climber holding climbing rope

Introduction

Types

Single Ropes

Half Ropes

Twin Ropes

Confidence Ropes

Dry Treatment Ropes

Triple Rated Ropes

Rope Lengths

Technical Guide

More Guides

Introduction

It's important to choose the most appropriate climbing rope for the kind of climbing you're doing.

There is a huge variety of different ropes to choose from and a lot of questions to answer. This buying guide will help you find the answers.

Every climbing rope is tested and must meet certain standards. For example, on the impact force it transfers and the number of falls it will take.

Types

Climbing ropes stretch dynamically to absorb the energy generated by a falling climber.

climbing ropes

Single Ropes

Single ropes are suitable to be used on their own. They are strong and simple to use for both lead climber and belayer.

Single ropes are ideal when the route follows a fairly straight line. Choose one for sport climbing, indoor walls and short straight-up trad climbs.

Diameters now range from 8.7mm to 11mm. Thicker diameters will usually absorb more falls and are likely to last longer. They are also easier to use in a traditional belay plate thanks to increased levels of friction. Single ropes below 10mm are lighter weight, have less rope drag and are slicker to use. However, they should be belayed with caution.

climbing ropes
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Half Ropes

These Perform very differently when wet. Moisture shortens nylon fibres and can cause around 10% rope shrinkage.

This affects its dynamic properties. It won't stretch as much when taking a fall so the impact force will be higher. Ropes also swell which increases friction over rock and runners, raising the potential fall factor. The worst case scenario is when a wet rope freezes and becomes unmanageable.

For many people this won't be a problem – fewer people go climbing when it's raining! But we live in a wet country and it pays to be prepared. For winter climbing a dry treatment is essential.

Do be careful when choosing between dry treated ropes. A basic dry treatment might be a water repellent coating applied to the outside of a rope. This will wear off eventually (and perhaps sooner rather than later). The best dry treatments seal both the core and the sheath. Beal is one brand that treats every millimetre of filament and heats it to fix the treatment before their "Golden Dry" ropes are even made. This kind of treatment is more effective and lasts the lifetime of the rope.

Twin Ropes

Here the climber uses two very thin (<8mm) ropes which must both be clipped together to the same protection.

climbing ropes

Confidence Ropes

A fourth category is the walker's confidence rope.

This is a thin rope suitable for use by walk leaders when short-roping nervous members of the party over steep or rocky ground. It is not suitable for rock climbing.

climbing ropes
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Dry Treatment Ropes

These Perform very differently when wet. Moisture shortens nylon fibres and can cause around 10% rope shrinkage. This affects its dynamic properties.

It won't stretch as much when taking a fall so the impact force will be higher. Ropes also swell which increases friction over rock and runners, raising the potential fall factor. The worst case scenario is when a wet rope freezes and becomes unmanageable.

For many people this won't be a problem – fewer people go climbing when it's raining! But we live in a wet country and it pays to be prepared. For winter climbing a dry treatment is essential.

Do be careful when choosing between dry treated ropes. A basic dry treatment might be a water repellent coating applied to the outside of a rope. This will wear off eventually (and perhaps sooner rather than later). The best dry treatments seal both the core and the sheath. Beal is one brand that treats every millimetre of filament and heats it to fix the treatment before their "Golden Dry" ropes are even made. This kind of treatment is more effective and lasts the lifetime of the rope.

Triple Rated Ropes

A few special ropes are triple rated for use as a single, half or twin rope. These represent the cutting edge of technology.

climbing ropes

Rope Lengths

Choosing a climbing rope length

The length you choose depends on the kind of climbing you're doing.

Sport

Trad

climbing ropes

Technical Guide

The packaging of any rope includes stats such as Impact Force, Number of Falls, Sheath Percentage and Weight per Metre.

climbing ropes

What is a Climbing Rope's Fall Factor?

It helps to understand the concept of fall factors. This is a measure of the hardness of a fall. The scale runs from 0 to 2; the higher the fall factor, the harder the fall. The calculation is:  Distance fallen / Length of rope between belay plate and climber = Fall Factor As an example, imagine a climber gets to 4m above a belay, with no protection clipped. If they fall they will end up 4m below the belay, a total drop of 8m on 4m of rope.  8m distance / 4m rope = fall factor 2 If the same climber had clipped a bolt at 3m he would only fall a total of 2m with 4m of rope out. 2m distance / 4m rope = fall factor 0.5

The second scenario results in a much softer, safer fall. It's a good reason to place some protection as soon as possible after leaving a belay on multi-pitch routes. Factor 2 falls are a theoretical upper limit but in reality rope stretch, friction, and the body combine to absorb some energy and reduce the overall fall factor. Indoors the maximum theoretical fall factor is only 1 because it is impossible to fall past your belayer (who's stood on the floor).

Image of Impact force

Impact force

This is the force felt by a climber as the rope comes tight at the end of a fall. Ropes with a low Impact Force absorb more energy. They dynamically reduce the force you feel and therefore mitigating higher fall factors. A rope's specified impact force is calculated in a lab and varies according to the type of rope. Single ropes must have an impact force lower than 12kN holding the first factor 1.77 fall with a mass of 80kg. Double ropes must have an impact force lower than 8kN holding the first factor 1.77 fall with a mass of 55kg. Twin ropes must have an impact force lower than 12kN holding the first factor 1.77 fall with a mass of 80kg on two strands.

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Number of falls

The number of falls is a useful indicator of the potential lifespan of a climbing rope. The test requires successive factor 1.77 falls which are heavier than the vast majority of real world falls. A higher figure shows an ability to recover from successive falls, retaining its dynamic properties for longer.

Image of Sheath %

Sheath %

Modern climbing ropes are universally of 'Kernmantle' construction. Here there is a core ('Kern') of cables twisted together and covered by a tightly woven sheath ('mantle'). The core does the hard work and the sheath protects it. It is possible to vary the relative size of core and sheath to achieve different performance characteristics. For any given diameter of rope, those with a thicker sheath will be more durable. Those with a lower percentage of sheath will give better dynamic performance.

Image of Weight per metre

Weight per metre

Thinner ropes are lighter and so easier to climb with. A lower diameter means the rope rubs a thinner surface area against the rock or over karabiners. This means you will experience less rope drag. For a climb at the edge of your capabilities any weight saving could make all the difference to success or failure, or make any climb seem that bit easier. The downside is that a thin rope's lifespan might be shorter than a thicker rope.

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