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Oil and Gas Cables TEBAOFLEX

Greaseless Jacketed Wireline Cable

8.89 mm (.350″) over the jacket · 37.8 kN (8,500 lbf) · 1,500 V DC · 190 °C FEP/ETFE · runs without grease injection · 660 mm minimum sheave.

Product information
Brand
TEBAOFLEX
Product overview

A greaseless wireline cable is an armoured logging cable with a polymer jacket extruded down into the outer armour, so the cable seals against well pressure by itself instead of being sealed by a grease injection head. No grease head, no flow tubes to size, no grease to buy, haul, contain and dispose of.

The jacket fills the valleys between the outer armour members and is then formed to a smooth 8.89 mm (.350″) round surface. That smooth surface is doing three jobs at once: it seals, it drops the friction against tubing and casing on extended-reach and horizontal runs, and it keeps well fluid out of the armour interstices, which is where corrosion normally starts on a conventional cable.

Underneath it is a conventional wireline build — 15 AWG stranded copper, FEP/ETFE insulation, eleven inner armour wires under twelve outer members, rated 1,500 V DC and 37.8 kN (8,500 lbf).

The jacket is not free, and we would rather tell you the price than have you find it at the wellsite. It caps the cable at 190 °C where the same fluoropolymer insulation on a bare-armour cable runs to 260 °C, and it needs a 660 mm sheave against 457 mm for a comparable bare cable. Both numbers are on the Specifications tab, next to the comparison that makes the trade explicit.

Send the bottom-hole temperature, the sheave and drum you have, and whether the well is horizontal. Those decide whether greaseless is the right call here or whether a conventional monoconductor wireline cable is. Both sit at the downhole end of our oil and gas cable range.

Construction

Construction

Five layers. The fifth one is the whole point.

Greaseless jacketed wireline cable cross section showing polymer jacket filled into the outer armour
Greaseless cable construction with the jacket filled into the armour.
LayerStandard buildMixed-member build
Conductor15 AWG, 19 × 0.361 mm stranded copper — 1.803 mm
InsulationFEP/ETFE dual layer — 3.445 mm OD
Inner armour11 GIPS wires @ 1.156 mm — 5.56 mm OD
Outer armour12 members, each 3 × 0.508 mm strands — 7.67 mm OD6 members of 3 × 0.508 mm strands + 6 solid wires @ 1.016 mm — 7.67 mm OD
JacketExtruded polymer, filled into the armour and formed round — 8.89 mm OD

Why stranded outer armour members

Each outer member is itself a small three-wire strand rather than one solid wire. That gives the extruded jacket a deeply grooved surface to key into, so the polymer is mechanically locked rather than merely coating the cable — a coating would peel off at the first tight sheave. It also makes the outer layer more forgiving in bending.

The mixed-member option

The second build swaps half the stranded outer members for solid wires of the same diameter. The result has the same 7.67 mm armour OD, the same 8.89 mm finished OD and the same 37.8 kN breaking strength, but a slightly different stiffness and torque signature — 1.7 against 1.85 m/km/5kN of stretch. Pick the mixed build when the run is long and straight and stretch matters; pick the all-stranded build when the jacket is going to take a beating.

Applications

Applications

Greaseless cable exists because grease injection is expensive, slow to rig up, and a containment problem on every location where it is used. This cable is for the operations where that overhead is the binding constraint rather than the depth or the temperature.

Greaseless jacketed wireline cable at a horizontal well intervention location
Jacketed cable at a horizontal well intervention location.
Where it earns its keepWhy
Cased-hole horizontal completionsSmooth jacket cuts drag through the build section and the lateral
Extended-reach wellsLower surface friction means the toolstring reaches further before it stalls
Environmentally sensitive locationsNo petroleum grease to contain, recover or dispose of
High-cycle intervention workFaster rig-up and faster running speeds; no grease head to make up
Offshore and platform workDeck space and waste handling both go down

Where it is the wrong cable

Anywhere the bottom-hole temperature is over 190 °C — the jacket, not the insulation, is the limit. Anywhere the winch or the wellhead sheave is under 660 mm. And anywhere you need the full 50 kN of a comparable bare-armour cable, because the jacket does not add strength.

