IP Library › Granted Patent US 12,454,854
Granted Patent B2
US 12,454,854 · App. 18/719,197 · Granted Oct 28, 2025

Insert molded torsion bar hinge

Inventors: George Larson (Roseville, MN); Jeffrey Randall (Hugo, MN)
Assignee: Reell Precision Manufacturing Corporation
E05F1/123B29C45/0017B29C45/14549B29L2031/22E05Y2201/486
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Quick Facts
Patent No.
US 12,454,854
App. No.
18/719,197
Granted
Oct 28, 2025
Kind
B2
Abstract

One aspect is an insert molded torsion bar hinge including a cylindrical metal torsion bar with a main bar body, a portion of which extends along a torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body. A first hinged element of molded plastic and with a first knuckle, is molded directly over and encompasses the first contoured bar end such that the first contoured bar end is fixed within and not rotatable relative to the first hinged element. The first knuckle is molded directly over and encompassing a portion of the main bar body. A second hinged element of molded plastic and with a second knuckle is molded directly over and encompasses the second contoured bar end such that the second contoured bar end is fixed within and not rotatable relative to the second hinged element. The second knuckle is molded directly over and encompassing a portion of the main bar body. The first and second hinged elements rotate and produce a torsional spring torque.

Claims (51)

1. An insert molded torsion bar hinge comprising:

a cylindrical metal torsion bar comprising a main bar body, a portion of which extends along a torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body;

a first hinged element of molded plastic and comprising a first knuckle, the first hinged element molded directly over and encompassing the first contoured bar end such that the first contoured bar end is fixed within and not rotatable relative to the first hinged element, and the first knuckle molded directly over and encompassing a portion of the main bar body; and

a second hinged element of molded plastic and comprising a second knuckle, the second hinged element molded directly over and encompassing the second contoured bar end such that the second contoured bar end is fixed within and not rotatable relative to the second hinged element, and the second knuckle molded directly over and encompassing a portion of the main bar body;

wherein the first and second hinged elements are configured to rotate relative to each other along the torsion bar axis, the torsion bar producing a torsional spring torque with the relative rotation of the first and second hinged elements.

2. The insert molded torsion bar hinge of claim 1 , wherein there is no coil between the molded plastic of the first hinged element and the first bar end and there is no coil between the molded plastic of the second hinged element and the second bar end.

3. The insert molded torsion bar hinge of claim 1 configured as a piano hinge, wherein the first hinged element further comprises a third knuckle configured over the main bar body and the second hinged element further comprises a fourth knuckle configured over the main bar body.

4. The insert molded torsion bar hinge of claim 3 , wherein the first and third knuckles of the first hinged element alternate along the main bar body with the second and fourth knuckles of the second hinged element.

5. The insert molded torsion bar hinge of claim 1 , wherein the cylindrical metal torsion bar is in contact exclusively with the first and second hinged elements.

6. The insert molded torsion bar hinge of claim 1 , wherein the first bar end and the second bar end are contoured to extend in directions non-parallel to the torsion bar axis or into a non-cylindrical shape such that when contained within the first and second hinged elements, the contoured bar ends are fixed within and not rotatable relative to the hinged elements.

7. The insert molded torsion bar hinge of claim 1 , wherein friction torque between the knuckles and the torsion bar is decreased by providing notch outs in the knuckles.

8. The insert molded torsion bar hinge of claim 1 further comprising an impact bar embedded within at least the first or second hinged element.

9. The insert molded torsion bar hinge of claim 1 further comprising an additional cylindrical metal torsion bar comprising a main bar body, a portion of which extends along a torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body;

wherein the first hinged element of molded plastic is molded directly over and encompassing the first contoured bar end of the additional torsion bar such that the first contoured bar end is fixed within and not rotatable relative to the first hinged element; and

wherein the second hinged element of molded plastic is molded directly over and encompassing the second contoured bar end of the additional torsion bar such that the second contoured bar end is fixed within and not rotatable relative to the second hinged element.

