CN108622329A - Flotation gear and floating platform - Google Patents
Flotation gear and floating platform Download PDFInfo
- Publication number
- CN108622329A CN108622329A CN201710153964.3A CN201710153964A CN108622329A CN 108622329 A CN108622329 A CN 108622329A CN 201710153964 A CN201710153964 A CN 201710153964A CN 108622329 A CN108622329 A CN 108622329A
- Authority
- CN
- China
- Prior art keywords
- seat
- plane
- flotation gear
- floating
- adjustment unit
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B63—SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
- B63B—SHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING
- B63B35/00—Vessels or similar floating structures specially adapted for specific purposes and not otherwise provided for
- B63B35/44—Floating buildings, stores, drilling platforms, or workshops, e.g. carrying water-oil separating devices
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B63—SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
- B63B—SHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING
- B63B2221/00—Methods and means for joining members or elements
- B63B2221/08—Methods and means for joining members or elements by means of threaded members, e.g. screws, threaded bolts or nuts
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B63—SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
- B63B—SHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING
- B63B2231/00—Material used for some parts or elements, or for particular purposes
- B63B2231/40—Synthetic materials
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- Ocean & Marine Engineering (AREA)
- Bridges Or Land Bridges (AREA)
Abstract
A kind of flotation gear includes a floating seat and a Buoyance adjustment unit.Define a mutually orthogonal first direction, a second direction and a third direction.The floating seat includes first plane and second plane, the two third plane and two fourth planes on the third direction separately in the second direction separately in the first direction separately.The Buoyance adjustment unit include four respectively with this float seat connect so that the flotation gear appearance be in cuboid connecting seat.There are one the first surface coplanar with first plane and one from the first surface recessed accommodating area downward for each connecting seat tool.The Buoyance adjustment unit further includes four filling members for being located in the accommodating area respectively.The present invention is the design that can be removably located in the respective accommodating area using each filling member, come change whole loading and reach adjustment buoyancy the effect of.In addition the present invention also provide it is a kind of by multiple flotation gears it is combined made of floating platform.
Description
Technical field
The present invention relates to a kind of flotation gear and a kind of floating platform, more particularly to a kind of buoyancy size that can adjust
Flotation gear and a kind of floating platform mutually assembling and have adjustment buoyancy function using multiple aforementioned flotation gears.
Background technology
Existing pontoon dock is mostly the fixed harbour built up by reinforcing bar and concrete, such fixed harbour in addition to
Have the shortcomings that construction take with cost it is high outside, and can not be just with replacement under long-time service when structure generates damage
Part-structure come complete repair operation, so be typically only capable to first all scrap after build again again, be not easy so also there being maintenance
The shortcomings that, in addition, such fixed harbour can not change position with situation demand is used, purposes can only often provide ship
It berths, so also more limiting to using upper.
Therefore, floating type harbour of the fixed harbour mostly by activity setting replaces in recent years, such as TaiWan, China patent
Bulletin I 259821, I 259822, I 270343 and the floating drum disclosed in No. M375663, however utilize aforementioned
Floating platform made of floating drum is combined, although having, construction is easy, at low cost, be conducive to safeguard and application is more polynary (such as waterborne
Pavement, water stage) the advantages of, but because it can not adjust buoyancy size and be not easy to combine with other equipment, and still have energy
Improved place.
Invention content
The purpose of the present invention is to provide a kind of flotation gears that can be adjusted buoyancy size and be easy to combine with other equipment.
The flotation gear of the present invention can float on liquid level, and include a floating seat and a Buoyance adjustment unit.
Define a mutually orthogonal first direction, a second direction and a third direction, this float seat be included in this
Spaced first plane and second plane, two spaced thirds in the second direction on one direction
Plane and two spaced fourth planes on the third direction.
The Buoyance adjustment unit, which extends along the first direction respectively including four and floats seat with this respectively, to be connect so that the drift
Floating device appearance is in the connecting seat of cuboid.Each connecting seat tool there are one first plane that seat is floated with this it is coplanar the
One surface, a second surface coplanar with second plane of the floating seat, one connect the first surface and second table
Face and the third surface coplanar with the third plane for floating seat, one connect the first surface, the second surface, third table
Face and coplanar the 4th surface of the fourth plane that seat is floated with this and one are from the first surface recessed accommodating area downward.
