A platform-based hoisting device and its ship
By designing a platform-based lifting device, using the gaps supporting the platform and the lifting part of the workpiece, the problem of lack of high-strength lifting devices in the prior art is solved, and the stable suspension and lifting of heavy objects is achieved, which is suitable for ships and other scenarios.
Patent Information
- Application Number
- CN202211234516.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-10
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2042-10-10
AI Technical Summary
There is a lack of a lifting device that can suspend heavy objects and have good strength in the prior art, and is particularly suitable for marine equipment.
A platform-based lifting device is designed, through the gaps in the support platform, the workpiece can be suspended with heavy objects, the support platform is provided with a gap and a positioning column, and the workpiece is provided with a mounting hole and a lifting part, and the lifting part extends from the gap and is used for lifting.
It realizes effective suspension and lifting of heavy objects, has good strength and stability, and is suitable for ships and other scenarios.
Smart Images

Figure CN115783973B_ABST
Abstract
Description
Technical Field:
[0001] The present invention relates to the field of hanging devices, and more particularly to a platform-based hoisting device and a ship thereof. Background Art:
[0002] In many fields, it is necessary to hang heavy objects in a suspended space, such as at the hose suspension station on the side of the main deck of the CJ50 self-elevating platform. Therefore, based on the above requirements, a device that can realize the hoisting of heavy objects is needed. Since such a device needs a spatial position and a suspension with good strength when hanging, and can be applied to ship equipment, there is no such device in the prior art.
[0003] Therefore, there is an urgent need for a platform-based hoisting device and a ship thereof, which helps to solve the technical problem in the prior art that there is a lack of a hoisting device that can suspend heavy objects and has good strength. Summary of the Invention:
[0004] In one embodiment, the present invention further provides a platform-based hoisting device. Through the notch of the support platform, the tooling part can suspend heavy objects, and it has good strength itself, which helps to solve the technical problem in the prior art that there is a lack of a hoisting device that can suspend heavy objects and has good strength.
[0005] The platform-based hoisting device includes a support platform and a tooling part;
[0006] A notch is provided on the support platform, and the notch penetrates through the first end face and the second end face of the support platform. Multiple positioning columns are provided on the first end face;
[0007] Multiple mounting holes are provided on the tooling part. The tooling part is placed on the first end face, and the mounting holes are sleeved on the positioning columns. The tooling part has a hoisting part, and the hoisting part extends out from the notch and is used for hoisting.
[0008] In one embodiment, a hoisting hole is provided in the hoisting part, and the direction of the hoisting hole has a spatial angle with the direction of the positioning column.
[0009] In one embodiment, the tooling part includes a bottom plate, a surrounding plate, and a baffle plate.
[0010] The surrounding plate is enclosed along the edge of the bottom plate on the third end face of the bottom plate, and an opening is left on one side of the bottom plate.
[0011] The baffle plate is connected to the bottom plate, located at the edge of the opening, and seals the opening.
[0012] In one embodiment, the tooling part includes a first partition board and a second partition board;
[0013] The first partition is connected to the fourth end face of the bottom plate and is arranged along a predetermined first direction within the enclosed area of the surrounding plate;
[0014] The second partition is connected to the fourth end face of the bottom plate and is located between the baffle and the first partition along a predetermined second direction.
[0015] In one embodiment, the lifting part includes a lifting plate.
[0016] The edge of the lifting plate is connected to the fourth end face, and the lifting holes are arranged on the lifting plate.
[0017] In one embodiment, the lifting part further includes a connecting ring.
[0018] One end of the connecting ring is sleeved on the mounting hole, and the other end of the connecting ring is used for sleeving a heavy object.
[0019] In one embodiment, the support platform includes a first-layer platform and a second-layer platform;
[0020] The second-layer platform is stacked on the first-layer platform, and a connecting plate is arranged on the second-layer platform. Taking the end face on one side of the connecting plate as the first end face and the end face on the other side of the connecting plate as the second end face, the notch and the positioning post are arranged on the connecting plate.
