Ramp device and method for installing the ramp device

The ramp device simplifies the installation process by using a displacement member to engage with elongated holes in the corner casting section, facilitating quick and secure attachment to containers.

JP7843525B2Active Publication Date: 2026-04-10株式会社ロジスト
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing slope devices for containers require complex structures and time-consuming operations for fixation, complicating their installation process.

Method used

A ramp device with a hollow corner casting section and a displacement member that utilizes elongated holes in the corner casting section for simple fixation, allowing easy installation through a combination of forward and backward displacement and rotational operations.

Benefits of technology

The ramp device is easily fixed to a container using a simple structure, enabling quick and secure attachment by engaging the latching section into elongated holes with minimal operational steps.

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Abstract

To provide a slope device of a simple structure which can be easily fixed to a container, and its installation method.SOLUTION: A slope apparatus for a container includes a slope body 201 having an inclined portion side 20a and a flat portion side 20a intersecting the inclined portion side 20a in front of the inclined portion side 20b, a leg portion 21 provided at a tip end portion 201 of the flat portion side 20b and placed on an upper surface of a corner cast portion 10, and a displacement member supported by the flat portion side 20b so as to be displaceable in a front-rear direction and having a locking portion on a tip end side and an operation portion on a rear end side. When the displacement member is displaced forward by a pushing operation of the operation portion, the latching portion enters the cavity of the long hole, and in the entered state, the latching portion can be changed to a posture of being hooked to the long hole by a rotation operation of the operation portion.SELECTED DRAWING: Figure 5
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Description

Technical Field

[0001] The present invention relates to a slope device and an installation method thereof, and particularly to a slope device for a container having a corner casting portion and an installation method thereof.

Background Art

[0002] It is known to use a slope so that a forklift can enter and retreat into a container for cargo handling work on a container loaded on the chassis of a trailer.

[0003] Utility Model Registration No. 3213796 (Patent Document 1) discloses a slope device having wheels and a jack on a flat base of a cargo handling stage. In this device, after a flat base movable by wheels is arranged near the rear end opening of the container, the jack is operated on the leg extension side, and the lower end of the leg is arranged below the lower end of the wheel, so that the cargo handling stage is fixed to the cargo handling site.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] In Patent Document 1, a jack is required to fix the position of the slope device with respect to the container, the structure is complicated, and the operation is time-consuming.

[0006] The present invention has been made to solve the above problems, and an object thereof is to provide a slope device having a simple structure that can be easily fixed to a container and an installation method thereof.

Means for Solving the Problems

[0007] The ramp device according to the present invention is a ramp device for containers having a hollow corner casting section at its lower corner. The corner casting section has an upper surface lower than the floor surface of the container, a facing wall on the side facing the ramp device, and an elongated hole formed in the facing wall, the length in one direction being greater than the length in the other direction perpendicular thereto, and communicating with the cavity. The ramp device comprises a ramp body having an inclined section and a flat section that intersects the inclined section forward of the inclined section, a leg provided at the tip of the flat section and placed on the upper surface of the corner casting section, and a displacement member supported by the flat section so as to be displaceable in the front and back directions, having a latching section at the front end and an operating section at the rear end. When the displacement member is displaced forward by pushing in the operating section, the latching section enters the cavity of the elongated hole, and in this entered state, the position in which the latching section is hooked into the elongated hole can be changed by rotating the operating section.

[0008] Preferably, the length of the latching portion is greater than the length of the elongated hole in the other direction (relatively shorter length) and less than the length of the elongated hole in one direction (relatively longer length).

[0009] Preferably, the displacement member includes an intermediate shaft connecting a latching portion and an operating portion, and the latching portion and the operating portion extend parallel to each other along a direction intersecting the direction in which the intermediate shaft extends.

[0010] Preferably, the length of the operating part is greater than the length of the latching part.

[0011] Preferably, a notch capable of holding the operating part is formed on the side of the inclined part in a retracted position where the latching part is not entered into the elongated hole.

