Method of Protecting a Fixing
20230041088 · 2023-02-09
Inventors
Cpc classification
F16B37/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B33/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2200/506
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B25/0026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A fixing cover (12) configured to cover an exposed portion of a fixing (10), the fixing cover (12) comprising a filler (20) and gripping means (40).
Claims
1. A fixing cover configured to cover an exposed portion of a fixing, the fixing cover comprising a filler and a gripping means, wherein the filler comprises a corrosion inhibitor and wherein the filler is a solid tablet that releases vapour to inhibit corrosion.
2. (canceled)
3. The fixing cover of according to claim 1, wherein the filler is adapted to fill a space between the fixing cover and the fixing.
4. The fixing cover according to claim 1, wherein the filler comprises an insulating material.
5. The fixing cover according to claim 1, wherein the filler is a gel.
6. (canceled)
7. The fixing cover according claim 1, wherein the fixing cover comprises a hollow cap having a domed outer surface and an end surface, wherein a sealant is provided on the end surface and is adapted to form a seal between the end surface and a surface of a structure into which the fixing is inserted.
8. The fixing cover according to claim 1, wherein the gripping means comprise one or more resilient arms.
9. The fixing cover according to claim 8, wherein the one or more resilient arms extend away from a central point of the fixing cover.
10. The fixing cover according to claim 9, wherein there are three or more resilient arms, having equal angles therebetween.
11. The fixing cover according to claim 10, wherein the gripping means are made of a material which can flex and has some spring characteristics to allow for plastic deformation.
12. A framework for a building comprising a beam, a fixing inserted into the beam and a fixing cover for the fixing, the fixing cover being arranged to cover an exposed portion of the fixing, wherein a filler is provided between the fixing cover and the fixing, the filler filling a space between the fixing cover and the fixing, and wherein the fixing cover further comprises gripping means, wherein the filler comprises a corrosion inhibitor and wherein the filler is a solid tablet that releases vapour to inhibit corrosion.
13. A pipeline comprising at least two pipes, each of the pipes having a flange for connection to an adjacent pipe, at least one fixing inserted through adjacent flanges and a fixing cover for the fixing, the fixing cover being arranged to cover an exposed portion of the fixing, wherein a filler is provided between the fixing cover and the fixing, the filler filling a space between the fixing cover and the fixing, and wherein the fixing cover further comprises gripping means, wherein the filler comprises a corrosion inhibitor and wherein the filler is a solid tablet that releases vapour to inhibit corrosion.
14. A concrete anchor connection comprising at least one fixing part inserted into concrete and a fixing cover for the fixing part, the fixing cover being arranged to cover an exposed portion of the fixing part, wherein a filler is provided between the fixing cover and the fixing part, the filler filling a space between the fixing cover and the fixing part, and wherein the fixing cover further comprises gripping means, wherein the filler comprises a corrosion inhibitor and wherein the filler is a solid tablet that releases vapour to inhibit corrosion.
15. A method of protecting a fixing that is inserted in a structure, comprising inserting a filler into a fixing cover to cover an inner surface of a fixing cover, and attaching the cover to an exposed portion of the fixing, wherein the fixing cover comprises gripping means, wherein the filler comprises a corrosion inhibitor and wherein the filler is a solid tablet that releases vapour to inhibit corrosion.
16. (canceled)
17. The method according to claim 15, wherein the filler comprises a filler material that fills a space between the inner surface of the fixing cover and the fixing.
18. (canceled)
19. The method according to claim 15, wherein when the filler is inserted into the fixing cover and the fixing cover is attached to the fixing, the filler is retained inside the fixing cover, and the gripping means secures the fixing cover to the fixing.
20. The method according to claim 15, further comprising forming a seal between an end surface of the cover and a surface of the structure.
