VEHICLE HVAC UNIT HAVING INTEGRATED RETAINING SYSTEM
20220176777 · 2022-06-09
Assignee
Inventors
Cpc classification
International classification
Abstract
A heating, ventilation, and air condition (HVAC) unit includes a casing, a mount, and one or more flexible fingers. The casing is configured to condition air and direct the conditioned air to a vehicle occupant cabin. The mount extends from the casing and is configured to be mounted to an attachment surface. The mount includes an opening that has an inner surface. The flexible fingers each have a proximal end that extends from the inner surface and a distal end. One or more of the distal ends of the flexible fingers are configured to engage an attachment feature extending from the attachment surface and through the opening in the mount to secure the mount to the attachment feature.
Claims
1. A heating, ventilation, and air condition (HVAC) unit comprising: a casing configured to direct conditioned air to a vehicle occupant cabin; a first mount extending from the casing and configured to be mounted to an attachment surface, the first mount including a first opening having a first inner surface; and one or more first flexible fingers each having a proximal end and a distal end, the proximal end extending from the first inner surface, wherein one or more of the distal ends of the one or more first flexible fingers are configured to be engaged with a first attachment feature extending from the attachment surface and through the first opening in the first mount to secure the first mount to the first attachment feature.
2. The HVAC unit according to claim 1, wherein each first finger is tapered from the proximal end towards the distal end.
3. The HVAC unit according to claim 1, wherein the distal ends of the one or more first flexible fingers cooperate to form a circular-shaped opening, and wherein the circular-shaped opening is configured to receive the first attachment feature of the attachment surface.
4. The HVAC unit according to claim 1, wherein the first inner surface is a circumferentially-shaped inner surface, and wherein the one or more first flexible fingers are circumferentially spaced around the circumferentially-shaped inner surface.
5. The HVAC unit according to claim 1, wherein the first inner surface is a circumferentially-shaped inner surface, and wherein the one or more first flexible fingers extend radially inwardly from the circumferentially-shaped inner surface.
6. The HVAC unit according to claim 1, wherein the one or more first flexible fingers have a first thickness and the first mount has a second thickness, and wherein the second thickness is equal to or greater than the first thickness.
7. The HVAC unit according to claim 1, further comprising: a second mount extending from the casing and configured to be mounted to the attachment surface, the second mount including a second opening having a second inner surface; and one or more second flexible fingers each having a proximal end extending from the second inner surface and a distal end, wherein one or more of the distal ends of the one or more second flexible fingers are configured to engage a second attachment feature extending from the attachment surface and through the second opening in the second mount to secure the second mount to the second attachment feature.
8. A heating, ventilation, and air condition (HVAC) unit comprising: a casing configured to direct conditioned air to a vehicle occupant cabin; a mount extending from the casing and configured to be mounted to an attachment surface, the mount including a slot and an opening; and a retaining washer moveably disposed within the slot and including one or more flexible retaining features each having a proximal end and a distal end, wherein one or more of the distal ends of the one or more flexible retaining features are configured to be engaged with an attachment feature extending from the attachment surface and through the opening in the mount to secure the mount to the attachment feature.
9. The HVAC unit according to claim 8, wherein the opening includes a first inner circumferential surface having a first diameter and the slot includes a second inner circumferential surface having a second diameter, and wherein the second diameter is greater than the first diameter.
10. The HVAC unit according to claim 8, wherein the mount includes a first axial end surface and a second axial end surface, and wherein the slot is formed in the mount between the first axial end surface and the second axial end surface.
11. The HVAC unit according to claim 8, wherein the mount includes a first member and a second member removably coupled to the first member, and wherein the first and second members cooperate to form the opening having a circular shape.
12. The HVAC unit according to claim 8, wherein the retaining washer includes a body portion having an aperture formed therein, and wherein the one or more flexible retaining features extend radially inwardly from an inner circumferential surface of the aperture.
13. The HVAC unit according to claim 8, wherein each retaining feature is tapered from the proximal end towards the distal end.
14. The HVAC unit according to claim 8, wherein the distal ends of the one or more flexible retaining features cooperate to form a circular-shaped opening, and wherein the circular-shaped opening is configured to receive the attachment feature of the attachment surface.
15. The HVAC unit according to claim 14, wherein the circular-shaped opening is within the opening in the mount.
16. A method for coupling a heating, ventilation, and air condition (HVAC) unit to an attachment surface, the method comprising: providing the attachment surface, the attachment surface having at least one attachment feature extending therefrom; aligning an opening formed in a mount of the HVAC unit with the at least one attachment feature of the attachment surface; and inserting the at least one attachment feature through the opening such that one or more flexible fingers associated with the mount engage the at least one attachment feature to secure the mount to the at least one attachment feature.
17. The method according to claim 16, wherein each flexible finger includes a proximal end and a distal end, and wherein each flexible finger is tapered from the proximal end towards the distal end.
18. The method according to claim 16, wherein distal ends of the one or more flexible fingers cooperate to form a circular-shaped opening, and wherein the circular-shaped opening is within the opening in the mount.
19. The method according to claim 18, wherein inserting the at least one attachment feature through the opening in the mount includes inserting the at least one attachment feature through the circular-shaped opening formed by the distal ends of the flexible fingers.
20. The method according to claim 16, wherein the one or more flexible fingers extend from an inner circumferential surface of the opening formed in the mount.
Description
DRAWINGS
[0027] In order that the disclosure may be well understood, there will now be described various forms thereof, given by way of example, reference being made to the accompanying drawings, in which:
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[0038] The drawings described herein are for illustration purposes only and are not intended to limit the scope of the present disclosure in any way.
