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Sprue Bushing Parameters Explained: SR, Sprue Port, Flange & Taper

Key Takeaway: Five parameters define a sprue bushing: SR (nozzle touch radius), P (sprue port diameter), A (taper angle), D (shaft diameter), and flange thickness. Getting SR and P wrong causes resin leakage; getting flange thickness wrong causes nozzle alignment problems.

Parameter Reference Table

ParameterSymbolUnitWhat It ControlsSizing Rule
Nozzle Touch RadiusSRmmNozzle-to-bushing seal surfaceBushing SR = Nozzle SR + 0.5~1.0 mm
Sprue Port DiameterPmmResin entry orifice sizeP = Nozzle orifice + 0.5~1.0 mm
Taper AngleA°Sprue release and flow resistance1–3° (wider for viscous resins)
Shaft DiameterDmmBushing-to-mold bore fitMatch mold bore dimension
Flange ThicknessmmMounting depth in mold plateMatch locating ring counterbore depth (8/10/15/20 mm)

SR (Nozzle Touch Radius) — The Most Critical Parameter

SR is the spherical radius of the concave surface where the machine nozzle contacts the sprue bushing. This is the most important parameter because an incorrect SR causes resin leakage at every shot.

  • Rule: Sprue bushing SR must be larger than nozzle SR by 0.5–1.0 mm.
  • Why: If SR is too small, the nozzle tip protrudes past the bushing surface, creating a gap. If SR is too large, the contact area shrinks to a small ring, increasing contact pressure and wear.
  • Common values: SR 11, SR 15, SR 20 — corresponding to standard injection machine nozzle sizes.

P (Sprue Port Diameter) — Orifice Sizing

P is the internal diameter at the nozzle end of the sprue bushing — the smallest point of the sprue channel.

  • Rule: P must be 0.5–1.0 mm larger than the nozzle orifice diameter.
  • Too small: Resin hangs up at the transition, causing drool and cold slug problems.
  • Too large: Higher material waste (thicker sprue) and longer cooling time.
  • Common values: P 2.5, P 3.5, P 4.5 mm.

A (Taper Angle) — Sprue Release Control

The internal taper angle controls how easily the solidified sprue pulls out of the bushing during mold opening.

  • Narrow taper (1–1.5°): Less material waste, but higher risk of sprue sticking. Use for low-viscosity resins (PP, PE).
  • Medium taper (1.5–2.5°): Standard for most applications (ABS, PS, PC).
  • Wide taper (2.5–3°): Easy release, but more material waste. Use for high-viscosity, glass-filled, or sticky resins.

According to MoldMaking Technology, insufficient taper angle is one of the top causes of sprue sticking in production molds.

D (Shaft Diameter) and Flange Thickness

D is the outside diameter of the bushing body. It must match the bore in the mold's fixed plate with a precision fit (typically H7/g6). The flange thickness determines how deep the bushing sits in the locating ring counterbore.

Frequently Asked Questions

What happens if the sprue bushing SR is smaller than the nozzle SR?+
The nozzle won't seat properly inside the sprue bushing concave surface. Instead of making full contact, the nozzle tip protrudes past the bushing, creating a gap where resin leaks out during injection. This causes drooling, inconsistent shot weights, and potential burn marks from degraded material trapped in the gap.
How do I measure the sprue port diameter?+
Measure the internal diameter of the sprue bushing at the nozzle end (smallest end) using a pin gauge set or bore micrometer. This is the P dimension. Compare it to your machine nozzle orifice diameter — P should be 0.5–1.0 mm larger. If measuring an existing bushing, clean any resin residue before measuring.
Does flange thickness affect molding performance?+
Not directly — flange thickness is a mounting dimension. But using the wrong thickness causes the sprue bushing to sit too high (nozzle can't reach the SR surface) or too low (nozzle pushes the bushing into the mold, causing misalignment). Always match flange thickness to the locating ring counterbore depth in your mold's fixed plate.

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