Description
[0043] For a better understanding of the invention, and to show how embodiments of the same may be carried into effect, reference will now be made, by way of example only, to the accompanying diagrammatic drawings in which:
[0044]
[0045]
[0046]
[0047]
[0048]
[0049] As shown in
[0050] The cover 12 is a hollow cap and is arranged to be placed over the bolt head 10. The cover 12 comprises a substantially cylindrical portion 16 and a domed upper portion 18. The cylindrical portion 16 and domed portion 18 are formed of a heat resistant plastics material. The cover 12 also comprises an inner gripping portion (not shown) that grips the bolt head 10 to retain the cover 12 in position. The thickness of the heat resistant plastics material forming the domed portion 16 is approximately 4 mm to 6 mm. The thickness of the heat resistant plastics material forming the wall of the cylindrical portion 16 is 11 to 13 mm and the height of the cylindrical portion is approximately 28 to 30 mm. The overall external diameter of the cylindrical portion 16 is approximately 57 mm.
[0051] A filler 20 is provided between the inner surface 22 of the cover 12 and the bolt head 10. The filler prevents air or other fluids from entering between the inner surface 22 of the cover 12 and the bolt head 10. The filler 20 comprises a corrosion inhibitor and an insulating material. The filler 20 may be grease, which may be Molykote® 1000 Paste or may be Molykote® Cu-7439 Plus Paste, the latter may be beneficial for use in for highly corrosive environments
[0052] The base 24 of the cover 12 is substantially circular. The material of the filler forms a seal 26 between the base 24 of the cover and the upper surface 15 of the beam 14. The seal also acts to prevent air or other fluids from entering between the inner surface 22 of the cover 12 and the bolt head 10.
[0053] According to a method of protecting the bolt head 10 of a bolt attached to a beam 14, the filler 20, in a fluid state, is inserted onto the inside surface 22 and the base surface 24 of the cover 12, and the cover 12 is then placed over the bolt head. Sufficient filler is inserted onto the inside surface 22 of the cover such that the filler material fills the whole space between the inner surface 22 of the fixing cover 12 and the bolt head 10. The filler is then hardened by curing. The filler material formed on the base surface 24 of the cover 12 forms a seal 26 between the upper surface 15 of the beam 14 and the cover.
[0054] As shown in
[0055] The bolts 110, 112 extend through bores in the flanges 106, 108, with the first and second ends 114, 116, 118, 120 of the bolts 110, 112 protruding from the outer surface 122, 124 of the flanges 106, 108. Fixing covers 126A, 126B, 126C, 126D are arranged over the ends 114, 116, 118, 120 of the bolts 110, 112, with a filler 128A, 128B, 128C, 128D provided between the inside surface 130A, 130B, 130C, 130D of the fixing cover 126 and the ends 114, 116, 118, 120 of the bolts 110, 112.
[0056] The fixing cover 126 is substantially the same as the fixing cover 14 discussed above in
[0057] Alternatively, the filler 128 may be a solid tablet that is placed between the fixing cover 126 and the bolt. The solid tablet (not shown) comprises a corrosion inhibitor that releases vapour. This vapour fills the space between the fixing cover 126 and the bolt and inhibits corrosion.
[0058] A seal 132A, 132B, 132C, 132D is provided between the base 134 of the cover 126 and the outer surface 122, 124 of the flanges. The seal 132 is formed of the same material as the filler 128.
[0059] As shown in
[0060] As shown in
[0061] The concrete anchor connection comprises an attachment portion 220 for attachment of an item for connection thereto. The item for connection may be part of a safety or control system, for example for hanging the same in a tunnel. The attachment portion 220 is connected to the bolt 202 and extends beyond the base 216 of the fixing cover 210, such that an end 222 of the attachment portion 220 is exposed. The base 216 comprises a cut-away portion to allow the end 22 of the attachment portion 220 to protrude from beneath the fixing cover 210.
[0062] According to a further embodiment of the invention, as show in
[0063] In more detail, the inner gripping means 40 may be made of a metal which can flex and has some spring characteristics to allow for elastic deformation of the arms 42a, 42b, 42c as will be described below.
[0064] Each arm 42a, 42b, 42c may have a generally flat cross-section and may extend horizontally away from the centre point 44 to a first shoulder 46 and then to a second shoulder 48. The shoulders 46 and 48 may allow the gripping portion to generally follow an inner surface of the fixing cover 12, as will be described below.
[0065] At the second shoulder 48 each arm 42a, 42b, 42c may extend vertically down an inner surface 22 of the fixing cover 12.
