TIMM FLEX 8 TAIL 90MM 11M WHITE 2X1,8M EYE
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- Product number:
Timm Flex 8 Tail is an 8-strand mooring tail with high elongation properties, specially designed to withstand tough swells, strong winds and currents.
This product supersedes product no: L412164
Our specially designed mooring tails (pendants) are made to withstand tough swells, strong winds and currents. Timm Flex Tails have very high elongation properties, making them ideal for mooring in the most challenging of sea terminals.
Mooring tails are used to protect the mooring lines and to allow ships to sway and move with the environment.
Our flex tails have a high abrasion and UV resistance - providing a durable mooringsolution and acting as an absorber for sudden energy changes.
OCIMF recommends 22m polyamide tails as an exposed berth standard - for longer wave environments.
- Very high elongation
- 100% high tenacity PA fiber
- Suitable for challenging sea terminal conditions
- Protected eyes
- Smooth handling surface
- Excellent abrasion resistance
- Excellent UV resistance
|Invent Hazard Material (IMO/EU) classification||NA|
|Material type and grade||PA 6 (Nylon)|
|Density [kg/m3]||Approx. 1.14|
|Elongation [%]||40% at break|
|Line Construction||8-strand braided|
|Line Linear Density (LLD)|
|Line Tenacity (LT) Maximum||32,14 t/kg/m|
|Line Tenacity (LT) Maximum (kN/g/m)||0,32 kN/g/m|
|Line Tenacity (LT) Measured|
|Load Bearing Linear Density (LBLD)|
|NSBF (if requested)||N/A|
|Splice type and design||Tuck (2S-2Z)x5|
|Average Immediate Strain (e) %LDBF:10||4,9|
|Average Immediate Strain (e) %LDBF:20||8,1|
|Average Immediate Strain (e) %LDBF:30||10,7|
|Average Immediate Strain (e) %LDBF:40||13,2|
|Average Immediate Strain (e) %LDBF:50||15,5|
|Line Design Break Force (LDBF)||1425 kN|
|Spliced MBL DRY [kN]||1619|
|Spliced MBL/LDBF [kN]||1425|
|Unspliced MBL [kN]||1799|
Product is made according to ISO 1140:2012. Tested breaking load is according to ISO 2307:2010 and is measured without eye splices.
- Manufactured acc. to => ISO 1140:2012, ISO 9554:2010
- Tested acc. to => ISO 2307:2010, CI 1500A, DNVGL-CP-0100