An air conditioner housing and an air conditioner
By setting a second holding structure on the rear fence of the air conditioner housing and holding each other with the first holding structure of the filter, the problem of the filter moving up and down during the air conditioner operation is solved, and the close cooperation between the filter and the rear fence is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN201911294866.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-12-16
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2039-12-16
AI Technical Summary
In existing air-conditioning cabinets, the filter screen and the air inlet are not closely coordinated, which may cause the filter screen to move up and down during operation, affecting the user experience.
An air conditioning housing is designed to ensure that it is closely cooperated with the rear enclosure by providing a second retraction structure on the rear enclosure and holding each other with the first retraction structure of the filter (such as the insert and the socket) of the filter screen in a vertical direction.
Effectively prevent the filter from rushing up and down in the vertical direction, improving the stability and user experience of the air conditioner.
Smart Images

Figure CN111174401B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioners, and particularly to an air conditioner housing and an air conditioner. Background Art
[0002] At present, an air inlet is provided on the rear enclosure of an air conditioner cabinet. In order to prevent external dust from entering the air conditioner cabinet through the air inlet, a filter screen is usually installed at the air inlet of the rear enclosure. However, the current method of installing the filter screen is to directly insert the filter screen into the air inlet. In this way, it is easy to generate deviations, resulting in a fitting gap between the filter screen and the air inlet in the vertical direction, and the fitting is not tight enough, so that the filter screen may move up and down when the air conditioner cabinet is running, affecting the user experience. Summary of the Invention
[0003] The problem solved by the present invention is how to limit the filter screen so that the filter screen is tightly fitted with the rear enclosure in the vertical direction, prevent the filter screen from moving up and down, and improve the user experience.
[0004] To solve the above problems, the technical solution of the present invention is realized as follows:
[0005] In a first aspect, the present invention provides an air conditioner housing, including a rear enclosure and a filter screen. The rear enclosure is provided with an air inlet, and the filter screen covers the outside of the air inlet. One side of the filter screen is clamped with the rear enclosure, and the other side is provided with a first abutting structure. The rear enclosure is provided with a second abutting structure, and the second abutting structure can abut against the first abutting structure to limit the filter screen in the vertical direction. Compared with the prior art, the air conditioner housing provided by the present invention can limit the filter screen because it adopts a filter screen clamped with the rear enclosure and a first abutting structure and a second abutting structure that abut against each other in the vertical direction, so that the filter screen is tightly fitted with the rear enclosure in the vertical direction, prevent the filter screen from moving up and down, and improve the user experience.
[0006] Further, the first abutting structure is a jack, and the second abutting structure is a plug. The plug is inserted into the jack and cooperates with the jack. The plug can limit the jack, thereby preventing the filter screen from moving up and down relative to the rear enclosure.
[0007] Further, the top surface of the plug abuts against the upper side wall of the jack, and there is a first gap between the bottom surface of the plug and the lower side wall of the jack. This is for easy installation, so that the plug can be easily inserted into the jack and improve the assembly efficiency.
[0008] Further, the plug is provided with an end face and a transition inclined surface. One side of the end face is connected to the top surface through the transition inclined surface, and the other side is connected to the bottom surface. This is for facilitating the staff to slide the plug into the jack and play a labor-saving role.
[0009] Further, the top surface and the transition inclined surface are in arc transition, the transition inclined surface and the end surface are in arc transition, and the end surface and the bottom surface are in arc transition. This eliminates the sharp corners on the insertion piece, facilitating the assembly of the insertion piece and the insertion hole, and will not cut the staff, ensuring strong safety and high aesthetic value.
[0010] Further, the included angle between the transition inclined surface and the end surface ranges from 30 degrees to 75 degrees.
[0011] Further, the bottom surface of the insertion piece abuts against the lower side wall of the insertion hole, and there is a second gap between the top surface of the insertion piece and the upper side wall of the insertion hole.
[0012] Further, the first abutting structure is the insertion piece, the second abutting structure is the insertion hole, the insertion piece is inserted into the insertion hole and cooperates with the insertion hole. The insertion hole can limit the insertion piece, thereby preventing the filter net from moving up and down relative to the rear enclosure panel.
[0013] Further, the rear enclosure panel includes a panel body and a bending portion. The panel body is arranged in an arc shape, the bending portion is fixedly connected to the inner side of the panel body and extends along the radial direction of the panel body, and the second abutting structure is arranged at one end of the bending portion away from the panel body. The second abutting structure and the panel body are arranged in a staggered manner to facilitate the cooperation between the second abutting structure and the first abutting structure, making the assembly of the filter net and the rear enclosure panel stable and reliable, and having high aesthetic value.