[0066] The flanges 50a, 50b, 50c may be located on the vertical section of each of the arms 42a, 42b, 42c. The flange 50a may extend outwardly towards the inner face 22 of the fixing cover 12 and may be arranged to engage said inner face 22 of the fixing cover 12 to thereby hold the inner gripping means 40 in position within the fixing cover 12. Because the flange 50 points downwards it prevents the gripping means 40 being pulled out of the fixing cover 12, but allows the gripping means 40 to be pushed into the fixing cover 12.
[0067] The spring quality of the metal from which the gripping means 40 may be made allows the arms 42a, 42b, 42c and the flanges 50a, 50b, 50c to maintain pressure against the inner face 22 of the fixing cover 12 to thereby maintain the gripping action.
[0068] At the base of each arm 42a, 42b, 42c there may be flanges 52, one at each side of each arm 42a, 42b, 42c. These flanges 52 may extend inwards and may have a point 54 which is directed upwards. The purpose of the flanges 52 is to grip the bolt head 10 when the fixing cover 12 is pushed onto the bolt head 10.
[0069] A filler 20 is also be provided between the inner surface 22 of the cover 12 and the bolt head 10. The filler prevents air or other fluids from entering between the inner surface 22 of the cover 12 and the bolt head 10. The material of the filler 20 may form a seal as described above.
[0070] In this example, should an attempt be made to pull the fixing cover 12 from the bolt head 10 the points 54 of the flanges 52 will push into the fixing 10 and deter outward movement of the fixing cover 12 away from the bolt head 10. Thus, tension will be created between the flanges 52 and the flanges 50 to retain the fixing cover 12 on the bolt head 10.
[0071] In addition, the flexible nature of the gripping means 40 allows the bolt head 10 or nut to expand within the fixing cover 12 by causing flexure of the gripping means 40. The expansion does not result in excessive outward pressure on the fixing cover 12 because of a gap between the arms 42 of the gripping means 40 and the inner surface 22 of the fixing cover 12.
[0072] By providing a mechanical fixing in the form of the gripping means 40, there is provided a more robust fixing. Furthermore, the presence of a mechanical fixing means that the filler does not need to cure, in order to secure the fixing cover 12. Fillers which cure may often expand and crack, causing the fixing cover to break, or lose function. Therefore, in the presence of the mechanical fixing, the filler may provide its function, without the need for hardening or curing, thereby increasing the lifetime and reliability of the fixing cover 12.
[0073] The filler may, for example, be a gel-type substance, which does not harden over time. This avoids the disadvantage of a hardening filler that may exhibit peel stress at its edges. The filler may be grease, which may be Molykote® 1000 Paste or may be Molykote® Cu-7439 Plus Paste, the latter may be beneficial for use in for highly corrosive environments
[0074] By providing a fixing cover 12 with a mechanical fixing and a filler, the strength of the fixing cover 12 is maximised, while water ingress and corrosion are prevented, as well as broadening the types of filler that can successfully be used in the fixing cover 12. The filler 20 may be a volatile corrosion inhibitor tablet, which may be in a compressed powder form, shaped to fit inside the fixing cover 12 with the gripping means 40 and receive the fixing 10 to be covered.
[0075] Attention is directed to all papers and documents which are filed concurrently with or previous to this specification in connection with this application and which are open to public inspection with this specification, and the contents of all such papers and documents are incorporated herein by reference.
[0076] All of the features disclosed in this specification (including any accompanying claims, abstract and drawings), and/or all of the steps of any method or process so disclosed, may be combined in any combination, except combinations where at least some of such features and/or steps are mutually exclusive.
[0077] Each feature disclosed in this specification (including any accompanying claims, abstract and drawings) may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise. Thus, unless expressly stated otherwise, each feature disclosed is one example only of a generic series of equivalent or similar features.
[0078] The invention is not restricted to the details of the foregoing embodiment(s). The invention extends to any novel one, or any novel combination, of the features disclosed in this specification (including any accompanying claims, abstract and drawings), or to any novel one, or any novel combination, of the steps of any method or process so disclosed.