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Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags
Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags
Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags
Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags
Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags
Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags
Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags
Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags

Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags

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≥1 Pieces
US $350
≥6 Pieces
US $320
≥10 Pieces
US $300
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Quick Details

Certificate:
CCS DNV ISO9001 2000 LR
Application:
usage for ship launching
Packing:
nude packing wooden platte packing
Usage:
for ship launching
Diameter:
from 100mm to 250mm
Length:
from 1000mm to 24000mm
Name:
Barge Tug Launching High Air-Press Ship Airbag

Quick Details

Place of Origin:
Shandong, China
Material:
Natural Rubber
Color:
Black
Certificate:
CCS DNV ISO9001 2000 LR
Application:
usage for ship launching
Packing:
nude packing wooden platte packing
Usage:
for ship launching
Diameter:
from 100mm to 250mm
Length:
from 1000mm to 24000mm
Name:
Barge Tug Launching High Air-Press Ship Airbag
Product Description

1. Floating Inflatable Rubber Balloon Dock Vessel Launching Marine Airbags

Ship Launching Airbag Introduction

6000 years ago, our ancestor begin to use log-rolling method to lift and move weights, which is still widely used in daily production and actual life nowadays. Inflatable Upgrading Airbag is designed with soft rubber to lift and carry weights, based on log-rolling method.


Inflatable Upgrading Airbag is an innovative product of Chinese own proprietary intellectual property rights. It has wide application like ship launching & upgrading, caisson lifting & moving, heavy weights lifting, underwater-engineering buoyancy aid. The Inflatable Upgrading Airbag is not limited to space and heavy machinery, which could efficiently shorten the construction period and save lots of funds.

Inflatable Upgrading Airbag Application

1 Ship Launching & Upgrading

With more than 20 years development in China, Inflatable Upgrading Airbag is proved to be the most reliable and stable technique for ship launching & upgrading. It is applicable from tons of flat board to ten thousand tons of huge ship. Meanwhile, Inflatable Upgrading Airbag is also widely acknowledged by foreign dockyards, shipyards, port/harbour construction companies. Ship launching & upgrading technique with Inflatable Upgrading Airbag is also highly promoted in the markets, such as America, Europe, Southeast Asia.

2 Weight lifting & moving

Marine rubber fend could be applied to caisson lifting, launching, moving and transporting in port constructing projects

3 Buoyancy Aid & Salvage

Because Inflatable Upgrading Airbag has buoyancy force and load-bearing capacity, it is also widely used in sunken vessel salvage and Buoyancy Aid

Technical Requirement

According to CB/T 3795--1996, marine rubber fender should meet the following requirements.

1. Dimensional Deviation

Diameter & Effective Length Deviation: ±2%

Total Length Deviation: ±4%

2. Amount of Elastic Deformation: diameter deformation amount ≤ 5% under 1.2 times working pressure.

3. Safety Factor: >4.5

4. Air Tightness: depressurization < 5% after 1hour inflation

5. Surface Quality: fairing line shape, no crack, no bubble, no double skin, no impurities, no distinct dirt and other apparent defect.

6. end part anti-explosion design

Product Advantage

1 High bearing capacity

Inflatable rubber airbag’s main technical requirement is regulated in CB/T 3795--1996 published by China State Shipbuilding Corporation.

Henger adopts new rubber formula and high-strength enhanced synthetic-tyre-cord layer, which improves the airbag’s bearing capacity two times more than CB/T 3795--1996 standard

2 High kneading-resistance capability

When the airbag is rolling under the ship bottom, it will suffer a “kneading force” from ship bottom and ground because of not uniform rolling speed, which could case problems like delamination, layer buckling, etc.

Henger improved the manufacturing technique and raw material formula to strengthen kneading-resistance capability of the airbag and avoid worse accident .

3 New anti-explosion design of end part

The possibility of air leakage in the joint area of metal part and rubber part is also increasing as working pressure of airbag is added. After using for times under high working pressure, the airbag would burst and metal part would hurt workers.

Henger invented new anti-explosion design of the airbag end part, increasing the bonding strength and air tightness between rubber body part and end metal part. Henger airbag is working very well under higher working pressure without potential safety hazard .

