US2546590A - Hinge structure - Google Patents

Hinge structure Download PDF

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Publication number
US2546590A
US2546590A US779168A US77916847A US2546590A US 2546590 A US2546590 A US 2546590A US 779168 A US779168 A US 779168A US 77916847 A US77916847 A US 77916847A US 2546590 A US2546590 A US 2546590A
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hinge
lugs
grooves
connector
keeper
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US779168A
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Clyde B Ferrel
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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C13/00Details; Accessories
    • A45C13/005Hinges

Definitions

  • This invention relates to a hinge structure, which is adapted to be formed by moulding or die casting operations from difierent types of plastics and metals.
  • the object of the present invention is generally to improve and simplify the construction and operation of hinge structures; to provide a hinge which may be formed from plasticsor metals and the like by moulding or die casting operations; to provide a hinge a portion of which may be formed integral with two members which are to behingedly connected to provide a moulded extruded or die cast hinge which requires no znachining or finishing after being moulded or die cast; to provide a hinge which is quickly and readily assembled; to provide a hinge having an insertable keeper which prevents disasse'mbly or accidental separation of the hinge parts after assembly, and further to provide a hinge which closes with a snap like action and in which a resilient member resists opening of the hinged parts.
  • Fig. l' is a perspective view of a compact case to which the hinge structure is applied.
  • Fig. 2 is a perspective View partially broken away showing the cover of the compact case in open position.
  • Fig. 3 is an enlarged cross-section taken on line III-III Fig. 1.
  • Fig. 4 is a perspective View partially broken away showing a portion of the cover section and the hinge lug formed integral therewith.
  • Fig. 5 is a perspective view similar to Fig. l
  • Fig. 6 is a perspective view of the connector
  • Fig. '7 is a perspective view of the keeper.
  • the cover Bthe body or container portion of a compact case or case is an elongated lug 3 which is of similar shape. The ing on the cover faces upwardly while the lug on the body portion faces downwardly.
  • Each lug is grooved from end to end as indicated at 4 and '5 respectively and each lug is also. provided with a groove 6 which is disposed at right angles to the grooves 4 and 5.
  • the lugs 2 and 3 form hinge lugs Which are free to swing about respective pintle pins or lugs l and 8 forming a part of the connector generally indicated at C.
  • the comiector is of the same length as the hinge lugs 2 and 3. It has two grooves formed therein as indicated 2 and 3*, these grooves have a cross-sectional shape of the hinge lugs.
  • the grooves are provided for the reception of the lugs as will hereinafter be do scribed and a cut out portion 9 is formed in the connector to receive a keeper generally indicated at it (see Fig. 7).
  • the keeper is provided with two resilient spring like legs I l.
  • the keeper serves two main functions first, that of retaining the hinge lugs 2 and 3 from end-wise movement with relation to the connector and secondly, that of a spring which tends to retain the cover in closed position and causes the cover to close with a snap like action.
  • the hinge structure as a Whole is particularly intended for use in connection with compact cases and like containers which are made from plastic or metallic materials by moulding, die casting or the like.
  • the hinge lugs 2 and 3 are as previously stated formed integral with the cover and body portion of the case While the. connector C and the keeper I0 are separately formed by the samemethod. If the compact case is made from plastics or metals of a suitable character by moulding or die casting, no machining or finishing of the parts after removal from the moulds or diesis required, thus the parts are ready for assembly when required and this is accomplished asfolllows.
  • the coverand body portions are placed in horizontal position on a table or any suitable sup port asshown in Fig. 2, the connector is then grasped and slid endwise between them, thus causing the hinge lugs 2 and 3 to enter the grooves 2 and 3 formed for their reception.