[0014] In a second aspect, the present invention provides an air conditioner, including the above-mentioned air conditioner housing. The air conditioner housing includes a rear enclosure panel and a filter net. The rear enclosure panel is provided with an air inlet, the filter net is sleeved outside the air inlet, one side of the filter net is clamped with the rear enclosure panel, and the other side is provided with a first abutting structure. The rear enclosure panel is provided with a second abutting structure, and the second abutting structure can abut against the first abutting structure to limit the filter net in the vertical direction. The air conditioner can limit the filter net, making the filter net closely cooperate with the rear enclosure panel in the vertical direction, preventing the filter net from moving up and down, and improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic structural diagram of an air conditioner housing according to the first embodiment of the present invention from one perspective;
[0016] Figure 2 is Figure 1 the partial enlarged view of II in
[0017] Figure 3 is a schematic structural diagram of an air conditioner housing according to the first embodiment of the present invention from another perspective;
[0018] Figure 4 is Figure 3 the partial enlarged view of IV in
[0019] Figure 5It is a schematic structural view of the cooperation between the insertion piece and the insertion hole in the air conditioner housing according to the first embodiment of the present invention from one perspective;
[0020] Figure 6 It is a schematic structural view of the cooperation between the insertion piece and the insertion hole in the air conditioner housing according to the first embodiment of the present invention from another perspective;
[0021] Figure 7 It is a schematic structural view of the cooperation between the insertion piece and the insertion hole in the air conditioner housing according to the second embodiment of the present invention from one perspective;
[0022] Figure 8 It is a schematic structural view of the cooperation between the insertion piece and the insertion hole in the air conditioner housing according to the second embodiment of the present invention from another perspective.
[0023] Explanation of reference numerals:
[0024] 100 - air conditioner housing; 110 - rear enclosure; 111 - air inlet; 112 - second abutting structure; 113 - first side plate; 114 - second side plate; 115 - second buckle; 116 - plate body; 117 - bending part; 120 - filter screen; 121 - first abutting structure; 122 - first side wall; 123 - second side wall; 124 - first buckle; 130 - insertion piece; 131 - top surface; 132 - bottom surface; 133 - transition inclined surface; 134 - end face; 140 - insertion hole; 141 - upper side wall; 142 - lower side wall. Detailed description of the specific implementation
[0025] To make the above - mentioned objects, features and advantages of the present invention more obvious and understandable, the following will give a detailed description of the specific embodiments of the present invention with reference to the accompanying drawings.
[0026] First embodiment
[0027] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The embodiment of the present invention provides an air conditioner housing 100 for assembling an air conditioner. It can limit the filter screen 120 so that the filter screen 120 is closely fitted with the rear enclosure 110 in the vertical direction, preventing the filter screen 120 from moving up and down, and improving the user experience.
[0028] In this embodiment, the air conditioner housing 100 is applied to an air - conditioner cabinet. The air conditioner housing 100 can shield and protect the components inside the air - conditioner cabinet. The outside air enters the air - conditioner cabinet through the air conditioner housing 100, and the air conditioner housing 100 can filter the outside - entering air to prevent outside dust from entering the air - conditioner cabinet.
[0029] The air conditioner housing 100 includes a rear panel 110 and a filter net 120. The rear panel 110 is provided with an air inlet 111. The filter net 120 is installed on the rear panel 110. The position of the filter net 120 corresponds to the position of the air inlet 111. The air inlet 111 is used for allowing external air to pass through and enter the air conditioner cabinet, and the filter net 120 is used for filtering the air entering from the outside to prevent external dust from entering.
[0030] It should be noted that the filter net 120 covers the outside of the air inlet 111. One side of the filter net 120 is clamped to the rear panel 110, and the other side abuts against the rear panel 110. That is, one side wall of the air inlet 111 is clamped to the filter net 120, and the other side wall abuts against the rear panel 110 to fix the relative position of the filter net 120 and the rear panel 110 and prevent the filter net 120 from displacing relative to the rear panel 110. Specifically, the filter net 120 is provided with a first abutting structure 121, and the rear panel 110 is provided with a second abutting structure 112. The second abutting structure 112 can abut against the first abutting structure 121 to limit the filter net 120 in the vertical direction and prevent the filter net 120 from moving up and down in the vertical direction.
