Vibration isolating insert for a pipe clip
10837586 ยท 2020-11-17
Assignee
Inventors
Cpc classification
F16L55/033
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/035
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C48/16
PERFORMING OPERATIONS; TRANSPORTING
F16L3/1233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L55/035
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C48/16
PERFORMING OPERATIONS; TRANSPORTING
F16L3/123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A vibration isolating insert for a pipe clip includes an elongate strip having a pipe facing side, which in use faces the outer surface of the pipe, and opposite thereto a pipe clip facing side, which in use faces an inner side of the pipe clip body. The vibration isolating insert includes gripping formations connected to the strip at lateral side portions and extending towards the pipe clip facing side and in use grip over the lateral edges of the pipe clip body. The vibration isolating insert includes a framework and a vibration isolating lining made of a softer material different from the material of the framework, where the framework is formed of a polymeric material. The framework includes a strip shaped web, that reinforces the elongate strip, and lateral reinforcing members connected to the web on either lateral side of the web and reinforcing the gripping formations.
Claims
1. A vibration isolating insert for a pipe clip, the vibration isolating insert being adapted to be arranged on a substantially annular pipe clip body and ultimatelyin useto be positioned between the outer surface of a pipe and the pipe clip body, the vibration isolating insert comprising an elongate strip, said strip having a pipe facing side, which in use faces the outer surface of the pipe, and opposite thereto a pipe clip facing side, which in use faces an inner side of the pipe clip body, the vibration isolating insert furthermore comprising gripping formations connected to the strip at lateral side portions thereof and extending towards the pipe clip facing side and in use grip over the respective lateral edges of the pipe clip body, the vibration isolating insert comprising a framework and a vibration isolating lining made of a softer material different from the material of the framework, wherein the framework is a profiled section element formed of a polymeric material, said framework comprising a strip shaped web, that reinforces the elongate strip, and lateral reinforcing members connected to the web on either lateral side of the web and reinforcing the gripping formations, and wherein the framework furthermore comprises at least one living hinge defining a pivot axis parallel to the longitudinal axis of the insert and allowing at least one of the gripping formations to swivel around said pivot axis to increase and decrease the distance between the gripping formations during arrangement of the insert on a pipe clip body.
2. The vibration isolating insert according to claim 1, wherein the lateral reinforcing members are each pivotably connected to the web by living hinges formed at the lateral sides of the web.
3. The vibration isolating insert according to claim 1, wherein the vibration isolating lining is made of a polymeric material that is softer than the polymeric material of which the framework is made.
4. The vibration isolating insert according to claim 1, wherein the framework is made of an elastomer.
5. The vibration isolating insert according to claim 1, wherein the framework is made of a PVC.
6. The vibration isolating insert according to claim 1, wherein the vibration isolating lining is made of an elastomer.
7. The vibration isolating insert according to claim 1, wherein the framework comprises a longitudinal rib formed on the pipe facing side of each lateral reinforcing member.
8. The vibration isolating insert according to claim 7, wherein one or more longitudinal intermediate ribs made of the softer lining material are formed on the pipe facing side of the strip between the longitudinal ribs on the lateral reinforcing members.
9. The vibration isolating insert according to claim 8, wherein the intermediate ribs have a height smaller than the ribs on the lateral reinforcing members.
10. The vibration isolating insert according to claim 1, wherein the pipe clip facing side of the framework is entirely covered with the softer lining material.
11. A method for manufacturing a vibration isolating insert according to claim 1, wherein the insert is made by extrusion of a profile, wherein the framework and the lining are co-extruded from two different polymeric materials, and wherein the extruded profile is cut to length to fit in the pipe clip body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF THE INVENTION
(7) In
(8) In
(9) A profiled sectioned element 1 as is shown in
(10) The vibration isolating insert 1 is a composite body comprising a framework 2 and a vibration isolating lining 3. The framework 2 is flexible but is more rigid and harder than the vibration isolating lining 3. The material of the framework 2 has a lower friction coefficient than the material of the vibration isolating lining 3.