[0021] In one embodiment, the second-layer platform includes at least two first profile beams and at least one second profile beam;
[0022] The first profile beams are arranged adjacent to each other side by side in the same direction with a gap therebetween, and the connecting plate is arranged in the gap;
[0023] Both ends of the second profile beam are respectively connected between the first profile beams arranged adjacent to each other side by side.
[0024] In one embodiment, the first-layer platform includes at least two third profile beams and at least one fourth profile beam.
[0025] Two of the third profile beams are arranged adjacent to each other side by side in the same direction;
[0026] Both ends of the fourth profile beam are respectively connected to the third profile beams.
[0027] In one embodiment, the present invention further provides a ship with a platform-based lifting device, and the ship includes a platform-based lifting device and a hull;
[0028] The support platform is connected to one side of the hull, and the tooling part is suspended outside the side of the hull. Description of the Drawings:
[0029] Figure 1 Schematic diagram of the platform-based hoisting device in an embodiment of the present invention;
[0030] Figure 2 Schematic diagram of the bottom view of the platform-based hoisting device in another embodiment of the present invention;
[0031] Figure 3 Schematic diagram of the tooling part in another embodiment of the present invention;
[0032] Figure 4 Schematic diagram of the top view of the tooling part in another embodiment of the present invention.
[0033] Reference numerals:
[0034] Support platform 1
[0035] Notch 11
[0036] First end face 12
[0037] Second end face 13
[0038] Positioning column 14
[0039] First-layer platform 15
[0040] Third profile beam 151
[0041] Fourth profile beam 152
[0042] Second-layer platform 16
[0043] Connecting plate 161
[0044] First profile beam 162
[0045] Second profile beam 163
[0046] Tooling part 2
[0047] Bottom plate 021
[0048] Third end face 0211
[0049] Opening 0212
[0050] Fourth end face 0213
[0051] Enclosure plate 022
[0052] Baffle 023
[0053] First partition 024
[0054] Second partition 025
[0055] Mounting hole 21
[0056] Lifting part 22
[0057] Lifting hole 221
[0058] Lifting plate 222
[0059] Connecting ring 223 Specific embodiment:
[0060] Similar to ships and other load-bearing carriers where heavy objects need to be suspended. It is necessary to connect to the main structure, extend out of the main structure and then be suspended, and a structure with good strength is required to lift heavy objects. However, there is no such lifting device in the prior art, so there is an urgent need for such a device.
[0061] In one embodiment, the present invention also provides a platform-based lifting device, and the platform-based lifting device includes a support platform 1 and a tooling part 2.
[0062] A notch 11 is provided on the support platform 1, and the notch 11 penetrates through the first end face 12 and the second end face 13 of the support platform 1, and multiple positioning columns 14 are provided on the first end face 12.
[0063] Multiple mounting holes 21 are provided on the tooling part 2. The tooling part 2 is placed on the first end face 12, and the mounting holes 21 are sleeved on the positioning columns 14. The tooling part 2 has a lifting part 22, and the lifting part 22 extends out from the notch 11 and is used for lifting.
[0064] In this embodiment, a specific structure of a platform-based lifting device is provided. The support platform 1 is mainly used to connect to the main structure. Among them, the purpose of the notch 11 is to provide a structure that can be used for suspension, and the tooling part 2 is used for lifting. The positioning columns 14 on the support platform 1 are preferably three, and the three positioning columns 14 form a triangular structure on the plane. The connection method is realized by sleeving the positioning columns 14 on the mounting holes 21. Due to the action of gravity and the influence of the working direction, through the notch of the support platform, the tooling part can suspend heavy objects and has good strength itself, which helps to solve the technical problem in the prior art that there is a lack of a lifting device that can suspend heavy objects and has good strength.
[0065] In one embodiment, a lifting hole 221 is provided on the lifting part 22, and the direction of the lifting hole 221 has a spatial angle with the direction of the positioning column 14.
[0066] In this embodiment, a specific implementation manner is provided in which a lifting hole 221 is provided on the lifting part 22. The setting direction of the lifting hole 221 has an included angle with the direction of the positioning column 14 in space. Preferably, the included angle is perpendicular, so that the force application direction is perpendicular to the degree-of-freedom direction of the limiting tooling part 2.
