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Sprue Bushing Internal Bore Taper: Why It Matters and How to Specify

Key Takeaway: Always specify a 1–3° per side bore taper on your sprue bushing. Use 1° for short sprues (< 40 mm) with low-shrinkage resins, 2° as the general-purpose default, and 3° for long sprues or high-shrinkage crystalline resins. A parallel bore (0° taper) will cause the sprue to stick and require manual extraction.

Why Taper Is Necessary

During injection, molten resin fills the sprue bushing bore and solidifies into a conical slug during cooling. As the resin solidifies, it shrinks radially, gripping the bore wall. The taper creates a gradually widening channel from the nozzle end to the runner end — when the mold opens and the sprue puller pulls the sprue from the nozzle end, the expanding taper allows the solidified sprue to slide out smoothly.

Taper Angle Selection

Taper Angle (per side)Included AngleBest ForLimitation
Short sprues (< 40 mm), low-shrinkage resins (ABS, PC)May stick with long sprues or high-shrinkage resins
1.5°General purpose, medium-length sprues
Industry default, most resins and lengthsSlightly larger runner volume
Long sprues (> 80 mm), POM, PA, PP (high shrinkage)Largest runner volume, more waste

Bore Finish Requirements

The bore internal surface finish directly affects sprue ejection reliability and resin flow quality:

  • Ra ≤ 0.4 μm (polished) — Required for reliable ejection and clean resin flow. Rough surfaces increase ejection force and can cause the sprue to stick.
  • Polish direction — Must be axial (along the bore length), not circumferential. Circumferential polish marks create microscopic undercuts that resist ejection.
  • No tool marks — Gun drill marks, reamer marks, or EDM texture must be removed by polishing before use.

According to ScienceDirect's sprue bushing reference, bore surface roughness above Ra 0.8 increases sprue ejection force by 50–100%, which can cause sprue sticking, Z-pull failure, and machine cycle interruptions.

Bore Diameter Specification

The sprue bushing bore has two diameters:

  • Port diameter (P) — The small end, at the nozzle contact face. Must be 0.5–1.0 mm larger than the machine nozzle orifice to prevent material hang-up at the entry.
  • Runner-side diameter — The large end, calculated from: P + 2 × L × tan(taper angle), where L is the bore length.

For a 70 mm bore length with a 3.0 mm port and 2° taper per side:

  • Runner-side diameter = 3.0 + 2 × 70 × tan(2°) = 3.0 + 2 × 70 × 0.0349 = 3.0 + 4.9 = 7.9 mm

According to JIS B 5111, both the port diameter and the taper angle must be specified on the sprue bushing drawing.

Frequently Asked Questions

What is the standard bore taper angle for sprue bushings?+
Standard bore taper is 1–3° per side (2–6° included angle). 2° per side (4° included) is the most common general-purpose value. Use smaller angles for short sprues with low-shrinkage resins, larger angles for long sprues with high-shrinkage resins.
Why does the sprue bushing bore need a taper?+
The taper allows the solidified sprue to be pulled out during mold opening. Without taper, shrinkage forces lock the sprue in the bore. The taper creates a gradually widening channel that releases the sprue when pulled from the nozzle end.
Does bore taper affect injection pressure?+
Minimally — typically 2–5% of total system pressure drop. The expanding cross-section actually slightly reduces pressure drop compared to a parallel bore, as it decelerates the flow progressively along the bore length.

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Need Custom Bore Taper?

Specify your required port diameter, bore length, and resin type — we will calculate the optimal taper angle and provide a custom-bore sprue bushing.

✓ Custom taper angles✓ MOQ 1 piece✓ Polished bore standard