The present invention is about a container.
Generally, containers are box-shaped and are used for efficiently and economically transporting freights and container sizes are internally specified in order to ensure that device interfaces can be shared across all industrial fields including freights loaded on containers, freight packages, transportation equipment, and transportation environment (land, sea, air).
Due to the fact that containers are made of steel, containers take up same amount of space regardless of whether they are loaded with freights or empty. Therefore, even when empty containers are stored or transported, same amount of space and expenses are required.
The conventional technology to resolve such a problem is the foldable container presented in Korea Patent Publication No. 10-2016-0146027 that includes a lower panel, an upper panel that is positioned parallel to the lower panel, the first side panel and the second side panel whose upper end lower ends are each connected to the upper panel and the lower panel lengthwise to the upper panel and the lower panel to be able to be rotated and which are configured to be folded in the inner direction of the foldable container, and the front panel and the rear panel that are connected to both ends of the lower panel in such a way that each lower end can be rotated by a hinge. Also, the first side panel and the second side panel includes the upper side panel connected to the upper panel by a hinge, the lower side panel that is located at the lower side of the upper side panel and that is connected to the lower panel by a hinge, and one or more sliding joints that connect the upper side panel and the lower side panel. Also, although it is not stated directly in the existing publication, the rear panel is used as a door that is opened and closed by rotating left and right, and at the rear panel used as the door, multiple fixing bars, which can be installed to and removed from the door frame, are located vertically at the outer side of the rear panel in order to prevent opening during transportation.
Therefore, when both ends of the upper panel are simultaneously lowered with the first and second dedicated devices after lifting both ends of the upper panel with the first and second dedicated devices (refer to FIG. 33 of the existing publication) and simultaneously or separately rotating the front panel and the rear panel with the first and second dedicated devices, it is possible for each of the first and second side panels to be folded with the sliding joint as the reference point. Especially, due to such a folding structure it is possible for the entire height of the container in the folded state could be ¼ of the entire height of the container (international specification is 2,896 mm) before being folded, so it is possible to transport folded containers in four layers (refer to FIG. 36 of the existing publication), thereby saving both space and cost.
However, thickness of each of the upper panel, lower panel, upper side panel, lower side panel, and door panel conventional foldable container described above is already set, height of space allowed for movement between each panel is already set, the height (for example, 35 mm) of the space to accommodate a hinge between the lower panel's floor side and the inner side of the rear panel is set, and the height to accommodate fixing bars described above between the rear panel's outer side and the lower side panel (for example, 65 mm) is set, so there are structural limitations to further reduce the thickness of each panel and the height of each space to lower the entire height of the container in the folded state to one fifth of the entire container before being folded.
Also, since the first and second dedicated devices are required in order to lift the upper panel, so extra expenses could be incurred in order to fold these. Also, due to the fact that the sliding joint's first and second fixed parts do not have binding power, the upper panel rolls left and right in the lengthwise direction of the container, and the first and second dedicated devices are required to support both ends of the upper panel.
The purpose of the present invention is to provide a foldable container whose height is one fifth of the entire height of the container before being folded in order to meet the container height according to the international specifications even if empty containers are loaded in five layers.
Another purpose of the present invention is to provide a foldable container that can be folded while minimizing additional expenses and that can improve structural stability.
In order to achieve the above purposes, the foldable container according to an embodiment of the present invention is a foldable container in the shape of a hexagon that includes the upper panel and the lower panel that comprise the upper side and the lower side, respectively, the left panel and the right panel that comprise the left side and the right side, respectively, the front panel and the rear panel that comprise the front side and the rear side, respectively, and fixing bars that are installed on the outer side of the above rear panel, and includes the first and second supporting members that are installed in such a way as to be able to move forward and backward at the inner side of the above upper panel, and the above front panel and the above rear panel are installed on the above first and second supporting members, respectively, through the top end hinge in order for each of the outer sides to gradually move upward.
Each of the above supporting members could be installed to be able to move back and forth inside the above upper panel by the above back-and-forth movement guide part.
The above back-and-forth guide part could include a guide rail installed in the lengthwise direction of each of the left side end and the right side end of the inner side of the above upper panel, the first roller part that is installed on each of both ends of the above first support and equipped with one or more rollers to be able to slide on each of the above guide rails, and the second roller part installed on each of both ends of the above second support and equipped with one or more rollers to be able to slide on each of the above guide rails.
The foldable container according to the embodiment of the present invention described above could additionally include a locking part that intercepts the rotation of the above rear panel and the back-and-forth movement of the above second support.
