MARINE MODULAR INTELLIGENT ANTI-COLLISION DEVICE BASED ON AIRBAGS
20240002025 ยท 2024-01-04
Assignee
Inventors
- Kun Liu (Zhenjiang, CN)
- Jiaxia Wang (Zhenjiang, CN)
- Tongqiang Yu (Zhenjiang, CN)
- Yue Lu (Zhenjiang, CN)
- Zhengyao Wang (Zhenjiang, CN)
Cpc classification
International classification
Abstract
A plurality of modules are arranged on the broadside of a ship, each module includes a housing, and the housing is provided with a composite gas supply assembly, a composite airbag assembly, an intelligent control assembly, and a mechanical transmission assembly; the intelligent control assembly is configured for predicting the impact energy and a collision angle of a collision object, sending an inflation instruction to the composite gas supply assembly, inflating a large airbag to a proper air pressure, inflating a small airbag to a rated air pressure, and sending an angle adjustment instruction to the mechanical transmission assembly to adjust the collision angle of the small airbag; the large airbag is matched with the small airbag to fully absorb a collision force vertically acting on the surface of a hull.
Claims
1. A marine modular intelligent anti-collision device based on airbags, which is applied to the field of ships, wherein a plurality of modules are arranged on the broadside of a ship, each module comprises a housing (24), and the housing (24) is provided with a composite gas supply assembly, a composite airbag assembly, an intelligent control assembly, and a mechanical transmission assembly; the composite airbag assembly comprises a large airbag (10) and small airbags (11); the composite gas supply assembly supplies gas for the composite airbag assembly; the composite airbag assembly is configured to resist the external collision of a hull and protect the structure of the hull; the mechanical transmission assembly is configured to adjust the collision angle of the small airbag (11); and the intelligent control assembly is configured for predicting the impact energy and a collision angle of a collision object, sending an inflation instruction to the composite gas supply assembly, inflating a large airbag (10) to a proper air pressure, inflating a small airbag (11) to a rated air pressure, and sending an angle adjustment instruction to the mechanical transmission assembly to adjust the collision angle of the small airbag (11).
2. The marine modular intelligent anti-collision device based on airbags according to claim 1, wherein the large airbag (10) is in the shape of a spheroid, and the surface of the large airbag (10) is provided with vent holes (12) arranged in an annular manner; the two small airbags (11) are located in the large airbag (10); and the small airbags (11) are in the shape of water droplets.
3. The marine modular intelligent anti-collision device based on airbags according to claim 1, wherein the composite gas supply assembly is located above one side of the housing (24); the composite gas supply assembly comprises high-pressure steel cylinder (3)s, a gas transmission channel A (15a), a gas transmission channel B (15b), a gas generator (4), and an electric airtight valve (22); the gas generator (4) and the electric airtight valve (22) are all electrically connected with the intelligent control assembly; the high-pressure steel cylinder (3) is connected with the electric airtight valve (22); the electric airtight valve (22) is connected with the large airbag (10) through the gas transmission channel A (15a); and the gas generator (4) is connected with the small airbag (11) through the gas transmission channel B (15b).
4. The marine modular intelligent anti-collision device based on airbags according to claim 1, wherein a circular support frame (27) is arranged at a point near the air inlet of the large airbag (11), to stretch the large airbag (11) so as to arrange a small airbag (9) inside it; the outer periphery of the large airbag (11) is respectively provided with light bars (16) that are connected with the housing (24); and the housing (24) is provided with a storage bin (14), and the airbag (11) not inflated is folded in the storage bin (14).
5. The marine modular intelligent anti-collision device based on airbags according to claim 1, wherein the intelligent control assembly is located below one side of the housing (24); the intelligent control assembly comprises an image acquisition sensor, an infrared range finder (1), a central processing unit (2), and a plurality of wires; the wires are respectively electrically connected to the composite gas supply assembly and the mechanical transmission assembly; the image acquisition sensor is configured to collect and identify potential collision objects in surrounding areas and the sea conditions near the waters where the ship is located; the infrared range finder (1) assists an image acquisition sensor to send the environmental information and obstacle information to the central processing unit (2), then the central processing unit (2) preliminarily calculates the probability of any collision risk, and when the collision risk is confirmed, the central processing unit calculates the energy impact that the protection area is about to suffer, as well as the contact surface shape and collision angle of the collision object that the area is about to approach; the predicted impact energy is converted into an appropriate air pressure for the large airbag (10), and the collision contact surface shape and the collision angle are converted into the collision angle of the small airbag (11).
