Fastening system for a pipe passing through a panel of an air handling unit, and air handling unit comprising such a system
11209104 · 2021-12-28
Assignee
Inventors
Cpc classification
F24F13/0209
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fastening system for a pipe passing through an insulating side panel of an air handling unit. The panel includes two parallel walls separated by a layer of insulating material, a hole provided through the walls and a layer of insulating material for passing the pipe. The fastening system includes two bellows fixed on each of the parallel walls of the pane around the hole. Each bellow includes a frame fixed on one of the walls and a deformable portion fixed to the frame. The deformable portion includes a wide portion which connects the deformable portion to the frame, and a narrow portion fitted around the pipe.
Claims
1. Fastening system for a pipe passing through an insulating side panel of an air handling unit, said panel comprising two parallel walls separated by a layer of insulating material, and a hole provided through the walls and the layer of insulating material for passing the pipe, wherein the fastening system comprises: two bellows, one for being fixed on each of the parallel walls of the panel around the hole, each bellow comprising a frame for being fixed on one of the walls and a deformable portion fixed to the frame, the deformable portion comprising a wide portion which connects the deformable portion to the frame, and a narrow portion fitted around the pipe; wherein the wide portion of each bellow comprises a sealing surface for contacting the wall against which the bellow is to be fixed; and wherein the deformable portion of each bellow comprises a sealing lip disposed radially inward of the sealing surface of the wide portion and for contacting the wall against which the bellow is to be fixed; wherein the frame of each bellow extends beyond the outer circumference of the wide portion of the deformable portion of each bellow.
2. Fastening system according to claim 1, wherein the sealing lip defines a continuous sealing around the hole provided on the panel.
3. Fastening system according to claim 2, wherein the frame exerts a force on the deformable portion which tends to compress the sealing lip against the wall.
4. Fastening system according to claim 1, wherein the deformable portion of the bellows is made of a plastic material.
5. Fastening system according to claim 4, wherein the deformable portion of the bellows is made of PA6 with glass fibers.
6. Fastening system according to claim 1, wherein the bellows are fixed on the walls by screws which pass through the frame and through holes of a radial flat portion of the deformable portion.
7. Fastening system according to claim 1, wherein the deformable portion of the bellows comprises concentric sections adapted to be cut according to several different diameters of pipes, the respective diameters of the concentric sections being inferior to the diameter of the corresponding pipes by a ratio comprised between 5 and 10%.
8. Fastening system according to claim 1, wherein the deformable portion of the bellows comprises an inwardly bent section.
9. Fastening system according to claim 1, wherein the deformable portion and the frame of the bellows comprise complementary male and female shapes adapted to prevent relative displacements of the deformable portion with respect to the frame in a radial direction relative to a central axis of the bellows.
10. Fastening system according to claim 9, wherein the complementary male and female shapes comprise protruding elements extending along an axial direction, provided on a flat radial portion of the deformable portion, and recesses provided in the frame.
11. Air handling unit comprising at least one panel crossed by a pipe, wherein the pipe is attached and tightly passed through the panel using a fastening system according to claim 1.
12. Air handling unit according to claim 11, wherein the pipe is provided for circulation of a heat transfer fluid in a heat exchanger of the air handling unit, and is adapted to be connected to an exterior heat transfer fluid feeding pipe.
Description
(1) The invention will now be explained with reference to the annexed drawings, as an illustrative example. In the annexed drawings:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10) Each module 2 of the air handling unit 1 includes at least one component, of which some of them are represented on
(11) The components of the air handling unit 1 can be, for example a ventilation device, a heater, a cooler, filters, registers with mobile vanes, a heat recovery device, a humidifier. In the unit of
(12) In order to feed the heat exchangers 10 and 11 with the heat transfer fluid, fluid pipes for the inlet and outlet of the heat transfer fluid are provided, connected to the heat exchangers 10 and 11 and protruding through the insulating panels 7 outside of the unit 1, so that they can be connected to heat or cold production systems, or to other pipes connected to heat or cold production systems.
(13) In
(14) As it is more precisely shown in
(15) As it is represented more precisely in
(16) The pipe 13 defines a central axis X-X′ perpendicular to the panel 7. The central axis X-X′ also denotes a central axis of the hole 15 and of the bellows 22. In this description, the terms “axial” or “radial”, “radially” or “axially” are used in reference to central axis X-X′.
(17) Each bellow 22 comprises a frame 220 fixed on one of the walls 71 and 72, and a deformable portion 222, which is fixed to the frame 220. The deformable portion 222 comprises a wide portion 222a, which connects the deformable portion 222 to the frame 220, and a narrow portion 222b which is elastically fitted around the pipe 13. The deformable portion 222 is made of a plastic material, such as PA6 with glass fibers.
(18) The deformable portion 222 comprises a sealing lip 222c which contacts the wall against which the bellow 22 is fixed. The sealing lip 222c is shown in
(19) In a non-shown unstressed state, for example when the bellow 22 is not mounted on a panel 7, the sealing lip 222c is not deformed and extends substantially along an inclined direction with respect to the central axis X-X′. In the mounted state represented on
(20) The bellows 22 are fixed on the walls 71 and 72 by screws 24 which pass through holes 220a of the frame 220 and through holes 222d1 of a radial flat portion 222d of the deformable portion 222.
(21) The deformable portion 222 comprises concentric sections 222-1 to 222-5 centered on the axis X-X′ and adapted to be cut according to several different diameters of pipes. The diameters of the concentric sections 222-1 to 222-5 are increasing towards the frame 220. The respective diameters of the concentric sections 222-1 to 222-5 are inferior to the diameters of the corresponding pipes by a ratio comprised between 5 and 10%. As shown in
(22) According to an optional feature, the deformable portion 222 comprises an inwardly bent section 222-5, which can be seen in
(23) According to an optional feature represented on