The above locking part could include the upper locking part that fastens the above rear panel's upper end and the above upper panel's rear end and the lower locking part that fastens the above rear panel's lower end and the above lower panel's lower end.
The above rear panel could include a door frame in the shape of a rectangular frame equipped with a vertical bar and a horizontal bar and a door panel installed in such a way as to be able to rotate left and right on the above door frame.
The foldable container according to the embodiment of the present invention described above could additionally include a weight dispersion part that disperses the contraction weight in the horizontal direction that impacts the vertical bar of the above door frame to the above door frame's horizontal bar through the above door panel.
The above weight dispersion part could include the first and second latching parts that are installed in a vertical direction inside the above door panel, the third handing part that is installed on the above door frame's above horizontal bar's upper horizontal bar and lower horizontal bar, respectively, in order to correspond to the above first and second latching parts, and a long elastic part that latches on the above first and second latching parts, that elongates when the above foldable container is in the pre-folded state to latch on to the above third latching part, and that contracts that the above foldable container is in the folded state to be removed from the above third latching part.
The above rear panel could further include a hinge that rotates the above door panel by 270 degrees in the left direction or right direction relative to the above door frame by preventing the above door panel from latching to the above left panel or above right panel while being opened by rotating left and right.
The above door hinge could include the first hinge installed in such a way that one end could be rotated by the first hinge axis on the above door panel and the second hinge that one end can be rotated by the second hinge axis on another end of the above first hinge and another end can be rotated by the third hinge axis on the above door frame.
Sealing parts could be installed on the areas where the above upper panel, lower panel, left panel, right panel, front panel, and rear panel intersect.
Each of the above left panel and above right panel could include the upper side panel that is installed on the above upper panel so that the upper end can rotate, a side panel on the lower part's side that is installed so that the lower end can rotate on the above lower panel, and a side rotation guide that is connected so that the above upper part's side panel's lower end and the above lower part's side panel's upper end can rotate mutually and that guides rotation so that the above upper part's side panel and the above lower part's side panel can be folded by sloping to the above foldable container's inside.
The above side rotation guide is installed on the above upper part's side panel's lower end and could include one or more upper arc guiders with the upper circular arc part in the shape of a circular arc, lower arc guiders that are installed on the upper end of the above lower part's side panel and equipped with lower circular arc parts in the shape of a circular arc that rotate by coming into contact with the above upper circular arc part, the first side rotation axis that is installed in such a way to be able to rotate at the center of the above upper side's circular arc part of each of the above upper side arc guiders, the second side rotation axis that is installed at the center of the above lower side circular arc part of each of the above lower side arc guiders to be able to rotate, and one or more link materials that connect the above first side rotational axis and the above second side rotational axis.
The above one or more upper side arc guiders could include the first and second sides' arc guiders, the above one or more lower side arc guiders could include the first and second lower side arc guiders, and the above side rotational guide part could additionally include an upper side arc spacer that covers the space between the above first and second upper side arc guiders and that has an upper side circular arc cover in the shape of a circular arc and a lower side arc spacer that covers the space between the above first and second lower side arc guiders and that rotates by coming into contact with the above upper side circular arc cover.
The above on or more upper side arc guiders could include multiple side arc guiders, and the above multiple upper side arc guiders could be relatively densely positioned in the areas near the above front panel and the above rear panel of the above upper part's side panel's lower part, and could be positioned relatively separately at the center of the above upper part's side panel.
The above side rotation guide part could additionally include a middle sealing part between the above upper side arc guider and the above lower side arc guider.
Part of the above middle sealing part could include an upper fixed frame whose one part is installed between the above upper part's side panel's lower end and the above upper side's arc guider and whose another part covers the inner side of the above upper side's arc guider, a lower fixed frame whose one part is installed between the above lower part's side panel's upper end and the above lower side's arc guider and whose another side covers the above lower side's arc guider's inner side, and a middle sealing material that is installed between the above upper fixed frame and the above lower fixed frame and that seals the space between the above upper fixed frame and the above lower fixed frame.
Each of the above upper fixed frame and above lower fixed frame could include a vertical side that touches one side of the above link material when viewed while the above upper side panel and the above lower side panel are unfolded and a horizontal side that touches another side that is opposite to the above side of the above link material when viewed while the above upper side panel and the above lower side panel are in a folded state. When the above folding starts, the above lower side panel rotates with the above second side rotational axis as the reference point by own weight, and one side of the above link material could be bound by the above vertical side of the above upper fixed frame, and while the above folding continues the above link material is fastened by the above lower fixed frame's above horizontal side, and the above upper side panel could rotate with the above second side rotational axis as the reference point.
