Modularized portable mobile dock
The modular docking of flexible inflatable floating plate assembly and snap-on assembly is solved by solving the problems of inaccurate docking of seaplanes and bulky traditional floating boxes, and light and flexible seaplane docking and transportation, enhancing equipment protection.
Patent Information
- Application Number
- CN202510759780.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-09
- Publication Date
- 2025-07-22
AI Technical Summary
The existing seaplane docks cannot accurately match the outer periphery of the seaplane, resulting in inaccurate docking. The traditional floating box dock is bulky, inconvenient for transportation and layout, and it is easy to damage the aircraft.
Flexible inflatable floating plate components are adopted, including flexible inflatable head storage floating plates, left floating plates and right floating plates, design docking guide channels and positioning molding notches, forming a floating plate dock structure through inflation, achieving modular assembly and disassembly, adapting to the outer contour of the seaplane, and setting snap components and water-filled inflatable bags to improve stability.
It realizes accurate and stable docking of seaplanes, reduces equipment damage, is light and easy to transport and arrange, and improves the flexibility and safety of docking.
Smart Images

Figure CN120348420A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of docking stations, and particularly to a modular portable mobile docking station. Background Art
[0002] An existing M2 type amphibious aircraft is a light sport aircraft with pontoons on both sides of its fuselage, having the functions of taking off and landing on water and land. It can be used for driving skill learning, aviation tourism sightseeing, and can also be applied to fields such as maritime affairs, electric power, fishery administration, search and rescue, and agriculture. It can monitor the fishing boats going to sea during the closed fishing season, especially for maritime search and rescue, with the function of landing on water, greatly improving safety. Especially, new format tourism products based on seaplanes are rapidly developing in various countries around the world and are gradually entering the field of vision of tourism consumers as water tourism activity projects. The berthing of seaplanes requires seaplane terminals or docking stations; existing seaplane docking stations generally use multiple blow-molded floating boxes for assembly and construction. It is difficult for their outer contour to accurately match the outer contour of the seaplane, easily resulting in the seaplane not being able to dock accurately in place and making it difficult for the crew to get on and off the plane; in addition, the modular dock built with blow-molded floating boxes has a hard material, a large volume, and is relatively heavy, which is not convenient for storage, transportation, turnover, and layout, and is prone to bump and damage the aircraft. In addition, various small watercraft all have the need for precise berthing, such as yachts, motorboats, etc.
[0003] Therefore, how to provide a modular portable mobile docking station that can accurately adapt to the berthing of watercraft, is convenient for storage and transportation, can be more flexibly and efficiently turned over and arranged, and has good protection for watercraft is a technical problem that needs to be urgently solved by those skilled in the art. Summary of the Invention
[0004] In view of this, the present invention provides a modular portable mobile docking station, aiming to solve the technical problems that the traditional blow-molded floating box type docking station cannot enable watercraft to dock accurately, is heavy and inconvenient for arrangement and transportation, and is prone to bump and damage watercraft.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] The present invention provides a modular portable mobile docking station, including:
[0007] A flexible inflatable shaped floating board assembly, which forms a floating board type docking station structure that can float horizontally on the water surface after inflation and can be folded and rolled up after deflation;
[0008] A docking guiding channel for guiding the berthing of watercraft is provided on the outer peripheral side of the floating board type docking station structure, and a positioning shaped notch for adaptively positioning and accommodating the watercraft is provided at the end port of the docking guiding channel corresponding to the outer peripheral side of the floating board type docking station structure.
[0009] The flexible inflatable shaping floating board assembly of the modular portable mobile docking station of the present invention has the characteristics of being flexible and retractable, with light weight and small volume after retraction, making it more convenient to carry and transport; through simple inflation operation, it can be quickly arranged on the water surface to construct a floating board docking station structure. The positioning shaping notch can be designed to be adapted to the outer contour of the watercraft, and the docking guiding channel can guide the watercraft to be docked to gradually approach the positioning shaping notch, so that the watercraft can be more accurately and stably positioned and docked at the positioning shaping notch; the flexible inflatable shaping floating board assembly will not bump or damage the watercraft, and has better safety.
[0010] As a further improvement of the above technical solution, the flexible inflatable shaping floating board assembly includes a flexible inflatable nose receiving floating board, a flexible inflatable left floating board, and a flexible inflatable right floating board;
[0011] The middle of one end of the flexible inflatable nose receiving floating board has a nose receiving notch capable of adaptively positioning and receiving the nose of a seaplane; both sides of the width direction of one end of the flexible inflatable nose receiving floating board corresponding to the nose receiving notch are floating cylinder positioning ends capable of being inserted one by one under the front parts of the left floating cylinder and the right floating cylinder of the seaplane for abutting and supporting; the upper plate surface of the flexible inflatable nose receiving floating board corresponding to the side in the width direction of the nose receiving notch is an upper and lower aircraft platform,
[0012] One end in the width direction of the flexible inflatable left floating board and the flexible inflatable right floating board are detachably connected to both ends of the flexible inflatable nose receiving floating board corresponding to the width direction of the nose receiving notch; an aircraft docking guiding channel is formed on the opening side corresponding to the nose receiving notch between the flexible inflatable left floating board and the flexible inflatable right floating board; one end of the aircraft docking guiding channel away from the nose receiving notch forms a V-shaped aircraft floating cylinder guiding port, and the end of the aircraft docking guiding channel close to the nose receiving notch and the floating cylinder positioning end together form an aircraft floating cylinder clamping groove capable of adapting to and positioning the left floating cylinder and the right floating cylinder of the seaplane;
[0013] The flexible inflatable nose receiving floating board, the flexible inflatable left floating board, and the flexible inflatable right floating board are all provided with air charging and discharging ports, and can all be spliced to form a floating board docking station structure floating horizontally on the water surface after inflation, and can all be folded and retracted after deflation.
