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Categories | Ship Rubber Airbag |
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Brand Name: | Shunhang |
Model Number: | SH-SRA 9 |
Certification: | BV, CCS |
Place of Origin: | China |
MOQ: | 1PC |
Price: | USD2000/PC |
Payment Terms: | T/T, 30% deposit , 70% to be paid before shipment |
Supply Ability: | 150 to 200PCS/Month |
Delivery Time: | 5 to 20 workdays |
Packaging Details: | Nylon bag |
Product name: | Heavy Lifting Floating Type Ship Rubber Airbags |
Material: | Natural mixed rubber ; Rubber Dipped Tyre Cord Fabric |
Diameter: | Customized available |
Length: | Customized available |
Free Accessories: | Inflate tool and and repair tool |
Warranty: | 2 years not iclude improper use |
Technology: | Anti High Pressure, Anti Aging |
Color: | Black |
Company Info. |
QINGDAO SHUNHANG MARINE SUPPLIERS CO., LTD. |
Verified Supplier |
View Contact Details |
Product List |
Heavy Lifting Floating Type Ship Rubber Airbags
Product Introduction:
History of marine rubber airbags.
The airbags is invented in China in about 1986 by some experienced
engineers, to help launching small boats in rivers.
Comparing to the traditional slipway docking and launching method, the ship rubber airbags are much environmental, It's low cost and low risk. Unlike most other launching methods that are fixed infrastructures, ship docking airbag has relatively less limitations and can be used in versatile ways. It overcomes the disadvantage of fixed track docking in which capacity of shipbuilding and ship repairing is limited by the fixed infrastructures especially in small and medium-sized shipyards.Ship docking airbag can dock a ship at any seaside. Besides, the ship docking airbags need little maintenance and can be used repeatedly.The ship docking airbags provide support to the hull of the ship, its rolling motion take a vessel out of the water or launch into water. Thus it is obviously more safety than other options like sideways launching..
Over the past twenty years, the airbag ship launching system has made advancements in not only the airbag, but also the ship launching/landing technology. The first generation airbags used a rubber dipped canvas as a reinforcement layer to form the air chamber trunk. Two cone-shaped molds were then used to make the ends and everything was stuck together.
With today’s airbags, the whole-enlacing-technology used for manufacturing is done together. Rubber dipped synthetic-tyre-cords are used as the reinforcement layers with the trunk and two cone-shaped ends made at the same time. Everything is then-laced together, so the airbag doesn’t have any joints. Due to the development of rubber chemistry, the performance of the rubber employed in the latest airbags is highly enhanced and about 15 times that of the first generation bag with the same specifications.
The launching and landing technology has also developed. In the beginning, only small and flat bottom ships located on a fabricated slope could be launched with airbags. Now this technology is more flexible and less limited by the ship and landform. Now any type of ship with a DWT below 55,000 and in a place with enough launching space can be launched using airbags. The launching slope even can be sloped upward. It has really developed into a cutting edge technology for launching ships, and especially useful for some marine emergencies.
Specifications:
Some common sizes of our ship launching airbags, customized sizes are also available | |||
Diameter(m) | Effective Length(m) | Layer | Pressure(MPa) |
1.0 | 10 | 5~6 | 0.07~0.10 |
1.0 | 12 | 5~6 | 0.07~0.10 |
1.0 | 15 | 5~6 | 0.07~0.10 |
1.2 | 10 | 5~6 | 0.08~0.12 |
1.2 | 12 | 5~6 | 0.08~0.12 |
1.2 | 15 | 5~6 | 0.08~0.12 |
1.5 | 12 | 5~8 | 0.08~0.16 |
1.5 | 15 | 5~8 | 0.08~0.16 |
1.5 | 18 | 5~8 | 0.08~0.16 |
1.5 | 20 | 4~8 | 0.08~0.16 |
1.5 | 24 | 5~8 | 0.08~0.16 |
1.8 | 12 | 5~8 | 0.08~0.15 |
1.8 | 15 | 5~8 | 0.08~0.15 |
1.8 | 18 | 5~8 | 0.08~0.15 |
1.8 | 20 | 5~8 | 0.08~0.15 |
1.8 | 24 | 5~8 | 0.08~0.15 |
2.0 | 18 | 6~10 | 0.08~0.18 |
2.0 | 20 | 6~10 | 0.08~0.18 |
2.0 | 24 | 6~10 | 0.08~0.18 |
2.5 | 18 | 7~10 | 0.07~0.13 |
2.5 | 20 | 7~10 | 0.07~0.13 |
2.5 | 24 | 7~10 | 0.07~0.13 |
As a soft flexible body, airbag’s shape depends on various factors,
such as the shape of ship bottom, ramp shape, width of ship bottom,
length of airbag, position of airbag under the ship, etc.
Users should calculate the bearing capacity of airbags basing on
above factors, correct bearing capacity accordingly.
