Reference

Sling guide

The four things that decide whether a lift is safe: the hitch you use, the angle you pull at, the sling you picked, and whether it should still be in service. Written to ASME B30.9 and OSHA 1910.184.

01

Hitches and sling angles

A sling's tag gives you three numbers because the same sling carries a different load depending on how you rig it. Everything below is a multiplier on the sling's rated vertical capacity.

The three hitches

1.0×
Vertical

Sling straight up and down between the hook and the load. This is the baseline, the number everything else is derived from.

0.75×
Choker

Sling passed through its own eye and pulled tight. The bend at the choke point costs you capacity, about 25% on wire rope. Chain and synthetic are usually rated at 0.80×. That factor assumes an angle of choke over 120°. A tighter choke derates further; see the table below.

2.0×
Basket

Sling cradles the load with both eyes on the hook. Two legs of support, so twice the vertical rating, but only when both legs run straight up. The moment they splay, the angle table below applies.

When the choke is tighter than 120°

The choker factor above is the best case. The sharper the angle the sling doubles back through, the less of that capacity you keep. For wire rope slings ASME B30.9 gives the reduction directly.

Wire rope: angle of choke vs. choker rated load
Angle of chokePercent of choker rated load
Over 120°100%
90–120°87%
60–89°74%
30–59°62%
0–29°49%

For alloy chain, ASME doesn't publish a table. Rated loads below a 120° choke have to come from the sling manufacturer or a qualified person. Ask us and we'll work it out for the sling you have.

Sling angle is not a detail

Measure from horizontal. The shallower the angle, the more of the load turns into tension trying to pull the sling apart sideways, and it gets bad faster than most people expect.

Angle from horizontal: effect on a single leg
AngleCapacity factorTension per leg on a 10,000 lb load, 2 legs
90°1.0005,000 lb
60°0.8665,774 lb
45°0.7077,071 lb
30°0.50010,000 lb
At 30°, each leg carries the entire load. Two slings, and every one of them is doing the work of one. ASME B30.9 is explicit about what happens below that: slings shall not be used at an angle of loading under 30° except as recommended by the sling manufacturer or a qualified person. In practice that means longer slings or a spreader bar, not a shallower angle.

Multiple legs

Two things get confused here, and they pull in opposite directions.

What the sling is rated at. A three-leg wire rope bridle carries a higher rating than a two-leg, and a four-leg higher still, so go by the tag. Alloy chain is different: ASME B30.9 caps a quadruple-leg sling at the rated load of a triple-leg, so on chain a four-leg buys you no capacity over a three-leg.

What the load actually does. On a rigid load you cannot assume more than two legs are sharing it evenly. Two legs take the weight and the others steady it, which is why the conservative practice is to calculate a rigid pick on two legs regardless of how many you've hooked up.

Our calculators run these numbers for you, and the sling builder shows rated capacity for every configuration as you spec it.

02

Choosing a sling

Most of the time the load tells you which one to reach for. Here is the short version of what each material is good at, and what will ruin it.

Wire rope

Heavy, dirty, general-purpose lifting

  • Strong for its weight and price; the default for most industrial work
  • Handles heat better than synthetic, but only with an independent wire rope core; fiber core tops out at 180°F
  • Broken wires give visible warning before failure

Watch for: kinking, crushing on sharp corners, and birdcaging. A kink is permanent damage. It does not straighten out.

Alloy chain

Rough service, heat, repeated abuse

  • The most damage-tolerant option; survives what would scrap a wire rope sling
  • Adjustable in length with a grab hook or GrabIQ-type shortener
  • Good to about 400°F with derating above that

Watch for: stretched links, gouges, and heat. Grade 80 and Grade 100 only. Never use proof coil or transport chain for overhead lifting.

Synthetic web

Finished surfaces, painted or soft loads

  • Won't mar, scratch or dent what it's lifting
  • Light, conforms to the load, easy to handle one-handed
  • Wide bearing surface spreads the grip

Watch for: cuts, abrasion and chemicals. Always pad sharp edges. A web sling cuts far more easily than it stretches.

Round sling

Awkward shapes, tight chokes

  • Conforms around irregular loads better than anything else
  • Load-bearing core is protected inside a woven cover
  • Colour-coded by capacity for fast identification

Watch for: anything that opens the cover. Once the core yarns are exposed you cannot judge what's left. The sling is done.

