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You are here: HomeSearch for "Armoured GLAND"

Search Results for: Armoured GLAND

Earthing Requirements of Cable Glands Used on SWA Cables

May 11, 2013 by admin

When cable glands are used to terminate SWA (Steel Wire Armour) cables, the gland must be able to provide earth continuity from the termination of the armour through to the body of the equipment, either via the enclosure itself (if it is metallic), via a gland plate or through an external earth path with the use of an earth tag.

Direct To Ground Earthing

Typically when earthing an armoured cable, a number of direct-to-ground external earth link cables are used and connected to the cable gland through an earth tag. As a minimum requirement, the cable will be earthed at least one of its two ends, meaning in the event of a fault or short-circuit the most direct route to ground will be achieved.

‘Daisy Chain’ Earthing

If multiple cable entries are required in a non-metallic equipment enclosures, a ‘daisy-chain’ earthing method can be adopted. Wherein an external earth cable is connected to an earth tag within each cable gland, with at least one earth tag used to connect the earthing cable directly to ground, typically via an earth bar.

Earth Tags or CIEL Glands?

The above methods of earthing SWA cables via cable glands, can be achieved by adding the relevant aluminium or brass slip-on earth tags to the required gland assembly, this method would be suitable where lower levels of short-circuit protection are required. If higher levels of short-circuit protection are needed, in Medium Voltage installations for example, cable glands with a heavy duty Cast Integral Earth Electrical Lugs can be supplied. These CWCIEL glands are suitable for MV installations between 11kV – 33kV and are also available in both brass and aluminium variants.

If you found this article helpful or interesting, please share it!

Filed Under: Knowledge

A Trusted Supplier Of Cable Termination Products

A Trusted Supplier Of Cable Termination Products

Cable Termination Products

At ETS Cable Components we have a wide range of cable termination products to suit both copper and aluminium conductors which are from some of the most renowned brands in the world.

Among our catalogue you’ll find brass and aluminium cable glands from CMP Products and Hawke International, and an extensive range of LV-MV crimp lugs, mechanical connectors and terminals from Cembre and Pfisterer SICON.

Whether you’re looking for pre-insulated terminals or Bi-metallic cable terminals suitable for applications up to 36kV, our team are always happy to find what you’re looking for.

Our Pre-Insulated PVC Vinyl Insulated Cable Terminals are available in large numbers and come in a variety of styles, including cord-end, ring, fork and pin terminals.

Meanwhile, our brass and aluminium cable glands are designed to suit a wide range of applications, including indoor and outdoor installations.

Among our range are a collection of submersible and explosion-proof CMP cable glands which are ideal for terminations in the toughest possible environments, such as our Triton Brass Submersible Flameproof (ATEX) Cable Glands which are supplied with a universal reversible cone for use with all armoured cables.

For more information on our cable termination products, simply get in touch today on +44 020 8405 6789 or email sales@etscablecomponents.com

New Selection Guides And Cable Data Available Online

May 18, 2016 by admin

Want to know what product to terminate a 33kV cable with, or find out the under armour diameter of a 120mm 4 core cable?

ETS Cable Components now offer a range of cable data and relevant accessory selector guides on their new website.

Available as downloadable PDF’s, the cable data provides detailed information including: weight, bending radius, and diameter info for single / multi core armoured and unarmoured cables from 450/750v up to 33kV.

In addition, ETS also supply in-depth cable accessory selector charts to help you choose the right accessory for installing and terminating a range of low and medium voltage power cables. These can either assist at estimating stage or for installation design purposes, where further product data sheets can also be downloaded.

Nick Timms, ETS Cable Components Technical Manager, said:

“We at ETS have always prided ourselves on providing easily accessible and legible products data sheets and these cable accessories guides will provide invaluable information to clients, enabling them to select the correct gland or cleat for their specific application with ease.

“Although every effort has made to ensure accuracy, with so many varied cable sources in the marketplace, it is always preferable to obtain accurate dimensions of the cable/s being used with a particular gland or cleat”.

Customers wanting a quick answer on an accessory selection can also call one of the ETS product specialists on 0208 405 6789.

**ETS Cable Components always recommends that data is taken from the actual cable being used on site.

Filed Under: Company, Knowledge Tagged With: Cable accessories selection guides, Cable data, Selection Guides

Nexans Remote Armour Earthing Kits

October 10, 2014 by

Nexans remote armour earth kit, designed for terminating armour wires (SWA and AWA) in instances where glands are not desired, e.g. when installing armoured cables onto Over-Head Line (pole mounting) terminations.

Each armour earthing kit contains an aluminium under armour support ring, stainless steel worm drive clip, mastic tape, tinned copper braid and heat shrink tubing for environmental protection.

Cable Protection For Hazardous Areas Using Flexible Conduit

October 23, 2013 by admin

Flexible conduit systems can provide a proven safe and cost effective protection solution for cabling installed in explosive atmospheres. Better safe than sorry is a sensible approach, but make sure that you are not fooled into unnecessarily expensive options warns Tim Creedon, Sales and Marketing Director for Flexicon.