Caculation of performance of airbags
Formula: Bearing capacity F=PS
P=pressure in the airbag(MPa)
S=contacting area between ship bottom and airbag(M²)
S= π*(D1-D2)/2
Instruction of application in ship launching
Airbag is more and more widely applied in ship launching project.
The application method is ceaselessly improved. The airbag
application application method for common medium ship launching
ship launching is as below,
1. Based on calculation result, enough rolling airbags and lifting
airbags, towing machines and air compressors are prepared. Before
using, airbags must be inflated and tested without loading(the
testing pressure must be no less than 1.25MPa). In case of air
leakage, the airbag must be prepared before using.
2. The way for ship movement, including the way from shipbuilding
berth to ramp, must be cleaned and flattened. Sundries must be
removed from the way, especially sharp iron nails and stones, to
avoid piercing the airbag. The ramp should be long enough and wide
in water.
3. All the protruding sharp corners and burrs on casting like ”A”
bracket and stern post must be polished to be smooth.
4. Fasten the hull with the steel cable of winch.
5. Close the sea chest valves of ship, fix the rudder and
propeller.
6. There are many ways to remove all blocks and fill in the rolling
airbags. Here we recommend two methods as below. User may choose
one basing on the equipment conditions such as ship weight, amount
of the airbags, etc.
(A)For light ship, the bearing capacity of the airbag is large
enough to lift the ship away form the blocks and therefore blocks
can be removed directly and fill in the airbags.
(B)For heavy ship, lifting airbags can be adopted to lift the
bottom of stern. Before lifting, firstly specify the optimum
position of the front-pivot and lifting airbags. According to the
figure as below,
the closer the front pivot to the center of gravity the better,
however, it will result in too many blocks around of the
front-pivot, which means a lot of workload to remove the blocks
manually. Therefore, the position shall be determined reasonably
considering such elements as ship length, etc. If possible, the
lifting airbags shall be located in the stern. However, the
location is also subject to line shape of the stern as the lift of
the lifting airbag will not be enough if the bottom is too high to
the ground. In this condition, it would be better move forward.
Therefore, the optimum position of the front-pivot and lifting
airbags shall be decided after specific calculations as the case
varies from ship to ship.
Q*Lq>W*Lw
In the formula,
Q=lift of the lifting airbag
W=weight of ship
Lq= the distance from the lift center of the lifting airbag to the
front-pivot
Lw=the distance from the center of gravity of the ship to the
front-pivot
7. Firstly, remove all the blocks in the lifting airbags and the
ones around the front-pivot. Then fill the lifting airbags and
start inflating until the bottom separates slightly from the
blocks. Remove blocks one by one from middle to the stern. Whenever
blocks of the section are removed, fill in the rolling airbags
immediately in the planned position and inflate it appropriately.
Followed by continuous block removing until all blocks in the stern
are completely removed and the rolling airbags are filled in.
8. Remove blocks from the middle of the ship to the front-pivot and
fill in all rolling airbags in the front by modifying pressure of
the airbags filled in the stern or similar methods as mentioned
above. Of sake of safety, add removed blocks in appropriate number
between the filled rolling airbags at any time. The blocks will not
be removed until the rolling airbags can support the weight of the
ship. Besides, when removed blocks of the same section, it shall be
started from middle to both sides. When remove the outermost block,
workers shall carry out the work outside the fender.
9. Adjust pressure in the airbags so that the bottom can be lowered
to appropriate working height. Make sure that the bottom will not
touch the ground while moving the ship. For average small-size
ship, the working height could be chosen within the arrange of
0.2m-0.3m.
10. All airbags shall be pointed at the center of the ship and
perpendicular to the launching direction.
11. Start the traction winch to release steel cable slowly followed
by slow movement of the ship. When the forefront airbags located in
the front part separates from the bottom, it shall be placed under
the stern immediately and fill in the airbags according to the
arrangement space of the airbags defined in the calculations.
12. Repeat the above process to move the ship to waterside slowly.
When the airbags can’t be filled in, block the river and forbid any
ships to pass.
13. Evacuate personnel in the dangerous zone, Inform staff on the
ship to get ready. When conditions such as water depth and so on
are enough, cut cable or unhook to shat the ship can launch
quickly. If the river is too narrow to realize quick launching,
release the cable slowly by traction winch to launch the ship
slowly.
14. For large ships, it is necessary to install anti-slip device.
15. Collect the airbags.
Attention During Application
1. Working pressure must be controlled strictly, it is not allowed
to exceed the working pressure.
2. No sharp and protruding hard object on the contacting surface of
the airbags, to avoid the puncture on the skin of airbags.
3. Avoid the distortion along the length of airbag.
4. Empty inflating test must be performed if the airbags were not
used for a long time or after reparation. The pressure should be as
same as the testing pressure of our company. Inspectors must be at
least 3 meters away from the airbags. For repaired airbag which was
damaged in large scale, its working pressure should be lowered
reasonably. Besides, annual check should be conducted on airbags
which are used frequently.
5. Don’t drag the airbags on the ground.
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