EP2725175B1 - Adjustable hinge - Google Patents

Adjustable hinge Download PDF

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Publication number
EP2725175B1
EP2725175B1 EP13190105.0A EP13190105A EP2725175B1 EP 2725175 B1 EP2725175 B1 EP 2725175B1 EP 13190105 A EP13190105 A EP 13190105A EP 2725175 B1 EP2725175 B1 EP 2725175B1
Authority
EP
European Patent Office
Prior art keywords
slot
fixing plate
plate
adjustable
bearing surfaces
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP13190105.0A
Other languages
German (de)
French (fr)
Other versions
EP2725175A2 (en
EP2725175A3 (en
Inventor
Amanda Mao
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Era Home Security Ltd
Original Assignee
Era Home Security Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Era Home Security Ltd filed Critical Era Home Security Ltd
Publication of EP2725175A2 publication Critical patent/EP2725175A2/en
Publication of EP2725175A3 publication Critical patent/EP2725175A3/en
Application granted granted Critical
Publication of EP2725175B1 publication Critical patent/EP2725175B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/0009Adjustable hinges
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • E05D7/0415Hinges adjustable relative to the wing or the frame with adjusting drive means
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • E05D2007/0469Hinges adjustable relative to the wing or the frame in an axial direction
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • E05D2007/0476Pocket hinges
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • E05D2007/0484Hinges adjustable relative to the wing or the frame in a radial direction
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • E05D2007/0492Hinges adjustable relative to the wing or the frame in three directions
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • E05D7/0415Hinges adjustable relative to the wing or the frame with adjusting drive means
    • E05D7/0423Screw-and-nut mechanisms
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/60Suspension or transmission members; Accessories therefor
    • E05Y2201/622Suspension or transmission members elements
    • E05Y2201/638Cams; Ramps
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2800/00Details, accessories and auxiliary operations not otherwise provided for
    • E05Y2800/26Form or shape
    • E05Y2800/268Form or shape cylindrical; disc-shaped; circular