[0012] Preferably, the flat portion has a guide portion that guides the forward and backward displacement of the intermediate shaft portion.

[0013] Preferably, the guide portion includes a pair of guide plate portions spaced apart in the front-rear direction. The guide plate portions have through holes through which the intermediate shaft portion passes, and the intermediate shaft portion between the pair of guide plate portions has a fixed flange, a movable flange located between the fixed flange and the rear guide plate portion and movable back-and-forth relative to the intermediate shaft portion, and an elastic member provided between the fixed flange and the movable flange. When the displacement member is in the rearward displaced position, the operating portion is hooked into the notch, and this state is maintained by the biasing force of the elastic member.

[0014] Preferably, the height of the legs is set so that at least a portion of the leading edge of the flat section contacts the stepped surface (vertical wall surface) between the floor of the container and the upper surface of the corner casting section.

[0015] Preferably, a guide panel that is rotatable relative to the inclined portion is attached to the rear end of the inclined portion.

[0016] Preferably, a pair of claw-receiving handles that are rotatable relative to the inclined portion are housed in the inclined portion.

[0017] The method for installing a ramp device according to the present invention comprises the steps of: installing a ramp device having hooking parts on both sides in the width direction on a container having a hollow corner casting part at its lower corner; inserting the hooking part into a hole in the corner casting part formed on the side facing the ramp device and communicating with the hollow; and, after the insertion step, changing the orientation of the hooking part so that the hooking part catches on the hole. [Effects of the Invention]

[0018] In this invention, since the ramp device is fixed to the container using the elongated holes in the corner casting section, the displacement member can have a simple structure, and the position in which the latching part engages with the elongated hole can be changed by a simple rotation operation of the operating part. [Brief explanation of the drawing]

[0019] [Figure 1]It is a schematic diagram showing a state where the slope device according to an embodiment of the present invention is placed on a container. [Figure 2] (A) is a perspective view schematically showing a corner casting part, and (B) is a front view schematically showing a long hole. [Figure 3] It is a rear perspective view schematically showing a flat part of the slope device according to an embodiment of the present invention. [Figure 4] It is a rear perspective view schematically showing a state where the operation part according to the same embodiment is maintained in a notch. [Figure 5] It is a perspective view schematically showing a state where the slope device according to the same embodiment is placed on a corner casting part. [Figure 6] It is a perspective view schematically showing a state where the latching part of the displacement member according to the same embodiment has entered the cavity of the corner casting part. [Figure 7] It is a perspective view schematically showing a state where the latching part according to the same embodiment has been changed to a posture where it is hooked on the long hole of the corner casting part. [Figure 8] (A) is a front view schematically showing a latching part entering a long hole, and (B) is a front view schematically showing a state where it has been changed to a posture where it is hooked on the long hole. [Figure 9] It is a side view schematically showing a state where the leg part according to an embodiment of the present invention is placed on the upper surface of the corner casting part. [Figure 10] It is a perspective view schematically showing a guide panel according to the same embodiment. [Figure 11] It is a perspective view schematically showing a state where the claw receiving handle part according to the same embodiment has risen.

Embodiments for Carrying Out the Invention

[0020] Embodiments of the present invention will be described in detail while referring to the drawings. In the drawings, the same or corresponding parts are denoted by the same reference numerals and their descriptions will not be repeated.

[0021] <Embodiment> (Overview of the structure) As shown in Figure 1, container 1 is loaded onto the chassis 91 of trailer 9. Trailer 9 is stopped with the rear end of container 1 close to the warehouse platform 8. After stopping, the rear door of container 1 is opened, but in Figure 1, the rear door and side wall of container 1 are omitted from the illustration, and the floor surface 11 of container 1 is shown. The same applies to the other figures. After the door is opened, a ramp device 2 is placed between the platform 8 and container 1 (corner casting section 10).

