IP Library Granted Patent US 7,918,663
Granted Patent B2
US 7,918,663 · App. 12/398,981 · Granted Apr 5, 2011

Injection molding nozzle wedge seal

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Quick Facts
Patent No.
US 7,918,663
App. No.
12/398,981
Granted
Apr 5, 2011
Kind
B2
Abstract

An injection molding apparatus includes an injection molding nozzle having a nozzle body defining a channel for flow of molding material and a nozzle tip coupled to the nozzle body. The nozzle tip is shaped to define a converging gap with a mold component into which the nozzle tip is inserted during use. A seal piece having a wedge or wedge-like portion is disposed between the nozzle tip and the mold component Pressure of molding material acting on a surface of the wedge portion wedges the wedge portion into the converging gap.

Claims (37)

1. An injection molding nozzle, comprising:

a nozzle body defining a channel for flow of molding material;

a nozzle tip coupled to the nozzle body, the nozzle tip shaped to define a converging gap with a mold component into which the nozzle tip is inserted during use; and

a seal piece having a wedge portion disposed between the nozzle tip and the mold component, wherein pressure of molding material acting on a surface of the wedge portion wedges the wedge portion into the converging gap, wherein the seal piece comprises material having a compressive modulus of elasticity less than 10,000 MPa, at mold assembly temperature.

2. The injection molding nozzle of claim 1 , wherein the seal piece is non-metallic.

3. The injection molding nozzle of claim 1 , wherein the seal piece comprises material that is less thermally conductive than material of the nozzle tip.

4. The injection molding nozzle of claim 1 , wherein the seal piece comprises thermoset material.

5. The injection molding nozzle of claim 1 , wherein the seal piece comprises polyimide.

6. The injection molding nozzle of claim 1 , wherein the seal piece comprises ceramic.

7. The injection molding nozzle of claim 1 , wherein the seal piece comprises metal-ceramic composite.

8. The injection molding nozzle of claim 1 , wherein the seal piece comprises material that is less stiff than material of the nozzle tip.

9. The injection molding nozzle of claim 1 , wherein the seal piece comprises material having a compressive modulus of elasticity in a range of 2,000 to 3,500 MPa, at mold assembly temperature.

10. The injection molding nozzle of claim 1 , wherein the seal piece further comprises a retaining portion that fits onto the nozzle tip to hold the seal piece onto the nozzle tip during assembly.

11. The injection molding nozzle of claim 10 , wherein the retaining portion is distanced from an inside cylindrical wall of the mold component during use.

12. The injection molding nozzle of claim 1 , wherein the wedge portion of the seal piece is an annular ring having a cross-section that has at least two converging edges.

13. The injection molding nozzle of claim 12 , wherein the cross-section is triangular.

14. The injection molding nozzle of claim 12 , wherein the cross-section is trapezoidal.

15. The injection molding nozzle of claim 1 , wherein the seal piece is in direct contact with the nozzle tip and with the mold component.

16. The injection molding nozzle of claim 1 , wherein the seal piece is removable from the nozzle tip.

17. The injection molding nozzle of claim 1 , wherein the seal piece is adhered to the nozzle tip.

18. The injection molding nozzle of claim 1 , further comprising a coating disposed between the nozzle tip and the seal piece.

19. The injection molding nozzle of claim 18 , wherein the coating is applied to the nozzle tip.

20. The injection molding nozzle of claim 18 , wherein the coating is applied to the seal piece.

21. The injection molding nozzle of claim 1 , wherein the mold component is selected from the group consisting of a cavity plate, a mold plate, a mold gate insert, and a mold gate and cavity insert.

22. An injection molding nozzle, comprising:

a nozzle body defining a channel for flow of molding material;

a nozzle tip coupled to the nozzle body, the nozzle tip shaped to define a converging gap with a mold component into which the nozzle tip is inserted during use; and

a seal piece disposed between the nozzle tip and the mold component, the seal piece comprising a retaining portion that fits onto a cylindrical portion of the nozzle tip to hold the seal piece onto the nozzle tip during assembly, the seal piece further comprising an annular ring portion having at least two converging surfaces, wherein pressure of molding material acting on a flow-facing surface of the annular ring portion urges the converging surfaces against surfaces defining the converging gap wherein the annular ring portion is disposed on a first side of the converging gap and the retaining portion is disposed on a second side of the converging gap opposite the first side.

23. The injection molding nozzle of claim 22 , wherein the seal piece comprises non-metallic material that is less thermally conductive than material of the nozzle tip.

24. A method of injection molding, comprising the steps of:

installing a nozzle into a mold, the nozzle comprising a seal piece having a wedge portion disposed between a nozzle tip and a mold component, wherein the seal piece comprises material having a compressive modulus of elasticity less than 10,000 MPa, at mold assembly temperature;

injecting pressurized molding material through the nozzle and into a mold cavity defined by the mold;

the molding material acting on a surface of the wedge portion to wedge the wedge portion into a converging gap between the nozzle tip and the mold component to seal against leakage of molding material; and

opening the mold and ejecting solidified molding material from the mold cavity.

25. The injection molding nozzle of claim 22 , wherein the retaining portion is press fit, friction fit, or interference fit onto the cylindrical portion of the nozzle tip.

26. The injection molding nozzle of claim 22 , further comprising a gap between the retaining portion and the mold component.

27. The injection molding nozzle of claim 22 , wherein retaining portion provides a contact force between the retaining portion and the cylindrical portion, and wherein the contact force is greater than a sticking force between the seal piece and the molding component.

Assignments (2)
SUPPLEMENTAL SECURITY AGREEMENT Recorded Oct 17, 2014
From: MOLD-MASTERS (2007) LIMITED
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 034013/0738 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2009
From: KAUSHAL, HITESH; URSU, DOUGLAS
To: MOLD-MASTERS (2007) LIMITED
Reel/Frame 022353/0390 →