Closing device
11767697 · 2023-09-26
Inventors
Cpc classification
E05D7/081
FIXED CONSTRUCTIONS
International classification
Abstract
A compact, easily mountable door closer, particularly suited for use in cubicles provided in public washrooms, has a pivot member mounted substantially within a hollow body but has a section projecting from the body from which a door is, in use, suspended. A biasing element is provided to bias the pivot member toward a neutral position coincident with the door being closed. As the door and thus the pivot member is displaced away from the closed or neutral position to a defined angle, the biasing element and pivot member engage to provide a limit or fully open position.
Claims
1. A door closing apparatus, comprising: an elongate body of constant outer cross section, the elongate body having a length axis and an interior void; a pivot member located, at least in part, within the interior void, and constructed and arranged to rotate about a pivot axis, the pivot member including a first section and a second section arranged on the pivot axis, the second section being smaller in diameter than the first section; a biasing element located within the interior void and mounted between the elongate body and the pivot member to bias the pivot member toward a neutral position in which bias applied by the biasing element is at a minimum; and a damping means operable to damp rotation of the pivot member relative to the elongate body, wherein the biasing element, in combination with the pivot member, is configured such that as the pivot member is rotated a defined angle from the neutral position, the biasing element directly contacts an outer peripheral surface of the second section to limit further rotation of the pivot member.
2. The apparatus as claimed in claim 1, wherein the elongate body, when viewed along the length axis, has a uniform rectangular outer shape.
3. The apparatus as claimed in claim 1, wherein the pivot member includes a door mount projecting through an aperture in the elongate body.
4. The apparatus as claimed in claim 3, wherein the aperture is symmetrical about a longitudinal centreline of a face of the elongate body.
5. The apparatus as claimed in claim 3, wherein a seal is provided between the pivot member and the elongate body where the pivot member projects through the elongate body.
6. The apparatus as claimed in claim 5, wherein the seal is incorporated in a bearing.
7. The apparatus as claimed in claim 1, wherein the interior void includes a pivot cavity configured to receive the pivot member, the pivot cavity having a linear dimension in a direction of the pivot axis which terminates in a boundary defined by a wall section of the elongate body, and wherein that part of the pivot member located within the elongate body terminates in an end surface which is parallel to, and is a clearance fit relative to, the boundary.
8. The apparatus as claimed in claim 7, wherein the damping means comprises a damping grease located in the pivot cavity and between the end surface and the boundary.
9. The apparatus as claimed in claim 1, wherein the outer peripheral surface is spaced from and around the pivot axis and wherein part of the biasing element is pivotally attached to the pivot member outwardly of the outer peripheral surface.
10. The apparatus as claimed in claim 9, wherein the pivot member includes a channel extending around the outer peripheral surface, the part of the biasing element being pivotally retained within the channel.
11. The apparatus as claimed claim 1, wherein the biasing element comprises a single coil spring aligned generally along the length axis of the elongate body, a first link configured to pivotally connect the coil spring to the pivot member, and a second link to connect the coil spring to the elongate body.
12. The apparatus as claimed in claim 11, wherein the first link is rigid.
13. The apparatus as claimed in claim 11, further including an adjuster mounted between the second link and the elongate body, the adjuster being displaceable along the length axis; and a locking element to lock the adjuster relative to the elongate body in a selected position on the length axis.
14. The apparatus as claimed in claim 13, wherein the locking element is operable from the exterior of the elongate body.
15. The apparatus as claimed in claim 13, wherein the elongate body has an aperture in a wall thereof, through which the selected position of the adjuster is visible from the exterior of the elongate body.
16. The apparatus as claimed in claim 1, further comprising: a cover plate engaged with the elongate body, wherein the elongate body has a base surface, and the cover plate in combination with the base surface defines the interior void.
17. The apparatus as claimed in claim 1, further comprising: a cover plate engaged with the elongate body, wherein the cover plate defines an upper boundary of the interior void.
18. The apparatus as claimed in claim 1, wherein the pivot member includes a third section larger in diameter than the second section arranged on the pivot axis, the second section is disposed between the first section and the third section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A working embodiment of the invention will now be described with reference to the accompanying drawings in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
DETAILED DESCRIPTION OF THE INVENTION
(13) Referring to
(14) In the particular example shown in
(15) As will be apparent from the description that follows, the closer 15 is conveniently mounted on a cross member 18 forming part of the frame of the cubicle. As can be seen in
(16) Turning now to
(17) Located within the interior void 27 of this embodiment of closer is a pivot member 30, biasing element 31, and damping means (not shown), further details of which follow below. With these components installed within the void 27, the body can be closed by a cover plate secured to the body 25 by machine screws 33, the cover plate 32 defining the upper boundary of the void 27.
(18) The pivot member 30 is mounted for rotation about pivot axis 11 in a pivot cavity 35, forming part of the void 27, by way of a bearing 36, preferably a sealed bearing. The pivot member 30 preferably takes the form of a spindle having a round peripheral surface 37 positioned within the void 27 and a door mounting section 38 that projects through an aperture 39 provided on the longitudinal centreline of the base surface 40 of the body 25. When mounted in cross member 18, the door mounting section 38 also projects through slot 22 to provide a mount for the door 10. The pivot member 30 further includes a peripheral channel 41 defined by spaced flanges projecting from, and extending around, the peripheral surface 37. The length of the member 30, in the direction of the pivot axis 11, is set so that, when assembled into the pivot cavity 35, end surface 42 of the member 30 is a close clearance fit with the inner surface of the cover plate 32.
(19) The biasing element 31 is aligned in the general direction of the length axis 26 and is configured and arranged to bias the pivot member 30 to a neutral position; that is to say, a position in which the bias applied by the biasing element on the pivot member is at a minimum as shown in
(20) In the form shown, the biasing element 31 comprises a single coil spring 44 and two links. A first link 45 projects from one end of the coil spring 44 and is held in the peripheral channel 41 by means of pivot pin 46. As can be seen in
(21) A particular feature of the invention is that the pivot member 30 and the biasing element 31 are, in combination, configured so that as the pivot member 30 is rotated to a defined angle, in this example about 90°, from the neutral position, the biasing element 31 and pivot member 30 engage to limit further rotation of the pivot member. Referring now to
(22) The adjuster 50 locates within a channel 51 formed in the base of the interior void 27 and, in this example, the position of the adjuster in the channel 51 is both varied by, and locked by, a cap screw 52. The cap screw 52 is passed through a hole in an end 53 of the body, engaged in the adjuster 50 and can be rotated by a tool external to the closer to vary the position of the adjuster in the channel, and thus the degree of bias imposed by the biasing element 31 on the pivot member 30. A slot (not shown) may be provided in base wall 40 to allow the position of the adjuster 50 to be viewed.
(23) The damping means provided to damp the closing action preferably comprises a damping grease (not shown) which is placed in the void 27 and, more particularly in the pivot cavity 35, so as to surround the pivot member. The grease is also preferably provided between the end face 42 of the pivot member 32 and the inner surface of the cover plate 32. Any suitable grade of grease may be used, one suitable example being a grease having a kinematic viscosity at 40° C. in the range 150000 to 250000 cSt when tested according to ASTM D-445.
(24) It will thus be appreciated that a closer according to the invention is not only compact, easily positioned and fixed in place, but the operative parts are protected from harmful substances and unintended tampering.