The Buoyance adjustment unit further includes four filling members that can be removably located in the accommodating area respectively.
The flotation gear of the present invention, which further includes a plurality of recessed on-slip groove for being formed in first plane.
The present invention flotation gear, each filling member tool there are one floated with this seat first plane it is coplanar first
Fill surface.
The flotation gear of the present invention, each filling member of the Buoyance adjustment unit are integrally formed.
The flotation gear of the present invention, each filling member of the Buoyance adjustment unit is by the mutually close storehouse of multiple rubbles
It is formed.
The connecting seat of the flotation gear of the present invention, the floating seat and the Buoyance adjustment unit is integrally formed.
Mutually assembled using multiple aforementioned flotation gears and with tune it is another object of the present invention to provide a kind of
The floating platform of whole buoyancy size function.
The floating platform of the present invention can float on liquid level, and include multiple flotation gears as described in aforementioned and multiple first
Connection unit.
Each first connection unit is to be removedly connected two adjacent connecting seats along the second direction, so that at this
The Joint of flotation gear two-by-two arranged in second direction is together.
The floating platform of the present invention includes also multiple second connection units, each second connection unit is along the third
Direction is removedly connected two adjacent connecting seats, so that the Joint of flotation gear two-by-two arranged on the third direction exists
Together.
The floating platform of the present invention, each connecting seat, which also has at least one perforation third surface and is connected to this, to be housed
First mounting hole in area and the 4th surface of at least one perforation and the second mounting hole for being connected to the accommodating area, first installation
With second mounting hole adjacent to the first surface, each first connection unit includes that an energy passes through two adjacent companies in hole
First bolt of respective first mounting hole of joint chair and one and the first nut of the first bolt bolt, each
Two connection units include an energy pass through two adjacent connecting seats respective second mounting hole the second bolt and one with
Second nut of the second bolt bolt.
The floating platform of the present invention also includes a reinforcement unit for being set to the Buoyance adjustment unit, the reinforcement unit
Removedly it is located in the reinforcing member of the accommodating area respectively including at least four, there are one parallel each for each reinforcing member tool
Second reinforcement on the 4th surface of the first reinforcement wall on the third surface of a connecting seat, each parallel connecting seat
Wall, first reinforced opening passed through through the first reinforcement wall and for first bolt and one run through the second reinforcement wall
And the second reinforced opening for supplying second bolt to pass through.
The beneficial effects of the present invention are each filling member by the Buoyance adjustment unit is removably to be located in
The design of the respective accommodating area, for user can go to change the whole loading of each flotation gear depending on its demand and whereby
The effect of reaching adjustment buoyancy.In addition, floating platform of the present invention is because formed using multiple aforementioned flotation gears are combined, institute
Also to have the function of adjustment buoyancy.
Description of the drawings
Fig. 1 is a stereogram of a first embodiment of floating platform of the present invention, illustrates two flotation gear phase groups
It is fitted together;
Fig. 2 be the first embodiment each flotation gear and a reinforcement unit and two the first connection units with
Two the second connection units unassembled stereogram exploded view together each other;
Fig. 3 is a vertical view of the first embodiment, illustrates that six flotation gears are assembled with each other;
Fig. 4 is the view illustrated along Fig. 1 acquired by IV-IV straight lines;
Fig. 5 is analogous to a view of Fig. 4;
Fig. 6 is analogous to a view of Fig. 4;
Fig. 7 is a stereogram exploded view of a second embodiment of floating platform of the present invention, illustrates a flotation gear
With a reinforcement unit and two the first connection units and two the second connection units each other it is unassembled together;
Fig. 8 is a stereogram exploded view of a 3rd embodiment of floating platform of the present invention, illustrates a floating installation
With a reinforcement unit and two the first connection units and two the second connection units each other it is unassembled together;
Fig. 9 is a vertical view of the 3rd embodiment, illustrates that six flotation gears are assembled with each other.
Specific implementation mode
The following describes the present invention in detail with reference to the accompanying drawings and embodiments.