Explosive areas exist where a flammable mixture of gas and air or dust and air exist in large enough quantities and for long enough. If an ignition source exists then there is a real danger of an explosion.

Naturally we all think of the oil and gas industry in such situations, but there are a surprising number of other industries where explosive atmospheres could exist such as in building and construction, transport, marine and defence, food processing, water treatment and power generation to name but a few.

Wherever possible it is important to minimise the risk of explosive mixtures forming and/or prevent the risk of ignition. Where this is impossible or impractical then you need to consider providing protection.

Any electrical installation in such an environment is a potential source of ignition. The degree of protection any equipment requires depends to a large extent on the risk of an explosion occurring in a given area.

To understand the level or protection required, you must understand the nature of flammable mixtures and ignition sources and also how different zones are classified depending on the level of risk.

Gases are classified into 3 groups with group A being the least explosive and group C being the most. Equipment classification is from T1 to T6 according to the maximum allowed temperature resulting from the ignition temperatures of the gas/air mix. It is important to remember that certain fine dusts dispersed in the air can also be explosive.

Hazardous Zones

Hazards Risk Zone
Gases, Vapours and Mist Continuous or long term frequent 0
Gases, Vapours and Mist Occasional 1
Gases, Vapours and Mist Occasional, then only briefly 2
Dusts Continuous or long term or frequent 20
Dusts Occasional 21
Dusts Occasional, then only briefly 22

The above table shows the zone designations, which are divided first into the hazardous areas for gases, vapours and mists and secondly into the hazardous areas for dusts. It also shows their risk categories, i.e according to the probability of a risk being present.

Assuming that the electrical equipment is correctly specified, it is important not to overlook any cabling that connects into it.

Until recently those specifying cables for such areas had to select from the products offered by various cable manufacturers. In addition each individual cable needed a flameproof gland, which added to both the cost and the time needed for installation.

Such cables could also be difficult to terminate and, if a number need terminating in an enclosure, could necessitate the specification of a larger enclosure.

The development of flameproof ATEX and IECEx approved barrier glands for flexible conduit means that you can use liquid tight conduit systems in hazardous areas without compromising safety.

There are a number of ways of classifying protection techniques used to address hazardous zones. Most glands are classified as Ex d or Ex e.

An Ex d classified gland forms a flameproof or explosion proof barrier – they are strong enough to contain any explosion or fire that may occur. An Ex e classification is defined as ‘increased safety’.

If something is classified as Ex d then it can also be used for Ex e applications in Zone 1 and Zone 2 areas for gases and Zones 21 and 22 where explosive dust may be present. In most cases such glands do not add to the temperature of the enclosure into which it terminates, so it can be used with all temperature classes.

By using Ex d glands with liquid tight conduit, you can group several cables together into one system. The conduit provides protection for all of these cables and, if correctly selected, offers all the necessary mechanical protection for a given application.

So, for example, by using steel cored armoured metallic conduit you might be able to use standard cables instead of more expensive SWA specialist cables. In this example one braided conduit effectively takes the place of several more expensive braided cables. It also means that only one flameproof barrier gland is needed, rather than several.

This single termination, instead of the multiple terminations that would be needed with individual cables, limits the risk of the enclosure integrity being compromised since there is only one point of entry. Using a flexible conduit system also provides additional mechanical protection for the cables.

It is worth pointing out at this stage that it is the flameproof gland that is rated at Ex d so that if there were an explosion within the electrical equipment enclosure it would be contained. Some conduit manufacturers have in the past muddied the waters and inferred that the conduit is also classified as Ex d and been able to charge a premium.

The role of flexible conduit in any application is to protect cabling so you should take care in its specification. This is even more important in hazardous areas since you want the installation to remain safe throughout its lifetime, not just once the system is installed.

Fortunately when you specify the correct barrier gland, you can effectively use a liquid tight flexible conduit for the vast majority of applications.

There are a number of different types of liquid tight flexible conduit that are suitable for both indoor and outdoor applications.

With this in mind the specifier needs to conduct a thorough risk assessment of all of the hazards potentially faced by the conduit in addition to the explosive atmosphere.

From this risk assessment they can then accurately specify the most appropriate liquid tight conduit for the project. As an illustration Flexicon has eight different grades of liquid tight conduit which, between them, would suit most applications.

Other environmental factors

If conduit is left in an exposed situation, it could be crushed or there is a chance that something could be dropped onto it. For such applications you should specify conduit with an adequate compression and/or impact strength.

Other factors that you may need to consider when selecting the correct conduit might include: extremes of temperature, EMC screening requirements, moving equipment, abrasion, resistance to chemicals or corrosion and UV resistance for external installations.

Note this list is not comprehensive, hence the need for a full risk assessment. If you have any concerns then most manufacturers should be able to advise.

A great deal of attention has been paid to hazardous area equipment. Do not forget cable protection and electrical lugs.

For more information on our range of Flexicon flexible conduits, please contact our Sales Team.

If you found this article helpful or interesting, please share it!

Filed Under: Knowledge

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