[0022] In Figure 1, the front (driver's side of trailer 9) is indicated by arrow X1, the rear by arrow X2, and the vertical direction by arrow Y. In Figure 2, the width direction of the ramp device 2 is indicated by arrow Z. The same applies to the other figures.

[0023] (About containers) The container used in this embodiment is a container (sea container) having corner casting sections at the four corners of its front and rear ends. A corner casting section is a structural element that is hollow inside and has elongated holes in its walls that communicate with the hollow, and is used when lifting the container, connecting containers together, or fixing the container to the trailer chassis.

[0024] Figure 2(A) shows the corner casting section 10 at the lower left corner when viewed from the rear. The corner casting section 10 is integrally formed at the corner of the lower part 12 of the container 1 and has an upper surface 10a, a facing wall 10b on the side facing the ramp device 2 (Figure 1), an outer surface 10d, an inner surface 10e, and a lower surface 10f. The inside of the corner casting section 10 is hollow 100.

[0025] The upper surface 10a is lower than the floor surface 11 of the container 1, and the height difference H1 between the upper surface 10a and the floor surface 11 forms a stepped surface (vertical wall surface) 3. An elongated hole 10c is formed in the opposite wall 10b, and as shown in Figure 2(B), the length L1 in one direction (vertical direction) of the elongated hole 10c is greater than the length L2 in the other direction perpendicular to it (horizontal direction), and it is in communication with the cavity 100.

[0026] In addition to the elongated holes 10c in the opposing wall 10b, the elongated holes 10c in the corner casting section 10 are also formed on the outer surface 10d and the bottom surface 10f, but these are not shown in the illustration.

[0027] (Regarding ramp equipment) As shown in Figure 1, the ramp device 2 comprises a ramp body 20, legs 21, and displacement members 22. The legs 21 and displacement members 22 are provided in pairs on both sides in the width direction (depth direction of the paper). Since the ramp device 2 has the same shape and structure on both sides in the width direction, the shape and structure on the left side (facing forward) will be described below as representative.

[0028] The ramp body 20 is made of, for example, checkered steel plate with a thickness of about 16 mm, and has an inclined section 20a and a flat section 20b. The flat section 20b is located in front of the inclined section 20a and intersects with the inclined section 20a. That is, the flat section 20b extends approximately horizontally with the ground 7, and the inclined section 20a extends diagonally from the rear end of the flat section 20b toward the platform 8.

[0029] The leg portion 21 is provided at the tip portion 201 of the flat portion 20b and rests on the upper surface 10a (Figure 2) of the corner casting portion 10. The leg portion 21 is formed, for example, as a protrusion with a rectangular cross-section and is in surface contact with the upper surface 10a, but is not limited to this shape.

[0030] The displacement member 22 is supported on the flat portion 20b so as to be displaceable in the forward and backward directions. As shown in Figure 3, the displacement member 22 has a latching portion 221 at the front end and an operating portion 222 at the rear end. The latching portion 221 and the operating portion 222 are connected to each other by an intermediate shaft portion 223.

[0031] In this embodiment, the displacement member 22 is made of a single round steel bar and is bent at the front and rear ends of the intermediate shaft portion 223 to form the latching portion 221 and the operating portion 222. The latching portion 221 and the operating portion 222 extend parallel to each other along a direction intersecting the direction in which the intermediate shaft portion 223 extends (front and rear direction X). Furthermore, the length of the operating portion 222 is greater than the length of the latching portion 221.

[0032] The flat section 20b has a guide section 24 that guides the forward and backward displacement of the intermediate shaft section 223. The guide section 24 includes a pair of guide plate sections (a front guide plate section 241 and a rear guide plate section 242) that are spaced apart in the forward and backward direction. Both guide plate sections 241 and 242 extend downward from the lower surface of the flat section 20b, are connected to each other at their lower ends via a lower plate section 243, and are connected to each other on the inside via an inner plate section 244. In addition, a fall prevention plate section 246, which will be described later, is integrally formed on the rear guide plate section 242.

