EP3348757A1 - Dispositif de fixation d'un dispositif de pivotement - Google Patents
Dispositif de fixation d'un dispositif de pivotement Download PDFInfo
- Publication number
- EP3348757A1 EP3348757A1 EP18000015.0A EP18000015A EP3348757A1 EP 3348757 A1 EP3348757 A1 EP 3348757A1 EP 18000015 A EP18000015 A EP 18000015A EP 3348757 A1 EP3348757 A1 EP 3348757A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- unit
- fastening
- actuating unit
- region
- pivotable
- 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.)
- Granted
Links
- 238000006073 displacement reaction Methods 0.000 claims description 19
- 210000002414 leg Anatomy 0.000 description 47
- 210000003414 extremity Anatomy 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 210000000689 upper leg Anatomy 0.000 description 2
- 230000005540 biological transmission Effects 0.000 description 1
- 239000011248 coating agent Substances 0.000 description 1
- 238000000576 coating method Methods 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
- 230000002093 peripheral effect Effects 0.000 description 1
- 238000004381 surface treatment Methods 0.000 description 1
Images
Classifications
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05C—BOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
- E05C17/00—Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith
- E05C17/02—Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith by mechanical means
- E05C17/44—Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith by mechanical means with a device carried on the wing for frictional or like engagement with a fixed flat surface, e.g. for holding wings open or closed by retractable feet
- E05C17/443—Devices for holding wings open; Devices for limiting opening of wings or for holding wings open by a movable member extending between frame and wing; Braking devices, stops or buffers, combined therewith by mechanical means with a device carried on the wing for frictional or like engagement with a fixed flat surface, e.g. for holding wings open or closed by retractable feet of the pivoted lever or eccentric type, e.g. for sliding windows
Definitions
- the present invention relates to a device for detecting a pivoting device, such as a door, a window or the like, and an arrangement of a device for detecting a pivotable device on a door or on a window.
- a device for fixing a pivotable device such as a door, a window or the like, comprising a fastening unit with a fastening region for fastening the device to an edge of the pivotable device, an actuating unit which can be pivoted or rotated in a pivoting plane is mounted on a mounting unit storage area of the fastening unit, wherein the actuating unit has a stopper element, wherein the stopper element has a support surface which is convexly curved in or along a pivot plane.
- the device can thus be designed as a locking device and serves to determine the position of a pivotable device.
- the device not only can the device act like a doorstop in a certain position of the pivoting device, but it can also act in any position or angular position of the pivotable device.
- the locking device does not exert any force on the pivotable device in its opening or closing direction, so that the locking device according to the invention differs from a door closer or opener in terms of forces acting on it.
- the pivotable device here is in particular a door, ie a door leaf or leaf or a window or its casement. It is understood that the device can also be applied to similar elements which are pivotable.
- this has a fastening unit which is designed to enable a fixation or mounting of the device to an edge of the pivotable device.
- the pivotable device as a door or window, this has a circumferential, frontally oriented surface which forms the edge.
- the device comprises an actuating unit with a stopper element, which serves to be brought into engagement with an abutment.
- the abutment is preferably in the case of a door of the (floor) floor or in the case of a window a window sill.
- the engagement of the stopper element with the abutment is in this case in particular positive and / or force and / or frictional engagement.
- the actuating unit is mounted on the fastening unit.
- the bearing is designed such that the actuating unit is rotatable or pivotable in relation to the fastening unit about an axis of rotation, ie the bearing is expediently designed as a pivot bearing.
- the fastening unit has a fastening unit bearing area, which in one preferred embodiment is formed in one piece or in one piece with the fastening area.
- the displacement of the actuating unit relative to the fastening unit is effected by a rotation in a pivot plane, so that the axis of rotation is perpendicular to the pivot plane.
- the stopper element on a bearing surface which is partially in the locking position in contact with the abutment.
- the support surface is advantageously convexly curved in or along the pivot plane.
- the fastening unit bearing area is preferably formed by a cylinder jacket surface, preferably a bolt, extending perpendicularly to the pivot plane.
- the cylinder jacket surface or the point of curvature of the cylinder jacket surface can be arranged centrally in the attachment unit viewed in a profile direction. It is understood, however, that even an off-center arrangement is possible.