[0014] The beneficial effects of the above technical solution are as follows: The flexible inflatable nose storage float, the flexible inflatable left float, and the flexible inflatable right float all adopt the flexible inflatable float structure. The overall quality is light, and they can be modularly assembled and disassembled. After being inflated, they can become a floating dock structure that floats horizontally on the water surface. After deflation, they can all be folded and rolled up. After being rolled up, the volume is small, which is more convenient for turnover transportation and flexible and fast water layout. When the seaplane docks, the nose of the seaplane drives in roughly aligned with the nose receiving notch. The V-shaped float guide openings of the seaplane can guide the left float and the right float of the seaplane, so that the left float and the right float of the seaplane can accurately drive into the float slot of the seaplane. After the left float and the right float of the seaplane enter the float slot of the seaplane, the nose of the seaplane will be precisely aligned with the nose receiving notch, and then the precise docking of the seaplane can be realized. Since the front bottom surfaces of the left float and the right float of the seaplane are inclined surfaces for easy driving on the water surface, after the seaplane docks in place, the float positioning ends of the flexible inflatable left float and the flexible inflatable right float will correspondingly insert into the front bottom surfaces of the left float and the right float, thereby playing a role in supporting and positioning the left float and the right float. Cooperating with the adaptation and clamping positioning of the float slot of the seaplane to the left float and the right float, the precise and stable docking of the seaplane is realized. The upper and lower aircraft platforms are convenient for the crew and on-board items of the seaplane to get on and off the plane. The overall structure adopts the flexible inflatable float structure, which can well buffer and absorb the impact of the seaplane docking; the present invention can accurately adapt to the docking of the seaplane, and is convenient for storage and transportation, and can be more flexibly and efficiently turned over and arranged, having the advantage of good protection for the seaplane.
[0015] As a further improvement of the above technical solution, it further includes a flexible inflatable standard float; the end of the flexible inflatable standard float is detachably connected to the outer ends of the flexible inflatable left float and the flexible inflatable right float in the opposite direction; the flexible inflatable nose storage float, the flexible inflatable left float, the flexible inflatable right float, and the flexible inflatable standard float jointly form a docking dock water platform structure.
[0016] The beneficial effects of the above technical solution are as follows: By splicing the flexible inflatable standard float on the flexible inflatable left float and / or the flexible inflatable right float, the area of the overall structure can be further increased, and a more stable docking dock water platform structure is constructed; personnel walking channels and material transportation channels can be planned on the docking dock water platform structure.
[0017] As a further improvement of the above technical solution, there are multiple flexible inflatable standard floats, and the multiple flexible inflatable standard floats are sequentially connected to the outer ends of the flexible inflatable left float and the flexible inflatable right float in the opposite direction along the opposite direction of the flexible inflatable left float and the flexible inflatable right float; any two adjacent flexible inflatable standard floats can be detachably connected.
[0018] The beneficial effects of the above technical solution are as follows: the area requirement for the water platform structure of the docking dock can be met by sequentially splicing and combining multiple flexible inflatable standard floating plates; when multiple flexible inflatable standard floating plates are symmetrically arranged at the outer ends of the flexible inflatable left floating plate and the flexible inflatable right floating plate in the opposite directions, the overall floating stability of the docking dock can be further improved, and the anti-wave impact ability can be enhanced.
[0019] As a further improvement of the above technical solution, after being inflated, the flexible inflatable standard floating plate is rectangular, with a length of 2400 - 3600 mm, a width of 800 - 1200 mm, and a thickness of 150 - 250 mm; the widths of the flexible inflatable left floating plate and the flexible inflatable right floating plate are the same as that of the flexible inflatable standard floating plate.
[0020] The beneficial effects of the above technical solution are as follows: compared with traditional floating boxes, the flat and wide shapes of the flexible inflatable left floating plate, the flexible inflatable right floating plate, and the flexible inflatable standard floating plate can increase the contact area with the water surface to increase buoyancy, and their specific dimension designs enable the arrangement, winding, loading, and unloading operations to be completed by a single person, which can improve the operation efficiency of the installation, disassembly, turnover, and arrangement of the docking dock.
[0021] As a further improvement of the above technical solution, it further includes a buckle assembly; the buckle assembly includes two connecting columns and a clamp assembly;
[0022] One end of the connecting column is a floating plate fixing end, and the other end is a connector; the inner wall of the clamp assembly has an annular groove; when the connectors of the two connecting columns are axially abutted, a connector group that can be adapted to be embedded in the annular groove is formed, and the clamp assembly is detachably sleeved on the connector group to tightly connect the two connecting columns;
[0023] There are multiple buckle assemblies; one end of the flexible inflatable left floating plate and the flexible inflatable right floating plate in the width direction are detachably connected to both ends of the flexible inflatable nose receiving floating plate corresponding to the width direction of the nose receiving notch through the buckle assemblies respectively; the outer ends of the flexible inflatable left floating plate and the flexible inflatable right floating plate in the opposite directions can both be detachably connected to the ends of the flexible inflatable standard floating plate through the buckle assemblies; the ends of any two flexible inflatable standard floating plates can both be detachably connected through the buckle assemblies.