Definitions

  • This invention relates to hinges for windows, doors or the like, in particular this invention relates to adjustable hinges.
  • Adjustable hinges have been known for use in cabinetry some time, and can be used when mounting doors or windows. Usually adjustment is made by turning a screw which alters the separation of two hinge parts by driving them apart, which in turn alters the position of one of the hinge plates (by which the hinge is attached to the door or frame etc.) relative to the hinge pivot.
  • adjustable butt type hinge is described in GB patent application GB2464950 .
  • a further adjustable hinge comprising a pair of cams is disclosed in Chinese utility model CN201635554 .
  • an adjustable hinge for mounting an openable member to a frame, the hinge comprising the features of claim 1.
  • the same type of mechanism can be used for the adjustment in both the first and the second axis.
  • the first slot may extend longitudinally along the floating plate and rotation of the first eccentric cam can apply a force to a side of the first slot so as to move said floating plate in a direction transverse to said first slot.
  • the second slot may extend transverse the floating plate and rotation of the second eccentric cam can apply a force to a side of the second slot so as to move said floating plate longitudinally along the fixing plate. Rotation of each cam can therefore move the floating plate in one direction so that independent adjustment along two axis is achieved.
  • the first eccentric cam is thereby maintained in contact with the sides of the first slot so as to reduce backlash in the first adjustment means.
  • a first saddle may be located in and extend through the first slot and the first saddle can comprise two guide surfaces parallel to, and in sliding contact with, the sides of the first slot.
  • the bearing surfaces may be provided on the first saddle.
  • a second saddle may be located in and extend through the second slot and the second saddle can comprise two guide surfaces parallel to, and in sliding contact with, the sides of the second slot.
  • the bearing surfaces substantially parallel to the sides of the second slot can be provided on the second saddle.
  • the second eccentric cam is thereby maintained in contact with the sides of the second slot so as to reduce backlash in the second adjustment means.
  • the first and second eccentric cam each comprise a circular cam surface, said cam surface having a diameter substantially equal to the separation of the corresponding two bearing surfaces.
  • the two bearing surfaces parallel to the first and/or second slot can have an undercut therein.
  • At least one of said first and/or second eccentric cams is movable between a first position in which the cam surface is located between the bearing surfaces, and the location surface may extend into the undercut, and a second position in which the location surfaces are located between the bearing surfaces.
  • Said first and/or second eccentric cam can be resiliently biased into the second position.
  • the fixing plate of the hinge may comprise a first fixing plate section and a second fixing plate section, the second fixing plate section being adjustable relative to the first fixing plate section in a direction perpendicular to both the first slot and the second slot, and the floating plate can be mounted on said second fixing plate section. In this way adjustment in the third axis is effected.
  • the adjustable hinge may further comprise clamping means for clamping said floating plate to said fixing plate
  • a closure member 2 is shown attached to a frame 4 by means of an adjustable hinge 6.
  • the hinge 6 allows pivotal movement of the closure member 2 with respect to the frame 4.
  • the closure member 2 may be a door, in particular it may be a composite door.
  • Composite doors are traditional looking doors that are made of composite materials, for example they could be, without limitation, timber with a GRP skin, a GRP skin with a foam interior, or a metal skin with a foam interior. They have the benefit of a traditional look combined with low maintenance.
  • One part of the adjustable hinge 6 may be recessed into the closure member 2 and the pivot of the hinge may extend forwards of the door resembling a traditional butt type door hinge.
  • the hinge 6 has two main halves, a fixed plate 8, and an adjustable plate 10.
  • a pivot pin 12 passes through and connects the fixed plate 8 and adjustable plate 10 on one side thereof so that the two plates may pivot relative to one another. In use this enables the door or window to pivot on the frame 4 so that it can open and close.
  • the fixed plate 8 is of standard construction and is similar to one half of a standard butt hinge that will be known to the person skilled in the art.
  • the adjustable plate 10 has a new construction that allows for adjustment of the hinge 6 in at least two axis.
  • the adjustable plate 10 comprises a fixing plate 14 which can be fixed to either the closure member or the frame, which ever the fixed plate 8 is not attached to, and a floating plate 16.
  • the floating plate 16 is movable relative to the fixing plate in a first axis and in a second axis has a tubular section 28 through which the pivot pin 12 passes, thereby pivotally attaching it to the fixed plate 8.
  • the floating plate 16 has a first and a second slot therein.
  • the first slot 30 is a longitudinal slot, i.e. it runs along the length of the floating plate 16 and the second slot 32 runs traverse the floating plate.
  • the two slots 30, 32 are therefore at ninety degrees to one another.
  • a first 34 and a second 36 eccentric circular cam are provided and are retained in a manner such that they can rotate relative to the fixing plate 14.