- the profile direction substantially corresponds to the direction or longitudinal extent of the fastening unit along or parallel to the pivot axis of the pivotable device. The profile direction is thus parallel to the pivot plane or perpendicular to the axis of rotation of the actuator unit.
- the fastening unit storage area is formed by a pin or bolt, with the outer circumferential surface of the actuating unit is engageable. The bolt may in this case extend parallel or coaxial with the axis of rotation of the actuating unit.
- the attachment unit storage area is formed by at least one, preferably two perpendicular to the pivot plane spaced walls, which preferably extends or extend substantially parallel to the pivot plane.
- the wall or wall particularly expediently extends or extends substantially perpendicularly away from a base of the attachment area in an opposite direction to legs of the attachment area extending away from the base.
- the wall or walls can also extend on one of the legs of the fastening region away from it.
- the wall itself serves as a mounting unit storage area and thus represents that functional part of the mounting unit on which the actuator unit is mounted, i. over which the actuating unit transmits or transmits a force into the fastening unit.
- two walls are provided, which are perpendicular to the pivot plane spaced from each other. It is particularly advantageous if the two walls extend substantially parallel to each other, so that their distance is constant. Particularly expediently, the wall (s) extend or extend substantially parallel to the pivoting plane. “Substantially parallel” here means that deviating from the parallelism manufacturing tolerances, so that a non-parallelism results to +/- 3 ° is included.
- the walls may be resiliently configured with respect to one another, such that, in order to fix the actuating unit, they can be further spaced apart from each other in order to receive a corresponding latching element or a corresponding engagement area of the actuating unit.
- the wall or the walls of the attachment storage area each have a first engagement area, with which the actuating unit for pivotable mounting is engaged or can be brought, wherein the first engagement area preferably extends along a circular arc.
- the first engagement region is expediently designed such that it allows a positive and / or non-positive engagement with the actuating unit.
- the first engagement region advantageously has corresponding engagement surfaces.
- the first engagement region extends, in particular its engagement surfaces, along a circular arc.
- the circular arc preferably has a center of curvature which lies on the axis of rotation of the actuating unit. The curvature of the arc is constant.
- the circular arc of the first engagement region advantageously has a radius of curvature in a range of 11 mm to 28 mm, in particular 14 mm to 20 mm.
- the first engagement region in particular its engagement surfaces, can expediently be formed as a groove or projection which advantageously extends in or parallel to the pivot plane. Further advantageously, the first engagement region extends over an arc angle of 90 ° to 180 °, in particular 110 ° to 140 ° and / or a radian measure or an arc length of 20 mm to 48 mm, in particular 28 mm to 40 mm.
- the wall or the walls of the fastening unit storage area in each case has an outer edge, which is convexly curved in the pivoting plane, preferably with a constant radius of curvature.
- the outer edge in this case represents that edge of the wall, which is oriented away from the attachment area.
- the outer edge is particularly preferably curved in a circular or circular arc shape and particularly expediently has a center of curvature which lies on the axis of rotation of the actuating unit.
- the actuation unit has an actuation unit storage area, via which the actuation unit is mounted on the fixation unit storage area.
- the actuator storage area is configured to allow for guidance with or in relation to the mounting unit storage area along a curved path, in particular a circular path.
- the operating unit storage area thus enables a power transmission from the operating unit to the fixing unit and at the same time a displaceability between the operating unit and the fixing unit.
- the actuating unit bearing area is preferably formed by a cylinder jacket surface extending perpendicularly to the pivot plane, preferably a recess or undercut.
- the cylinder surface can be considered form a circular arc, which spans an arc angle, which is preferably greater than 180 ° and more preferably between 190 ° and 220 °. In particular, by an angle greater than 180 ° thus provides the cylinder jacket surface an undercut for receiving a corresponding cylindrical surface, for example formed by a bolt, the fastening unit storage area.
- the cylinder surface can form a circular arc, which spans an arc angle, the smaller is 180 ° and preferably between 40 ° and 80 °.
- This embodiment is particularly preferred in the case of an engagement of the actuating unit bearing region (or its second engagement region) with a fastening bearing region (or its first engagement region) which extends along a circular arc with an arc angle of 90 ° to 180 °, in particular 110 ° to 140 ° and / or a radian measure or an arc length of 20 mm to 48 mm, in particular 28 mm to 40 mm.