[0067] In one embodiment, the tooling part 2 includes a bottom plate 021 and a surrounding plate 022;
[0068] The surrounding plate 022 encloses the third end face 0211 of the bottom plate 021 along the edge of the bottom plate 021, and an opening 0212 is left on one side of the bottom plate 021;
[0069] A baffle 023 is connected to the bottom plate 021, located at the edge of the opening 0212, and seals the opening 0212.
[0070] In this embodiment, a specific structure of the tooling part 2 is provided. A surrounding plate 022 that encloses its edge is provided on the bottom plate 021. The cross-section of the surrounding plate 022 is U-shaped, and the opening of its U-shape is the opening 0212.
[0071] In one embodiment, the tooling part 2 includes a first partition plate 024 and a second partition plate 025.
[0072] The first partition plate 024 is connected to the fourth end face 0213 of the bottom plate 021 and is arranged along a predetermined first direction in the enclosed area of the surrounding plate 022;
[0073] The second partition plate 025 is connected to the fourth end face 0213 of the bottom plate 021 and is located between the baffle 023 and the first partition plate 024 along a predetermined second direction.
[0074] In this embodiment, the specific structure of the tooling part 2 is further provided. The overall strength of the tooling part 2 is enhanced by the first partition plate 024 and the second partition plate 025. The first partition plate 024 and the second partition plate 025 support the internal area of the U-shaped surrounding plate 022, so that the structure of the tooling part 2 is more stable.
[0075] In one embodiment, the lifting part 22 includes a lifting plate 222.
[0076] The edge of the lifting plate 222 is connected to the fourth end face 0213, and a lifting hole 221 is provided on the lifting plate 222.
[0077] In this embodiment, the specific implementation manner of the lifting part 22 for setting the lifting hole 221 through the lifting plate 222 is provided. That is, the specific structure of the lifting part 22 is provided. Rib plates are also provided on both sides of the lifting plate 22 to further improve its strength.
[0078] In one embodiment, the hoisting part 22 further includes a connecting ring 223. One end of the connecting ring 223 is sleeved on the mounting hole 21, and the other end of the connecting ring 223 is used for sleeving a heavy object.
[0079] In this embodiment, a method of using the hoisting part 22 to sleeve a heavy object through the connecting ring 223 for hoisting is provided.
[0080] In one embodiment, the support platform 1 includes a first-layer platform 15 and a second-layer platform 16;
[0081] The second-layer platform 16 is stacked on the first-layer platform 15, and a connecting plate 161 is provided on the second-layer platform 16. One end face of the connecting plate 161 is used as the first end face 12, and the other end face of the connecting plate 161 is the second end face 13. The notch 11 and the positioning column 14 are provided on the connecting plate 161.
[0082] In this embodiment, a specific structure of the support platform 1 is provided. The support platform 1 is divided into two layers. The first-layer platform 15 is used for connecting to the main structure, and the second-layer platform is used for connecting the tooling part 2.
[0083] In one embodiment, the second-layer platform 16 includes at least two first profile beams 162 and at least one second profile beam 163.
[0084] The first profile beams 162 are arranged adjacent to each other side by side in the same direction and have a gap 1621, and the connecting plate 161 is arranged between the gaps 1621;
[0085] Both ends of the second profile beam 163 are respectively connected between the first profile beams 162 arranged adjacent to each other side by side.
[0086] In this embodiment, a specific structure of the second platform 16 is provided. The first profile beams 162 are arranged longitudinally, the second profile beams 163 are arranged transversely, preferably two. The connecting plate 161 is located at one end of the first profile beam 162, and is enclosed by a U-shaped structure formed by a second profile beam 163 close by transversely. A rib plate is provided at the bottom of the connecting plate 161 to improve its structural strength. The first profile beams 162 can be made of channel steel, and partition plates are arranged at intervals.
[0087] In one embodiment, the first-layer platform 15 includes at least two third profile beams 151 and at least one fourth profile beam 152.
[0088] Two third profile beams 151 are arranged adjacent to each other side by side in the same direction;
[0089] Both ends of the fourth profile beam 152 are respectively connected to the third profile beams 151.
