7314-BEGAPH bearing: complete specifications & equivalents

The 7314-BEGAPH is a ISO 15 radial bearing sized 70 x 150 x 35 mm (bore x OD x width). Verify dimensions against the official catalog before ordering.

Bearing dimension schematic Front view shows outer diameter D and bore d; side section shows width B. D = 150 mm d = 70 B = 35 mm side section front view
Principal dimensions: bore d 70 mm, outer diameter D 150 mm, width B 35 mm. Schematic, not to scale.

Specification table

ParameterValue
Brand SKF
Bore diameter d 70 mm
Outer diameter D 150 mm
Width B 35 mm
Material GCr15
Seal / shield open
Internal clearance CN
Tolerance class P0
Cage polymer
Basic dynamic load rating C 127 kN
Basic static load rating C0 98 kN
Fatigue load limit Pu 3.9 kN
Reference speed (thermal) 5600 rpm
Limiting speed (mechanical) 5600 rpm
Operating temperature -40 to +120 °C
Mass 2650 g
Manufacturer designation 7314 BEGAPH
Standard ISO 15
Catalog version SKF PUB BU/P1 17000/1 EN (Oct 2018)
Last verified 2026-09-27

Source: catalog reference (SKF PUB BU/P1 17000/1 EN (Oct 2018)) · extracted 2026-09-27

Parameters extracted from the official SKF Rolling Bearings catalogue (SKF PUB BU/P1 17000/1 EN (Oct 2018)); SKF® and SKF Explorer® are trademarks of AB SKF, used here for identification only — mpnbase is not an authorized SKF distributor. Boundary dimensions are ISO 15 interchangeable; current production values may differ, verify at skf.com.

Dimensions in inches & 7300-series range

Bore d 2.756 in
Outer diameter D 5.906 in
Width B 1.378 in
ISO bore code 14
Radial section height (D−d)/2 40 mm
Smallest bore in 7300-series 10 mm
Largest outer diameter in 7300-series 420 mm
Width range across 7300-series 11–80 mm
Bore position in 7300-series (smallest first) 15 of 31
Bore above smallest 7300-series size 60 mm

Cross references & equivalents

Equivalent modelBrandMatch levelNote
7314-BEP SKF full
Dimensions and internal design equivalent — standard interchange.
Same 70×150×35 mm envelope with catalogue ratings within 10 %; 7314 BEP is the glass-fibre PA66 cage, open arrangement execution of this size — boundary dimensions interchangeable, execution differs.
7314-BECBP SKF full
Dimensions and internal design equivalent — standard interchange.
Same 70×150×35 mm envelope with catalogue ratings within 10 %; 7314 BECBP is the glass-fibre PA66 cage, open arrangement execution of this size — boundary dimensions interchangeable, execution differs.
7314-BECBPH SKF full
Dimensions and internal design equivalent — standard interchange.
Same 70×150×35 mm envelope with catalogue ratings within 10 %; 7314 BECBPH is the PEEK cage, open arrangement execution of this size — boundary dimensions interchangeable, execution differs.
7314-BECBY SKF full
Dimensions and internal design equivalent — standard interchange.
Same 70×150×35 mm envelope with catalogue ratings within 10 %; 7314 BECBY is the brass cage, open arrangement execution of this size — boundary dimensions interchangeable, execution differs.
7314-BECBM SKF full
Dimensions and internal design equivalent — standard interchange.
Same 70×150×35 mm envelope with catalogue ratings within 10 %; 7314 BECBM is the brass cage, open arrangement execution of this size — boundary dimensions interchangeable, execution differs.
7314-ACCBM SKF partial
Main dimensions match; tolerances, seals or internal clearance differ.
Same 70×150×35 mm envelope, but catalogue C/C0 differ between executions (127/98 kN vs 143/110 kN) — boundary dimensions match, not a load-rating equivalent.
QJ-314-N2MA SKF partial
Main dimensions match; tolerances, seals or internal clearance differ.
Same 70×150×35 mm envelope, but catalogue C/C0 differ between executions (127/98 kN vs 200/180 kN) — boundary dimensions match, not a load-rating equivalent.
QJ-314-MA SKF partial
Main dimensions match; tolerances, seals or internal clearance differ.
Same 70×150×35 mm envelope, but catalogue C/C0 differ between executions (127/98 kN vs 200/180 kN) — boundary dimensions match, not a load-rating equivalent.
QJ-314-N2PHAS SKF partial
Main dimensions match; tolerances, seals or internal clearance differ.
Same 70×150×35 mm envelope, but catalogue C/C0 differ between executions (127/98 kN vs 200/180 kN) — boundary dimensions match, not a load-rating equivalent.
7314 SKF full
Dimensions and internal design equivalent — standard interchange.
SKF SKF 7314 BEP is the basic 70×150×35 mm angular-contact page with ratings within 10 % of this execution — same boundary dimensions, verify execution details.

Interchange levels: full standard interchange · partial verify parameters · verify manual confirmation required. Links resolve to the equivalent model's specification page where available.

