HANGING DEVICE WITH RESILIENTLY DEFORMABLE SECTION
20210145197 · 2021-05-20
Inventors
- Kelly R. Krake (Calgary, CA)
- Liette Tousignant (Calgary, CA)
- Michael Kurtz (Calgary, CA)
- Ian Matthew Campana (Calgary, CA)
Cpc classification
A47G25/0628
HUMAN NECESSITIES
International classification
Abstract
There is disclosed a hanging device for being secured to a brick. The device has an elongated member extending between a first end and a second end. The elongated member has a resiliently deformable section. The elongated member and the resiliently deformable section form a monolithic structure. A retaining structure is disposed on the elongated member between the first and second ends. Gripping members are each located at a respective one of the first and second ends of the elongated member and extend from the elongated member. The gripping members define abutting surfaces configured for contacting opposed sides of the brick. The abutting surfaces face each other and define a brick receiving space therebetween. A height of the brick receiving space is variable upon deformation of the resiliently deformable section. A method of supporting an object is also disclosed.
Claims
1. A hanging device for being secured to a brick, comprising: an elongated member extending between a first end and a second end, the elongated member having a resiliently deformable section between the first and second ends, the elongated member and the resiliently deformable section forming a monolithic structure; a retaining structure disposed on the elongated member between the first and second ends; and gripping members each located at a respective one of the first and second ends of the elongated member and extending from the elongated member, the gripping members defining abutting surfaces to contact opposed sides of the brick, the abutting surfaces of the gripping members facing each other and defining a brick receiving space therebetween, a height of the brick receiving space being variable upon deformation of the resiliently deformable section.
2. The hanging device of claim 1, wherein the resiliently deformable section is deformable along a longitudinal axis of the elongated member, the longitudinal axis extending between the first and second ends.
3. The hanging device of claim 1, wherein the retaining structure is part of the monolithic structure.
4. The hanging device of claim 1, wherein the resiliently deformable section includes at least one planar spring.
5. The hanging device of claim 4, wherein the at least one planar spring has a sinusoidal shape defined by a plurality of adjacent and interconnected “U”-shaped sections.
6. The hanging device of claim 4, wherein the at least one planar spring includes two planar springs, one of the two planar springs being a mirror of the other relative to a central axis of the elongated member.
7. The hanging device of claim 4, wherein the elongated member has an inner side and an opposed outer side, the at least one planar spring defining part of both the inner and outer sides.
8. The hanging device of claim 1, wherein the gripping members have teeth defining the abutting surfaces.
9. The hanging device of claim 8, wherein each of the teeth have a pyramidal shape.
10. The hanging device of claim 9, wherein the abutting surfaces are defined by tips of the teeth, the tips of the teeth being flat.
11. The hanging device of claim 1, wherein the monolithic structure is made of an injectable material.
12. The hanging device of claim 1, wherein the elongated member has a first section and a second section, the resiliently deformable section extending between and interconnecting the first and second sections, the retaining structure being disposed on one of the first and second sections.
13. The hanging device of claim 12, wherein the one of the first and second sections is an upper one of the first and second sections upon the hanging device being disposed vertically on the brick.
14. The hanging device of claim 12, wherein the first, second, and resiliently deformable sections lie in a common plane, the resiliently deformable section being deformable in the common plane.
15. The hanging device of claim 1, wherein the retaining structure is a hook.
16. The hanging device of claim 15, wherein the hook is part of the monolithic structure.
17. The hanging device of claim 16, wherein the monolithic structure includes one of reinforcement fillets and chamfers at an intersection between the hook and the elongated member.
18. The hanging device of claim 1, wherein the retaining structure projects from an outer surface of the elongated member, and the gripping members extend from an inner surface of the elongated member.
19. A method of supporting an object from a brick, the method comprising: positioning one of two gripping members on one of opposed sides of the brick, the two gripping members located at respective ends of an elongated member; stretching a resiliently deformable section of the elongated member; positioning the other of the two gripping members on the other of the opposed sides of the brick; and supporting the object from a retaining structure disposed on the elongated member.
20. The method of claim 19, wherein stretching the resiliently deformable section includes stretching at least one planar spring.
21. The method of claim 19, wherein positioning the one of the two gripping members on the one of the opposed sides of the brick is performed before stretching the resiliently deformable section.
22. The method of claim 19, wherein, prior to stretching, a height of a brick receiving space defined between abutting surfaces of the two gripping members is less than a distance between the opposed sides of the brick.
23. The method of claim 19, wherein the one of the two gripping members is a lower one of the two gripping members.
Description
DESCRIPTION OF THE FIGURES
[0006] In the figures,
[0007]
[0008]
[0009]
[0010]
DETAILED DESCRIPTION
[0011] Referring to
[0012] The elongated member 12 includes a resiliently deformable section 12e between the first and second ends 12a, 12b. In the depicted embodiment, the elongated member 12 includes two sections 12f, 12g. The resiliently deformable section 12e is located between the two sections 12f, 12g relative to the longitudinal axis L, and interconnects the two sections 12f, 12g. Herein, resiliently deformable means that the resiliently deformable section 12e is able to be deformed upon a force applied in a direction parallel to the longitudinal axis L and that the section 12e tends to revert back to its original shape upon release of the force.