[0024] The beneficial effects of the above technical solution are as follows: Through the snap connection method of the clamp assembly sleeving to coaxially fasten two connecting studs, a rigid connection between the floating plate modules is achieved, and there will be no surge undulation between the floating plate modules, ensuring the stability of the connection between the flexible inflatable left floating plate and the flexible inflatable right floating plate on the left and right sides respectively and the flexible inflatable nose storage floating plate and the flexible inflatable standard floating plate, as well as the stability of the connection between adjacent flexible inflatable standard floating plates, thereby ensuring the docking stability of the seaplane.
[0025] As a further improvement of the above technical solution, the other end of the flexible inflatable nose storage floating plate opposite to the nose receiving notch can be detachably connected to the flexible inflatable standard floating plate through the snap assembly; both ends of the flexible inflatable left floating plate and the flexible inflatable right floating plate in the length direction can be detachably connected to the flexible inflatable standard floating plate through the snap assembly.
[0026] The beneficial effects of the above technical solution are as follows: By installing flexible inflatable standard floating plates at the other end of the flexible inflatable nose storage floating plate opposite to the nose receiving notch and at the ends of the flexible inflatable left floating plate and the flexible inflatable right floating plate in the length direction, the area of the docking dock is further increased, and the floating stability of the flexible inflatable nose storage floating plate, the flexible inflatable left floating plate and the flexible inflatable right floating plate on the water is further improved, thereby improving the docking stability of the seaplane.
[0027] As a further improvement of the above technical solution, flexible wear-resistant buffer strips are fixed on the inner peripheral walls of the aircraft docking guide channel and the nose receiving notch and the floating drum positioning end.
[0028] The beneficial effects of the above technical solution are as follows: The flexible wear-resistant buffer strips not only play a role in buffering the impact of the seaplane, but also play a role in protecting the flexible inflatable nose storage floating plate, the flexible inflatable left floating plate and the flexible inflatable right floating plate to prevent them from being worn and damaged, and extend the service life of the docking dock.
[0029] As a further improvement of the above technical solution, it further includes a plurality of water injection and inflation bags, and the water injection and inflation bags are provided with water injection and inflation ports;
[0030] At least one of the water injection and inflation bags is fixed on the lower plate surfaces of the flexible inflatable nose storage floating plate, the flexible inflatable left floating plate and the flexible inflatable right floating plate.
[0031] The beneficial effects of the above technical solution are as follows: By filling the water injection and inflation bag with water, the center of gravity of the docking dock can be lowered and a certain anchoring and stabilizing effect can be achieved, so as to increase the floating stability of the docking dock on the water surface. It is also possible to inject part of the water into the water injection and inflation bag, so that the lower part of the bag is filled with water and the upper part is an air layer; the water body in the lower part of the bag plays a role in lowering the center of gravity, and the height of the center of gravity can be adjusted by controlling the water injection volume. The air layer in the upper part of the bag provides buoyancy to support the flexible inflatable nose receiving floating board, the flexible inflatable left floating board and the flexible inflatable right floating board, so that the load-bearing performance and floating stability of the docking dock are doubly guaranteed.
[0032] As a further improvement of the above technical solution, the water injection and inflation bag is in an inverted conical shape after being filled with water and inflated; the top end of the water injection and inflation bag is fixed to the lower plate surfaces of the corresponding flexible inflatable nose receiving floating board, the flexible inflatable left floating board and the flexible inflatable right floating board;
[0033] On the lower plate surfaces of the flexible inflatable nose receiving floating board, the flexible inflatable left floating board and the flexible inflatable right floating board, a plurality of the water injection and inflation bags are fixedly arranged at intervals along the circumferential direction near the outer peripheral side.
[0034] The beneficial effects of the above technical solution are as follows: After the water injection and inflation bag in an inverted conical shape is filled with water and inflated, the upper part is wide, which can increase the buoyancy, and the lower part is narrow, which can lower the center of gravity; the center of gravity can be adjusted through the shape of the water bag and the distribution of the water inside, so that the docking dock is more stable. Since the stability of the outer peripheral side of the floating board is relatively poor when stepped on, especially the floating board at the edge of the docking dock, by fixing the water injection and inflation bag to the lower plate surfaces of the flexible inflatable nose receiving floating board, the flexible inflatable left floating board and the flexible inflatable right floating board near the outer peripheral side, the anti-step ability of the docking dock platform can be increased, and the floating stability of the docking dock is further provided.
[0035] As a further improvement of the above technical solution, mooring rings for fixing the seaplane are arranged on the upper plate surfaces of the flexible inflatable nose receiving floating board, the flexible inflatable left floating board and the flexible inflatable right floating board.
[0036] The beneficial effects of the above technical solution are as follows: The function of arranging the mooring rings on the upper plate surfaces of the flexible inflatable nose receiving floating board, the flexible inflatable left floating board and the flexible inflatable right floating board is to connect with the mooring rings on the seaplane with ropes to fix and restrain the seaplane.
[0037] It can be seen from the above technical solution that compared with the prior art, the modular portable mobile docking dock disclosed by the present invention has the following advantages and beneficial effects:
[0038] 1. The floating dock of the present invention is assembled by floating board modules in various forms. Compared with the traditional floating box module structure, the present invention uses floating boards in a flat and wide form to increase the contact area with the water surface, thereby increasing buoyancy. In addition, the inflatable floating board can not only reduce its own weight but also make storage more convenient, and has sufficient strength to bear the weight of the user and external forces.
[0039] 2. A conical water injection and inflation bag is provided at the bottom of the floating board of the present invention to increase the stability of the floating dock when floating on the water surface. The upper part of the water bag is wide to increase buoyancy, and the injected water accumulates in the gradually narrowing lower part, which can lower the center of gravity. Moreover, the conical shape of the water bag and the distribution of the water inside can adjust the center of gravity, making the floating dock on the water surface more stable.