  • the first and second cam pass through the first and second slot respectively such that rotation of the first cam 34 adjusts the position of the floating plate 16 relative to the fixing plate 14 in the first axis and rotation of the second cam 36 adjusts the position of the floating plate 16 relative to the fixing plate 14 in the second axis. This is achieved by rotation of the cam causing a force on the sides of the slot with which it is associated.
  • the slots 30, 32 are at ninety degrees to one another movement caused by one cam acting on the sides of one slot is not prevented by the cam in the other slot as the perpendicular slot allows for the required freedom of movement.
  • cams 34, 36 do not bear directly upon the sides of their associated slot 30, 32.
  • a first saddle 38 is located in and extends through the first slot 30
  • a second saddle 40 is located in and extends through the second slot 32.
  • the first 38 saddle comprises two guide surfaces parallel to, and in sliding contact with, the sides of the first slot 30
  • the second saddle 40 comprises two guide surfaces parallel to, and in sliding contact with the sides of the second slot 32. In this manner each saddle is free to slide along the length of its respective slot, and its rotation is prevented by the guide surfaces.
  • Each saddle 38, 40 has a pair of bearing surfaces 42, 44 which are substantially parallel to the sides of their associated slot 30, 32, and the separation of the two bearing surfaces 42, 44 substantially corresponds to the minimum external dimension of the eccentric cams 34, 36. In this way rotation of each of the cams in opposite directions bear directly on the bearing surfaces 42, 22 with little or no backlash.
  • bearing surfaces need not necessarily be parallel to the sides of the slots for the cam to effect movement of the floating plate.
  • the bearing surfaces could be at an angle to the sides of the slot or could be curved, although parallel surfaces are preferred.
  • Graduations 46 can be provided adjacent the edges of one or both of the slots 30, 32 at a set interval, for example 0.5mm. The user can therefore accurately set the hinge using the graduations 46 as visual indicators of the degree to which he is adjusting the hinge.
  • the cams 34, 36 each have, in addition to their circular cam surface, a location surface 48 positioned adjacent the cam surface.
  • the location surface 48 is in the shape of a regular polygon having an even number of sides.
  • the sides of the location surface 48 of each eccentric cam align with the circular cam surface substantially at their centre, and extend beyond the cam surface at either end, i.e., viewed from the top ( Figure 3 ) the circle formed by the cam surface fits exactly inside the polygon of the location surface 48.
  • the location surface is in the form of a decagon.
  • the bearing surfaces 42 parallel to the first 30 and/or second 32 slot have an undercut provided in them so that, in the first position, as the cams 34, 36 are rotated the location surface 48 can extend into the undercut and rotate therein so as to not inhibit adjustment of the floating plate 16.
  • opposite parallel sides of the location surface can be aligned with the bearing surface 42 and the cam 34, 36 moved to its second position.
  • the eccentric cams 34, 36 are provided with a spring 50 to resiliently bias them into the second position.
  • the user can place a tool, for example an alien key, in a suitably provided recess in the face of the eccentric cam, depress the cam 34, 36 against the spring 50 so as to move it into its first position, rotate the cam 34, 36 so that the cam surface acts on the bearing surface 42 to adjust the position of the floating plate, and then release the cam 34, 36 with opposite sides of the location surface 48 aligned with the bearing surface 42 so that it moves into its second position.
  • the location surface 48 provides for indexed adjustment by discreet amounts as opposed to continuous adjustment, although the skilled person will appreciate that the location surface 48 can be omitted in an embodiment which is not part of the invention, if continuous adjustment is desirable.
  • the fixing plate 14 has a first fixing plate section 52 and a second fixing plate section 54.
  • the second fixing plate section 54 is adjustable relative to the first fixing plate section 53 in a direction perpendicular to both the first slot 30 and the second slot 32.
  • the floating plate 16 is mounted on said second fixing plate section 54.
  • the first fixing plate section 52 has each end turned in to form a C shape defining a T slot when seen from the side.
  • the second fixing plate section 54 sits in the T-slot and is attached thereto at either end by an adjusting screw 18.
  • the adjusting screw moves the second fixing plate section 54 towards or away from the first fixing plate section 52, guided on location pins 22 which limit the movement of the second fixing plate section 54 to movement along the length of the location pins 22.
  • An indicator line 26 may be provided on the top of the adjusting screw 18 and graduations 24 provided on the first fixing plate section 52 so that alignment of the indicator line 26 with the graduations 24 move the second fixing plate section 54 relative to the first fixing plate section 52 by a defined distance.
  • the distance between the graduations 24 can be such that rotation of the adjusting screw 18, so that the indicator line 26 moves from one graduation 26 to an adjacent graduation, moves the second fixing plate section 54 by 0.5mm.
  • the hinge may also be provided with clamping means for clamping the floating plate to the fixing plate so as to secure it in position, once it has been adjusted, and prevent accidental or unintentional movement in the adjustment mechanisms during use of the door or other closure to which it is fixed.
  • Fixing holes 56 are provides in the fixed plate 8 and the fixing plate 14 by which they can be attached to the closure and frame.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Hinges (AREA)