The foldable container according to the embodiment of the present invention described above could additionally include an opening prevention part that prevents the above side rotation guide from being opened when weight is applied to the above foldable container's outer direction and inner direction during the time before the above upper side panel and the above lower side panel are folded.
As described above, the foldable container according to the embodiment of the present invention could have the following effects.
According to the embodiment of the present invention, a technical configuration wherein the left side panel and the right side panel are folded, wherein a fixing bar is installed on the rear panel's outer side, wherein on the above panel's inner side the first and second supporting members installed to be able to move back and forth are included, and wherein the front panel and the rear panel are installed to be able to rotate on the first and second supporting members, respectively, through the upper end hinge so that each outer side of the front panel and rear panel gradually moves upward is provided, so that when the foldable container under the present invention is folded the fixing bar and the upper end hinge are positioned between the rear side's panel's outer side and the upper panel's inner side, which is the same space, so that if the foldable container under the present invention is folded it is possible to substantially reduce the entire height of the folded container compared to the conventional technology, namely even if five folded containers are layered it is possible to meet the container height according to the international specifications. Eventually, it is possible to reduce the entire height of a folded container to one fifth of the container's height in the unfolded state, so it will be possible to substantially increase space and cost in the process of storing or transporting containers compared with the conventional technology.
Also, according to the embodiment of the present invention, the technical configuration wherein the front panel and the rear panel are installed to be able to rotate on the first and second supporting members, respectively, through the upper end's hinge, and the first and second supporting members are installed to be able to move back and forth on the upper panel's inner side through the back-and-forth movement guide part is provided, so the front side panel and the rear side panel are rotated with the upper end hinge as the reference point using the method whereby the center of the rope is lifted by fixing each end of each lower part of the front panel and the rear panel at the same time the first and second supporting members can move to the center of the inner side of the upper panel through the back-and-forth movement guide, so it is possible to substantially decrease additional cost incurred to fold the foldable container under the present invention compared to the conventional technology.
Also, according to the embodiment of the present invention, each of the left panel and right panel includes the upper side panel, lower side panel, and a side rotation guide, and the side rotation guide provides a technical configuration that includes the upper side arc guide with the upper side circular arc part, the lower side arc guider with the lower circular arc part that contacts and rotates with the upper side circular arc part, the first side rotational axis, the second side rotational axis, and a link material, so that the upper circular arc part and the lower circular arc part can rotate by contacting with each other, and in the event that this rotation is completed the space between the upper side panel's outer side and the lower side panel's outer side can be minimized, and eventually it is possible to further reduce the entire height of the folded container when the foldable container under the present invention is folded. Furthermore, it is possible for the upper circular arc part and the lower circular arc part to rotate while closely contacting with each other, so the problem involving the rolling of the upper panel from left to right in the lengthwise direction of the foldable container under the present invention while the left panel and the right panel are being folded could be prevented. Eventually, due to the fact that there is no rolling of the upper panel, the additional cost incurred to prevent this could be saved.
Below, the present invention will be described in detail in order for any person with ordinary level of knowledge in the technological field in which the present invention belongs will be able to embody the embodiment of the present invention by referring to the attached drawings. However, the present invention can be embodied in various different forms, and is not limited to the embodiment described here.
On the other hand, the term “inner side” used below refers to the side that is located inside the foldable container under the present invention, and the term “outer side” refers to the side that is located at the exterior of the foldable container under the present invention.
As illustrated in
When we refer to
When we refer to
When we refer to
Furthermore, as illustrated in
As illustrated in
Therefore, when the foldable container (FC) under the present invention is folded as illustrated in
Also, by fixing both ends of each lower end of the front panel (150) and he rear panel (160) using a rope (not illustrated) to lift the center part, the front panel (150) and the rear panel (160) are rotated with each upper end hinge (220) as the reference point at the same time being moved to the inner side of the upper panel (110) by the first part (not illustrated) and the second part (210), so that it is possible to substantially reduce the additional cost to reduce the foldable container (FC) under the present invention compared to the conventional technology.
As illustrated in
For example, the above back-and-forth movement guide (230) could include, as illustrated in
The guiding rail (231) could be installed lengthwise on each of the left end and right end of the inside of the upper panel (110), and the second roller part (232) is installed to be able to rotate on each of both ends of the second support (210), and one or more rollers could be installed to be able to slide on each of the guiding rails (231). Furthermore, although not illustrated, the first support and the first roller have the same configuration as the second support and the second roller except for the location, so detailed description regarding these will be skipped.