[0040] 3. The mooring points provided on the floating board of the present invention can fix the aircraft and can also be used to fix the floating board when necessary.
[0041] 4. Multiple flexible inflatable standard floating boards of the present invention can be flexibly combined on the flexible inflatable nose storage floating board, the flexible inflatable left floating board and the flexible inflatable right floating board to form various floating dock forms, which can meet the needs of the surrounding environment and the actual layout area. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.
[0043] Figure 1 Top view schematic diagram of the overall structure of the first combined form of the modular portable mobile floating dock of the present invention;
[0044] Figure 2 Side view schematic diagram of the overall structure of the modular portable mobile floating dock of the present invention;
[0045] Figure 3 Stereo schematic diagram of the modular portable mobile floating dock of the present invention;
[0046] Figure 4 Schematic diagram of the buckling state of the buckle assembly of the modular portable mobile floating dock of the present invention;
[0047] Figure 5 Radial cross-sectional view of the buckling state of the clamp assembly of the modular portable mobile floating dock of the present invention;
[0048] Figure 6 Side view schematic diagram of the connection card column structure of the modular portable mobile floating dock of the present invention;
[0049] Figure 7 Front view schematic diagram of the connecting stud structure of the modular portable mobile docking station of the present invention;
[0050] Figure 8 Schematic diagram of the state where the connecting stud of the modular portable mobile docking station of the present invention is adhesively fixed to one end face of the flexible inflatable left floating board;
[0051] Figure 9 Schematic diagram of the state where the modular portable mobile docking station of the present invention docks a seaplane;
[0052] Figure 10 Schematic diagram of the second combined form of the modular portable mobile docking station of the present invention;
[0053] Figure 11 Schematic diagram of the third combined form of the modular portable mobile docking station of the present invention;
[0054] In the figure: 1. Flexible inflatable nose storage floating board; 11. Nose storage notch; 12. Buoy positioning end; 13. Upper and lower aircraft platform; 2. Flexible inflatable left floating board; 3. Flexible inflatable right floating board; 4. Aircraft docking guiding channel; 41. Aircraft buoy guiding port; 42. Aircraft buoy clamping groove; 5. Inflation and deflation port; 6. Flexible inflatable standard floating board; 7. Buckle assembly; 71. Connecting stud; 711. Floating board fixing end; 712. Card joint; 72. Clamp assembly; 721. Semi-circular clamp one; 7211. Block one; 7212. Hook one; 722. Semi-circular clamp two; 7221. Block two; 7222. Hook two; 723. Annular groove; 8. Flexible wear-resistant buffer strip; 9. Water injection and inflation bag; 10. Mooring ring; 101. Seaplane; 102. Right seaplane buoy. Detailed implementation manners
[0055] The following details the embodiments of the present invention. The examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention and should not be construed as a limitation of the present invention.
[0056] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present invention.
[0057] Furthermore, the terms "first" and "second" are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality of" means two or more unless otherwise specifically defined.
[0058] In the present invention, unless otherwise clearly specified and defined, terms such as "mounted", "connected", "coupled", "fixed", etc. shall be construed in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0059] According to an embodiment of the present invention, as Figures 1 to 11 shown, the modular portable mobile docking station includes:
[0060] A flexible inflatable shaped floating board assembly, which forms a floating board docking station structure that can float horizontally on the water surface after inflation and can be folded and rolled up after deflation;
[0061] A docking guiding channel for guiding the docking of waterborne equipment is provided on the outer peripheral side of the floating board docking station structure, and a positioning shaped notch for adaptively positioning and accommodating the waterborne equipment is provided corresponding to the end port of the docking guiding channel on the outer peripheral side of the floating board docking station structure.
[0062] The flexible inflatable shaped floating board assembly of the modular portable mobile docking station in this embodiment has the characteristics of being flexible and retractable, light in weight and small in volume after being rolled up, which is more convenient for carrying and transportation; through simple inflation operation, it can be quickly arranged on the water surface to construct a floating board docking station structure. The positioning shaped notch can be designed to be adapted to the outer contour of the waterborne equipment, and the docking guiding channel can guide the waterborne equipment to be docked to gradually approach the positioning shaped notch, so that the waterborne equipment can be more accurately and stably positioned and docked at the positioning shaped notch; the flexible inflatable shaped floating board assembly will not bump and damage the waterborne equipment, and has better safety.
[0063] In some embodiments, the flexible inflatable shaped floating board assembly includes a flexible inflatable nose receiving floating board 1, a flexible inflatable left floating board 2, and a flexible inflatable right floating board 3;
[0064] One end of the middle part of the flexible inflatable nose receiving float board 1 has a nose receiving notch 11 that can adapt to position and receive the nose of the seaplane; both sides of the width direction of the nose receiving notch 11 at one end of the flexible inflatable nose receiving float board 1 are float cylinder positioning ends 12 that can be inserted one by one under the front parts of the left float cylinder and the right float cylinder of the seaplane to make abutting support; the upper plate surface of the flexible inflatable nose receiving float board 1 on the side of the width direction corresponding to the nose receiving notch 11 is an upper and lower aircraft platform 13,
[0065] One end of the width direction of the flexible inflatable left float board 2 and the flexible inflatable right float board 3 are detachably connected to both ends of the flexible inflatable nose receiving float board 1 corresponding to the width direction of the nose receiving notch 11 one by one; an aircraft docking guiding channel 4 is formed on the opening side corresponding to the nose receiving notch 11 between the flexible inflatable left float board 2 and the flexible inflatable right float board 3; one end of the aircraft docking guiding channel 4 away from the nose receiving notch 11 forms a V-shaped aircraft float cylinder guiding opening 41, and the end of the aircraft docking guiding channel 4 close to the nose receiving notch 11 and the float cylinder positioning end 12 together form an aircraft float cylinder clamping groove 42 that can adapt to position the left float cylinder and the right float cylinder of the seaplane;
[0066] The flexible inflatable nose receiving float board 1, the flexible inflatable left float board 2 and the flexible inflatable right float board 3 are all provided with air charging and discharging ports 5, and after inflation, they can all be spliced to form a floating dock structure floating horizontally on the water surface, and can be folded and rolled up after deflation.
