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Carr Lane Lifting Eyes

Carr Lane Lifting Eyes are straightforward lifting tools designed for vertical lifting aligned with the threaded bolt, ideal for single-point or two-point lifting with a spreader bar. These lifting eyes are constructed from forged steel eyebolts, featuring an integrated shoulder for enhanced strength. Available in metric and imperial thread sizes ranging from ¼-20 to 1”-8.

  • Load Rating 0°: 500 - 9000 (lbs)
  • Load Rating 45°: 125 - 2250 (lbs)

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Part Number Material Number External Diameter Thread Internal Diameter Price Add to Parts List
CL-8-LE CL-8-LE 2-1/8 1/2-13 1-3/16 £9.67
£11.60 Inc. VAT
CL-4-LE CL-4-LE 1-3/16 1/4-20 3/4 £5.63
£6.76 Inc. VAT
CL-5-LE CL-5-LE 1-7/16 5/16-18 7/8 £6.77
£8.12 Inc. VAT
CL-6-LE CL-6-LE 1-11/16 3/8-16 1 £6.65
£7.98 Inc. VAT
CL-10-LE CL-10-LE 2-9/16 5/8-11 1-3/8 £14.00
£16.80 Inc. VAT
CL-12-LE CL-12-LE 2-13/16 3/4-10 1-1/2 £16.49
£19.79 Inc. VAT
CL-16-LE CL-16-LE 3-19/16 1"-8 1-3/4 £27.20
£32.64 Inc. VAT

Carr Lane Lifting Eyes

  • Load Rating 0°: 500 - 9000 (lbs)
  • Load Rating 45°: 125 - 2250 (lbs)

Lifting Eyes are forged steel eyebolts with an integral shoulder for greater strength. These simple, economical lifting devices are suitable for vertical lifting in-line with the threaded bolt, such as when lifting from a single point or from two points with a spreader bar. For lifting at an angle, Swivel Hoist Rings should be used instead. Manufactured and tested according to ASTM A489 and ANSI B18.15 specifications

Lifting at an Angle (45°)

  • For lifting at an angle or lifting rotating load, Swivel Hoist Rings should be used instead
  • Angular lifting should be avoided, because angular lifts significantly reduce rated capacity and any angular loads must be radial in the plane of the eye, never at an angle to that plane

Do not exceed rated load capacity. Maximum load rating applies to straight vertical lifting only. Lifting at an angle reduces load rating significantly – reduced load rating at 45° (this reduced rating should be used for any lift other than at 0° vertical).


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