Before the present invention is described in detail, it shall be noted that in the following description content, similar element is with identical
Number indicate.
Refering to fig. 1,2,3, one first implementation of floating platform 100 of the present invention can float on liquid level.In order to clearly illustrate this
The concrete structure of invention, first defines an orthogonal coordinate system herein, which includes mutually orthogonal one each other
First direction Z, a second direction X and a third direction Y.
The floating platform 100 includes multiple flotation gears 1, multiple first connection units 2, multiple second connection units 3, more
A reinforcement unit 4 and multiple connecting plates 5.
Refering to Fig. 2,4,5, each flotation gear 1 includes a floating seat 11 and a Buoyance adjustment unit 12.
The floating seat 11 of each flotation gear 1 includes spaced one the first plane 111 on first direction Z
With 112, two, second plane on second direction X 113, two, spaced third plane in third direction Y
Upper spaced fourth plane 114 and a plurality of recessed on-slip groove 115 for being formed in first plane 111.It illustrates
It is that the floating seat 11 of each flotation gear 1 in the present embodiment can be the tetrakaidecahedron, in addition, each drift of the present invention
The floating seat 11 of floating device 1 has the design of a plurality of on-slip groove 115, can increase the friction coefficient of first plane 111 and have
There is anti-skidding effect.
Each Buoyance adjustment unit 12 includes four connecting seats 13 and four filling members 14.
The connecting seat 13 of each Buoyance adjustment unit 12 is in hollow quadrangle column, each Buoyance adjustment list respectively
The connecting seat 13 of member 12 extends along first direction Z and is connect respectively with the respective floating seat 11 so that each is floated respectively
1 appearance of floating device is in cuboid.Preferably, the connecting seat 13 of each Buoyance adjustment unit 12 is to be symmetrically disposed on this
Floating seat 11, in this way, each flotation gear 1 can be more evenly to float on liquid level without being especially poured into certain side.It adds
Bright, each connecting seat 13 can float 11 Joint of seat with this in a manner of glutinous set.
There are one the first surfaces coplanar with first plane 111 of the respective floating seat 11 for each connecting seat 13 tool
131, a second surface 132, one coplanar with second plane 112 of the respective floating seat 11 connect the first surface
131 third surface 133, one companies coplanar with the second surface 132 and with the third plane 113 of the respective floating seat 11
It connects the first surface 131, the second surface 132, third surface 133 and is total to the fourth plane 114 of the respective floating seat 11
From the first surface 131, recessed accommodating area 135 and two penetrate through the third surface downward on 134, one, the 4th surface of plane
133 and it is connected to the accommodating area 135 and the first mounting hole set up and down 136 and two penetrate through the 4th surface 134 and are connected to
The accommodating area 135 and the second mounting hole 137 for presenting setting, one of described first mounting hole 136 and second peace
Fill the neighbouring first surface 131 in one of hole 137, another and second installation of first mounting hole 136
Another neighbouring second surface 132 in hole 137.
In the present embodiment, the accommodating area 135 of each connecting seat 13 penetrates through the first surface 131 and the second surface
132, as shown in figure 4, but also need not be especially limited with above description, such as also can be as shown in Figure 5 each connecting seat 13
Also there are one between the first surface 131 and the second surface 132 and for making the accommodating area 135 be distinguished into two chambers for tool
Rib wall, as shown in Figure 5.
Refering to 2,4,5, it is right that the filling member 14 of each Buoyance adjustment unit 12 can removably be located in its institute respectively
The accommodating area 135 answered.It is described in detail, each filling member 14 can adopt integrally formed design, and material energy
Selected from armored concrete or polyethylene (Polyethylene, abbreviation PE), but also it is not required to especially be limited with above description, example
As also by the mutually close storehouse of multiple rubbles and sand can be poured into formed, as shown in Figure 5.In actual use, when each
When a accommodating area 135 is filled up by the filling member 14 corresponding to it, each filling member 14 then have there are one with respective this is floating
First that first plane 111 of seat 11 is coplanar fills surface 141, in this way, being filled at the filling of each accommodating area 135
Part 14 just can be for user's walking in upper.