Description

  • This invention relates to hinges for windows, doors or the like, in particular this invention relates to adjustable hinges.
  • When hanging a door or window in a frame, it is often a difficult and highly skilled job to ensure that the door or window is aligned properly in the frame as alignment is needed at least two, and often three axis. Linear alignment is needed to align the or window in the frame in the vertical axis and in one of two perpendicular horizontal axis. This multiple alignment can make hanging a labour intensive and highly skilled job which is commonly done in one of two ways, either by attaching the hinges and then removing material from the edges of the door or window such that it fits correctly in the frame, or by moving the hinges up or down, and/or placing shims behind the hinges to pack them out. Types of hinges on which doors or window are currently hung are well known in the art and typically comprise two hinge plates pivotally attached to one another.
  • Adjustable hinges have been known for use in cabinetry some time, and can be used when mounting doors or windows. Usually adjustment is made by turning a screw which alters the separation of two hinge parts by driving them apart, which in turn alters the position of one of the hinge plates (by which the hinge is attached to the door or frame etc.) relative to the hinge pivot.
  • One type of adjustable butt type hinge is described in GB patent application GB2464950 . A further adjustable hinge comprising a pair of cams is disclosed in Chinese utility model CN201635554 . Documents JPH09100670 and DE10356403 both disclose adjustable hinges comprising a single cam.
  • It is the purpose of the current invention to provide a simple to use adjustable hinge.
  • According to the present invention there is provided an adjustable hinge for mounting an openable member to a frame, the hinge comprising the features of claim 1.
    In this way the same type of mechanism can be used for the adjustment in both the first and the second axis.
  • The first slot may extend longitudinally along the floating plate and rotation of the first eccentric cam can apply a force to a side of the first slot so as to move said floating plate in a direction transverse to said first slot. The second slot may extend transverse the floating plate and rotation of the second eccentric cam can apply a force to a side of the second slot so as to move said floating plate longitudinally along the fixing plate. Rotation of each cam can therefore move the floating plate in one direction so that independent adjustment along two axis is achieved.
  • The first eccentric cam is thereby maintained in contact with the sides of the first slot so as to reduce backlash in the first adjustment means.
  • A first saddle may be located in and extend through the first slot and the first saddle can comprise two guide surfaces parallel to, and in sliding contact with, the sides of the first slot. The bearing surfaces may be provided on the first saddle.
  • A second saddle may be located in and extend through the second slot and the second saddle can comprise two guide surfaces parallel to, and in sliding contact with, the sides of the second slot. The bearing surfaces substantially parallel to the sides of the second slot can be provided on the second saddle. The second eccentric cam is thereby maintained in contact with the sides of the second slot so as to reduce backlash in the second adjustment means.
  • The first and second eccentric cam each comprise a circular cam surface, said cam surface having a diameter substantially equal to the separation of the corresponding two bearing surfaces. The two bearing surfaces parallel to the first and/or second slot can have an undercut therein. At least one of said first and/or second eccentric cams is movable between a first position in which the cam surface is located between the bearing surfaces, and the location surface may extend into the undercut, and a second position in which the location surfaces are located between the bearing surfaces. Said first and/or second eccentric cam can be resiliently biased into the second position. This enables the cam to move between two positions wherein in the first position the circular cam is located between the bearing surfaces, and the location surface is in the undercut and the cam is therefore free to rotate such that rotation moves the floating plate, and in the second position the opposite flat sides of the location surface locate between the bearing surfaces and rotation is thereby prevented, effectively securing the floating plate in that particular position.
  • The fixing plate of the hinge may comprise a first fixing plate section and a second fixing plate section, the second fixing plate section being adjustable relative to the first fixing plate section in a direction perpendicular to both the first slot and the second slot, and the floating plate can be mounted on said second fixing plate section. In this way adjustment in the third axis is effected.
  • The adjustable hinge may further comprise clamping means for clamping said floating plate to said fixing plate
    Specific embodiments of the invention will now be described, by way of example only, with reference to the accompanying drawings in which:
    • Figure 1 shows a perspective view of a closure pivotally attached to a frame
    • Figure 2 shows a front view of an adjustable hinge in accordance with the invention;
    • Figure 3 shows a cross section on the line "A"-"A" of Figure 2;
    • Figure 4 shows a perspective view of the adjustable plate; and
    • Figure 5 shows an exploded view of the hinge.
  • Referring to Figure 1, a closure member 2 is shown attached to a frame 4 by means of an adjustable hinge 6. The hinge 6 allows pivotal movement of the closure member 2 with respect to the frame 4. The closure member 2 may be a door, in particular it may be a composite door. Composite doors are traditional looking doors that are made of composite materials, for example they could be, without limitation, timber with a GRP skin, a GRP skin with a foam interior, or a metal skin with a foam interior. They have the benefit of a traditional look combined with low maintenance. One part of the adjustable hinge 6 may be recessed into the closure member 2 and the pivot of the hinge may extend forwards of the door resembling a traditional butt type door hinge.
  • Referring to Figures 2 to 5 details of the hinge 6 are shown. The hinge 6 has two main halves, a fixed plate 8, and an adjustable plate 10. A pivot pin 12 passes through and connects the fixed plate 8 and adjustable plate 10 on one side thereof so that the two plates may pivot relative to one another. In use this enables the door or window to pivot on the frame 4 so that it can open and close.
  • The fixed plate 8 is of standard construction and is similar to one half of a standard butt hinge that will be known to the person skilled in the art.
  • The adjustable plate 10 has a new construction that allows for adjustment of the hinge 6 in at least two axis. The adjustable plate 10 comprises a fixing plate 14 which can be fixed to either the closure member or the frame, which ever the fixed plate 8 is not attached to, and a floating plate 16. The floating plate 16 is movable relative to the fixing plate in a first axis and in a second axis has a tubular section 28 through which the pivot pin 12 passes, thereby pivotally attaching it to the fixed plate 8.
  • The floating plate 16 has a first and a second slot therein. The first slot 30 is a longitudinal slot, i.e. it runs along the length of the floating plate 16 and the second slot 32 runs traverse the floating plate. The two slots 30, 32 are therefore at ninety degrees to one another.
  • A first 34 and a second 36 eccentric circular cam are provided and are retained in a manner such that they can rotate relative to the fixing plate 14. The first and second cam pass through the first and second slot respectively such that rotation of the first cam 34 adjusts the position of the floating plate 16 relative to the fixing plate 14 in the first axis and rotation of the second cam 36 adjusts the position of the floating plate 16 relative to the fixing plate 14 in the second axis. This is achieved by rotation of the cam causing a force on the sides of the slot with which it is associated. As the slots 30, 32 are at ninety degrees to one another movement caused by one cam acting on the sides of one slot is not prevented by the cam in the other slot as the perpendicular slot allows for the required freedom of movement.
  • In the embodiment shown the cams 34, 36 do not bear directly upon the sides of their associated slot 30, 32. A first saddle 38 is located in and extends through the first slot 30 a second saddle 40 is located in and extends through the second slot 32. The first 38 saddle comprises two guide surfaces parallel to, and in sliding contact with, the sides of the first slot 30 and the second saddle 40 comprises two guide surfaces parallel to, and in sliding contact with the sides of the second slot 32. In this manner each saddle is free to slide along the length of its respective slot, and its rotation is prevented by the guide surfaces.
  • Each saddle 38, 40 has a pair of bearing surfaces 42, 44 which are substantially parallel to the sides of their associated slot 30, 32, and the separation of the two bearing surfaces 42, 44 substantially corresponds to the minimum external dimension of the eccentric cams 34, 36. In this way rotation of each of the cams in opposite directions bear directly on the bearing surfaces 42, 22 with little or no backlash.
  • Although described herein as being flat surfaces the skilled person will appreciate that the bearing surfaces need not necessarily be parallel to the sides of the slots for the cam to effect movement of the floating plate. In embodiments which are not part of the invention, the bearing surfaces could be at an angle to the sides of the slot or could be curved, although parallel surfaces are preferred.
  • As the guide surfaces of the saddles 38, 40 are parallel to and in sliding contact with the sides of the slots, rotation of the cams 34, 36 imparts a moving force on the sides of the slots 30, 32, via the saddle 38, 40.
  • Graduations 46 can be provided adjacent the edges of one or both of the slots 30, 32 at a set interval, for example 0.5mm. The user can therefore accurately set the hinge using the graduations 46 as visual indicators of the degree to which he is adjusting the hinge.