[0031] It should be noted that the filter net 120 is relatively provided with a first side wall 122 and a second side wall 123. Both the first side wall 122 and the second side wall 123 extend in the vertical direction. A first buckle 124 is provided on the first side wall 122, and a first abutting structure 121 is provided on the second side wall 123. The rear panel 110 is relatively provided with a first side plate 113 and a second side plate 114. Both the first side plate 113 and the second side plate 114 extend in the vertical direction. The air inlet 111 is arranged between the first side plate 113 and the second side plate 114. A second buckle 115 is provided on the first side plate 113, and a second abutting structure 112 is provided on the second side plate 114. Specifically, the first buckle 124 is clamped to the second buckle 115, and the first abutting structure 121 abuts against the second abutting structure 112 to realize the relative fixation of the filter net 120 and the rear panel 110.
[0032] In this embodiment, the rear panel 110 includes a panel body 116 and a bending portion 117. The panel body 116 is arc-shaped. The first side panel 113 and the second side panel 114 are both disposed on the panel body 116. The air inlet 111 is opened on the panel body 116 and is disposed between the first side panel 113 and the second side panel 114. The bending portion 117 is fixedly connected to the inner side of the panel body 116 and extends along the radial direction of the panel body 116, that is, the bending portion 117 extends toward the inner side of the panel body 116. The second abutting structure 112 is disposed at one end of the bending portion 117 away from the panel body 116, that is, the second abutting structure 112 is disposed on the inner side of the panel body 116. The second abutting structure 112 and the panel body 116 are arranged in a dislocation manner, so as to facilitate the cooperation between the second abutting structure 112 and the first abutting structure 121, making the assembly of the filter net 120 and the rear panel 110 stable, reliable and highly aesthetic.
[0033] It should be noted that the number of the first buckles 124 and the second buckles 115 is multiple, and each first buckle 124 is clamped with a second buckle 115. The multiple first buckles 124 are arranged at intervals in the vertical direction on the first side wall 122 of the filter net 120, and the multiple second buckles 115 are arranged at intervals in the vertical direction on the first side panel 113 of the rear panel 110, so as to improve the clamping strength between the filter net 120 and the rear panel 110 and prevent the filter net 120 from detaching from the rear panel 110. In this embodiment, the number of the first buckles 124 and the second buckles 115 is two, but it is not limited thereto. In other embodiments, the number of the first buckles 124 and the second buckles 115 can be three or four, and the number of the first buckles 124 and the second buckles 115 is not specifically limited.
[0034] In this embodiment, the number of the first abutting structure 121 and the second abutting structure 112 is one, which is convenient for assembly, but it is not limited thereto. In other embodiments, the number of the first abutting structure 121 and the second abutting structure 112 can be multiple, and each first abutting structure 121 abuts against a second abutting structure 112. The multiple first abutting structures 121 are arranged at intervals in the vertical direction on the second side wall 123 of the filter net 120, and the multiple second abutting structures 112 are arranged at intervals in the vertical direction on the second side panel 114 of the rear panel 110.
[0035] It is worth noting that both the first abutting structure 121 and the second abutting structure 112 extend along the horizontal direction, and the second abutting structure 112 abuts against the first abutting structure 121 in the vertical direction to apply a vertical abutting force to the first abutting structure 121, and this abutting force limits the first abutting structure 121 to prevent the first abutting structure 121 from moving in the vertical direction, thereby preventing the filter net 120 from moving up and down in the vertical direction.
[0036] Please refer toFigure 5 and Figure 6 In this embodiment, the first abutting structure 121 is the jack 140, and the second abutting structure 112 is the insertion piece 130. The insertion piece 130 is inserted into the jack 140 and cooperates with the jack 140. Specifically, the top surface 131 of the insertion piece 130 abuts against the upper side wall 141 of the jack 140, and the top surface 131 of the insertion piece 130 applies an upward abutting force to the upper side wall 141 of the jack 140, so that the upper side wall 141 of the jack 140 has a tendency to lift upward, thereby causing the second side wall 123 of the filter net 120 to have a tendency to lift upward. At this time, since the first side wall 122 of the filter net 120 has been fixed to the first side plate 113 of the rear enclosure 110 through the cooperation of the first buckle 124 and the second buckle 115, the upper side wall 141 of the jack 140 will not move upward, but only abut more closely against the top surface 131 of the insertion piece 130. In this way, the insertion piece 130 locks the jack 140 at the limit position of the upward movement of the filter net 120, so that the filter net 120 can neither move upward nor move downward, thereby preventing the filter net 120 from moving up and down in the vertical direction. Further, there is a first gap between the bottom surface 132 of the insertion piece 130 and the lower side wall 142 of the jack 140 for easy installation, so that the insertion piece 130 can be easily inserted into the jack 140, improving the assembly efficiency.