Fig. 6 is a change case of flotation gear 1 of the present invention, the buoyancy chamber which can be defined by it
The difference of 116 volume size, and there is different buoyancy.
Refering to fig. 1,2,3, each first connection unit 2 includes that an energy passes through the respective of two adjacent connecting seats 13
21, one, the first bolt of the first mounting hole 136 be set in the first nut 22 of 21 bolt of the first bolt and one
First gasket 23 of first bolt 21;Each second connection unit 3 includes that an energy passes through two adjacent connecting seats 13
Respective second mounting hole 137 31, one, the second bolt and the second nut 32 of 31 bolt of the second bolt and one
It is set in the second gasket 33 of second bolt 31.
The reinforcement unit 4 be set to the Buoyance adjustment unit 12 and include at least four be removedly located in respectively it is described
The reinforcing member 41 of accommodating area 135.In the present embodiment, the reinforcing member 41 is in hollow quadrangle column respectively.Each reinforcing member
There are one 411, one, the first reinforcement walls on the third surface 133 for being parallel to each connecting seat 13 to be parallel to each for 41 tools
412, one, the second reinforcement wall on the 4th surface 134 of connecting seat 13 through the first reinforcement wall 411 and supplies first bolt
21 the first reinforced openings 413 passed through and second reinforcement passed through through the second reinforcement wall 412 and for second bolt 31
Hole 414.The present invention has the design of the reinforcement unit 4, is mainly used for strengthening each connecting seat 13 in the company adjacent thereto
Overall construction intensity when joint chair 13 engages.
It is loaded onto in group, each first connection unit 2 is to be removedly connected two adjacent connections along second direction X
Seat 13, each second connection unit 3 be removedly connected two adjacent connecting seats 13 along third direction Y so that
1 Joint of flotation gear two-by-two arranged on third direction Y is together.It is noted that each piece connecting plate 5 can be with
The set-up mode of parallel second direction X or third direction Y, together by 1 Joint of two adjacent flotation gears.Separately
The design of outer present invention tool symmetrical structure, allows the present invention to be loaded onto in group, even if first plane 111 of each floating seat 11 is
When coplanar with second plane 112 of the floating seat of adjacent this 11, also can by each first connection unit 2 or each the
Two connection units 3 and fit together, as shown in Figure 3, that is to say, that the present invention is on first direction Z because not specific
Assembling orientation, so rotary movement can be removed from and have effects that ease of assembly.
In this way, floating platform 100 of the present invention just can change with situation demand using position, and become as such as Overwater walking
The water in road, water stage, the fishing platform of case net cultivation, the generation platform waterborne or installation detection instrument that install solar panels additional
Upper detecting platform etc..
Via above explanation, the advantages of floating platform 100 of the present invention, can be summarized as follows again:
One, each filling member 14 that the present invention passes through the Buoyance adjustment unit 12 is removably to be located in respective be somebody's turn to do
The design of accommodating area 135, reaches so that user can go to change the whole loading of each flotation gear 1 depending on its demand and whereby
The effect of adjusting buoyancy.
Two, the floating seat 11 of each flotation gear 1 of the invention has the design of a plurality of on-slip groove 115, can increase
The friction coefficient of first plane 111 and have effects that anti-skidding.
Three, present invention construction is easy, is easy to assembly.
It is a second embodiment of a flotation gear 1 of floating platform of the present invention, the second embodiment refering to Fig. 7
It is analogous to the first embodiment, the main difference of the second embodiment and the first embodiment is:
The floating seat 11 of the flotation gear 1 is decahedron, and the connecting seat 13 of each Buoyance adjustment unit 12 is distinguished
In hollow triangle column, in addition, the reinforcing member 41 is respectively at L fonts.Supplementary explanation, the second embodiment each
Reinforcing member 41 is in the design of L fonts, each reinforcing member 41 compared to the first embodiment is in the columnar design in hollow quadrangle
For, in its lighter in weight of the reinforcing member 41 of L fonts, but connect in the connecting seat 13 adjacent thereto with strengthening each connecting seat 13
For bond strength when conjunction, in bond strength of columnar 41 its two connecting seat 13 of reinforcing of reinforcing member in hollow quadrangle in engagement
Preferably.