[0033] The front guide plate portion 241 and the rear guide plate portion 242 each have through holes 241a and 242a, respectively. Both through holes 241a and 242a penetrate in the front-rear direction, and the intermediate shaft portion 223 is inserted through them. Therefore, the displacement member 22 can move back and forth and rotate while being supported by the guide portion 24.

[0034] The intermediate shaft portion 223 between the front and rear guide plate portions 241 and 242 has a fixed flange 223a, a movable flange 223b, and an elastic member 223c provided between the fixed flange 223a and the movable flange 223b. The elastic member 223c is, for example, a compression spring or rubber.

[0035] The movable flange 223b is located between the fixed flange 223a and the rear guide plate portion 242, and is provided to be movable back and forth relative to the intermediate shaft portion 223. The diameter of the movable flange 223b is larger than the diameter of the through hole 242a in the rear guide plate portion 242.

[0036] A notch 23 is formed in the side portion 204 of the inclined portion 20a of the slope body 20, which is capable of holding the operating portion 222. Specifically, as shown in Figure 4, when the operating portion 222 is pulled backward along the side portion 204, the operating portion 222 catches on the notch 23. When the operating portion 222 is caught on the notch 23 (the position in which the displacement member 22 is displaced backward), the elastic member 223c is compressed in the front-rear direction.

[0037] In other words, when the elastic member 223c is compressed between the fixed flange 223a and the movable flange 223b, and a biasing force is acting forward, the operating part 222 is hooked into the notch 23, thereby maintaining the hooked state of the operating part 222. Because the operating part 222 is maintained in the notch 23, the ramp device 2 can be easily moved and installed.

[0038] (Regarding the securing of the ramp device) The following describes an example of how to fix the ramp device 2 to the corner casting section 10 at the lower left corner when viewed from the rear. In Figures 6 and 7, the lower part 12 of the container, including the corner casting section 10, is shown with a dashed line (dummy line) to illustrate the behavior of the latching section 221.

[0039] First, as shown in Figure 5, with the operating part 222 hooked into the notch 23, the legs 21 of the flat part 20b are placed on the upper surface 10a of the corner casting part 10. Specifically, as shown in Figure 9, the front end surface 203 of the flat part 20b is placed so that it abuts (surface contact) with the stepped surface 3. The height H2 of the legs 21 is set so that the upper surface of the flat part 20b and the floor surface 11 of the container 1 are approximately flush.

[0040] Because the height H3 of the chassis 91 varies slightly depending on the manufacturer, in some chassis, the front surface 203 and the stepped surface 3 may be non-parallel, resulting in line contact rather than surface contact. In other words, the height H2 of the leg portion 21 is set so that at least a portion of the front surface 203 contacts the stepped surface 3.

[0041] Figure 5 shows the state in which the locking portion 221 is in a retracted position and has not entered the elongated hole 10c. From this state, the operating portion 222 is released from the notch 23 and pushed forward to insert the locking portion 221 into the elongated hole 10c. That is, when the displacement member 22 is displaced forward by the pushing operation of the operating portion 222, the locking portion 221 enters the cavity 100 from the elongated hole 10c.

[0042] Since the through holes 241a and 242a of the front and rear guide plate portions 241 and 242 are positioned to overlap with the elongated hole 10c in the width and height directions, the latching portion 221 is smoothly guided into the elongated hole 10c.

[0043] Figure 6 shows the state in which the latching portion 221 has entered the cavity 100 through the elongated hole 10c. In this state, the operating portion 222 is rotated counterclockwise. As shown in Figure 7, the rotation of the operating portion 222 causes the latching portion 221 inside the cavity 100 to rotate along with it, changing its position to one in which it engages with the elongated hole 10c.

[0044] Specifically, as shown in Figure 8(A), the latching portion 221, which is shorter than the vertical length of the elongated hole 10c (indicated by L1 in Figure 2(B)), enters the cavity 100 through the elongated hole 10c. In this entered state, as shown in Figure 8(B), the latching portion 221 is rotated to tilt it horizontally. Since the length of the latching portion 221 is greater than the horizontal length of the elongated hole 10c (indicated by L2 in Figure 2(B)), the latching portion 221 is positioned to hook onto the elongated hole 10c with a simple operation of just rotating it.