[0067] The modular portable mobile docking station of this embodiment is applicable to the M2 type amphibious aircraft. Its flexible inflatable nose receiving float 1, flexible inflatable left float 2 and flexible inflatable right float 3 all adopt the flexible inflatable float structure. The overall quality is light, and it can be modularly assembled and disassembled. After being inflated, it can become a floating dock structure floating horizontally on the water surface. After deflation, they can all be folded and rolled up. After being rolled up, the volume is small, which is more convenient for turnover transportation and flexible and fast water layout. When the seaplane docks, the nose of the seaplane drives in roughly aiming at the nose receiving notch 11. The V-shaped float guide opening 41 of the seaplane can guide the left float and right float of the seaplane, so that the left float and right float of the seaplane can accurately drive into the float slot 42 of the seaplane. After the left float and right float of the seaplane enter the float slot 42 of the seaplane, the nose of the seaplane will accurately aim at the nose receiving notch 11, and then the accurate docking of the seaplane can be realized. Since the front bottom surfaces of the left float and right float of the seaplane are inclined surfaces for easy driving on the water surface, after the seaplane docks in place, the float positioning ends 12 of the flexible inflatable left float 2 and the flexible inflatable right float 3 will correspondingly insert into the front bottom surfaces of the left float and right float, and then play a role in supporting and positioning the left float and right float. Cooperating with the adaptation and clamping positioning of the float slot 42 of the seaplane to the left float and right float, the accurate and stable docking of the seaplane is realized. The upper and lower aircraft platforms 13 are convenient for the crew and items on the seaplane to get on and off the seaplane. The overall structure adopts the flexible inflatable float structure, which can well buffer and absorb the impact of the seaplane docking; the present invention can accurately adapt to the docking of the seaplane, and is convenient for storage and transportation, and can be more flexibly and efficiently turned over and arranged, and has the advantage of good protection for the seaplane.
[0068] Specifically, it should be noted that: the modular portable mobile docking station of this embodiment can be quickly assembled, disassembled and combined by multiple float modules, and the form can be variable; in addition, the outer contour of the docking station can be designed to match the outer contour of the M2 seaplane; according to needs, the outer contour of the docking station can also be designed to match the outer contours of other types of seaplanes, and only the size and inner contour shape of the flexible inflatable nose receiving float 1 and the structural sizes of the flexible inflatable left float 2 and the flexible inflatable right float 3 need to be adjusted.
[0069] In some embodiments, it further includes a flexible inflatable standard float 6; the end of the flexible inflatable standard float 6 is detachably connected to the outer ends of the flexible inflatable left float 2 and the flexible inflatable right float 3 in the opposite direction; the flexible inflatable nose receiving float 1, the flexible inflatable left float 2, the flexible inflatable right float 3 and the flexible inflatable standard float 6 jointly construct the docking station water platform structure.
[0070] By splicing the flexible inflatable standard floating board 6 onto the flexible inflatable left floating board 2 and / or the flexible inflatable right floating board 3, the area of the overall structure can be further increased, and a more stable docking dock water platform structure is constructed; personnel walking channels and material transportation channels can be planned on the docking dock water platform structure.
[0071] Specifically, the flexible inflatable nose storage floating board 1, the flexible inflatable left floating board 2, the flexible inflatable right floating board 3, and the flexible inflatable standard floating board 6 are all inflatable PVC drawn floating boards; using the inflatable PVC drawn floating board as the design of the seaplane dock has the characteristics of good flexibility and durability. After deflating, it can be rolled up for convenient transportation and storage, and can be inflated again when used again. The material density of the inflatable PVC drawn floating board can be designed to be less than the density of water, and it has sufficient strength to bear the weight of the user and external forces.
[0072] Specifically, anti-slip textures are designed on the surfaces of the flexible inflatable nose storage floating board 1, the flexible inflatable left floating board 2, the flexible inflatable right floating board 3, and the flexible inflatable standard floating board 6 to prevent users from slipping and improve safety performance.
[0073] In some embodiments, there are multiple flexible inflatable standard floating boards 6, and the multiple flexible inflatable standard floating boards 6 are sequentially connected to the outer ends in the opposite direction of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3 along the opposite direction; any two adjacent flexible inflatable standard floating boards 6 can be detachably connected.
[0074] The area requirement for the docking dock water platform structure can be met by sequentially splicing and combining multiple flexible inflatable standard floating boards 6; when multiple flexible inflatable standard floating boards 6 are symmetrically arranged at the outer ends in the opposite direction of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3, the overall floating stability of the docking dock can be further improved, and the ability to resist wave impact can be enhanced. Splicing and combining multiple flexible inflatable standard floating boards 6 on the flexible inflatable nose storage floating board 1, the flexible inflatable left floating board 2, and the flexible inflatable right floating board 3 can be flexibly combined into various docking dock forms, and the specific combination forms can be assembled according to needs and will not be elaborated here.
[0075] In some embodiments, the flexible inflatable standard floating board 6 is rectangular after inflation, with a length of 2400 - 3600 mm, a width of 800 - 1200 mm, and a thickness of 150 mm - 250 mm; the widths of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3 are the same as those of the flexible inflatable standard floating board 6.