4 Optimizing structure configuration

Henger built a strength and Intensity Model to test compression performance, stress intensity and direction. After testing for many times, we got the stress changeing regularity and optimized structure configuration design. The new optimized airbag successfully passed blasting experiment and achieved good performance in practical use.

5 Good Abrasion-resistance performance and high ageing resistance

The airbag is working under bad and poor condition, suffering from long time sunlight exposure, seawater corrosion , impurities pollution, etc. The surface of airbag must be equipped with high capability of abrasion resistance, ageing resistance, corrosion resistance.

Henger airbag is made of natural rubber with special ingredients and unique manufacturing method. The finished airbag could working very well under above mentioned bad and poor working condition.

6 Higher flexibility and shock absorption capability

Henger airbag is manufactured with unique integral twining technique. The airbag wall thickness is uniform with secondary seam in overlap joint. When rolling in slope and uneven ship path, the flexible airbag is helpful to reduce structure stress and ship launching risk.

Technical Parameter

Technical Parameter

Series

Model

D(m)

Working Pressure(Mpa)

Working H(m)

Unit Bearing Capacity(ton/m)

0.4D

0.5D

0.6D

0.4D

0.5D

0.6D

S1

S10

0.8

0.20

0.32

0.40

0.48

15.1

12.6

10.0

1

0.16

0.40

0.50

0.60

15.1

12.6

10.0

1.2

0.14

0.48

0.60

0.72

15.8

13.2

10.6

1.5

0.11

0.60

0.75

0.90

15.5

13.0

10.4

S11

0.8

0.19

0.32

0.40

0.48

14.3

11.9

9.5

1

0.15

0.40

0.50

0.60

14.1

11.8

9.4

1.2

0.13

0.48

0.60

0.72

14.7

12.2

9.8

1.5

0.10

0.60

0.75

0.90

14.1

11.8

9.4

S12

0.8

0.24

0.32

0.40

0.48

18.1

15.1

12.1

1

0.19

0.40

0.50

0.60

17.9

14.9

11.9

1.2

0.16

0.48

0.60

0.72

18.1

15.1

12.1

1.5

0.13

0.60

0.75

0.90

18.4

15.3

12.2

1.8

0.10

0.72

0.90

1.08

17.0

14.1

11.3

S2

S20

1

0.24

0.40

0.50

0.60

22.6

18.8

15.1

1.2

0.20

0.48

0.60

0.72

22.6

18.8

15.1

1.5

0.16

0.60

0.75

0.90

22.6

18.8

15.1

1.8

0.13

0.72

0.90

1.08

22.0

18.4

14.7

2

0.12

0.80

1.00

1.20

22.6

18.8

15.1

S21

1

0.27

0.40

0.50

0.60

25.4

21.2

17.0

1.2

0.23

0.48

0.60

0.72

26.0

21.7

17.3

1.5

0.18

0.60

0.75

0.90

25.4

21.2

17.0

1.8

0.15

0.72

0.90

1.08

25.4

21.2

17.0

2

0.14

0.80

1.00

1.20

26.4

22.0

17.6

S22

1

0.31

0.40

0.50

0.60

29.2

24.3

19.5

1.2

0.26

0.48

0.60

0.72

29.4

24..5

19.6

1.5

0.20

0.60

0.75

0.90

28.3

23.6

18.8

1.8

0.17

0.72

0.90

1.08

28.8

24.0

19.2

2

0.15

0.80

1.00

1.20

28.3

23.6

18.8

2.5

0.12

1.00

1.25

1.50

28.3

23.6

18.8

S3

S30

1

0.35

0.40

0.50

0.60

33.0

27.5

22.0

1.2

0.29

0.48

0.60

0.72

32.8

27.3

21.9

1.5

0.23

0.60

0.75

0.90

32.5

27.1

21.7

1.8

0.19

0.72

0.90

1.08

32.2

26.8

21.5

2

0.17

0.80

1.00

1.20

32.0

26.7

21.4

2.5

0.14

1.00

1.25

1.50

33.0

27.5

22.0

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