6. The marine modular intelligent anti-collision device based on airbags according to claim 1, wherein the housing (24) is provided with a base (23); the base (23) is provided with a small air outlet A (6a), a small air outlet B (6b), and a large air outlet (5), where the small air outlet A (6a) and the small air outlet B (6b) are rotatably connected with the housing (24); the large air outlet (5) is located between the small air outlet A (6a) and the small air outlet B (6b); the large airbag (10) is connected to the composite gas supply assembly through the large air outlet (5), and the small airbags (11) are respectively connected with the composite gas supply assembly through the small air outlet A (6a) and the small air outlet B (6b).
7. The marine modular intelligent anti-collision device based on airbags according to claim 6, wherein the mechanical transmission assembly comprises a small motor (17), a gear A (19), a gear B (7), a gear C (20), a gear D (21), a transmission rack A (18a), and a transmission rack B (18b); the transmission rack A (18a) is vertically and slidably arranged in the housing (24) and is capable to move up and down, and the transmission rack B (18b) is horizontally and slidably arranged in the housing (24) and is capable to move horizontally; the transmission rack A (18a) and the transmission rack B (18b) are rotatably connected through the gear B (7); the small motor (17) and the gear A (19) are rotatably connected, the gear A (19) and the gear B (7) mesh with the transmission rack A (18a) respectively, and the gear B (7), the gear C (20), and the gear D (21) mesh with the transmission rack B (18b) respectively; the gear A (19), the gear B (7), the gear C (20), and the gear D (21) all are rotatably connected with the housing (24); and the gear C (20) is connected with the small air outlet A (6a), and the gear D (21) is connected with the small air outlet B (6b).
8. The marine modular intelligent anti-collision device based on airbags according to claim 7, wherein one side of the transmission rack A (18a) close to the broadside of the ship is provided with a plurality of roll balls A (26a) along its length direction, the housing (24) is provided with a vertical chute, and the transmission rack A (18a) is slidably arranged in the vertical chute through the plurality of roll balls A (26a); one side of the transmission rack B (18b) close to the broadside of the ship is provided with a plurality of roll balls B (26b) along its length direction, the housing (24) is provided with a transverse chute, and the transmission rack B (18b) is slidably arranged in the transverse chute through the plurality of roll balls B (26b).
9. The marine modular intelligent anti-collision device based on airbags according to claim 7, wherein the gear A (19), the gear B (7), the gear C (20), and the gear D (21) are connected to the housing (24) through a rotating structure, the rotating structure includes a rotating shaft and a bearing, where the outer ring of the bearing is connected to the inner ring of the gear, one end of the rotating shaft is arranged in the inner ring of the bearing, the other end of the rotating shaft is connected to the housing (24), and a rotational connection between the gear and the housing is realized through the connection between the bearing and the rotating shaft.
10. The marine modular intelligent anti-collision device based on airbags according to claim 1, wherein one side of the housing (24) close to the broadside of the ship is provided with a plurality of slats, one side of the slats close to the broadside of the ship is provided with strong magnetic stripes (8), each of the slats is connected by means of a hinge (9), and the housing (24) is installed on the broadside of the ship by means of the strong magnetic stripes (8); a telescopic connecting rod (25) is arranged between every two modules of the housing (24).
11. The marine modular intelligent anti-collision device based on airbags according to claim 2, wherein the composite gas supply assembly is located above one side of the housing (24); the composite gas supply assembly comprises high-pressure steel cylinder (3)s, a gas transmission channel A (15a), a gas transmission channel B (15b), a gas generator (4), and an electric airtight valve (22); the gas generator (4) and the electric airtight valve (22) are all electrically connected with the intelligent control assembly; the high-pressure steel cylinder (3) is connected with the electric airtight valve (22); the electric airtight valve (22) is connected with the large airbag (10) through the gas transmission channel A (15a); and the gas generator (4) is connected with the small airbag (11) through the gas transmission channel B (15b).
12. The marine modular intelligent anti-collision device based on airbags according to claim 2, wherein a circular support frame (27) is arranged at a point near the air inlet of the large airbag (11), to stretch the large airbag (11) so as to arrange a small airbag (9) inside it; the outer periphery of the large airbag (11) is respectively provided with light bars (16) that are connected with the housing (24); and the housing (24) is provided with a storage bin (14), and the airbag (11) not inflated is folded in the storage bin (14).
13. The marine modular intelligent anti-collision device based on airbags according to claim 2, wherein the intelligent control assembly is located below one side of the housing (24); the intelligent control assembly comprises an image acquisition sensor, an infrared range finder (1), a central processing unit (2), and a plurality of wires; the wires are respectively electrically connected to the composite gas supply assembly and the mechanical transmission assembly; the image acquisition sensor is configured to collect and identify potential collision objects in surrounding areas and the sea conditions near the waters where the ship is located; the infrared range finder (1) assists an image acquisition sensor to send the environmental information and obstacle information to the central processing unit (2), then the central processing unit (2) preliminarily calculates the probability of any collision risk, and when the collision risk is confirmed, the central processing unit calculates the energy impact that the protection area is about to suffer, as well as the contact surface shape and collision angle of the collision object that the area is about to approach; the predicted impact energy is converted into an appropriate air pressure for the large airbag (10), and the collision contact surface shape and the collision angle are converted into the collision angle of the small airbag (11).