[0076] Compared with traditional floating boxes, the flat and wide shapes of the flexible inflatable left floating board 2, the flexible inflatable right floating board 3 and the flexible inflatable standard floating board 6 can increase the contact area with the water surface to increase buoyancy. Their specific dimension design enables the arrangement, winding, loading and unloading operations to be completed by a single person, which can improve the operation efficiency of the installation, removal, turnover and arrangement at the docking dock.
[0077] In some embodiments, it further includes a buckle assembly 7; the buckle assembly 7 includes two connecting studs 71 and a hoop assembly 72;
[0078] One end of the connecting stud 71 is a floating board fixed end 711, and the other end is a connector 712; the inner wall of the hoop assembly 72 has an annular groove 723; when the connectors 712 of the two connecting studs 71 are axially abutted, a connector group that can be adapted and embedded in the annular groove 723 is formed, and the hoop assembly 72 is detachably sleeved on the connector group to tightly connect the two connecting studs 71;
[0079] There are multiple buckle assemblies 7; one end in the width direction of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3 is detachably connected to both ends in the width direction of the corresponding nose receiving notch 11 of the flexible inflatable nose receiving floating board 1 through the buckle assembly 7 respectively; the outer ends of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3 in the opposite directions can both be detachably connected to the ends of the flexible inflatable standard floating board 6 through the buckle assembly 7; the ends of any two flexible inflatable standard floating boards 6 can be detachably connected through the buckle assembly 7.
[0080] Through the buckle connection method of coaxially fastening the two connecting studs 71 by sleeving the hoop assembly 72, a rigid connection between the floating board modules is realized, and there will be no surge undulation between the floating board modules, ensuring the stability of the connection between the left and right sides of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3 and the flexible inflatable nose receiving floating board 1 and the flexible inflatable standard floating board 6 respectively, as well as the stability of the connection between adjacent flexible inflatable standard floating boards 6, thereby ensuring the docking stability of the seaplane.
[0081] In some embodiments, the other end of the flexible inflatable nose receiving floating board 1 opposite to the nose receiving notch 11 can be detachably connected to the flexible inflatable standard floating board 6 through the buckle assembly 7; the ends in the length direction of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3 can both be detachably connected to the flexible inflatable standard floating board 6 through the buckle assembly 7.
[0082] By installing flexible inflatable standard floating boards 6 at the other end of the flexible inflatable nose receiving floating board 1 opposite to the nose receiving notch 11 and at the end parts in the length direction of the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3, the area of the docking dock is further increased, and the floating stability of the flexible inflatable nose receiving floating board 1, the flexible inflatable left floating board 2 and the flexible inflatable right floating board 3 on the water is further improved, thereby improving the docking stability of the seaplane.
[0083] Specifically, the clamp assembly 72 includes a semi-circular clamp one 721 and a semi-circular clamp two 722; semi-circular annular grooves are circumferentially formed on the inner peripheral wall of the semi-circular clamp one 721; one end of the outer peripheral wall of the semi-circular clamp one 721 in the circumferential direction is fixed with a clamping block one 7211, and the other end of the outer peripheral wall of the semi-circular clamp one 721 in the circumferential direction is fixed with a clamping hook one 7212; the semi-circular clamp one 721 and the semi-circular clamp two 722 have the same structure; the clamping block one 7211 and the clamping hook one 7212 of the semi-circular clamp one 721 can be correspondingly and adaptively clamped with the clamping hook two 7222 and the clamping block two 7221 of the semi-circular clamp two 722, and the semi-circular annular grooves of the semi-circular clamp one 721 and the semi-circular clamp two 722 are butted to form a circular annular groove 723, thereby combining into a circular groove clamp. The cylindrical clamping head group formed by the axial abutment of the cylindrical clamping heads 712 of the two connecting clamping columns 71 is adaptively nested in the circular annular groove 723, and the clamping head 712 of each connecting clamping column 71 can rotate around the axis of the corresponding annular groove 723 to form a hinged structure.
[0084] Specifically, the flexible inflatable standard floating board 6 is designed such that its length is N times its width, where N is a positive integer. Such a design enables a combination body in which N flexible inflatable standard floating boards 6 are arranged in parallel in sequence along their width directions to be adaptively vertically butted and joined at one end in the width direction of a flexible inflatable standard floating board 6.
[0085] Specifically, considering that the clamp assembly 72 has a certain length, the length of the flexible inflatable standard floating board 6 can be designed to be 2950 mm, and the width can be designed to be 950 mm; the length of the connecting clamping column 71 is designed to be 25 mm, and the total length of the butt joint of the two connecting clamping columns 71 is 50 mm; the floating board fixed end 711 of the connecting clamping column 71 is vertically adhesively fixed on the outer peripheral wall of the flexible inflatable standard floating board 6.
[0086] Specifically, the floating plate fixed end 711 of the connecting stud 71 is vertically adhesively fixed on the outer peripheral walls of the corresponding flexible inflatable nose receiving floating plate 1, flexible inflatable left floating plate 2 and flexible inflatable right floating plate 3. The length of the flexible inflatable nose receiving floating plate 1 is 2500 mm, and its width is 2475 mm; the nose receiving notch 11 is arranged in the middle of one end of the flexible inflatable nose receiving floating plate 1 in the width direction. The widths of the flexible inflatable left floating plate 2 and the flexible inflatable right floating plate 3 are both 950 mm, and their lengths are both 4807.5 mm. The thicknesses of the flexible inflatable nose receiving floating plate 1, flexible inflatable left floating plate 2, flexible inflatable right floating plate 3 and flexible inflatable standard floating plate 6 are all 200 mm.