[0013] In the embodiment shown, the elongated member 12 and the resiliently deformable section 12e form a monolithic structure 14. Stated otherwise, the elongated member 12 and the resiliently deformable section 12e are integral. In the embodiment shown, the monolithic structure 14 is made of any suitable thermoplastic material, such as polycarbonate or any other suitable material. The monolithic structure 14 may be manufactured by any suitable process, such as, by moulding. The monolithic structure 14 may be formed of an injectable material such as a thermoplastic that may be polycarbonate.
[0014] The resiliently deformable section 12e includes at least one planar spring 12e.sub.1. In the embodiment shown, two planar spring are disposed side-by-side. In the embodiment shown, the planar springs 12e.sub.1, and the two sections 12f, 12g of the elongated members all extend from the elongated outer side 12c to the elongated inner side 12d. Stated otherwise, the planar springs 12e.sub.1 are coplanar with the elongated member sections 12f, 12g. In other words, the planar springs 12e.sub.1 and the elongated member sections 12f, 12g lie within a common plane P. The resiliently deformable section 12e is deformable in the common plane P. The planar springs 12e.sub.1 define part of the inner and outer surfaces 12d, 12c of the elongated member 12 and are part of the monolithic structure 14. As shown, a thickness t of the elongated member 12 corresponds to that of the planar springs 12e.sub.1 and the elongated member sections 12f, 12g.
[0015] As illustrated, one of the springs 12e.sub.1 is the mirror image of the other relative to a center axis C of the elongated member 12. In the embodiment shown, each of the springs 12e.sub.1 has a sinusoidal shape defined by a plurality of adjacent and interconnected “U”-shaped sections 12e.sub.2. As illustrated, each of the springs 12e.sub.1 has three “U”-shaped sections 12e.sub.2. The resiliency of the resiliently deformable section 12e is provided by the material of the springs 12e.sub.1. Other configurations are contemplated.
[0016] Referring more particularly to
[0017] The abutting surfaces 16a of the gripping members 16 face each other and define a brick receiving space S2 therebetween. A height H of the brick receiving space S2 is variable upon deformation of the resiliently deformable section 12e. At rest and in an uninstalled configuration, the height H of the brick receiving space S2 is less than a distance D between the opposed sides B1 of the brick B such that, when the hanging device 10 is secured to the brick B, the resiliently deformable section 12e exerts a biasing force for clamping the brick B between the two gripping members 16.
[0018] In the embodiment shown, the gripping members 16 each have a curved portion and may extend perpendicularly from the elongated member 12. As shown, the gripping members 16 have teeth 16b that define the abutting surface 16a. The teeth may have a pyramidal shape having a tip 16c that may be flat. In the embodiment shown, the abutting surface 16a is defined by the teeth tips 16c. It is understood that the teeth 16b may have other shapes, such as, conical and frusto-conical.
[0019] The device 10 further has a retaining structure 18′ located between the first and second ends 12a, 12b of the elongated member 12. In the embodiment shown, the retaining structure 18′ protrudes outwardly from the outer surface 12c of the elongated member 12. As discussed herein below, the retaining structure 18′ may be embodied as a hook 18 that might take a plurality of different shapes as a function of the intended use. In the embodiment shown, the retaining structure 18′ is part of the monolithic structure 14. It is however understood that the retaining structure 18′ may be an aperture defined through the elongated member 12. Such aperture may be configured for removably receiving a hook.
[0020] In the illustrated embodiment, the monolithic structure 14 has reinforcement fillets 14a located at an intersection I between the hook 18 and the elongated member 12. Such fillets 14a might help alleviate stress concentrations that might occur at this intersection I. In a particular embodiment, a chamfer is used.
[0021] In the installed configuration depicted in
[0022] In a particular embodiment, the disclosed hanging device 10 may cater to different sizes of brick B via deformation of the resiliently deformable section 12 of the elongated member 12. The abutting surfaces 16a of the hanging device gripping members 16 may be able to contact the brick B along an entire length of the gripping members 16 even for uneven bricks.
[0023] Still referring to
[0024] In the depicted embodiment, a lower one of the two gripping members 16 is positioned on a lower one of the opposed sides B1 of the brick B before the resiliently deformable section 12e is stretched. In the embodiment shown, stretching the resiliently deformable section 12e includes stretching at least one planar spring 12e.sub.1. In the embodiment shown, disposing the lower one of the two gripping members 16 before the upper one allows using the retaining structure 18′ so stretch the resiliently deformable section 12e. Alternately, the upper one of the gripping members 16 may be positioned on an upper one of the brick opposed sides B1 before the resiliently deformable section 12e is stretched.
[0025]
[0026] In
[0027] In
[0028] In
[0029] In
[0030] In
[0031] In
[0032] In
[0033] As can be understood, the examples described above and illustrated are intended to be exemplary only. The scope is indicated by the appended claims.