DETAILED DESCRIPTION
[0039] The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, or uses. It should be understood that throughout the drawings, corresponding reference numerals indicate like or corresponding parts and features.
[0040] As shown in
[0041] The casing 22 may be formed of one or more shells and may include a first inlet opening 26, a second inlet opening (not shown), and one or more outlet opening (not shown). Air conditioning components such as an evaporator (not shown) and a heater core (not shown) may be disposed within the casing 22 to heat and/or cool air flowing therethrough. For example, ambient air may be drawn in through the first inlet opening 26 where it is conditioned (e.g., heated and/or cooled) prior to exiting the outlets into the vehicle cabin 18 via the front set of duct lines and/or the rear set of duct lines. In another example, cabin air may be drawn in through the second inlet opening where it is conditioned prior to exiting the outlets into the vehicle cabin 18 via the front set of duct lines and/or the rear set of duct lines.
[0042] As shown in
[0043] A plurality of flexible fingers or retaining features 30 are circumferentially spaced apart around the inner circumferential surface 29 of a respective mount 24 and extend radially inwardly from the inner circumferential surface 29 of the respective mount 24 (the flexible fingers 30 are cantilevered to the mount 24). The flexible fingers 30 are also positioned between first and second end surfaces 31a, 31b of the mount 24. The flexible fingers 30 may be made of a polymeric material, for example, or any other suitable material that is allowed to bend or flex. The mount 24 has a thickness (i.e., the distance between the first and second end surfaces 31a, 31b) that is equal to or greater than a thickness of the flexible fingers 30. The flexible fingers 30 and the mount 24 are manufactured as a single piece (manufactured from a single molded part).
[0044] As shown best in
[0045] With continued reference to
[0046] Next, as shown in
[0047] Finally, as shown in
[0048] The flexible fingers 30 of the present disclosure provide the benefit of securing the mounts 24 to the studs 38 when the operator takes his or her hands off of the HVAC unit 12 after the mounts 24 are initially positioned onto the studs 38 and before the operator torques the nut 40 onto each stud 38.
[0049] With reference to
[0050] The HVAC unit 112 may be coupled to the vehicle dashboard 21 and includes a casing 121 (
[0051] Each mount 124 is coupled to the vehicle dashboard 21 (
[0052] With reference to
[0053] A first fastener (not shown, e.g., a screw or bolt) may extend through the opening 128 of the flange portion 116a and the opening 130 of the flange portion 106a and a second fastener (not shown, e.g., a screw or bolt) may extend through the opening 128 of the flange portion 116b and the opening 130 of the flange portion 106b. In this way, the first and second connecting members 102, 103 are connected to each other. When the first and second connecting members 102, 103 are connected to each other, the opening 115 of the first connecting member 102 and the opening 113 of the second connecting member 103 cooperate to form a circular-shaped opening 132 (
[0054] A separate retaining washer 136 is movably disposed within the slot 134 formed by the first and second connecting members 102, 103 (
[0055] As shown best in
[0056] The flexible fingers 140 are circumferentially spaced apart around an inner circumferential surface 146 of the aperture 142 and extend radially inwardly from the inner circumferential surface 146 of the aperture 142 (the flexible fingers 140 are cantilevered to the body portion 138 of the retaining washer 136). The flexible fingers 140 may be made of a polymeric material, for example, or any other suitable material that is allowed to bend or flex. The mount 124 has a thickness that is equal to or greater than a thickness of the flexible fingers 140.
[0057] Each flexible finger 140 has a proximal end 148 (i.e., proximal the inner circumferential surface 146) and a distal end 150 (i.e., distal to the inner circumferential surface 146). Each flexible finger 140 is tapered from the proximal end 148 towards the distal end 150. In this way, a width of the proximal end 148 is greater than a width of the distal end 150. The distal ends 150 of the flexible fingers 140 may cooperate to form a generally circular-shaped opening 154 having a diameter that is less than a diameter of the circular-shaped opening 132 formed by the first and second connecting members 102, 103. The opening 154 is positioned within the opening 132 and is configured to receive a respective threaded stud 38 extending from the vehicle dashboard 21. Stated differently, the opening 154 formed by the flexible fingers 140 is always accessible from the opening 132 regardless of the movement of the retaining washer 136 within the slot 134 formed by the first and second connecting members 102, 103 (the retaining washer 136 is allowed to move within the slot 134 to accommodate tolerances between the stud 38 and the opening 154). It should be understood that one or more of the flexible fingers 140 are allowed to bend or flex to accommodate tolerances between the stud 38 and the opening 154 while also engaging the stud 38 to secure the mount 124 to the stud 38. In the example provided, the length of each flexible finger 140 shown in the figures are equal to each other. However, in some configurations, the lengths of the flexible fingers 140 may be different and may be similarly arranged as the flexible fingers 30 (
[0058] Unless otherwise expressly indicated herein, all numerical values indicating mechanical/thermal properties, compositional percentages, dimensions and/or tolerances, or other characteristics are to be understood as modified by the word “about” or “approximately” in describing the scope of the present disclosure. This modification is desired for various reasons including industrial practice, material, manufacturing, and assembly tolerances, and testing capability.
[0059] As used herein, the phrase at least one of A, B, and C should be construed to mean a logical (A OR B OR C), using a non-exclusive logical OR, and should not be construed to mean “at least one of A, at least one of B, and at least one of C.”
[0060] The description of the disclosure is merely exemplary in nature and, thus, variations that do not depart from the substance of the disclosure are intended to be within the scope of the disclosure. Such variations are not to be regarded as a departure from the spirit and scope of the disclosure.