  • the keeper Ill is inserted in the opening 9 and whenso inserted secures all parts against separation, that is, the inner ends of the resilient legs of the keeperenter the grooves 6 of the hinge, lugs 2 and 3 as shown in Fig.
  • the resilient regs are of such length that they extend beyond a center line indicated at iii-12 which is drawn thru the pintle lugs (see Fig. 3).
  • the resilient legs of the 3 keeper are partially compressed or brought together when inserted in the opening 9 and as they extend beyond the center line l2-!2 it is obvious that the keeper itself is retained against removal and that the legs of the keeper exert a pressure on the hinge lugs 2 and 3 at points beyond the center of swinging movement about the pintle lugs, thus tending to retain the cover in closed position and also causing the cover to close with a snap like action.
  • the hinge structure as a whole is simple and substantial in construction; the only parts required being the connector 0, the keeper l6, and the hinge lugs which are formed on the cover and body portions respectively, and as all parts required may be formed by moulding or die casting many different types of plastics and metals may be employed, and while this and other features of the invention have been more or less specifically illustrated and described, it should be understood that changes may be resorted to within the scope of the appended claim and that the materials and finish of the several parts employed may be such as the experience or judgement of the manufacturer may dictate or varying conditions or uses may demand.
  • the keeper it and the pocket 9 made for its reception may be eliminated as when the plastic material comes out of the mold or the extruder it is so soft or plastic that if pressure is applied at the point C see Fig. 3 a portion of the plastic material is forced into the grooves B of the hinges 3 and t thus permanently securing the connector against removal from the hinge lugs or Y ice versa.
  • a hinge for pivotally connecting two members comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in cross sectional contour on its side facing the groove adjacent thereto about the same radius as that of said groove, an elongated lug extending outwardly from each member to be connected having a cross sectional contour corresponding on two opposite sides with the concave and convex cross sectional contour respectively of each of said grooves and the pintle pin adjacent thereto for sliding of said lugs endwise into the space between said pintle pins and the groove adjacent thereto from one of the ends of each groove, and means releasable from said connector for securing said lugs against
  • a hinge for pivotally connecting two memers comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in cross sectional contour on its side facing the groove adjacent thereto about the same radius as that of said groove, an elongated lug extending outwardly from each member to be connected having a cross sectional contour corresponding on two opposite sides with the concave and convex cross sectional contour respectively of each of said grooves and the pintle pin adjacent thereto for sliding of said lugs endwise into the space between said pintle pins and the groove adjacent thereto from one of the ends of each groove, transverse grooves respectively formed in the outer sides of said lugs at a corresponding point
  • a hinge for pivotally connecting two members comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing'oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in cross sectional contour on its side facing the groove adjacent thereto about the same radius as that of said groove, an elongated lug extendingoutwardly from each member to be connected having a cross sectional contour corresponding on two opposite sides with the concave and convex cross sectional contour respectively of each of said grooves and the pintle pin adjacent thereto for sliding of said lugs 'endwise into the space between said pintle pins and the groove adjacent thereto from one of the ends of each groove, transverse grooves respectively formed in the outer sides of said lugs at a
  • a hinge for pivotally connecting two members comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in" cross sectional contour on its side facing the 6 projecting into said grooves for resilient frictional engagement with the said lugs when the latter are in said grooves thereby tending'to hold said lugs against removal from said grooves.

