
各前記蓋側回動支持突部は、閉状態の前記回動蓋の一外縁部から上方に突出しかつ前記回動蓋の回動軸と平行な支持板部と、前記支持板部の上端部を外側に湾曲又は屈曲させてなる溝部と、前記溝部の両端を閉塞する1対の閉塞板部とを備えて、前記本体側回動支持突部寄りの一方の前記閉塞板部に前記回動支持軸が突設され、
前記コンテナ本体の前記一開口縁には、前記回動蓋を閉状態にしたときに、前記支持板部の外面に対向する段差面が形成され、
前記支持板部の外面のうち前記本体側回動支持突部側の側縁部に沿ってそれぞれ突出形成された前記直動規制部としての蓋側係合リブと、
前記段差面に突出形成されて、前記回動蓋を閉じたときに、前記蓋側係合リブに前記本体側回動支持突部と反対側から対向する前記直動規制部としての本体側係合リブとを備えたことを特徴とするコンテナ。
A main body side rotation support protrusion provided at one opening edge of the upper surface opening of the container main body and a lid side rotation support protrusion provided at one outer edge of the rotation lid are formed as one opening of the upper surface opening of the container main body. A rotation support shaft formed side by side along the edge and protruding from one of the main body side rotation support protrusion and the lid side rotation support protrusion toward the other is a rotation support. A container that can be opened and closed by being inserted into a hole so that the rotating lid is rotatably supported ,
The pre Machinery Dofuta said rotary support shaft and face each other in the axial direction of the rotary support shaft when closed to restrict the movement of the pivot lid in the direction passing from the pivot support hole And in the container having a linear motion restricting portion that can be released in the standing state of the rotating lid ,
Each of the lid-side rotation support protrusions protrudes upward from one outer edge of the rotation lid in the closed state and is parallel to the rotation axis of the rotation lid, and the upper end of the support plate And a pair of closing plate portions that close both ends of the groove portion, and the pivot plate is pivoted to one of the closing plate portions near the main body side rotation support protrusion. A support shaft is projected,
The one opening edge of the container body is formed with a step surface facing the outer surface of the support plate when the rotating lid is closed.
A lid-side engagement rib as the linear motion restricting portion that is formed to protrude along the side edge portion on the main body side rotation support projection portion side of the outer surface of the support plate portion;
A body-side engagement as the linear motion restricting portion that is formed on the stepped surface and faces the lid-side engagement rib from the opposite side to the body-side rotation support protrusion when the rotation lid is closed. A container characterized by having a rib .
前記回動蓋は、閉状態から270度離れた垂下姿勢まで回動可能に構成され、The pivot lid is configured to be pivotable from a closed state to a hanging posture separated by 270 degrees,
前記コンテナ本体の前記一開口縁の上面には、前記回動蓋が前記垂下姿勢になったときに、前記支持板部が当接する上面当接部が設けられたことを特徴とする請求項1に記載のコンテナ。  The upper surface of the one opening edge of the container body is provided with an upper surface abutting portion with which the support plate portion abuts when the rotating lid is in the hanging posture. Container described in.
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