14. The marine modular intelligent anti-collision device based on airbags according to claim 2, wherein the housing (24) is provided with a base (23); the base (23) is provided with a small air outlet A (6a), a small air outlet B (6b), and a large air outlet (5), where the small air outlet A (6a) and the small air outlet B (6b) are rotatably connected with the housing (24); the large air outlet (5) is located between the small air outlet A (6a) and the small air outlet B (6b); the large airbag (10) is connected to the composite gas supply assembly through the large air outlet (5), and the small airbags (11) are respectively connected with the composite gas supply assembly through the small air outlet A (6a) and the small air outlet B (6b).
15. The marine modular intelligent anti-collision device based on airbags according to claim 14, wherein the mechanical transmission assembly comprises a small motor (17), a gear A (19), a gear B (7), a gear C (20), a gear D (21), a transmission rack A (18a), and a transmission rack B (18b); the transmission rack A (18a) is vertically and slidably arranged in the housing (24) and is capable to move up and down, and the transmission rack B (18b) is horizontally and slidably arranged in the housing (24) and is capable to move horizontally; the transmission rack A (18a) and the transmission rack B (18b) are rotatably connected through the gear B (7); the small motor (17) and the gear A (19) are rotatably connected, the gear A (19) and the gear B (7) mesh with the transmission rack A (18a) respectively, and the gear B (7), the gear C (20), and the gear D (21) mesh with the transmission rack B (18b) respectively; the gear A (19), the gear B (7), the gear C (20), and the gear D (21) all are rotatably connected with the housing (24); and the gear C (20) is connected with the small air outlet A (6a), and the gear D (21) is connected with the small air outlet B (6b).
16. The marine modular intelligent anti-collision device based on airbags according to claim 15, wherein one side of the transmission rack A (18a) close to the broadside of the ship is provided with a plurality of roll balls A (26a) along its length direction, the housing (24) is provided with a vertical chute, and the transmission rack A (18a) is slidably arranged in the vertical chute through the plurality of roll balls A (26a); one side of the transmission rack B (18b) close to the broadside of the ship is provided with a plurality of roll balls B (26b) along its length direction, the housing (24) is provided with a transverse chute, and the transmission rack B (18b) is slidably arranged in the transverse chute through the plurality of roll balls B (26b).
17. The marine modular intelligent anti-collision device based on airbags according to claim 16, wherein the gear A (19), the gear B (7), the gear C (20), and the gear D (21) are connected to the housing (24) through a rotating structure, the rotating structure includes a rotating shaft and a bearing, where the outer ring of the bearing is connected to the inner ring of the gear, one end of the rotating shaft is arranged in the inner ring of the bearing, the other end of the rotating shaft is connected to the housing (24), and a rotational connection between the gear and the housing is realized through the connection between the bearing and the rotating shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023]
[0024]
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[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
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[0034]
[0035] In the figures: 1. infrared range finder, 2. central processing unit, 3. high-pressure steel cylinder, 4. gas generator, 5. large air outlet, 6a. small air outlet A, 6b. small air outlet B, 7. gear B, 8. strong magnetic stripe, 9. hinge, 10. large airbag, 11. small airbag, 12. vent hole, 13. connecting hole, 14. storage bin, 15a. gas transmission channel A, 15b. gas transmission channel B, 16. light bar, 17. small motor, 18a. transmission rack A, 18b. transmission rack B, 19. gear A, 20. gear C, 21. gear D, 22. electric airtight valve, 23. base, 24. housing, 25. telescopic connecting rod, 26a. roll ball A, 26b. roll ball B, 27. support frame, and 28. bracket.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0036] In order to make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in combination with the accompanying drawings in the embodiments of the present invention. Apparently, the embodiments described are merely some rather than all of the embodiments of the present invention. On the basis of the embodiments in the present invention, all other embodiments acquired by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present invention.
[0037] As shown in
[0038] The module includes a housing 24, and housing can be covered by thin-gauge skin, thus having a certain concealment; an intelligent control assembly is arranged on the lower left side of the housing 24, a composite gas supply assembly is arranged on the upper left side of the housing 24, a mechanical transmission assembly is arranged on the right side of the housing 24, a composite airbag assembly occupies the largest space in the housing 24, and the composite airbag assembly is arranged on the bottom right inside the housing 24; the composite airbag assembly includes a large airbag 10 and small airbags 11; the composite gas supply assembly supplies gas for the composite airbag assembly; the composite airbag assembly is configured to resist the external collision of a hull and protect the structure of the hull; the mechanical transmission assembly is configured to adjust the collision angle of the small airbag 11; and the intelligent control assembly is configured for predicting the impact energy and a collision angle of a collision object, sending an inflation instruction to the composite gas supply assembly, inflating a large airbag 10 to a proper air pressure, inflating a small airbag 11 to a rated air pressure, and sending an angle adjustment instruction to the mechanical transmission assembly to adjust the collision angle of the small airbag 11.