How the 7314-BEGAPH model number is decoded

7314 BEGAPH is SKF's 70 mm-bore single-row angular-contact ball bearing in the 7300 series, nominal 40° (B) contact angle, 70×150×35 mm to the ISO dimension plan. 40° contact angle (suffix B): the steep standard single-row angle, giving the highest axial capacity at the cost of speed, with a recommended load ratio Fa/Fr ≥ 1. E marks the optimized internal design with an enhanced ball complement and race geometry. glass-fibre reinforced PEEK cage, ball-centred (suffix PH), keeping the polymer-cage speed advantage well above the PA66 temperature range. GA marks universal matching with light factory preload for back-to-back or face-to-face sets — stiffer than CB clearance while generating less heat than GB/GC. BEGAPH combines light-preload (GA) universal matching with a PEEK ball-centred cage. Envelope 70×150×35 mm (2.756×5.906×1.378 in), 40.0 mm radial section height, C 127 kN, C0 98 kN, Pu 3.9 kN.reference speed 5,600 r/min (thermal) and limiting speed 5,600 r/min (mechanical), which coincide for this size, catalogue mass 2650 g. Load balance: C0 98 kN against C 127 kN gives a 0.77 ratio, typical of a steep-angle axial-oriented design; Pu 3.9 kN enters the SKF adjusted-life equation rather than the basic rating life. Speed planning distinguishes the two published ceilings mechanically: the cage and balls tolerate 5,600 r/min while thermal balance under catalogue load sets the 5,600 r/min reference; at dm ≈ 110.0 mm the corresponding dn is approximately 616k mm·r/min. Bore-to-OD planning: OD 150 over bore 70 is a 2.14× step for this size, and the 35 mm width gives a bore/width ratio of 2.00; use these ratios when housing space around the 70 mm shaft is the first constraint. Preload and cage note: BEGAPH arrives as a universally matchable unit with GA light preload already defined for back-to-back or face-to-face sets, combined with the glass-fibre PEEK ball-centred cage for high-speed duty; it replaces field preload adjustment, not the need for correct stand-off geometry.

Typical equipment & failure modes

Common applications

  • vibrating screens and shale shaker shafts
  • centrifuge and separator drives
  • heavy feed and take-up rolls

Known failure patterns

  • fretting at the ground set faces of a universal pair whose clamp torque relaxes
  • raceway spalling from axial overload beyond the single-direction thrust rating
  • raceway smearing under minimum-axial-load starvation at light load and high speed
  • PEEK cage wear plus preload drift when contaminated lubricant reaches the ball-centred pockets of a GA set
  • electrical pitting on VFD-driven shafts without grounding protection
  • raceway staining from water in the lubricant during idle periods

Selection pitfalls — read before you substitute

  • Keep the load ratio in the SKF design range: Fa/Fr ≥ 1 for this angle; below it the balls unload the contact ellipse and skid, which is why the catalogue insists on a minimum axial load (Fam ≈ A·(n·dm/1000)²) at high speed.
  • Keep the load ratio in the SKF design range: Fa/Fr ≥ 1 for this angle; below it the balls unload the contact ellipse and skid, which is why the catalogue insists on a minimum axial load (Fam ≈ A·(n·dm/1000)²) at high speed.
  • Mount by induction-heating the inner ring to max 120 °C — the PA66 cage sets the ceiling, not the steel; driving the bearing home through the outer ring or balls brinells the asymmetric raceway.
  • Keep the load ratio in the SKF design range: Fa/Fr ≥ 1 for this angle; below it the balls unload the contact ellipse and skid, which is why the catalogue insists on a minimum axial load (Fam ≈ A·(n·dm/1000)²) at high speed.
  • The steep 40° angle of 7314-BEGAPH favours thrust-heavy combined loads; for a predominantly radial high-speed position the 25° ACCBM execution of the same size is the alternative order number.
  • Universally matchable BEGAPH bearings arrive ready for set mounting, not preloaded sets: preload results from how the set is clamped, so follow the SKF stand-off-ring and nut-torque procedure.

Frequently asked questions

What are the dimensions and catalogue data of 7314-BEGAPH?

7314 BEGAPH measures 70 mm bore × 150 mm OD × 35 mm width (2.756 × 5.906 × 1.378 in), mass about 2650 g. SKF 17000 ratings: C 127 kN, C0 98 kN, Pu 3.9 kN, reference speed 5,600 r/min (thermal) and limiting speed 5,600 r/min (mechanical), which coincide for this size.

What does the BEGAPH suffix mean?

40° contact angle (suffix B): the steep standard single-row angle, giving the highest axial capacity at the cost of speed, with a recommended load ratio Fa/Fr ≥ 1. E marks the optimized internal design with an enhanced ball complement and race geometry. glass-fibre reinforced PEEK cage, ball-centred (suffix PH), keeping the polymer-cage speed advantage well above the PA66 temperature range. GA marks universal matching with light factory preload for back-to-back or face-to-face sets — stiffer than CB clearance while generating less heat than GB/GC. BEGAPH combines light-preload (GA) universal matching with a PEEK ball-centred cage.

What is the difference between BEP, BECBP and BECBM?

All share the 40° optimized geometry: BEP is the basic PA66-caged single bearing, BECBP adds CB universal matching (ground faces, Normal clearance) with the same PA66 cage, and BECBM is the universally matchable version with a machined brass cage for higher speed and temperature.

Which fits should I use for 7314-BEGAPH?

With a rotating inner ring use roughly k5 on the 70 mm shaft and H7 in the housing; give the stationary ring a slide fit for axial setting, and reverse the logic when the outer ring rotates.

Reviewed & verified by the MPN Base engineering desk against source catalog SKF PUB BU/P1 17000/1 EN (Oct 2018) on 2026-09-27. Read our editorial & correction policy.