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  • Pivots And Pivotal Connections (AREA)

Description

March 27, 1951 5, FERREL 2,546,590
HINGE STRUCTURE Filed Oct. 10, 1947 INVENTOR, C wEE/ E'RFEZ- A TTOR/V'E Patented Mar. 27, 1951 UNITED STATES PATENT OFFICE Clyde'B. Ferrel, San Francisco, Calif. Application October 10, 194.7, Serial No. 779,168
4 Claims.
This invention relates to a hinge structure, which is adapted to be formed by moulding or die casting operations from difierent types of plastics and metals.
The object of the present invention is generally to improve and simplify the construction and operation of hinge structures; to provide a hinge which may be formed from plasticsor metals and the like by moulding or die casting operations; to provide a hinge a portion of which may be formed integral with two members which are to behingedly connected to provide a moulded extruded or die cast hinge which requires no znachining or finishing after being moulded or die cast; to provide a hinge which is quickly and readily assembled; to provide a hinge having an insertable keeper which prevents disasse'mbly or accidental separation of the hinge parts after assembly, and further to provide a hinge which closes with a snap like action and in which a resilient member resists opening of the hinged parts.
The hinge structure is shown by way of illus-' tration in the accompanying drawings in which,
Fig. l'is a perspective view of a compact case to which the hinge structure is applied.
Fig. 2 is a perspective View partially broken away showing the cover of the compact case in open position. I
Fig. 3 is an enlarged cross-section taken on line III-III Fig. 1.
Fig. 4 is a perspective View partially broken away showing a portion of the cover section and the hinge lug formed integral therewith.
Fig. 5 is a perspective view similar to Fig. l
showing a portion of the body of the case and the hinge lug formed integral therewith.
Fig. 6 is a perspective view of the connector, and
Fig. '7 is a perspective view of the keeper. Referring to the drawings in detail and particularly Figs. 1 and 2 A indicates the cover, Bthe body or container portion of a compact case or case is an elongated lug 3 which is of similar shape. The ing on the cover faces upwardly while the lug on the body portion faces downwardly. Each lug is grooved from end to end as indicated at 4 and '5 respectively and each lug is also. provided with a groove 6 which is disposed at right angles to the grooves 4 and 5.
The lugs 2 and 3 form hinge lugs Which are free to swing about respective pintle pins or lugs l and 8 forming a part of the connector generally indicated at C. The comiector is of the same length as the hinge lugs 2 and 3. It has two grooves formed therein as indicated 2 and 3*, these grooves have a cross-sectional shape of the hinge lugs. The grooves are provided for the reception of the lugs as will hereinafter be do scribed and a cut out portion 9 is formed in the connector to receive a keeper generally indicated at it (see Fig. 7). The keeper is provided with two resilient spring like legs I l. The keeper serves two main functions first, that of retaining the hinge lugs 2 and 3 from end-wise movement with relation to the connector and secondly, that of a spring which tends to retain the cover in closed position and causes the cover to close with a snap like action. I 1
The hinge structure as a Whole is particularly intended for use in connection with compact cases and like containers which are made from plastic or metallic materials by moulding, die casting or the like. The hinge lugs 2 and 3 are as previously stated formed integral with the cover and body portion of the case While the. connector C and the keeper I0 are separately formed by the samemethod. If the compact case is made from plastics or metals of a suitable character by moulding or die casting, no machining or finishing of the parts after removal from the moulds or diesis required, thus the parts are ready for assembly when required and this is accomplished asfolllows.
The coverand body portions are placed in horizontal position on a table or any suitable sup port asshown in Fig. 2, the connector is then grasped and slid endwise between them, thus causing the hinge lugs 2 and 3 to enter the grooves 2 and 3 formed for their reception. After the connectorhas been applied the keeper Ill, is inserted in the opening 9 and whenso inserted secures all parts against separation, that is, the inner ends of the resilient legs of the keeperenter the grooves 6 of the hinge, lugs 2 and 3 as shown in Fig. 3 and as such secures the hinge lugs against endwise removal from the connector, also it will be noted that the resilient regs are of such length that they extend beyond a center line indicated at iii-12 which is drawn thru the pintle lugs (see Fig. 3). The resilient legs of the 3 keeper are partially compressed or brought together when inserted in the opening 9 and as they extend beyond the center line l2-!2 it is obvious that the keeper itself is retained against removal and that the legs of the keeper exert a pressure on the hinge lugs 2 and 3 at points beyond the center of swinging movement about the pintle lugs, thus tending to retain the cover in closed position and also causing the cover to close with a snap like action.
With a hinge structure of this character it is possible for the cover to swing 90 degrees with relation to its pintle lug, and it is also possible for the body to swing about the other pintle lug a distance of 90 degrees, hence a total swinging movement of 180 degrees is obtainable by the 'cover and body, or 90 degrees for each so that the cover may assume the position shown in Fig. 2.