Whatever the material, pad the edges. A corner that looks harmless will cut a web sling, crush a wire rope and gouge a chain link. Edge protection is the cheapest part of any lift.
03

Inspection and removal from service

ASME B30.9 sets three levels of inspection. Only one of them creates paperwork, and all three are your responsibility as the user.

On receipt

Initial

Every new, altered, modified or repaired sling, before it's used. Confirms it's what you ordered, correctly tagged and undamaged. No record required, but note this fires again after any repair, not just on delivery.

Every shift

Frequent

Each day or shift the sling is used, by the user or another competent person the employer designates. Satisfies OSHA's "each day before being used" rule. Also required again during use wherever service conditions warrant it. No record required.

Yearly or tighter

Periodic

Annually in normal service; monthly to quarterly in severe service; for special service, as a qualified person recommends. Written record required: sling ID, service class, date, findings, who inspected, and what happened to it.

Pull it from service if…

These are removal criteria, not judgement calls. If a sling meets any of them it comes out of service. There is no "watch it for a while".

SlingRemove from service when you find
Wire rope 10 randomly distributed broken wires in one rope lay, or 5 broken wires in one strand in one rope lay. Cable-laid: 20 broken wires per lay. Braided under 8 parts: 20 per braid; 8 parts or more: 40 per braid. Also: severe localised abrasion or scraping, kinking, crushing, birdcaging, heat damage, corrosion, or cracked, deformed or worn end attachments.
Alloy chain Cracks or breaks. Excessive wear, nicks or gouges. Stretched links or fittings. Bent, twisted or otherwise deformed links or fittings. Evidence of heat damage. Excessive pitting or corrosion. Links or components that no longer hinge freely.
Synthetic web Acid or caustic burns. Melting or charring anywhere on the sling. Holes, tears, cuts or snags. Broken or worn stitching in load-bearing splices. Excessive abrasive wear. Knots in any part of the sling. Discoloration suggesting chemical or UV damage.
Round sling Acid or caustic burns. Evidence of heat damage. Holes, tears, cuts, abrasive wear or snags that expose the core yarns. Broken or damaged core yarns. Weld splatter that exposes the core. Knots anywhere except at the termination.
Every sling A missing or illegible identification tag. No tag, no lift, regardless of what the sling looks like. We can re-tag and re-certify slings we fabricated.
A sling removed from service should be destroyed, not set aside. Cut the eyes off. A condemned sling leaning in the corner of a shop gets used by someone who doesn't know why it's there.
04

Tags, storage and care

What the tag has to say

Every sling we fabricate leaves here tagged. The tag is a legal requirement, not a courtesy, and it's the first thing an inspector looks for.

The two sling types we fabricate have different requirements, and chain's are stricter.

Wire rope slingsAlloy chain slings
Manufacturer's name or trademark
Rated load for at least one hitch type, and the angle it's based on
Diameter or size
Number of legs, if more than one
Manufacturer's name or trademark
Rated load, and the angle it's based on
Nominal chain size
Number of legs
Grade
Length (reach)
Individual sling identification: a serial number tying it to its test records

Storage

  • Hang slings on a rack. Piled on the floor they get run over, kinked and contaminated.
  • Keep synthetics out of sunlight. UV degrades the fiber with no outward sign until it's serious.
  • Dry chain and wire rope before storing; standing moisture starts pitting.
  • Store away from welding, chemicals and anything that drips.

What shortens a sling's life fastest

  • Shock loading. Jerking a load puts forces on the sling far beyond its rating and is the single most common cause of failure.
  • Unprotected edges. The most avoidable damage there is.
  • Dragging loads. Slings are for lifting. Pulling sideways loads them in directions they aren't rated for.
  • Heat. The limits are lower than people assume, and they differ by material:
    • Synthetic web and round slings: OSHA sets 180°F for nylon and polyester (200°F for polypropylene); ASME allows 194°F. Use the OSHA number. Low limit is −40°F.
    • Fiber core wire rope: 180°F. OSHA requires permanent removal from service if it's been above 200°F.
    • IWRC wire rope: talk to the manufacturer above 400°F or below −40°F.
    • Alloy chain: reduced ratings above 400°F; permanent removal above 1,000°F.
  • Side loading hooks and shackles. Hardware is rated in line with the pull, not across it.

Not sure what you need?

Send us the load and the pick points. We build wire rope and chain slings in Hatfield, proof test them here, and tag them before they go out.

Talk to us

Removal criteria and inspection intervals on this page follow ASME B30.9 Slings and OSHA 29 CFR 1910.184. This guide is a summary for reference and does not replace the standards themselves or the training your riggers need.