[0039] The intelligent control assembly includes an image acquisition sensor, an infrared range finder 1, a central processing unit 2, and a plurality of wires; the wires are respectively electrically connected to an electric airtight valve 22 in the composite gas supply assembly, a gas generator 4, and a small motor 17 in the mechanical transmission assembly; the image acquisition sensor is configured to collect and identify potential collision objects in surrounding areas and the sea conditions near the waters where the ship is located; the infrared range finder 1 assists an image acquisition sensor to send the environmental information and obstacle information to the central processing unit 2, then the central processing unit 2 preliminarily calculates the probability of any collision risk, and when the collision risk is confirmed, the central processing unit calculates the energy impact that the protection area is about to suffer, as well as the contact surface shape and collision angle of the collision object that the area is about to approach; the predicted impact energy is converted into an appropriate air pressure for the large airbag 10, and the collision contact surface shape and the collision angle are converted into the appropriate collision angle of the small airbag 11.
[0040] The composite gas supply assembly includes high-pressure steel cylinders 3, a gas transmission channel A 15a, a gas transmission channel B 15b, a gas generator 4, and an electric airtight valve 22; the gas generator 4 and the electric airtight valve 22 are all electrically connected with the intelligent control assembly; two steel cylinder brackets are arranged in the housing 24, the high-pressure steel cylinder 3 is installed after a liner is installed in each steel cylinder bracket, and the liner is capable to reduce the shaking of the high-pressure steel cylinder 3 and improve the gas storage safety of the high-pressure steel cylinder 3; the electric airtight valve 22 is provided with two airtight interfaces, where one airtight interface is provided with a Y-shaped three-way pipe A, and the other airtight interface is connected to the gas transmission channel A 15a; the gas transmission channel A 15a is connected to the large airbag 10 through a large air outlet 5; the electric airtight valve 22 is connected to two high-pressure steel cylinders 3 through a Y-shaped three-way pipe A; the gas generator 4 is provided with a Y-shaped three-way pipe B; and the gas generator 4 is connected to a small airbag 11 through a Y-shaped three-way pipe B arranged therein. Airtight rubber gaskets are arranged between the joints of the channels in the device for sealing. Two gas supply modes are configured to control a switch of the electric airtight valve 22 according to the feedback information from the intelligent control assembly. The high-pressure steel cylinder 3 provides the optimum air pressure for the large airbag 10, and the gas generator 4 provides the rated air pressure for the small airbag 11 to fully absorb the collision energy. The external large airbag is mainly used for energy release, is capable to deal with various levels of impact energy, and the protection effects of different internal pressures are different. Therefore, the internal pressure of the external large airbag needs to be controlled to deal with different levels of impact energy. For small airbags without vent holes, it is only necessary to reach a rated pressure.
[0041] A storage bin 14 is arranged in the housing, and the airbag not unfolded is folded and placed in the storage bin, taking up little space. As shown in
[0042] As shown in
[0043] The mechanical transmission assembly includes a small motor 17, a gear A 19, a gear B 7, a gear C 20, a gear D 21, a transmission rack A 18a, and a transmission rack B 18b; the transmission rack A 18a is vertically and slidably arranged in the housing 24 and is capable to move up and down, and the transmission rack B 18b is horizontally and slidably arranged in the housing 24 and is capable to move horizontally; the transmission rack A 18a and the transmission rack B 18b are rotatably connected through the gear B 7; the small motor 17 and the gear A 19 are rotatably connected, the gear A 19 and the gear B 7 mesh with the transmission rack A 18a respectively, and the gear B 7, the gear C 20, and the gear D 21 mesh with the transmission rack B 18b respectively; the gear A 19, the gear B 7, the gear C 20, and the gear D 21 all are rotatably connected with the housing 24; and the gear C 20 is connected with the small air outlet A 6a, and the gear D 21 is connected with the small air outlet B 6b.
[0044] As shown in
[0045] Working principle: as shown in
[0049] The above embodiments are only intended to illustrate the technical concept and characteristics of the present invention, and the purpose is to enable those skilled in the art to understand and implement the content of the present invention, and is not intended to limit the protection scope of the present invention. All equivalent changes or modifications made according to the spirit of the present invention shall fall within the protection scope of the present invention.