Heat exchange device
09618281 ยท 2017-04-11
Assignee
Inventors
Cpc classification
F28F9/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D2021/0094
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P2070/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P5/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01P3/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P5/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A heat exchanger having a heat exchange surface comprising a plurality of tubes, a pair of tanks, an end plate, and a shroud disposed to cover the heat exchange surface, wherein, the shroud provides a first hook and a second hook at it's a vertical wall, and the end plate is held in place either between the first hook and the second hook, or between the second hook and the vertical wall. With the above structure, the fan shroud assembly can hold two types of heat exchangers having different thickness.
Claims
1. A heat exchange device for a vehicle comprising: a heat exchanger; a fan generating an airflow passing through the heat exchanger; a motor connected to an axis of the fan; and a shroud attached to the heat exchanger, the shroud including: a vertical wall defining a longitudinal direction that is substantially perpendicular to said air flow direction; a first hook extending from the vertical wall towards the heat exchanger, the first hook including a first plate portion defining a first gap between the first plate portion and the vertical wall; a second hook extending from the vertical wall towards the heat exchanger, the second hook including a second plate portion defining a second gap between the second plate portion and the vertical wall, the second gap is less than the first gap; a first protrusion of the second hook protrudes toward the heat exchanger and is elastically bendable; and a second protrusion protrudes from the vertical wall toward the heat exchanger and is elastically bendable; wherein the first hook and the second hook are longitudinally offset from each other; wherein: the first hook and the second hook hold the heat exchanger in the first gap by elastically clamping an end plate of the heat exchanger between the first plate portion and the first protrusion when the heat exchanger has a first thickness; and the second hook and the second protrusion hold the heat exchanger in the second gap by elastically clamping the end plate of the heat exchanger between the second plate portion and the second protrusion when the heat exchanger has a second thickness that is greater than the first thickness.
2. The heat exchange device for a vehicle according to claim 1, wherein, the second plate portion has a first nick residing around the first protrusion.
3. The heat exchange device for a vehicle according to claim 2, wherein, the vertical wall has a second nick residing around the second protrusion.
4. The heat exchange device for a vehicle according to claim 1, wherein, the vertical wall has a second nick residing around the second protrusion.
5. The heat exchange device for a vehicle according to claim 1, wherein when the end plate is retained in the first gap, the first plate portion and the first protrusion elastically hold the end plate.
6. The heat exchange device for a vehicle according to claim 5, wherein when the end plate is retained in the second gap, the second plate portion and the second protrusion elastically hold the end plate.
7. The heat exchange device for a vehicle according to claim 1, wherein when the end plate is retained in the second gap, the second plate portion and the second protrusion elastically hold the end plate.
8. The heat exchange device for a vehicle according to claim 1, wherein when the end plate is retained in the first gap, the first plate portion and the first protrusion directly engage the end plate, and an open space is defined between the end plate and the vertical wall of the shroud.
9. The heat exchange device for a vehicle according to claim 8, wherein when the end plate is retained in the second gap, the second plate portion and the second protrusion directly engage the end plate, and a second open space is defined between the end plate and the first plate portion.
10. The heat exchange device for a vehicle according to claim 1, wherein when the end plate is retained in the second gap, the second plate portion and the second protrusion directly engage the end plate, and an open space is defined between the end plate and the first plate portion.
11. The heat exchange device for a vehicle according to claim 1, wherein when the end plate is retained in the first gap, the second plate portion is disposed directly between the end plate and the vertical wall of the shroud.
12. The heat exchange device for a vehicle according to claim 11, wherein when the end plate is retained in the second gap, the first plate portion is not disposed directly between the end plate and the vertical wall of the shroud.
13. The heat exchange device for a vehicle according to claim 1, wherein when the end plate is retained in the second gap, the first plate portion is not disposed directly between the end plate and the vertical wall of the shroud.
14. The heat exchange device for a vehicle according to claim 1, wherein: the heat exchanger is a first heat exchanger; the shroud is configured to be separately attached to either the first heat exchanger or a second heat exchanger, the first heat exchanger and the second heat exchanger have different dimensions; the first heat exchanger is a thin tube heat exchanger having thin tubes and a thin end plate; the second heat exchanger is a thick tube heat exchanger having thick tubes and a thick end plate, which are thicker than the thin tubes and the thin end plate, respectively; the first hook and the second hook are sized to hold the first heat exchanger in the first gap by elastically clamping the first heat exchanger between the first plate portion and the first protrusion; and the second hook and the second protrusion are sized to hold the second heat exchanger in the second gap by elastically clamping the second heat exchanger between the second plate portion and the second protrusion.