10. The insert molded torsion bar hinge of claim 9 , wherein further comprising at least three cylindrical metal torsion bars each comprising a main bar body, a portion of which extends along a torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body;

wherein the first hinged element of molded plastic is molded directly over and encompassing the first contoured bar end of the at least three cylindrical torsion bars such that the first contoured bar end is fixed within and not rotatable relative to the first hinged element; and

wherein the second hinged element of molded plastic is molded directly over and encompassing the second contoured bar end of the at least three cylindrical torsion bars such that the second contoured bar end is fixed within and not rotatable relative to the second hinged element.

11. The insert molded torsion bar hinge of claim 1 further comprising

further comprising an additional cylindrical metal torsion bar comprising a main bar body, a portion of which extends along a second torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body;

wherein the second hinged element of molded plastic is molded directly over and encompassing the second contoured bar end of the additional torsion bar such that the second contoured bar end is fixed within and not rotatable relative to the second hinged element

a third hinged element of molded plastic and comprising a first knuckle, the third hinged element molded directly over and encompassing the first contoured bar end of the additional cylindrical metal torsion bar such that the first contoured bar end is fixed within and not rotatable relative to the third hinged element, and the first knuckle molded directly over and encompassing a portion of the main bar body of the additional cylindrical metal torsion bar.

12. A method of forming an insert molded torsion bar hinge comprising:

placing a cylindrical metal torsion bar into a mold cavity, the torsion bar comprising a main bar body, portion of which extends along a torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body, and the mold cavity comprising first and second mold cavity parts;

wherein the first contoured bar end is contained exclusively within the first mold cavity part, the second contoured bar end is contained exclusively within the second mold cavity part, and wherein portions of the main bar body are contained within both the first and second mold cavity parts;

injection molding a flowable plastic into the first mold cavity part and directly over and fully encompassing the first contoured bar end and directly over and fully encompassing at least a portion of the main bar body;

allowing the flowable plastic in the first mold cavity part to freeze, thereby forming a first hinged element of molded plastic containing the first contoured bar end and comprising a first knuckle containing at least a portion of the main bar body;

injection molding a flowable plastic into the second mold cavity part and directly over and fully encompassing the second contoured bar end and directly over and fully encompassing at least a portion of the main bar body; and

allowing the flowable plastic in the second mold cavity part to freeze, thereby forming a second hinged element of molded plastic containing the second contoured bar end and comprising a second knuckle containing at least a portion of the main bar body;

wherein the first and second hinged elements are configured to rotate relative to each other along the torsion bar axis.

13. The method of forming an insert molded torsion bar hinge according to claim 12 further comprising injecting the flowable plastic into the first and second mold cavity parts in a single shot.

14. The method of forming an insert molded torsion bar hinge according to claim 12 further comprising injecting the flowable plastic into the first and second mold cavity parts in separate shots.

15. The method of forming an insert molded torsion bar hinge according to claim 12 further comprising forming a plurality of knuckles in both the first and second hinge elements that alternate along the main bar body.

16. The method of forming an insert molded torsion bar hinge according to claim 12 , wherein the torsion bar is configured to produce a torsional spring torque with the relative rotation of the first and second hinged elements.

17. A fold down system comprising:

a base;

a folding member hinged to the base such that it is foldable relative to the base; and

an insert molded torsion bar hinge comprising a fixed hinge side and a spring loaded side, the fixed hinge side fixed to the base and the spring loaded side rotatable with the folding member;

wherein the insert molded torsion bar hinge comprises:

a cylindrical metal torsion bar comprising a main bar body, a portion of which extends along a torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body;

wherein the fixed hinge side comprises a molded plastic and comprising a first knuckle, the fixed hinge side molded directly over and encompassing the first contoured bar end such that the first contoured bar end is fixed within and not rotatable relative to the fixed hinge side, and the first knuckle molded directly over and encompassing a portion of the main bar body; and

wherein the spring loaded side comprises a molded plastic and comprising a second knuckle, the spring loaded side molded directly over and encompassing the second contoured bar end such that the second contoured bar end is fixed within and not rotatable relative to the spring loaded side, and the second knuckle molded directly over and encompassing a portion of the main bar body;

wherein the fixed hinge side and the spring loaded side are configured to rotate relative to each other along the torsion bar axis, the torsion bar producing a torsional spring torque with the relative rotation of the fixed hinge side and the spring loaded side.