- the actuator unit storage area is formed by at least one, preferably two perpendicular to the pivot plane spaced walls, which preferably extends or extend substantially parallel to the pivot plane.
- the actuator unit storage area can be formed by only a single wall, which is arranged or can be arranged between the walls of the fastening unit storage area.
- the operating unit storage area has two walls, which can likewise be arranged between the two walls of the fastening unit storage area.
- the one or two walls of the fastener storage area may be located between the two walls of the actuator storage area.
- the two walls are advantageously spaced apart perpendicular to the pivot plane. It is particularly advantageous if the two walls extend substantially parallel to each other, so that their distance is constant.
- the wall (s) extend or extend substantially parallel to the pivoting plane.
- substantially parallel here means that deviating from the parallelism manufacturing tolerances, so that a non-parallelism results to +/- 3 ° is included.
- the walls may be resiliently configured with respect to each other so that the spacing of the walls of the actuating unit bearing region can be changed in certain regions in order to receive a corresponding latching element or a corresponding engagement region of the fastening unit.
- the wall or walls of the actuator storage area has a second engagement area with which the mounting unit storage area is engageable or engageable for pivotable storage, the second engagement area preferably extending along a circular arc.
- the first engagement region of the wall of the fastening unit bearing region and the second engagement region of the wall of the actuating unit bearing region are formed substantially congruent to one another.
- the geometries of the first and / or second engagement region remain or are constant.
- the second engagement region is expediently designed such that it allows a positive and / or non-positive engagement with the fastening unit.
- the second engagement region advantageously has corresponding engagement surfaces.
- the second engagement region in particular its engagement surfaces, extends along a circular arc.
- the circular arc preferably has a center of curvature which lies on the axis of rotation of the actuating unit. The curvature of the arc is constant.
- the wall of the actuating unit bearing region has an outer edge, which is concavely curved in the pivot plane, preferably with a constant radius of curvature.
- the outer edge of the wall of the actuator storage area extends over an arc angle between 40 ° and 80 °.
- one of the first or second engagement regions is formed as a projection and the other of the engagement regions as a recess, which are designed to interlock.
- the projection and the recess particularly preferably have the geometry of a circular arc.
- the center angle or circular arc angle of the front or rear jump of the first engagement region is greater than that of the second engagement region.
- a ratio of the circular arc angle of the second engagement region to the first engagement region between 0.3 and 0.7, in particular 0.4 and 0.6, preferably, since this is an optimal relationship between stability of the connection between the actuating unit and mounting unit on the one hand and on the other hand the degree the pivotability of the actuator unit can be achieved.
- the attachment region is formed from a base and two legs extending transversely therefrom, the legs preferably being substantially equal in length.
- the attachment region can form essentially a U-shaped cross-section when viewed in the profile direction.
- the profile direction is expediently parallel to the pivot plane.
- the profile direction and the axis of rotation of the actuating unit thus form a plane which is expediently perpendicular to the pivoting plane.
- the attachment region can in this case be designed as a rail, by means of which it is possible to arrange the attachment unit on a door rebate.
- the extent of the base between the two legs is in particular greater than the distance from two opposite surfaces of the pivotable device to which the device is to be fixed.
- the legs preferably protrude in the same direction away from the base.
- the legs it is preferable for the legs to extend essentially parallel to the pivot plane.
- one or both legs extend at an angle smaller than 90 °, more preferably between 85 ° and 89 °, to the base such that the free ends of the legs are closer to each other than the legs at the base from each other are spaced.
- the mounting unit storage area is provided or arranged on the base or on one of the legs.
- the pivoting plane is thus transverse, in particular perpendicular, to the extent of both legs of the fastening area.
- the fastening unit storage area at the The pivoting plane is thus transverse, in particular perpendicular, to the extent of the base of the fastening region and / or the limbs, on the other hand, are expediently essentially parallel to the pivot plane and do not intersect these.
- the fastening unit is designed such that it can be brought to bear against two opposing surfaces of the pivotable device.
- the opposite surfaces of the pivotable device are - especially in a design as a door leaf - the spaced-apart and oppositely oriented door leaf surfaces or the spaced apart and oppositely oriented surfaces of a door rebate.
- the frontally oriented edge of the pivotable device is provided or arranged on the outer periphery of the opposite surfaces of the pivotable device.
- the fastening unit is designed such that it can be brought to bear on the two opposite surfaces supporting.