The hinge structure as a whole is simple and substantial in construction; the only parts required being the connector 0, the keeper l6, and the hinge lugs which are formed on the cover and body portions respectively, and as all parts required may be formed by moulding or die casting many different types of plastics and metals may be employed, and while this and other features of the invention have been more or less specifically illustrated and described, it should be understood that changes may be resorted to within the scope of the appended claim and that the materials and finish of the several parts employed may be such as the experience or judgement of the manufacturer may dictate or varying conditions or uses may demand.
If the connector shown in Fig. 6 is made of certain types of plastic material the keeper it and the pocket 9 made for its reception may be eliminated as when the plastic material comes out of the mold or the extruder it is so soft or plastic that if pressure is applied at the point C see Fig. 3 a portion of the plastic material is forced into the grooves B of the hinges 3 and t thus permanently securing the connector against removal from the hinge lugs or Y ice versa.
Having thus described my invention, what I claim and desire to secure by Letters Patent is:
l. A hinge for pivotally connecting two members comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in cross sectional contour on its side facing the groove adjacent thereto about the same radius as that of said groove, an elongated lug extending outwardly from each member to be connected having a cross sectional contour corresponding on two opposite sides with the concave and convex cross sectional contour respectively of each of said grooves and the pintle pin adjacent thereto for sliding of said lugs endwise into the space between said pintle pins and the groove adjacent thereto from one of the ends of each groove, and means releasable from said connector for securing said lugs against endwise removal from said grooves after their insertion into the latter.
2. A hinge for pivotally connecting two memers comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in cross sectional contour on its side facing the groove adjacent thereto about the same radius as that of said groove, an elongated lug extending outwardly from each member to be connected having a cross sectional contour corresponding on two opposite sides with the concave and convex cross sectional contour respectively of each of said grooves and the pintle pin adjacent thereto for sliding of said lugs endwise into the space between said pintle pins and the groove adjacent thereto from one of the ends of each groove, transverse grooves respectively formed in the outer sides of said lugs at a corresponding point intermediate their ends, a recess formed in said connector between said grooves and at a point adjacent the position of said transverse grooves when said lugs are in said semi-circular grooves, a keeper removably secured in said recess and extending into the said transverse grooves for securing said lugs against endwise removal from said connector.
3. A hinge for pivotally connecting two members comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing'oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in cross sectional contour on its side facing the groove adjacent thereto about the same radius as that of said groove, an elongated lug extendingoutwardly from each member to be connected having a cross sectional contour corresponding on two opposite sides with the concave and convex cross sectional contour respectively of each of said grooves and the pintle pin adjacent thereto for sliding of said lugs 'endwise into the space between said pintle pins and the groove adjacent thereto from one of the ends of each groove, transverse grooves respectively formed in the outer sides of said lugs at a corresponding point intermediate their ends, a recess formed in said connector between said grooves and at a point adjacent the position of said transverse grooves when said lug-s are in said semi-circular grooves, a keeper removably secured in said recess and extending into the said transverse grooves, for securing said lugs against endwise removal from said connector, said keeper including a pair of spaced legs of resilient material respectively adapted to yieldably engage said lugs in said transverse grooves against accidental removal from said transverse grooves.
4. A hinge for pivotally connecting two members comprising an elongated hinge connector having two, spaced, parallel, grooves semi-circular in cross sectional contour formed therein and extending longitudinally thereof in side by side relationship from end to end thereof with their concave sides facing oppositely outwardly, a pair of pintle pins integral with said connector and respectively spaced from the open side of each groove and extending parallel therewith, the side of each pintle pin being convexly curved in" cross sectional contour on its side facing the 6 projecting into said grooves for resilient frictional engagement with the said lugs when the latter are in said grooves thereby tending'to hold said lugs against removal from said grooves.
CLYDE B. FERREL.
REFERENCES CITED The following references are of record in the file of this patent:
UNITED STATES PATENTS Name Date Flick et al June 4, 1918 Number
US779168A 1947-10-10 1947-10-10 Hinge structure Expired - Lifetime US2546590A (en)