18. An insert molded torsion bar hinge comprising:

a first hinged element;

a second hinged element;

a cylindrical metal torsion bar comprising a main bar body, a portion of which extends along a torsion bar axis, a first contoured bar end and a second contoured bar end on opposite ends of the main bar body;

wherein the first hinged element comprises a molded plastic and a first knuckle, the first hinged element molded directly over and encompassing the first contoured bar end such that the first contoured bar end is fixed within and not rotatable relative to the first hinged element, and the first knuckle molded directly over and encompassing a portion of the main bar body; and

wherein the second hinged element comprises a molded plastic and a second knuckle, the second hinged element molded directly over and encompassing the second contoured bar end such that the second contoured bar end is fixed within and not rotatable relative to the second hinged element, and the second knuckle molded directly over and encompassing a portion of the main bar body;

wherein the first hinged element and the second hinged element are aligned coaxially on the torsion bar axis and are configured to rotate relative to each other along the torsion bar axis, the torsion bar producing a torsional spring torque with the relative rotation.

19. The insert molded torsion bar hinge of claim 18 , wherein the first and second hinged elements are adjacent each other and wherein the torsion bar is curved such that the torsion bar extends from the first hinged element through the second hinged element and then curves back into the second hinged element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2024
From: LARSON, GEORGE; RANDALL, JEFFREY
To: REELL PRECISION MANUFACTURING CORPORATION
Reel/Frame 067713/0652 →
Continuity (2)
Provisional Application 63289030 · Dec 13, 2021
Related Publication 20250043610A1 · Feb 6, 2025
References Cited (40)
US 251591A · Jaeger · 1881 [cited by examiner]
US 434212A · Taxis · 1890 [cited by examiner]
US 962426A · Hansen · 1910 [cited by examiner]
US 2482920A · Levi · 1949 [cited by examiner]
US 3000049A · Terry, Jr. · 1961 [cited by examiner]
US 3307734A · Campbell · 1967 [cited by examiner]
US 3490756A · Spier · 1970 [cited by examiner]
US 3562852A · Gutshall · 1971 [cited by examiner]
US 4285098A · Hicks · 1981 [cited by examiner]
US 4630178A · Mugford · 1986 [cited by examiner]
US 5228240A · Barroero · 1993 [cited by examiner]
US 5382108A · Ojima · 1995 [cited by examiner]
US 5644516A · Podwalny · 1997 [cited by examiner]
US 5687509A · Barroero · 1997 [cited by examiner]
US 5730239A · Holter · 1998 [cited by examiner]
US 5771539A · Wahlstedt · 1998 [cited by examiner]
US 5771540A · Carpenter · 1998 [cited by examiner]
US 5787549A · Soderlund · 1998 [cited by examiner]
US 6619723B2 · Duffy · 2003 [cited by examiner]
US 6648398B2 · Duffy · 2003 [cited by examiner]
US 7156450B2 · McIntyre · 2007 [cited by examiner]
US 7210199B2 · Clark · 2007 [cited by examiner]
US 7743466B2 · Tu · 2010 [cited by examiner]
US 8265231B2 · Otani et al. · 2012 [cited by applicant]
US 8780570B2 · Bohn · 2014 [cited by examiner]
US 10648209B2 · Sedivy · 2020 [cited by examiner]
US 11408215B2 · Lindberg · 2022 [cited by examiner]
US 20080134466A1 · Massengill · 2008 [cited by examiner]
US 20090159593A1 · Apps · 2009 [cited by examiner]
US 20220098908A1 · Im · 2022 [cited by examiner]
CN 212723785 · 2021 [cited by applicant]
DE 19629030A1 · 1997 [cited by examiner]
GB 2060049A · 1981 [cited by examiner]
JP S6116223Y2 · 1986 [cited by examiner]
JP H11346825 · 1999 [cited by applicant]
JP 2000337016 · 2000 [cited by applicant]
JP 200387686 · 2004 [cited by applicant]
JP 2010215135A · 2010 [cited by examiner]
KR 20120056558A · 2012 [cited by examiner]
International Search Report and Written Opinion in PCT/US2022/052752 dated Jun. 1, 2023. [cited by applicant]