- the device for fixing the pivotable device can be fixed by means of the fastening unit on the opposite surfaces, in that the fastening unit initiates oppositely oriented forces on the opposite surfaces and thus clamps the device to the pivotable device.
- the fastening unit has a counter element, which relative to the attachment region, in particular one of the legs, is displaceable, preferably translationally displaceable, such that the pivotable device can be clamped with or between it.
- the counter element is particularly advantageously fixed or storable on one of the legs such that the counter element is displaceable in relation to the attachment area, in particular the other of the legs.
- the displacement direction is preferably parallel to the extension of the base.
- the displacement direction of the counter element can be particularly advantageously parallel to the axis of rotation of the actuating unit or at an angle of up to +/- 5 ° when the fastening unit bearing area is formed at the base of the fastening area.
- the displacement direction of the counter element is substantially parallel to the pivot plane of the actuating unit or deviating therefrom by at most +/- 5 °.
- the counter element is designed or arranged in such a way that-in the mounted state of the device-it is arranged between the pivotable device and the fastening region, in particular one of the legs.
- the pivotable device arranged in the fastening region for example the U-shaped region, can be clamped between the counter element and the fastening region or its limb.
- one leg of the attachment portion engages one of the opposite surfaces of the pivotable device and the counter element engages the other of the opposite surfaces of the pivotable device.
- the attachment region in particular one of the legs, has a support surface for engagement with one of the opposite surfaces and the counter element has a contact surface for engagement with the other of the opposing surfaces, the support surface and the abutment surface being substantially parallel to each other, and wherein Support surface preferably at a distance between 10 mm and 20 mm, preferably between 12 mm and 17 mm, can be arranged or arranged to the contact surface.
- the support surface of the attachment portion or the leg advantageously projects transversely from the base of the attachment area.
- the support surface may advantageously be inclined at an angle between 85 ° and 89 ° to the base such that the free end of the support surface is inclined towards the opposite leg.
- the support surface substantially opposite, the counter element has a contact surface.
- the support surface and the contact surface are advantageously aligned substantially parallel to one another.
- “Substantially parallel” here means that even deviations of up to 5 ° are to be understood as “substantially parallel”, which is caused, in particular, by a non-rectangular arrangement of the support surface to the base of the fastening region.
- the contact surface of the counter element can also be arranged in this way be that their free from the base of the mounting portion further free end is inclined to the support surface of the opposite leg.
- the inclination of the contact surface of the counter element to the base of the mounting portion can be at an angle between 85 ° and 89 °.
- the support surface and the abutment surface are at a distance bridged by the base of the attachment region.
- the distance is advantageously between 10 mm and 20 mm, particularly preferably between 12 mm and 17 mm. In this way, a great flexibility of the thickness or strength of that region of the pivotable device on which the device is arranged can be particularly advantageously made possible.
- a friction-increasing layer is provided on the support surface and / or the contact surface.
- the layer may extend over the entire support surface and / or contact surface. Alternatively, however, the layer extends only over partial areas, in particular in the case of the contact surface.
- the friction-increasing layer may be formed as a cohesively formed with the support and / or contact surface coating or as separate elements.
- the friction-increasing layer of the support surface is formed as a separate element, which is detachably connected by the leg of the attachment region and connectable with the leg via a positive and / or positive connection.
- the friction-increasing layer may also be formed such that the support and / or contact surface is subjected to a surface treatment or is equipped by means of a specific surface geometry.
- the counter element has a threaded bore, with which a displacement element is engaged or can be brought, which is ab leveragend on the attachment region, in particular one of the legs, arranged or arranged.
- the threaded bore of the counter element is formed on its inner peripheral surface with a thread, which preferably represents a left-hand thread. With the thread of the threaded bore, a displacement element can be brought into engagement, which can be supported on the attachment region, in particular one of the legs.
- the displacement element is supported on the leg opposite the support surface.
- the leg has a recess or a hole, which preferably has a smaller diameter than the threaded bore of the counter element.
- both legs of the mounting portion are provided with a corresponding hole or a corresponding recess.
- the holes or recesses of the legs are in this case symmetrical and / or collinear or concentric relative to an axis which is parallel to the axis of rotation or pivoting plane. It is understood that it is useful for the left / right installation, if the recesses or holes of the legs have the same geometric configuration.