  • The cams 34, 36 each have, in addition to their circular cam surface, a location surface 48 positioned adjacent the cam surface. The location surface 48 is in the shape of a regular polygon having an even number of sides. The sides of the location surface 48 of each eccentric cam align with the circular cam surface substantially at their centre, and extend beyond the cam surface at either end, i.e., viewed from the top (Figure 3) the circle formed by the cam surface fits exactly inside the polygon of the location surface 48. In the embodiment shown the location surface is in the form of a decagon. By having an even number of sides, opposite sides of the polygon are always parallel and as the sides of the location surface align with the circular cam surface substantially at their centre the distance between opposite sides of the location surface 48 is equal to the diameter of the circular cam surface. In this manner the eccentric cams 34, 36 can be moved along their axis of rotation between a first position in which the cam surface is located between the bearing surfaces 42 and a second position in which the opposite sides of the location surface 48 are located between the bearing surfaces 42.
  • The bearing surfaces 42 parallel to the first 30 and/or second 32 slot have an undercut provided in them so that, in the first position, as the cams 34, 36 are rotated the location surface 48 can extend into the undercut and rotate therein so as to not inhibit adjustment of the floating plate 16. Once adjusted to the desired position opposite parallel sides of the location surface can be aligned with the bearing surface 42 and the cam 34, 36 moved to its second position. Preferably the eccentric cams 34, 36 are provided with a spring 50 to resiliently bias them into the second position. In this manner the user can place a tool, for example an alien key, in a suitably provided recess in the face of the eccentric cam, depress the cam 34, 36 against the spring 50 so as to move it into its first position, rotate the cam 34, 36 so that the cam surface acts on the bearing surface 42 to adjust the position of the floating plate, and then release the cam 34, 36 with opposite sides of the location surface 48 aligned with the bearing surface 42 so that it moves into its second position. In its second position as parallel surfaces of the location surface 48 are aligned and adjacent the parallel sides of the bearing surface 42 further movement is prevented as in the second position the cam 34, 36 can not rotate. As will be appreciated the use of the location surface 48 provides for indexed adjustment by discreet amounts as opposed to continuous adjustment, although the skilled person will appreciate that the location surface 48 can be omitted in an embodiment which is not part of the invention, if continuous adjustment is desirable.
  • In the embodiment shown adjustment is also provided in a third direction. The fixing plate 14 has a first fixing plate section 52 and a second fixing plate section 54. The second fixing plate section 54 is adjustable relative to the first fixing plate section 53 in a direction perpendicular to both the first slot 30 and the second slot 32. As can be seen the floating plate 16 is mounted on said second fixing plate section 54.
  • The first fixing plate section 52 has each end turned in to form a C shape defining a T slot when seen from the side. The second fixing plate section 54 sits in the T-slot and is attached thereto at either end by an adjusting screw 18. The adjusting screw moves the second fixing plate section 54 towards or away from the first fixing plate section 52, guided on location pins 22 which limit the movement of the second fixing plate section 54 to movement along the length of the location pins 22. An indicator line 26 may be provided on the top of the adjusting screw 18 and graduations 24 provided on the first fixing plate section 52 so that alignment of the indicator line 26 with the graduations 24 move the second fixing plate section 54 relative to the first fixing plate section 52 by a defined distance. For example, the distance between the graduations 24 can be such that rotation of the adjusting screw 18, so that the indicator line 26 moves from one graduation 26 to an adjacent graduation, moves the second fixing plate section 54 by 0.5mm.
  • Although not shown, the hinge may also be provided with clamping means for clamping the floating plate to the fixing plate so as to secure it in position, once it has been adjusted, and prevent accidental or unintentional movement in the adjustment mechanisms during use of the door or other closure to which it is fixed.
  • Fixing holes 56 are provides in the fixed plate 8 and the fixing plate 14 by which they can be attached to the closure and frame.
  • Although shown in Figure 1 with the fixed plate 8 attached to the frame and the fixing plate 14 attached to the closure, it will be appreciated that the hinge may be used in the opposite orientation. Furthermore it will be appreciated that the specific embodiment described herein includes features not essential to the invention, the scope of which is defined by the claims.

