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What Is the Difference Between Stopper Bolts and Puller Bolts in Three-Plate Molds

Key Takeaway: Stopper bolts define where plates stop (travel limit). Puller bolts provide force to separate plates (active pull). Three-plate molds typically need both: stopper bolts at each parting line to define opening distance, and puller bolts to ensure plates actually separate despite adhesion.

Two Bolts, Opposite Functions

Despite similar appearance, stopper bolts and puller bolts serve fundamentally opposite mechanical functions in three-plate injection molds:

PropertyStopper BoltPuller Bolt
FunctionLimits plate travel — creates a hard stopCreates separation force — actively pulls plates apart
Force directionCompressive (bolt head pushes against plate)Tensile (bolt pulls plate away from adjacent plate)
When it actsAt maximum stroke — bolt head contacts plateAt beginning of opening — bolt engages and pulls
Thread typeMale thread into one plate, head contacts the otherFemale thread (puller bolt) or male thread (short tip variant)
Critical dimensionBolt length = desired opening distanceThread engagement depth = pull force capacity
Mold damage if too shortPlate over-travels, guide pins disengageInsufficient pull force, plates stick together
Mold damage if too longPlate doesn't open far enough for runner/part clearanceExcessive pull force, potential bolt failure

How Stopper Bolts Work

A stopper bolt is threaded into one plate with its head extending into the space between plates. As the mold opens, the plate carrying the bolt moves away from the adjacent plate. When the bolt head contacts the stationary plate, further movement is mechanically blocked:

  • Material: Alloy steel, heat-treated for impact resistance at the contact surface.
  • Length determines opening distance: The exposed bolt length (from head contact surface to the plate it's threaded into) exactly equals the maximum plate separation.
  • Typically paired with springs: Collar springs mounted on the bolt provide initial separation force while the bolt head approaches its stop position.

How Puller Bolts Work

A puller bolt threads through one plate and mechanically engages the adjacent plate. As the mold opens, the puller bolt pulls one plate away from the other:

  • Female-thread variant: The bolt has a female-threaded bore. A separate stud threaded into the adjacent plate screws into the puller bolt, creating a positive connection. Adjustable by turning the stud depth.
  • Male-thread, short tip variant: The bolt tip threads directly into the adjacent plate. Simpler installation but less adjustable.
  • Pull force capacity: Determined by thread engagement depth and bolt material. Typical capacity: 200-500 N per bolt.

Puller bolts are critical when resin adhesion or vacuum effects cause plates to stick despite parting lock release. Without puller bolts, the only separation force comes from the machine — which may not be sufficient or may apply unevenly.

Puller Bolt Collars

Puller bolt collars serve as spacers and guide elements. Installed around the puller bolt shank, they center the bolt in the plate bore and prevent lateral play. Collars also act as thrust surfaces when puller bolts provide separation force — distributing the pull force over a larger plate area to prevent localized deformation.

How They Work Together in a Three-Plate Mold

In a typical three-plate mold opening sequence:

  • Phase 1: Mold begins opening. Parting locks hold PL2 while PL1 separates. Puller bolts at PL1 provide initial separation force to break adhesion.
  • Phase 2: PL1 continues opening. When stopper bolts at PL1 contact the runner plate, PL1 stops at the designed distance.
  • Phase 3: Continued opening force transfers to PL2 (parting locks release). Puller bolts at PL2 provide separation force.
  • Phase 4: PL2 reaches stopper bolt limit. Mold is fully open. Ejection activates.

Frequently Asked Questions

Can I use the same bolt as both a stopper and a puller?+
No. They serve opposite functions — stopper bolts create a compressive stop, puller bolts create a tensile pull. They are structurally different and not interchangeable.
How many stopper bolts per parting line?+
Minimum two, symmetrically placed. For molds wider than 400 mm, use four in a rectangular pattern to prevent plate tilt at the stop position.
What determines stopper bolt length?+
Bolt length equals the desired plate opening distance. When the bolt head contacts the adjacent plate, further separation stops. Length tolerance: ±0.1 mm.

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