- the displacement element is designed as a screw, which has a radial collar or an annular radial recess for bearing against the fastening region, in particular one of the legs.
- the screw thus consists of a threaded portion and a support surface, which is preferably formed circumferentially by a radial collar or recess is provided.
- the annular, radial recess can in particular be formed by a reduction in cross-section of the screw.
- the support surface, which is formed by the collar or recess, serves to rest against the leg, whereas that region of reduced diameter of the screw can penetrate or protrude through the recess or the hole in the leg.
- the screw preferably has an engagement region for actuating the screw on the end face.
- the stopper element is wedge-shaped and preferably has a contact surface substantially opposite the counter surface, which is designed to be supported on the attachment unit, in particular the attachment region or an outstanding section thereof.
- the counter surface is circular arc-shaped and has a center of curvature, which is advantageously located on the axis of rotation of the actuating unit.
- the counter surface may be at the attachment area, in particular at a displacement of the actuating unit in a locking position, on the Support the fastening unit.
- the counter surface is concave in a lying on the axis of rotation cross-section, particularly preferably has a V-shaped configuration.
- an abutment surface provided on the fastening unit can have a convex, in particular V-shaped projection, so that the stopper element can be guided optimally when the actuation unit is pivoted.
- the wedging of the stopper element, ie the wedge angle, is preferably in the range between 10 ° and 22 °, in particular between 13 ° and 18 °.
- the axis of rotation of the actuator and the center of curvature of the support surface of the stopper element are spaced apart.
- the axis of rotation of the actuating unit is closer to the supporting surface or base of the fastening region, and thus of the pivoting device, and closer to the abutment, i. Bottom, adjacent region of the attachment region is located as the center of curvature of the support surface of the stopper element.
- the actuating device between an open position and a locking position is pivotable.
- the stopper element In the open position, the stopper element is brought into a position in which it is not in engagement with the abutment, for example the floor, so that in the open position, the device for fixing the pivotable device inactive or is overridden.
- the actuating unit From the open position, the actuating unit can be pivoted about an intermediate position in the locking position.
- a thicker part of the wedge-shaped stopper element is preferably brought into abutment with the fastening unit than in the open position, so that the space underneath the fastening unit is bridged by the stopper element for abutment.
- the stopper member in the locked position, is in a position in which it is engaged with the abutment.
- a fixing device for fixing and / or holding and / or forcing the actuating unit in the or the open position which acts between the fastening unit and the actuating unit, wherein the fixing device preferably consists of a spring element or is formed a projection which is designed to engage in an undercut, wherein furthermore preferably the projection on one and the undercut on the other of the elements actuating unit and fixing unit is provided.
- a spring element such as a helical spring, which or its ends are fastened to the fastening unit and the actuating unit. As a result, the actuating unit can be biased in an open position.
- an arrangement of a device for fixing a pivotable device such as a door, a window or the like, may be provided on a door or a window, wherein the device comprises a fixing unit with a mounting area, over which the device at an edge of the pivotable device fastened, and an actuating unit, which is pivotally mounted in a pivoting or pivoting on a mounting unit storage area of the fastening unit, wherein the actuating unit comprises a stopper element, wherein the stopper element has a support surface which is designed with an abutment in Engaging to be brought, wherein the actuating unit between an open position and a locking position is pivotable, wherein in the locking position, a larger proportion of the stopper element between the door or the window and the abutment as in the open-posit ion is arranged.
- the fastening unit has a support surface and a substantially opposite counter element, which are mutually displaceable so that the edge or the door rebate of the door or the window can be clamped between them .
- the fastening unit for example, a plate-shaped base which extends along the end face or end face, in particular the bottom, the door or the window and thus bridges the thickness or thickness of the door or the window.
- the base of the mounting portion is plate-shaped and thin-walled, since usually only a few millimeters of space are available between the lower door edge and floor.
- a working space is formed, the side, that is limited in the opening and closing direction of the pivotable device by an extension of the opposite surfaces of the pivotable device.
- the working space is limited by the imaginary extension of the door to the abutment.
- FIGS. 1 to 4 a preferred embodiment of a device according to the invention for detecting a pivotable device is shown. This comprises a fastening unit 2 and an actuating unit 4.
- the fastening unit 2 comprises a fastening region 6 and a fastening unit bearing region 8.