[0087] In some embodiments, flexible wear-resistant buffer strips 8 are fixed on the inner peripheral walls of the aircraft docking guiding channel 4 and the nose receiving notch 11 and the floating drum positioning end 12.
[0088] The flexible wear-resistant buffer strip 8 not only plays a role in buffering the impact during the docking of the seaplane, but also plays a role in protecting the flexible inflatable nose receiving floating plate 1, flexible inflatable left floating plate 2 and flexible inflatable right floating plate 3 to avoid abrasion and damage, and prolongs the service life of the docking dock.
[0089] Specifically, the flexible wear-resistant buffer strip 8 is a rubber strip, which fits the contours of the inner peripheral walls of the aircraft docking guiding channel 4 and the nose receiving notch 11 and the floating drum positioning end 12 of the docking dock and is adhesively bonded thereto by a high-temperature heat capacity rolling process. This structure is convenient for installation and makes the flexible wear-resistant buffer strip fit well with the docking dock.
[0090] In some embodiments, a plurality of water injection and inflation bags 9 are further included, and a water injection and inflation port is provided on the water injection and inflation bag 9;
[0091] At least one water injection and inflation bag 9 is fixed on the lower plate surfaces of the flexible inflatable nose receiving floating plate 1, flexible inflatable left floating plate 2 and flexible inflatable right floating plate 3.
[0092] By filling the water injection and inflation bag 9 with water, it can play a role in reducing the center of gravity of the docking dock and achieving a certain anchoring and stabilizing effect, so as to increase the floating stability of the docking dock on the water surface. It is also possible to inject a part of water into the water injection and inflation bag 9 so that the lower part of the bag is water and the upper part is an air layer; the water body in the lower part of the bag plays a role in reducing the center of gravity, and the height of the center of gravity can be adjusted by controlling the water injection volume. The air layer in the upper part of the bag provides buoyancy to support the flexible inflatable nose receiving floating plate 1, flexible inflatable left floating plate 2 and flexible inflatable right floating plate 3, so that the load-bearing performance and floating stability of the docking dock are doubly guaranteed.
[0093] In some embodiments, after being filled with water and inflated, the water-inflatable bag 9 assumes an inverted conical shape; the top end of the water-inflatable bag 9 is adhesively fixed to the lower plate surfaces of the corresponding flexible inflatable nose storage float 1, flexible inflatable left float 2, and flexible inflatable right float 3 through a high-temperature heat-capacity rolling process;
[0094] On the lower plate surfaces of the flexible inflatable nose storage float 1, flexible inflatable left float 2, and flexible inflatable right float 3, a plurality of water-inflatable bags 9 are fixedly spaced along the circumferential direction near the outer peripheral side.
[0095] After the water-inflatable bag 9 in the shape of an inverted cone is filled with water and inflated, the upper part is wide, which can increase buoyancy, and the lower part is narrow, which can lower the center of gravity; the center of gravity can be adjusted through the shape of the water bag and the distribution of water inside, making the docking dock more stable. Since the stability of the outer peripheral side of the float is relatively poor when stepped on, especially the float at the edge of the docking dock, by fixing the water-inflatable bag 9 to the lower plate surfaces of the flexible inflatable nose storage float 1, flexible inflatable left float 2, and flexible inflatable right float 3 near the outer peripheral side, the anti-step ability of the docking dock platform can be increased, further providing the floating stability of the docking dock.
[0096] Specifically, water-inflatable bags 9 are adhesively fixed to the corresponding four corner ends of the lower plate surfaces of the flexible inflatable nose storage float 1, flexible inflatable left float 2, flexible inflatable right float 3, and flexible inflatable standard float 6 through a high-temperature heat-capacity rolling process.
[0097] In some embodiments, mooring rings 10 for fixing the seaplane are provided on the upper plate surfaces of the flexible inflatable nose storage float 1, flexible inflatable left float 2, and flexible inflatable right float 3.
[0098] The function of setting the mooring rings 10 on the upper plate surfaces of the flexible inflatable nose storage float 1, flexible inflatable left float 2, and flexible inflatable right float 3 is to connect with the mooring rings on the seaplane with ropes to fix and restrain the seaplane.
[0099] Specifically, mooring rings 10 are also provided on the upper plate surface of the flexible inflatable standard float 6. There are multiple mooring rings 10; a plurality of mooring rings 10 are fixedly spaced along the circumferential direction near the edge on the upper plate surfaces of the inflatable nose storage float 1, flexible inflatable left float 2, flexible inflatable right float 3, and flexible inflatable standard float 6. The mooring rings 10 can also be used to fix the inflatable nose storage float 1, flexible inflatable left float 2, flexible inflatable right float 3, and flexible inflatable standard float 6; for example, by using the mooring rings 10 to fasten the docking dock to the surrounding fixed buildings; for example, the mooring rings 10 serve as anchor chain connection rings. When the wind and waves are relatively large, one end of the anchor chain is tied through the mooring ring 10, and the anchor hook connected to the other end of the anchor chain is thrown into the bottom of the water to anchor the docking dock, further improving the anti-wind and wave ability.
[0100] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine the different embodiments or examples described in this specification.
[0101] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present invention.
Claims
1. Modular portable mobile docking station, characterized in that, Comprising: A flexible inflatable shaped floating board assembly, which forms a floating dock structure that can float horizontally on the water surface after inflation and can be folded and rolled up after deflation; A docking guiding channel for guiding the docking of waterborne equipment is provided on the outer peripheral side of the floating dock structure, and a positioning shaped notch for fitting and positioning and accommodating the waterborne equipment is provided at the end port of the docking guiding channel corresponding to the outer peripheral side of the floating dock structure.