Claims (11)

  1. An adjustable hinge (6) for mounting an openable member to a frame, the hinge (6) comprising: a fixed plate (8), an adjustable plate (10) and a pivot member (12) pivotally connecting the fixed plate (8) and the adjustable plate (10); wherein the adjustable plate (10) comprises:
    a fixing plate (14) for fixed attachment to one of the openable member and the frame;
    a floating plate (16) movable relative to the fixing plate (14) in a first axis and in a second axis and configured for pivotal connection to the fixed plate (8), said floating plate (16) having a first slot (30) and a second slot (32) therein, said first and second slots (30, 32) being perpendicular to one another and each comprising two bearing surfaces (42) substantially parallel to the sides of the respective slots;
    a first adjustment means comprising a first eccentric cam (34) rotatable in said first slot (30) to adjust the position of the floating plate (16) relative to the fixing plate (14) in a first axis; and
    a second adjustment means comprising a second eccentric cam (36) rotatable in said second slot (32) to adjust the position of the floating plate (16) relative to the fixing plate (14) in a second axis;
    wherein said first and second eccentric cam (34, 36) each comprise a circular cam surface, said circular cam surfaces having a diameter substantially equal to the separation of its corresponding two bearing surfaces (42); characterised in that
    each eccentric cam (34, 36) further comprises a location surface (48) comprising a regular polygon having an even number of sides, said sides of the location surface (48) of each eccentric cam (34, 36) aligning with the circular cam surface substantially at their centre, and extending beyond the cam surface at either end, the location surface configured to act on the respective bearing surfaces to prevent rotation of the respective first and second eccentric cams,
    wherein the each eccentric cam (34, 36) is moveable along its axis of rotation between a first position in which the cam surface is located between the bearing surfaces (42) and a second position in which the location surface (48) is located between the bearing surfaces (42) and rotation is prevented.
  2. An adjustable hinge (6) according to claim 1 wherein:
    the second slot (32) extends transverse the floating plate (16) and wherein rotation of the second eccentric cam (36) applies a force to a side of the second slot (32) so as to move said floating plate (16) longitudinally along the fixing plate (14).
  3. An adjustable hinge (6) according to any one of the preceding claims wherein:
    the first slot (30) extends longitudinally along the floating plate (16) and wherein rotation of the first eccentric cam (34) applies a force to a side of the first slot (30) so as to move said floating plate (16) in a direction transverse to said first slot (30).
  4. The adjustable hinge (6) according to any one of the preceding claims further comprising a first saddle (38) located in and extending through the first slot (30) and wherein the first saddle (38) comprises two guide surfaces parallel to, and in sliding contact with, the sides of the first slot (30).
  5. The adjustable hinge (6) according to claim 4 wherein said bearing surfaces (42) are provided on the first saddle (38).
  6. The adjustable hinge (6) according to any one of the preceding claims further comprising a second saddle (40) located in and extending through the second slot (32) and wherein the second saddle (40) comprises two guide surfaces parallel to, and in sliding contact with, the sides of the second slot (32).
  7. The adjustable hinge (6) according to claim 6 wherein said bearing surfaces (42) substantially parallel to the sides of the second slot (32) are provided on the second saddle (40).
  8. The adjustable hinge (6) according to any one of the preceding claims, wherein the two bearing surfaces (42) parallel to the first and/or second slot (30, 32) have an undercut therein.
  9. The adjustable hinge (6) according to claim 1 wherein said first and/or second eccentric cam (36) is resiliently biased into the second position.
  10. The adjustable hinge (6) according to any preceding claim wherein the fixing plate (14) comprises a first fixing plate section (52) and a second fixing plate section (54), and wherein the second fixing plate section (54) is adjustable relative to the first fixing plate section (52) in a direction perpendicular to both the first slot and the second slot (32), and wherein said floating plate (16) is mounted on said second fixing plate section (54).
  11. The adjustable hinge (6) according to any preceding claim further comprising clamping means for clamping said floating plate (16) to said fixing plate (14).
EP13190105.0A 2012-10-26 2013-10-24 Adjustable hinge Active EP2725175B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB1219309.0A GB2507326A (en) 2012-10-26 2012-10-26 Adjustable hinge with floating plate movable in two axes relative to a fixing plate