Specifications

Specifications

PropertyStandard buildMixed-member build
Outside diameter8.89 mm, +0.076 / −0.051 mm
Breaking strength (ends fixed)37.8 kN (8,500 lbf)
Maximum working load18.9 kN (4,250 lbf)
Individual wire breaking strength, inner / outer2.39 / 1.30 kN2.39 / 1.65 · 1.30 kN
Voltage rating1,500 V DC
Conductor Rdc at 20 °C9.2 Ω/km
Armour Rdc at 20 °C11.2 Ω/km
Minimum insulation resistance457 MΩ·km
Capacitance, conductor to armour184 pF/m
Temperature rating190 °C (375 °F)
Minimum sheave diameter660 mm
Stretch coefficient1.85 m/km/5kN1.70 m/km/5kN
Weight in air245 kg/km252 kg/km
Weight in water180 kg/km188 kg/km

What the jacket costs you

Against a comparable bare-armour cable of similar diameter, greaseless trades strength, temperature and sheave size for the removal of grease injection. Here is the trade, without the marketing:

This greaseless cableBare-armour 5/16″The difference
Outside diameter8.89 mm8.179 mm+9 % — check your pressure control
Breaking strength37.8 kN50.3 kN−25 %
Temperature rating190 °C260 °C−70 °C
Minimum sheave660 mm457 mm+44 %
Grease injectionNot requiredRequiredThe reason you are here

Depth versus payload

Working load less the weight of cable in the hole, at the heavier of the two builds:

DepthCable weight in waterPayload remaining
3,000 m564 kg1,364 kg
5,000 m940 kg988 kg
7,000 m1,316 kg612 kg
Standards

Standards and operating notes

Why the jacket sets the temperature, not the insulation

The FEP/ETFE insulation inside this cable is a 260 °C material, but the finished cable is rated 190 °C. The jacket polymer is the weakest link: above its limit it softens, loses its grip on the armour strands, and can extrude or peel under the pressure gradient at the stuffing box — which is precisely the seal the whole design depends on. Rating the cable to the insulation would be technically true and operationally dishonest, so we rate it to the jacket.

Rapid gas decompression

Any jacketed cable coming out of a gas well fast has gas dissolved in the polymer. If the pressure drops faster than the gas can diffuse out, the jacket blisters. Controlling pull-out speed from high-pressure gas wells matters more on a jacketed cable than on a bare one — ask us for the recommended rate for your pressure before the first run rather than after.

Standards

StandardRelevance
NACE MR0175 / ISO 15156Whether the armour under the jacket needs to be alloy rather than galvanised steel
API RP 9B (analogous)Sheave ratio and inspection practice
IEC 60228Conductor resistance class

Frequently asked

Does greaseless mean no pressure control equipment at all?

No. You still run a stuffing box or pack-off. What you drop is the grease injection head, the flow tubes sized to the cable, the grease pump and the grease itself. The seal is made against the smooth jacket instead of against a column of pressurised grease.

Can the jacket be repaired in the field?

Minor jacket damage can be dressed, but a jacket breach means well fluid is now inside the armour and the cable is behaving like a conventional cable at that point. Treat a breach as a reason to cut back, not to carry on.

How does it compare on cost?

The cable costs more per metre than bare armour. Whether it is cheaper overall depends on how many runs you make and what grease, disposal and rig-up time cost you per run. On a high-cycle intervention programme the crossover comes quickly; on two runs a year it does not.

Is it available in other diameters?

This build is .350″. Tell us the diameter and strength you need and we will quote the closest jacketed build — or tell you honestly that a bare-armour cable is the better answer for that size.

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