[0045] In this embodiment, the operating part 222 is longer than the latching part 221, making it easier to operate. Also, since the operating part 222 and the latching part 221 extend parallel to each other, the orientation of the operating part 222 and the orientation of the latching part 221 are the same, and it is possible to instantly determine from the orientation of the operating part 222 whether or not the latching part 221 inside the cavity 100 is in a position to catch on the elongated hole 10c.

[0046] As shown in Figure 7, the distance α2 between the rear end 246a of the fall prevention plate 246 and the operating part 222 is smaller than the distance α1 between the front end surface 21a of the leg portion 21 and the rear end of the upper surface 10a of the corner casting portion 10. Therefore, even if the slope body 20 of the slope device 2 shifts backward while the latching portion 221 is latched into the elongated hole 10c, the fall prevention plate 246 will come into contact with the operating part 222 before the leg portion 21 falls from the upper surface 10a, thus preventing the slope device 2 from falling from the container 1.

[0047] The ramp device according to the present invention utilizes the elongated hole 10c of the corner casting portion 10 of the container 1, allowing the ramp device 2 to be fixed to and released from the container 1 with a simple operation of moving a displacement member 22 with a simple structure back and forth and rotating.

[0048] (Regarding other components of the ramp device) A guide panel 4, as shown in Figure 10, may be attached to the area enclosed by the symbol A in Figure 1, that is, at the rear end 202 of the inclined portion 20a (it is not shown in Figure 1). The inclined portion 20a and the guide panel 4 are connected to each other, for example, by a hinge 40, and the guide panel 4 is rotatable in a direction that overlaps the inclined portion 20a.

[0049] The height H3 of the trailer 9 chassis 91 varies slightly depending on the manufacturer. If the chassis 91 is higher, the inclination of the sloping section 20a relative to the floor surface may increase slightly. Even in this case, the guide panel 4 can mitigate the inclination, allowing for smoother entry of work vehicles such as forklifts.

[0050] Furthermore, a pair of fork-receiving handles 5, as shown in Figure 11, may be provided on the inclined section 20a at the location enclosed by the reference numeral B in Figure 1. The fork-receiving handles 5 are rotatable relative to the inclined section 20a and are stored in the storage holes 50 during cargo handling operations. When moving the ramp device 2, the fork-receiving handles 5 are raised, and the forks of the forklift are hooked onto the fork-receiving handles 5 to lift the ramp device 2. If a guide panel 4 is provided at the rear end 202 of the inclined section 20a, the guide panel 4 is folded to lift the ramp device 2. Folding the guide panel 4 allows the ramp device 2 to be lifted closer to the base end of the forks, thus improving stability.

[0051] Although embodiments of this invention have been described above with reference to the drawings, this invention is not limited to the illustrated embodiments. Various modifications and variations can be made to the illustrated embodiments within the same scope as this invention, or within the equivalent scope.

[0052] For example, in the embodiment, the case where the vertical length of the elongated hole is greater than the horizontal length is shown, but this length relationship may be reversed.

[0053] Alternatively, the fall prevention plate portion 246 may be omitted, and the displacement member 22 may be formed with dimensions such that the operating portion 222 and the rear guide plate portion 242 are close together when the latching portion 221 is in the latching position.

[0054] Furthermore, the latching portion 221 and the operating portion 222 may be formed to be slightly different from each other in the circumferential direction of the intermediate shaft portion 223.