2. The modular portable mobile docking station according to claim 1, characterized in that The flexible inflatable shaped floating board assembly includes a flexible inflatable nose receiving floating board (1), a flexible inflatable left floating board (2) and a flexible inflatable right floating board (3); In the middle of one end of the flexible inflatable nose receiving floating board (1), there is a nose receiving notch (11) that can fit and position and accommodate the nose of a seaplane; on both sides of the width direction of the nose receiving notch (11) at one end of the flexible inflatable nose receiving floating board (1), there are floating cylinder positioning ends (12) that can be inserted one by one under the front parts of the left and right floating cylinders of the seaplane for abutting and supporting; on the upper plate surface of the flexible inflatable nose receiving floating board (1), corresponding to the side in the width direction of the nose receiving notch (11), there is an upper and lower aircraft platform (13). One end in the width direction of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) are detachably connected to both ends in the width direction of the flexible inflatable nose receiving floating board (1) corresponding to the nose receiving notch (11); an aircraft docking guiding channel (4) is formed between the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) corresponding to the opening side of the nose receiving notch (11); one end of the aircraft docking guiding channel (4) away from the nose receiving notch (11) forms a V-shaped aircraft floating cylinder guiding port (41), and one end of the aircraft docking guiding channel (4) close to the nose receiving notch (11) and the floating cylinder positioning end (12) together form an aircraft floating cylinder clamping groove (42) that can fit and position the left and right floating cylinders of the seaplane. The flexible inflatable nose receiving floating board (1), the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) are all provided with air charging and discharging ports (5), and after inflation, they can all be spliced to form a floating dock structure that floats horizontally on the water surface, and after deflation, they can all be folded and rolled up.
3. The modular portable mobile docking station according to claim 2, wherein It further includes a flexible inflatable standard floating board (6); the end of the flexible inflatable standard floating board (6) is detachably connected to the outer ends of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) in the opposite direction; the flexible inflatable nose receiving floating board (1), the flexible inflatable left floating board (2), the flexible inflatable right floating board (3) and the flexible inflatable standard floating board (6) together form a docking dock water platform structure.
4. The modular portable mobile docking station according to claim 3, wherein, The flexible inflatable standard floating boards (6) are multiple, and the multiple flexible inflatable standard floating boards (6) are sequentially connected to the outer ends in the opposite direction of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) along the opposite direction of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3); any two adjacent flexible inflatable standard floating boards (6) can be detachably connected.
5. The modular portable mobile docking station according to claim 4, wherein After being inflated, the flexible inflatable standard floating board (6) is rectangular, with a length of 2400 - 3600 mm, a width of 800 - 1200 mm, and a thickness of 150 mm - 250 mm; the widths of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) are both the same as that of the flexible inflatable standard floating board (6).
6. The modular portable mobile docking station according to claim 4, characterized in that It further includes a buckle assembly (7); the buckle assembly (7) includes two connecting posts (71) and a hoop assembly (72); One end of the connecting post (71) is a floating board fixed end (711), and the other end is a clamping head (712); the inner wall of the hoop assembly (72) has an annular groove (723); when the clamping heads (712) of the two connecting posts (71) are axially abutted, a clamping head group that can be adapted to be embedded in the annular groove (723) is formed, and the hoop assembly (72) is detachably sleeved on the clamping head group to tightly connect the two connecting posts (71); The buckle assemblies (7) are multiple; one end in the width direction of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) is detachably connected to both ends in the width direction of the corresponding nose receiving notch (11) of the flexible inflatable nose receiving floating board (1) through the buckle assemblies (7) respectively; the outer ends in the opposite direction of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) can both be detachably connected to the ends of the flexible inflatable standard floating board (6) through the buckle assemblies (7); the ends of any two flexible inflatable standard floating boards (6) can both be detachably connected through the buckle assemblies (7).
7. The modular portable mobile docking station according to claim 6, characterized in that, The other end of the flexible inflatable nose receiving floating board (1) opposite to the nose receiving notch (11) can be detachably connected to the flexible inflatable standard floating board (6) through the buckle assembly (7); the ends in the length direction of the flexible inflatable left floating board (2) and the flexible inflatable right floating board (3) can both be detachably connected to the flexible inflatable standard floating board (6) through the buckle assembly (7).
8. The modular portable mobile docking station according to claim 2, wherein Flexible wear-resistant buffer strips (8) are fixed on the inner peripheral walls of the aircraft docking guide channel (4) and the nose receiving notch (11) and the floating drum positioning end (12).
9. The modular portable mobile docking station according to claim 2, characterized in that, It further includes multiple water injection and inflation bags (9), and the water injection and inflation bags (9) are provided with water injection and inflation ports; At least one water injection and inflation bag (9) is fixed on the lower plate surfaces of the flexible inflatable nose receiving floating board (1), the flexible inflatable left floating board (2), and the flexible inflatable right floating board (3).
10. The modular portable mobile docking station according to claim 9, wherein The water injection and inflation bag (9) is in an inverted conical shape after being filled with water and inflated; the top end of the water injection and inflation bag (9) is fixed to the lower plate surfaces of the corresponding flexible inflatable nose receiving floating board (1), the flexible inflatable left floating board (2), and the flexible inflatable right floating board (3). A plurality of the water injection and inflation bags (9) are fixedly arranged at intervals along the circumferential direction on the lower plate surfaces of the flexible inflatable nose receiving floating board (1), the flexible inflatable left floating board (2), and the flexible inflatable right floating board (3) near the outer peripheral side.
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