- the fastening region 6 serves for securing the device to an edge of a pivotable device 100.
- the fastening region 6 has essentially the shape of a U-shaped rail and is formed by a base 10 formed, from which two legs 12, 14 protrude.
- the fastening region 6, or the U-shaped rail extends in profile direction T.
- the fastening unit 2 furthermore has a counter element 16 which is displaceable relative to the opposite leg 12 along a direction of displacement V such that the pivotable device 100 can be clamped between the leg 12 and the counter element 16.
- the leg 12 has a support surface 18 for engagement with one of two opposing surfaces 102, 104 of the pivotable device 100.
- the counter element 16 likewise has a contact surface 20 which faces the support surface 18 and which serves to bear against the other of the opposite surfaces 102, 104.
- a threaded bore 22 is provided in the counter element 16, in whose thread a displacement element 24 engages.
- the displacement element 24 is designed as a screw, which has a radial recess 26 which can be brought to bear on a surface of the leg 14 which is opposite the leg 12 and which surrounds a hole 28.
- the Hole 28 in this case has a smaller diameter than the threaded bore 22nd
- the leg 12 also has a hole 28, which is identical in terms of its position and geometry to the hole 28 of the leg 14.
- the support surface 18 is formed with a friction-increasing layer 30 in the form of a separate element whose base area substantially corresponds to that of the counter-element 16.
- the friction-increasing layer 30 has at its rear a projection adapted to engage a hole 28 of the leg 12 to position the friction-increasing layer 30.
- the fastening unit bearing region 8 of the fastening unit 2 is used for mounting the actuating unit 4 in such a way that the actuating unit 4 is pivotable or rotatable about a rotation axis R in a pivoting plane S.
- the fastening unit-bearing area 8 is formed in the illustrated embodiment by two perpendicular to the pivot plane S spaced walls, which extend parallel to the pivot plane S.
- the walls 32 are bounded by an outer edge 34, which is curved in the pivoting plane S convex with a constant radius of curvature.
- the actuating unit 4 has an actuating unit bearing region 36, which is formed by two walls 36 which are spaced apart from one another perpendicular to the pivoting plane S and which extend substantially parallel to the pivoting plane S.
- the fastening unit bearing area 8 has a first engagement area 38 on its walls 32.
- the walls 38 of the actuating unit bearing region 36 each have a second engagement region 42.
- the first engagement portion 40 and the second engagement portion 42 are advantageously congruent with each other in their geometric configuration formed, wherein in the illustrated embodiment, the first engagement portion 40 is formed as directed to the respective opposite wall 32 projection, while the second engagement portion 42 is formed as outwardly oriented return. It is advantageous that the two engagement regions 40, 42 extend along a circular arc whose center of curvature lies on the axis of rotation R.
- the actuating unit furthermore has a stopper element 44 with a bearing surface 46, which is convexly curved along the pivoting plane S. Opposite the bearing surface 46, the stopper element 44 has a counter surface 48, which can be supported on the fastening unit 2, in particular a protruding section 50 thereof.
- a fixing device is provided, which is formed from a projection 52 which is provided on the fixing unit 2.
- the projection 52 is designed to engage in a corresponding undercut 54 of the actuator unit 4.
- a working space 108 is formed between the pivotable device 100 and the bottom serving as abutment 106, wherein in the locking position, a larger proportion of the stopper 44 is disposed in the working space 108 than in the open position.
- FIG. 5 is shown a further preferred embodiment of the device according to the invention.
- the attachment unit support portion 8 is disposed on the leg 14 of the attachment portion 6, while the base 10 of the attachment portion 6 extends beyond the edge 110 of the pivotal device.
- FIG. 6 a further preferred embodiment of the device according to the invention.
- the fastening unit bearing portion 8 is formed as a perpendicular to the pivot plane S extending bolt 56.
- the actuator storage portion 36 is formed as a congruent to the bolt 56
- Undercut 58 is formed, which has a circular segment shape in the illustrated embodiment, which has an opening angle smaller than 180 °, so that the actuator unit storage area is alsklippsbar quasi on the bolt 56.
- the base 10 of the fastening region 6 does not extend underneath the pivotable device 100 but laterally around the edge 110 of the pivotable device 100.