[0090] In this embodiment, a specific structure of the first-layer platform 15 constructed by the third profile beams 151 and the fourth profile beam 152 is provided.
[0091] In one embodiment, the present invention further provides a ship with a platform-based hoisting device, which includes the platform-based hoisting device and a hull described above;
[0092] The support platform 1 is connected to one side of the hull, and the tooling part 2 is suspended outside the side of the hull.
[0093] In this embodiment, a specific implementation manner of applying the platform-based hoisting device to a ship is provided.
Claims
1. A platform-based hoisting device, characterized in that, The platform-based hoisting device includes: A support platform (1) with a notch (11) thereon, the notch (11) penetrating through the first end face (12) and the second end face (13) of the support platform (1), and a plurality of positioning columns (14) are arranged on the first end face (12); A tooling part (2) with a plurality of mounting holes (21) thereon, the tooling part (2) is placed on the first end face (12), and the mounting holes (21) are sleeved on the positioning columns (14). The tooling part (2) has a hoisting part (22), and the hoisting part (22) extends out from the notch (11) and is used for hoisting; The tooling part (2) includes: A bottom plate (021); A surrounding plate (022) that surrounds the third end face (0211) of the bottom plate (021) along the edge of the bottom plate (021), and an opening (0212) is left on one side of the bottom plate (021); A baffle plate (023) connected to the bottom plate (021), located at the edge of the opening (0212), and blocking the opening (0212); The tooling part (2) includes: A first partition plate (024) connected to the fourth end face (0213) of the bottom plate (021) and arranged along a predetermined first direction in the area surrounded by the surrounding plate (022); A second partition plate (025) connected to the fourth end face (0213) of the bottom plate (021) and located between the baffle plate (023) and the first partition plate (024) along a predetermined second direction.
2. The platform-based hoisting device according to claim 1, characterized in that, The hoisting part (22) is provided with a hoisting hole (221), and the direction of the hoisting hole (221) has a spatial angle with the direction of the positioning column (14).
3. The platform-based hoisting device according to claim 2, characterized in that, The hoisting part (22) includes: A hoisting plate (222), the edge of the hoisting plate (222) is connected to the fourth end face (0213), and the hoisting hole (221) is arranged on the hoisting plate (222).
4. The platform-based hoisting device according to claim 3, wherein, The hoisting part (22) further includes: A connecting ring (223), one end of the connecting ring (223) is sleeved on the mounting hole (21), and the other end of the connecting ring (223) is used for sleeving a heavy object.
5. The platform-based hoisting device according to claim 4, wherein, The support platform (1) includes: A first-layer platform (15); A second-layer platform (16) stacked on the first-layer platform (15), and a connecting plate (161) is arranged on the second-layer platform (16). Taking the end face on one side of the connecting plate (161) as the first end face (12) and the end face on the other side of the connecting plate (161) as the second end face (13), the notch (11) and the positioning columns (14) are arranged on the connecting plate (161).
6. The platform-based hoisting device according to claim 5, characterized in that The second-layer platform (16) includes: At least two first profile beams (162) arranged side by side adjacent to each other in the same direction with a gap (1621) therebetween, and the connecting plate (161) is arranged between the gaps (1621); At least one second profile beam (163), with both ends of the second profile beam (163) respectively connected between the first profile beams (162) arranged side by side and adjacent to each other.
7. The platform-based hoisting device according to claim 6, wherein, The first layer platform (15): At least two third profile beams (151), with the two third profile beams (151) arranged side by side and adjacent to each other in the same direction; At least one fourth profile beam (152), with both ends of the fourth profile beam (152) respectively connected to the third profile beams (151).
8. A ship with a platform-based hoisting device, characterized in that, The ship comprises: The platform-based lifting device according to any one of claims 1 to 7; A hull, with the support platform (1) connected to one side of the hull and suspending the tooling part (2) outside the side of the hull.
Citation Information
Patent Citations
Marine low-speed machine piston assembly hoisting tool
CN109132845A
Fan impeller hoisting clamp
CN208829119U