Publications (3)

Publication Number Publication Date
EP2725175A2 EP2725175A2 (en) 2014-04-30
EP2725175A3 EP2725175A3 (en) 2015-09-16
EP2725175B1 true EP2725175B1 (en) 2019-12-18

Family

ID=47358718

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13190105.0A Active EP2725175B1 (en) 2012-10-26 2013-10-24 Adjustable hinge

Country Status (2)

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EP (1) EP2725175B1 (en)
GB (1) GB2507326A (en)

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EP2949844B1 (en) * 2014-05-27 2018-03-21 Wilh. Schlechtendahl & Söhne GmbH & Co. KG Hinge assembly for doors, windows or the like, with a clearance adjustment device
EP2955306A1 (en) * 2014-06-13 2015-12-16 KALE Kilit Dis ticaret A.S. A hinge having five degrees of freedom
AT14999U1 (en) 2015-06-10 2016-10-15 Roto Frank Ag Tape for a door or a window
KR102215589B1 (en) * 2015-11-18 2021-02-15 삼성전자주식회사 Hinge supporting apparatus for door of refrigerator
DE102015120542C5 (en) 2015-11-26 2022-12-22 Simonswerk, Gesellschaft mit beschränkter Haftung Adjustable door hinge
CN109296276A (en) * 2018-11-27 2019-02-01 肇庆市志盛门控五金有限公司 Three-dimensional adjustable type hides hinge
GB2596336A (en) * 2020-06-25 2021-12-29 Era Home Security Ltd Adjustable hinge
EP4006278A1 (en) * 2020-11-30 2022-06-01 SFS Group International AG Door hinge
AU2023222947A1 (en) * 2022-09-01 2024-03-28 Kdb Intellectual Pty Ltd Adjustable hinge and hinge mount

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DE19526016B4 (en) * 1995-07-17 2004-09-09 Aug. Winkhaus Gmbh & Co. Kg Eccentric adjustment device for a fitting for windows, doors or the like
JPH09100670A (en) * 1995-10-06 1997-04-15 Shinkansai Bearing Kk Door hinge and door hinge adjustor
DE10356403B3 (en) * 2003-12-03 2004-10-28 Simonswerk, Gmbh Door hinge strip, with multi-dimensional adjustment, has an eccentric at the frame mounting section and side adjustment screws to prevent slipping out of the adjusted alignment
CN2739318Y (en) * 2004-11-19 2005-11-09 伍志勇 Three-dimensional adjustable furniture door hidden hinge
ITRN20090009U1 (en) * 2009-07-30 2011-01-31 Koblenz Spa TOTAL HIDDEN HINGE WITH ADJUSTMENT ON THREE AXIS FOR DOORS AND / OR FURNITURE DOORS.
CN201635554U (en) * 2010-04-30 2010-11-17 重庆美心(集团)有限公司 Blind hinge adjustable in three directions
GB2490343B (en) * 2011-04-27 2017-04-12 Era Home Security Ltd Hinge

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Also Published As

Publication number Publication date
EP2725175A2 (en) 2014-04-30
GB2507326A (en) 2014-04-30
EP2725175A3 (en) 2015-09-16
GB201219309D0 (en) 2012-12-12

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