[0055] Furthermore, although the illustrated container is generally called a shipping container, the present invention is not limited to shipping containers, and only requires that there be holes and cavities at both the left and right ends of the lower side of the container into which the fastening parts can be inserted and rotated. [Explanation of symbols]

[0056] 1 Container, 10 Corner casting section, 10a Top surface, 10b Opposite wall, 10c Slotted hole, 11 Floor surface, 2 Slope device, 20 Slope body, 201 Front end, 202 Rear end, 204 Side section, 20a Inclined section, 20b Flat section, 21 Leg section, 22 Displacement member, 221 Hooking section, 222 Operating section, 223 Intermediate shaft section, 223a Fixed flange, 223b Moving flange, 223c Elastic member, 24 Guide section, 241 Front guide plate section, 242 Rear guide plate section, 241a, 242a Through hole, 246 Fall prevention plate section, 3 Step surface, 4 Guide panel, 40 Hinge, 5 Claw receiving handle section, 50 Storage hole, 7 Ground, 8 Platform, 9 Trailer, 91 Chassis, 92 Tires, 100 cavities

Claims

1. A ramp device for use with a container having a hollow corner casting section at its lower corner, wherein the corner casting section has an upper surface lower than the floor surface of the container, a facing wall on the side facing the ramp device, and an elongated hole formed in the facing wall, the length in one direction being greater than the length in the other direction perpendicular thereto, and communicating with the cavity. The aforementioned ramp device, A ramp body having an inclined section and a flat section that intersects the inclined section in front of the inclined section, A leg portion provided at the tip of the flat portion and placed on the upper surface of the corner casting portion, The flat portion is supported so as to be displaceable in the forward and backward directions, and comprises a displacement member having a latching portion at the front end and an operating portion at the rear end, When the displacement member is displaced forward by the pushing operation of the operating part, the locking part enters the cavity of the elongated hole. A ramp device in which, in the entry state, the position in which the locking part engages with the elongated hole can be changed by rotating the operating part.

2. The ramp device according to claim 1, wherein the length of the latching portion is greater than the length of the elongated hole in the other direction and less than the length of the elongated hole in one direction.

3. The displacement member includes an intermediate shaft portion connecting the latching portion and the operating portion, The ramp device according to claim 2, wherein the latching portion and the operating portion extend parallel to each other along a direction intersecting the direction in which the intermediate shaft portion extends.

4. The ramp device according to claim 3, wherein the length of the operating portion is greater than the length of the latching portion.

5. The ramp device according to claim 4, wherein a notch capable of holding the operating part is formed on the side of the inclined part when the latching part is in a retracted position where it is not in the elongated hole.

6. The slope device according to claim 5, wherein the flat portion has a guide portion that guides the forward and backward displacement of the intermediate shaft portion.

7. The aforementioned guide portion includes a pair of guide plate portions spaced apart in the front-rear direction, The guide plate portion has a through hole through which the intermediate shaft portion passes. The intermediate shaft portion between the pair of guide plate portions comprises a fixed flange, a movable flange located between the fixed flange and the rear guide plate portion and movable back and forth relative to the intermediate shaft portion, and an elastic member provided between the fixed flange and the movable flange. The ramp device according to claim 6, wherein when the displacement member is in a rearward-displaced position, the operating part is hooked onto the notch, and this state is maintained by the biasing force of the elastic member.

8. The ramp device according to any one of claims 1 to 7, wherein the height of the legs is set such that at least a portion of the tip surface of the flat portion contacts the stepped surface between the floor surface of the container and the upper surface of the corner casting portion.

9. A ramp device according to any one of claims 1 to 7, wherein a guide panel rotatable relative to the inclined portion is attached to the rear end of the inclined portion.

10. The ramp device according to claim 9, wherein a pair of claw receiving handles that are rotatable relative to the inclined portion are housed in the inclined portion.

11. A process of installing a ramp device having latching parts on both sides in the width direction to a container having a hollow corner casting section at the lower corner, A step of inserting the locking portion into the hole of the corner casting portion, which is formed on the side facing the ramp device and communicates with the cavity, A method for installing a ramp device, comprising the steps of: after the step of inserting the ramp, rotating the locking portion around the direction of entry to change its orientation so that the locking portion catches in the hole.

Citation Information

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