15. A shroud for attaching a fan to a heat exchanger for a vehicle, the shroud comprising: a vertical wall defining a longitudinal direction that is substantially perpendicular to an air flow direction; a first hook extending from the vertical wall towards the heat exchanger, the first hook including a first plate portion defining a first gap between the first plate portion and the vertical wall; a second hook extending from the vertical wall towards the heat exchanger, the second hook including a second plate portion defining a second gap, which is less than the first gap, between the second plate portion and the vertical wall; a first protrusion of the second hook protrudes toward the heat exchanger from the second hook, the first protrusion is elastically bendable; and a second protrusion protrudes from the vertical wall toward the heat exchanger and is elastically bendable; wherein the first hook and the second hook are longitudinally offset from each other; wherein: the first hook and the second hook hold the heat exchanger in the first gap by elastically clamping an end plate of the heat exchanger between the first plate portion and the first protrusion when the heat exchanger has a first thickness; and the second hook and the second protrusion hold the heat exchanger in the second gap by elastically clamping the end plate of the heat exchanger between the second plate portion and the second protrusion when the heat exchanger has a second thickness that is greater than the first thickness.
Description
DRAWINGS
(1) The drawings described herein are for illustrative purposes only of selected embodiments and not all possible implementations, and are not intended to limit the scope of the present disclosure.
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(8) Corresponding reference numerals indicate corresponding elements throughout the several views of the drawings.
DETAILED DESCRIPTION
(9) The preferred and other embodiments will now be described more fully with reference to
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(11) Turning to the
(12) Turning to
(13) Turning to
(14) The end plate 120 of the heat exchanger 102 has a U-shaped cross sectional area. The vertical wall 146 of the frame 134 is disposed parallel to a vertical portion 120a of the end plate 120. The vertical wall 146 provides the first hook 140, the second hook 142, and second protrusion 148. In this embodiment, the edge of the end plate 120 is caught between the first hook 140 and the second hook 142. The first hook 140 and the second hook 142 are offset from each other.
(15) More specifically, the first hook 140 has a first plate portion 154. The first plate portion 154 defining a first gap B between its one flat surface and the vertical wall 146 of the frame 134. The second hook 142 has a second plate portion 156. The second plate portion 156 defines a second gap C between its one flat surface and the vertical wall 146 of the frame 134. The gap B is greater than the gap C. The first plate portion 154 and the second plate portion 156 are approximately parallel to the vertical wall 146 and the vertical portion 120a. In this embodiment, both the first hook 140 and the second hook 142 have L shaped cross sectional areas cutting along the vehicle front to rear direction.
(16) The first protrusion 152 is provided on the second plate portion 156. The first protrusion 152 protrudes towards the vertical portion 120a of the end plate 120. The second plate portion 156 has a pair of first nicks 158, the first nicks 158 residing around the first protrusion 152. More specifically, the first nicks 158 reside around both sides of the first protruding portion 152 and reach the lower end portion of the second plate portion 156.
(17) Accordingly, the fan shroud assembly 104 can hold the end plate 120 more tightly by the first protrusion 152. The second plate portion 156 around the first protrusion 152 can bend and can press the end plate 120, due to the elasticity of the bent second plate portion 156.
(18) Turning to
(19) Turning to
(20) The second protrusions 148 are disposed on the vertical wall 146 and between the first hook 140 and the second hook 142. The second protrusions 148 are surrounded by the second nicks 160. The second nicks 160 are upside-down U-shape. The vertical wall 146 surrounded by the second nick 160, provides the second protrusion 148. The second protrusion 148 is bent towards the end plate 120 so as to be relatively protruding from the vertical wall 146.
(21) Accordingly, the fan shroud assembly 104 can hold the end plate 120 more tightly by the second protrusions 148. The vertical wall 146 around the second protrusion 148 can bend, and can press against the end plate 120 due to the elasticity of the bent vertical wall 146.
(22) Although the thin tube radiator depicted in
(23) The foregoing description of the embodiments has been provided for purposes of illustration and description. It is not intended to be exhaustive or to limit the invention. Individual elements or features of a particular embodiment are generally not limited to that particular embodiment, but, where applicable, are interchangeable and can be used in a selected embodiment, even if not specifically shown or described. The same may also be varied in many ways. Such variations are not to be regarded as a departure from the invention, and all such modifications are intended to be included within the scope of the invention.
(24) When an element or layer is referred to as being on, engaged to, connected to, or coupled to another element or layer, it may be directly on, engaged, connected or coupled to the other element or layer, or intervening elements or layers may be present. In contrast, when an element is referred to as being directly on, directly engaged to, directly connected to, or directly coupled to another element or layer, there may be no intervening elements or layers present. Other words used to describe the relationship between elements should be interpreted in a like fashion (e.g., between versus directly between, adjacent versus directly adjacent, etc.). As used herein, the term and/or includes any and all combinations of one or more of the associated listed items.
(25) Although the terms first, second, third, etc. may be used herein to describe various elements, components, regions, layers and/or sections, these elements, components, regions, layers and/or sections should not be limited by these terms. These terms may be only used to distinguish one element, component, region, layer or section from another region, layer or section. Terms such as first, second, and other numerical terms when used herein do not imply a sequence or order unless clearly indicated by the context. Thus, a first element, component, region, layer or section discussed below could be termed a second element, component, region, layer or section without departing from the teachings of the example embodiments.
(26) Spatially relative terms, such as inner, outer, beneath, below, lower, above, upper, and the like, may be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the Figures. Spatially relative terms may be intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the Figures. For example, if the device in the Figures is turned over, elements described as below or beneath other elements or features would then be oriented above the other elements or features. Thus, the example term below can encompass both an orientation of above and below. The device may be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.