(11) The vibration isolating lining 3 may be formed of a soft elastomeric material such as rubber.
(12) In a preferred embodiment of the vibration isolating insert 1, the framework 2 is formed of an elastomeric material which is harder, and stiffer than the elastomeric material of the vibration isolating lining 3. Such an elastomeric framework provides enough flexibility to arrange the insert 1 in a substantially annular form in a pipe clip, without the need to provide cut outs in the web of the framework to allow bending. At the same time the framework 2 made of the harder elastomer provides sufficient structural stiffness and hardness to the insert to resist deformation due to installation of a pipe in the pipe clips in which these inserts are arranged.
(13) In another embodiment of the vibration isolating insert 1, the framework 2 may be made of a plastic material. In particular a PVC material is envisaged as a suitable plastic material, because it provides sufficient hardness and stiffness to the insert 1 to resist movement forces of the pipe with respect to the pipe clip.
(14) As can be seen best in the cross sectional view of
(15) The hinging portions 23 extend longitudinally and include a living hinge 24 between the web 21 and the associated lateral portion 22. The living hinge 24 defines a pivot axis that extends in the longitudinal direction of the vibration isolating insert 1. The living hinge 24 is a thinner section in the framework 2 at the location where the lateral portion 22 adjoins the web 21.
(16) The vibration isolating insert 1 has gripping formations 4 which are configured and arranged to grip around the lateral edges 51 of the pipe clip body 5. The pipe clip body 5 is usually an annular strip-like body formed out of sheet metal. As is well known in the art of pipe clips, the pipe clip body 5 may comprise a single body which maybe arranged around a pipe and closed tightened with a screw. However, as is also known in the art, the pipe clip body 5 may just as well comprise two semi-circular pipe clip halves which can be tigthened with respect to each other and around a pipe with one or more screws.
(17) The gripping formations 4, include each a lateral reinforcement member 25 which form part of the lateral portions 22 of the framework 2. In the embodiment shown these lateral reinforcement members 25 are formed as an angled member.
(18) The inner side of the lateral reinforcement members 25 is lined with a vibration isolating material. Also the side of the web 21 and of the hinge portion 23 that in use faces the pipe clip body is lined with a vibration isolating material. Thus one integral vibration isolating lining 31 is formed covering the surfaces of web 21, hinges 24 and lateral reinforcement members 25 facing the pipe clip body. Thus the transfer of vibrations from the pipe clip body 5 to the framework 2 of the vibration isolating insert 1 and vice versa can be reduced considerably or even entirely prevented.
(19) On the pipe facing side 10 of each lateral reinforcing member 25 a longitudinal rib 26 is formed. This longitudinal rib 26 may be formed with transverse cutouts 27 as is shown in
(20) Between the two longitudinal ribs 26 there are a number of longitudinal ribs 32 made of the softer lining material. In the example of
(21) In a unloaded state of the vibration isolating insert 1 the longitudinal ribs 26 on the reinforcing member 25 are higher than the intermediate ribs 32 as can be best seen in
(22) The longitudinal ribs 26 have a function during the arrangement of the vibration isolating insert 1 in a pipe clip body: The longitudinal rib 26 acts as a lever arm which can be pushed inwards which is depicted in
(23) In the state in which the strip 1 is arranged in the pipe clip body 5 and the pipe clip is installed around a pipe and is subsequently tightened, the pipe surface puts a pressure on the outer ribs 26, because these ribs 26 stand out above the intermediate ribs 32. The pipe surface is depicted schematically in
(24) If the ribs 26 swivel sufficiently outwardly, the pipe surface 6 will eventually come into engagement with the intermediate ribs 32 of the vibration isolating insert 1. Because the intermediate ribs 32 are made of a softer and better isolating material, the pipe is held more tightly by the pipe clip and the vibration isolating effect of the vibration isolating insert 1 is enhanced.