In this way, the second embodiment can also reach the effect of being identical to the first embodiment and purpose.
It is a 3rd embodiment of floating platform 100 of the present invention refering to Fig. 8,9, which is analogous to this
The main difference of first embodiment, the 3rd embodiment and the first embodiment is:
The connection of the floating seat 11 and the Buoyance adjustment unit 12 of each flotation gear 1 of the floating platform 100
Seat 13 is integrally formed manufacture, and its material can use thermoplasticity material such as high density polyethylene (HDPE) (High Density
Polyethylene, abbreviation HDPE), but not limited to this, other such as polyvinyl chloride (Polyvinyl Chloride, abbreviation
PVC) or the polystyrene of impact resistance (High Impact Polystyrene, abbreviation HIPS) or intensity is high, toughness
Acrylonitrile-butadiene-styrene copolymer good, easily processed into type (Acrylonitrile Butadiene Styrene,
Abbreviation ABS) it can substitute.Supplementary explanation, the floating seat 11 of each flotation gear 1 are watched from overlooking, and shape can be with
It is octagon or dodecagon, as shown in Figure 9.Preferably, the floating seat 11 of each flotation gear 1 can also have a plurality of difference
The recessed groove 117 for being formed in each third plane 113 and each fourth plane 114, whereby to strengthen the floating seat 11
The structural strength of body.
In this way, the 3rd embodiment can also reach the effect of being identical to the first embodiment and purpose.
In conclusion each filling member 14 that the present invention passes through the Buoyance adjustment unit 12 is removably to be located in respectively
From the accommodating area 135 design, so that user can go to change the whole loading of each flotation gear 1 depending on its demand and borrow
This reaches the effect of adjustment buoyancy.In addition, floating platform 100 of the present invention is because be combined using multiple aforementioned flotation gears 1
It forms, so also having the function of adjustment buoyancy, the purpose of the present invention can be reached really.
Claims (10)
1. a kind of flotation gear can float on liquid level and include a floating seat, it is characterised in that:
A mutually orthogonal first direction, a second direction and a third direction are defined, which is included in the first party
The spaced third in the second direction is flat with second plane, two for upward spaced first plane
Face and two spaced fourth planes on the third direction;And
The flotation gear also includes a Buoyance adjustment unit, which prolongs along the first direction respectively including four
Stretch and respectively with this float seat connect so that the flotation gear appearance be in cuboid connecting seat, each connecting seat tool there are one with
The coplanar second surface of the coplanar first surface of first plane of the floating seat, second plane that seat is floated with this,
One connect the first surface with the second surface and floated with this coplanar third surface of the third plane of seat, one connect
The first surface, the second surface, third surface and floated with this seat coplanar the 4th surface of the fourth plane and one from
The first surface recessed accommodating area downward, the Buoyance adjustment unit further include four can removably be located in respectively it is described accommodating
The filling member in area.
2. flotation gear according to claim 1, it is characterised in that:The floating seat further include it is a plurality of it is recessed be formed in this first
The on-slip groove of plane.
3. flotation gear according to claim 1, it is characterised in that:There are one float being somebody's turn to do for seat with this for each filling member tool
The first coplanar filling surface of first plane.
4. flotation gear according to claim 1, it is characterised in that:Each filling member of the Buoyance adjustment unit is one
It is body formed.
5. flotation gear according to claim 1, it is characterised in that:Each filling member of the Buoyance adjustment unit be by
The mutually close storehouse of multiple rubbles is formed.
6. flotation gear according to claim 1, it is characterised in that:The connection of the floating seat and the Buoyance adjustment unit
Seat is integrally formed.