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Cited By (29)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2717307A (en) * 1950-08-18 1955-09-06 Gen Electric Tubular luminaire
US2747760A (en) * 1950-10-14 1956-05-29 James J Jacobson Container having integral support means
US3254208A (en) * 1963-01-08 1966-05-31 Esquire Inc Light fixture hinge construction
US3255541A (en) * 1958-11-25 1966-06-14 Pam Company Changeable sign
US3263299A (en) * 1962-04-05 1966-08-02 Gen Electric Assembly method for electron discharge devices
US3353884A (en) * 1966-03-08 1967-11-21 William H Chaffee Compact multi-purpose display module
US3388421A (en) * 1966-05-09 1968-06-18 Charmglow Mfg Co Hinge structure
US3431592A (en) * 1965-03-17 1969-03-11 Fulvio Bracco Hinge device
US3713726A (en) * 1971-08-23 1973-01-30 Dominion Auto Access Truck mirrors
US3802766A (en) * 1971-08-23 1974-04-09 Dominion Auto Access Truck mirrors
US4157600A (en) * 1978-05-01 1979-06-12 Ryder International Corporation Hinge assembly
US4205762A (en) * 1978-04-13 1980-06-03 Firma Gregor Hofbauer GmbH & Co. Two-shelled container
US4306601A (en) * 1978-10-12 1981-12-22 Wallis Ruth M Elongate, double-hinged carrying case
US4665585A (en) * 1985-01-09 1987-05-19 Ege Westin Ab Link arrangement
US4684017A (en) * 1984-06-11 1987-08-04 Kanebo Limited Compact case
US4767003A (en) * 1985-10-18 1988-08-30 Hughes Aircraft Company Transparent, electrostatic protective container with readily accessible identification means
US4840288A (en) * 1988-08-31 1989-06-20 Revlon, Inc. Compact case with irreversible hinge
US5062181A (en) * 1991-02-12 1991-11-05 The Stanley Works Continuous hinge with improved bearing design
US5325984A (en) * 1993-06-21 1994-07-05 Motorola, Inc. Friction clutch for dual pivot point hinge
US5353206A (en) * 1993-06-21 1994-10-04 Fejes James M In-ground storage container
WO1995000406A1 (en) * 1993-06-21 1995-01-05 Motorola Inc. Friction clutch for dual pivot point hinge
US20020157684A1 (en) * 2000-03-29 2002-10-31 Jacques Sebban Make-up type case comprising an articulated lid
US20020162565A1 (en) * 2000-03-29 2002-11-07 Jacques Sebban Make-up type housing comprising an articulated lid
US20040228082A1 (en) * 2003-05-14 2004-11-18 Benq Corporation Hinge structure for mounting a cover onto an electronic device
WO2008153917A1 (en) * 2007-06-07 2008-12-18 Xplore Technologies Corporation Of America Electronic enclosure fastening belt
US20080316695A1 (en) * 2007-06-07 2008-12-25 Xplore Technologies Corporation Of America Electronic Enclosure Fastening Belt
US20110083300A1 (en) * 2009-10-09 2011-04-14 Sebastian Heger Locking hinge for an exterior vehicle mirror assembly
US20120000035A1 (en) * 2010-07-01 2012-01-05 Samsung Electronics Co., Ltd. Hinge apparatus for folder-type portable communication device
US9284762B2 (en) * 2013-12-19 2016-03-15 Craig Gundersen Pan adapter