Along with this, the foldable container (FC) according to an embodiment of the present invention could additionally include a locking part (300) that intercepts the rotation of the rear panel (160) and the back-and-forth movement of the second support (210), as illustrated in
For example, the locking part (500) could the upper locking part (310) that fastens the upper end of the rear panel (160) and the rear end of the upper panel (110), as illustrated in
As illustrated in
Also, as illustrated in
Furthermore, although not illustrated, such a locking part (300) has the same configuration except for the location, and could be installed in order to intercept the rotation of the front panel and the back-and-forth movement of the first support.
Along with the above, as illustrated in
For example, as illustrated in
On the other hand, as illustrated in
For example, the door hinge (500) could include the first hinge (510) and the second hinge (520), as illustrated in
On the other hand, although no illustrated, in the areas of the upper panel, lower panel, left panel, right panel, front panel, and rear panel that intersect, peripheral sealing materials could be installed. Therefore, as illustrated in
On the other hand, each of the left panel (130) and the right panel (140) described above could include an upper side panel (P1), a lower side panel (P2), and a side rotation guide (600) as the folding configuration, as illustrated in
The upper side panel (P1) is the upper part in the middle based on the vertical direction and its upper end could be installed to be able to rotate on the upper panel (110), and the lower side panel (P2) is the lower part in the middle in the vertical direction, the lower end could be installed to be able to rotate on the lower panel (120), and the side rotation guide (600) connects the upper side panel (p1)'s lower end and the lower side panel (P2)'s upper end so that they can rotate with each other, and rotation could be guided so that the upper side panel (P1) and the lower side panel (P2) can slope toward inside of the foldable container (FC) under the present invention.
For example, as illustrated in
One or more upper arc guiders (610) are installed at the lower end of the upper side panel (P1), and could have an upper circular arc part in the shape of a circular arc, one or more lower arc guiders (620) are installed at the upper end of the lower side panel (P2), and can have a lower circular arc part in the shape of a circular arc that rotates by coming into contact with the upper circular arc part, the first side rotation axis (S1) could be installed at the center of the upper circular arc part of each upper arc guider (610) to be able to rotate, the rotation axis (S2) on the second side could be installed at the center of the lower circular arc part of each lower arc guider (620) to be able to rotate, and one or more link materials (630) could connect the first side rotation axis (S1) and the second side rotation axis (S2).
Therefore, since the upper circular arc part of the upper arc guider (610) and the lower circular arc part of the lower arc guider (620) can rotate by coming into contact with each other, so when this rotation is completed, as illustrated in
Furthermore, as illustrated in
Also, although not illustrated, if one or more upper arc guiders (610) comprise of multiple upper arc guiders (610), they can be positioned relatively densely in the area near the rear panel (160) of the upper side panel (P1)'s lower end, and they could be positioned relatively less densely at the center of the upper side panel (P1) (refer to
Along with this, the side rotation guide (600) described above, could additionally include a middling sealing part (MS) between the upper arc guider (610) and the lower arc guider (620) in order to seal parts while the foldable container (FC) under the present invention is in the unfolded sated, as illustrated in
For example, as illustrated in
Part of the upper fixed frame (660) is installed between the lower end of the upper side panel (P1) and the upper arc guider (610), and another part can cover the inner side of the upper arc guider (610), and part of the lower fixed frame (670) is installed between the lower side panel (P2)'s upper end and the lower arc guider (620), and the other part can cover the inner side of the lower arc guider (620), and the middle sealing material (680) is installed on the lower fixed frame (670) and is exposed in the upper direction to come into contact closely with the upper fixed frame (660).
On the other hand, as illustrated in
Therefore, as illustrated in
Along with the above, as illustrated in
Although an advisable embodiment of the present invention was described in detail above, the scope of rights of the present invention is not limited to this, but various modifications and improvements by those in the industry using the basic concepts of the present invention defined in the following scope of claims section are within the scope of the rights of the present invention.
Since the present invention is about containers, the present invention can be applied to freight transportation, so there is a possibility of industrial use.
Number | Date | Country | Kind |
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10-2017-0084645 | Jul 2017 | KR | national |
Filing Document | Filing Date | Country | Kind |
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PCT/KR2017/007765 | 7/19/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2019/009457 | 1/10/2019 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4577772 | Bigliardi | Mar 1986 | A |
4646928 | Ono | Mar 1987 | A |
4726486 | Masuda | Feb 1988 | A |
4848618 | Yuan | Jul 1989 | A |
Number | Date | Country | |
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20200115152 A1 | Apr 2020 | US |