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- Mechanical Engineering (AREA)
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Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PL18000015T PL3348757T3 (pl) | 2017-01-15 | 2018-01-09 | Urządzenie do unieruchamiania urządzenia wychylnego |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102017000297.5A DE102017000297B4 (de) | 2017-01-15 | 2017-01-15 | Vorrichtung zum Feststellen einer schwenkbaren Einrichtung |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3348757A1 true EP3348757A1 (fr) | 2018-07-18 |
EP3348757B1 EP3348757B1 (fr) | 2020-07-08 |
Family
ID=60954850
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP18000015.0A Active EP3348757B1 (fr) | 2017-01-15 | 2018-01-09 | Dispositif de fixation d'un dispositif de pivotement |
Country Status (5)
Country | Link |
---|---|
EP (1) | EP3348757B1 (fr) |
DE (1) | DE102017000297B4 (fr) |
ES (1) | ES2834090T3 (fr) |
HU (1) | HUE051343T2 (fr) |
PL (1) | PL3348757T3 (fr) |
Citations (8)
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US1606149A (en) * | 1925-12-07 | 1926-11-09 | Allen Bessie | Door-anchor mechanism |
US1915795A (en) * | 1931-02-20 | 1933-06-27 | Macmillan Samuel Blair | Doorstop |
US2898140A (en) * | 1955-08-15 | 1959-08-04 | Wilbur W Gislason | Door stop |
US4805948A (en) * | 1988-02-22 | 1989-02-21 | Renzi David A | Door security wedge device |
US6120072A (en) * | 1995-05-22 | 2000-09-19 | Tesseract Enterprises, Inc. | Doorstop |
US20050193520A1 (en) * | 2004-03-08 | 2005-09-08 | Bushey Richard D. | Door stop |
DE102008051406A1 (de) * | 2008-10-11 | 2010-04-15 | Harald Stallegger | Universalhaken |
CN102235128A (zh) * | 2010-04-23 | 2011-11-09 | 厦门宝利铭科技发展有限公司 | 一种门阻器 |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US1300912A (en) | 1918-07-20 | 1919-04-15 | Roland L Yarberry | Door-bolt. |
US2737408A (en) | 1952-04-09 | 1956-03-06 | Spede Corp | Door check |
DE202006016655U1 (de) | 2006-10-24 | 2007-01-04 | Deng, Jinn-Yi, Hua Tan | Türfeststeller |
CN106437361A (zh) | 2016-09-27 | 2017-02-22 | 周子涵 | 一种门的定位装置的工作方法 |
-
2017
- 2017-01-15 DE DE102017000297.5A patent/DE102017000297B4/de active Active
-
2018
- 2018-01-09 ES ES18000015T patent/ES2834090T3/es active Active
- 2018-01-09 HU HUE18000015A patent/HUE051343T2/hu unknown
- 2018-01-09 EP EP18000015.0A patent/EP3348757B1/fr active Active
- 2018-01-09 PL PL18000015T patent/PL3348757T3/pl unknown
Patent Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US1606149A (en) * | 1925-12-07 | 1926-11-09 | Allen Bessie | Door-anchor mechanism |
US1915795A (en) * | 1931-02-20 | 1933-06-27 | Macmillan Samuel Blair | Doorstop |
US2898140A (en) * | 1955-08-15 | 1959-08-04 | Wilbur W Gislason | Door stop |
US4805948A (en) * | 1988-02-22 | 1989-02-21 | Renzi David A | Door security wedge device |
US6120072A (en) * | 1995-05-22 | 2000-09-19 | Tesseract Enterprises, Inc. | Doorstop |
US20050193520A1 (en) * | 2004-03-08 | 2005-09-08 | Bushey Richard D. | Door stop |
DE102008051406A1 (de) * | 2008-10-11 | 2010-04-15 | Harald Stallegger | Universalhaken |
CN102235128A (zh) * | 2010-04-23 | 2011-11-09 | 厦门宝利铭科技发展有限公司 | 一种门阻器 |
Also Published As
Publication number | Publication date |
---|---|
DE102017000297B4 (de) | 2021-12-16 |
PL3348757T3 (pl) | 2021-01-11 |
HUE051343T2 (hu) | 2021-03-01 |
DE102017000297A1 (de) | 2018-07-19 |
EP3348757B1 (fr) | 2020-07-08 |
ES2834090T3 (es) | 2021-06-16 |
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