7. a kind of floating platform can float on liquid level, and include that multiple flotation gears and multiple first connection units, feature exist
In:
A mutually orthogonal first direction, a second direction and a third direction are defined, each flotation gear includes one
A floating seat and a Buoyance adjustment unit, the floating seat include spaced first plane and one in the first direction
A second plane, two spaced third plane and two interval settings on the third direction in the second direction
Fourth plane;The Buoyance adjustment unit, which extends respectively along the first direction including four and floats seat with this respectively, to be connect so that should
Flotation gear appearance is in the connecting seat of cuboid, and there are one first plane that seat is floated with this is coplanar for each connecting seat tool
First surface, a second surface coplanar with second plane of the floating seat, one connect the first surface and this second
Surface and the third surface coplanar with the third plane for floating seat, one connect the first surface, the second surface, third
Surface and coplanar the 4th surface of the fourth plane that seat is floated with this and one are recessed accommodating downward from the first surface
Area, the Buoyance adjustment unit further include four filling members that can be removably located in the accommodating area respectively;And
Each first connection unit be removedly connected two adjacent connecting seats along the second direction so that this second
The Joint of flotation gear two-by-two arranged on direction is together.
8. floating platform according to claim 7, it is characterised in that:Also include multiple second connection units, each the
Two connection units are to be removedly connected two adjacent connecting seats along the third direction, so as to arrange on the third direction
Flotation gear Joint is together two-by-two.
9. floating platform according to claim 8, it is characterised in that:Each connecting seat also has at least one perforation should
It third surface and is connected to the first mounting hole of the accommodating area and the 4th surface of at least one perforation and is connected to the of the accommodating area
Two mounting holes, for first mounting hole with second mounting hole adjacent to the first surface, each first connection unit includes one
Root can pass through the first bolt and one and the first bolt bolt of respective first mounting hole of two adjacent connecting seats
The first nut, each second connection unit include an energy pass through two adjacent connecting seats respective second mounting hole
The second bolt and one with the second nut of the second bolt bolt.
10. floating platform according to claim 9, it is characterised in that:Also the Buoyance adjustment unit is set to comprising one
Reinforcement unit, which includes at least four reinforcing members for being removedly located in the accommodating area respectively, each
There are one the first reinforcement wall on the third surface of each parallel connecting seat, each parallel connecting seats for reinforcing member tool
The second reinforcement wall on the 4th surface, first reinforced opening for running through the first reinforcement wall and being passed through for first bolt, and
One the second reinforced opening passed through through the second reinforcement wall and for second bolt.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201710153964.3A CN108622329A (en) | 2017-03-15 | 2017-03-15 | Flotation gear and floating platform |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201710153964.3A CN108622329A (en) | 2017-03-15 | 2017-03-15 | Flotation gear and floating platform |
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Publication Number | Publication Date |
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CN108622329A true CN108622329A (en) | 2018-10-09 |
Family
ID=63686509
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CN201710153964.3A Pending CN108622329A (en) | 2017-03-15 | 2017-03-15 | Flotation gear and floating platform |
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Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3824644A (en) * | 1971-08-19 | 1974-07-23 | H Stranzinger | Floating element, floating assembly, and connecting bolt |
US5251560A (en) * | 1992-06-11 | 1993-10-12 | Yamaha Hatsudoki Kabushiki Kaisha | Water-float coupling device |
CN2744597Y (en) * | 2004-11-23 | 2005-12-07 | 周森田 | Improved floating drum |
CN202208363U (en) * | 2011-08-04 | 2012-05-02 | 天津德赛海洋船舶工程技术有限公司 | Assembled floating body |
CN204527571U (en) * | 2014-12-03 | 2015-08-05 | 中国建筑第八工程局有限公司 | Buoyancy tank connection structure |
-
2017
- 2017-03-15 CN CN201710153964.3A patent/CN108622329A/en active Pending
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3824644A (en) * | 1971-08-19 | 1974-07-23 | H Stranzinger | Floating element, floating assembly, and connecting bolt |
US5251560A (en) * | 1992-06-11 | 1993-10-12 | Yamaha Hatsudoki Kabushiki Kaisha | Water-float coupling device |
CN2744597Y (en) * | 2004-11-23 | 2005-12-07 | 周森田 | Improved floating drum |
CN202208363U (en) * | 2011-08-04 | 2012-05-02 | 天津德赛海洋船舶工程技术有限公司 | Assembled floating body |
CN204527571U (en) * | 2014-12-03 | 2015-08-05 | 中国建筑第八工程局有限公司 | Buoyancy tank connection structure |
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Application publication date: 20181009 |