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1268104A (en) * 1918-01-22 1918-06-04 William S Flick Hinge.

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1268104A (en) * 1918-01-22 1918-06-04 William S Flick Hinge.

Cited By (33)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2717307A (en) * 1950-08-18 1955-09-06 Gen Electric Tubular luminaire
US2747760A (en) * 1950-10-14 1956-05-29 James J Jacobson Container having integral support means
US3255541A (en) * 1958-11-25 1966-06-14 Pam Company Changeable sign
US3263299A (en) * 1962-04-05 1966-08-02 Gen Electric Assembly method for electron discharge devices
US3254208A (en) * 1963-01-08 1966-05-31 Esquire Inc Light fixture hinge construction
US3431592A (en) * 1965-03-17 1969-03-11 Fulvio Bracco Hinge device
US3353884A (en) * 1966-03-08 1967-11-21 William H Chaffee Compact multi-purpose display module
US3388421A (en) * 1966-05-09 1968-06-18 Charmglow Mfg Co Hinge structure
US3713726A (en) * 1971-08-23 1973-01-30 Dominion Auto Access Truck mirrors
US3802766A (en) * 1971-08-23 1974-04-09 Dominion Auto Access Truck mirrors
US4205762A (en) * 1978-04-13 1980-06-03 Firma Gregor Hofbauer GmbH & Co. Two-shelled container
US4157600A (en) * 1978-05-01 1979-06-12 Ryder International Corporation Hinge assembly
US4306601A (en) * 1978-10-12 1981-12-22 Wallis Ruth M Elongate, double-hinged carrying case
US4684017A (en) * 1984-06-11 1987-08-04 Kanebo Limited Compact case
US4665585A (en) * 1985-01-09 1987-05-19 Ege Westin Ab Link arrangement
US4767003A (en) * 1985-10-18 1988-08-30 Hughes Aircraft Company Transparent, electrostatic protective container with readily accessible identification means
US4840288A (en) * 1988-08-31 1989-06-20 Revlon, Inc. Compact case with irreversible hinge
US5062181A (en) * 1991-02-12 1991-11-05 The Stanley Works Continuous hinge with improved bearing design
US5325984A (en) * 1993-06-21 1994-07-05 Motorola, Inc. Friction clutch for dual pivot point hinge
US5353206A (en) * 1993-06-21 1994-10-04 Fejes James M In-ground storage container
WO1995000406A1 (en) * 1993-06-21 1995-01-05 Motorola Inc. Friction clutch for dual pivot point hinge
US6901937B2 (en) * 2000-03-29 2005-06-07 L'oréal Make-up type case comprising an articulated lid
US20020157684A1 (en) * 2000-03-29 2002-10-31 Jacques Sebban Make-up type case comprising an articulated lid
US20020162565A1 (en) * 2000-03-29 2002-11-07 Jacques Sebban Make-up type housing comprising an articulated lid
US7225506B2 (en) * 2003-05-14 2007-06-05 Benq Corporation Hinge structure for mounting a cover onto an electronic device
US20040228082A1 (en) * 2003-05-14 2004-11-18 Benq Corporation Hinge structure for mounting a cover onto an electronic device
WO2008153917A1 (en) * 2007-06-07 2008-12-18 Xplore Technologies Corporation Of America Electronic enclosure fastening belt
US20080316695A1 (en) * 2007-06-07 2008-12-25 Xplore Technologies Corporation Of America Electronic Enclosure Fastening Belt
US20110083300A1 (en) * 2009-10-09 2011-04-14 Sebastian Heger Locking hinge for an exterior vehicle mirror assembly
US8209816B2 (en) * 2009-10-09 2012-07-03 Lang-Mekra North America, Llc Locking hinge for an exterior vehicle mirror assembly
US20120000035A1 (en) * 2010-07-01 2012-01-05 Samsung Electronics Co., Ltd. Hinge apparatus for folder-type portable communication device
US8522399B2 (en) * 2010-07-01 2013-09-03 Samsung Electronics Co., Ltd. Hinge apparatus for folder-type portable communication device
US9284762B2 (en) * 2013-12-19 2016-03-15 Craig Gundersen Pan adapter

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