[0037] In this embodiment, the insertion piece 130 is provided with an end face 134 and a transition inclined surface 133. The end face 134 is arranged on the side of the insertion piece 130 away from the second side plate 114. One side of the end face 134 is connected to the top surface 131 through the transition inclined surface 133, and the other side is connected to the bottom surface 132. The transition inclined surface 133 can facilitate the staff to slide the insertion piece 130 into the jack 140, playing a role in saving effort. During the process of inserting the insertion piece 130 into the jack 140, the transition inclined surface 133 slides relative to the upper side wall 141 of the jack 140. During this process, the transition inclined surface 133 continuously applies an abutting force to the upper side wall 141 of the jack 140, and the abutting force becomes larger and larger. When the abutting force reaches the maximum, the transition inclined surface 133 separates from the upper side wall 141 of the jack 140. At this time, the top surface 131 of the insertion piece 130 abuts against the upper side wall 141 of the jack 140, and the top surface 131 of the insertion piece 130 applies an abutting force to the upper side wall 141 of the jack 140 to prevent the filter net 120 from moving up and down in the vertical direction.
[0038] Specifically, the top surface 131 and the transition inclined surface 133 are in arc transition, the transition inclined surface 133 and the end face 134 are in arc transition, and the end face 134 and the bottom surface 132 are in arc transition to eliminate the sharp corners on the insertion piece 130, facilitate the assembly of the insertion piece 130 and the jack 140, and will not cut the staff, with strong safety and high aesthetics.
[0039] Further, since the insert piece 130 extends in the horizontal direction, the top surface 131 and the bottom surface 132 are both located on the horizontal plane, and the end surface 134 is located on the vertical plane. The end surface 134 is perpendicular to the top surface 131 and the bottom surface 132 respectively. Specifically, the included angle between the transition inclined surface 133 and the end surface 134 ranges from 30 degrees to 75 degrees, that is, the included angle between the transition inclined surface 133 and the vertical plane ranges from 30 degrees to 75 degrees. In this embodiment, the included angle between the transition inclined surface 133 and the end surface 134 is 60 degrees, but it is not limited thereto. In other embodiments, the included angle between the transition inclined surface 133 and the end surface 134 can be 30 degrees or 75 degrees. The included angle between the transition inclined surface 133 and the end surface 134 is not specifically limited and needs to be determined according to the actual situation.
[0040] It should be noted that during the installation process of the filter net 120, first insert the insert piece 130 into the jack 140 so that the top surface 131 of the insert piece 130 abuts against the upper side wall 141 of the jack 140, that is, the rear enclosure 110 applies an upward abutting force to the filter net 120. Subsequently, snap the first buckle 124 and the second buckle 115 together to fix the relative positions of the rear enclosure 110 and the filter net 120, thereby preventing the filter net 120 from moving up and down in the vertical direction.
[0041] In the air conditioner housing 100 according to the embodiment of the present invention, the rear enclosure 110 is provided with an air inlet 111, the filter net 120 is sleeved outside the air inlet 111, one side of the filter net 120 is snap-connected to the rear enclosure 110, and the other side is provided with a first abutting structure 121. The rear enclosure 110 is provided with a second abutting structure 112, and the second abutting structure 112 can abut against the first abutting structure 121 to limit the filter net 120 in the vertical direction. Compared with the prior art, since the air conditioner housing 100 provided by the present invention adopts the filter net 120 snap-connected to the rear enclosure 110 and the first abutting structure 121 and the second abutting structure 112 that abut against each other in the vertical direction, the filter net 120 can be limited, so that the filter net 120 is closely matched with the rear enclosure 110 in the vertical direction, preventing the filter net 120 from moving up and down and improving the user experience.
[0042] Second Embodiment
[0043] Please refer to Figure 7 and Figure 8 . The embodiment of the present invention provides an air conditioner housing 100. Compared with the first embodiment, the difference in this embodiment is that the bottom surface 132 of the insert piece 130 abuts against the lower side wall 142 of the jack 140, and there is a second gap between the top surface 131 of the insert piece 130 and the upper side wall 141 of the jack 140.
[0044] In this embodiment, the bottom surface 132 of the insertion piece 130 abuts against the lower side wall 142 of the insertion hole 140. The bottom surface 132 of the insertion piece 130 exerts a downward abutting force on the lower side wall 142 of the insertion hole 140, causing the lower side wall 142 of the insertion hole 140 to have a tendency to fall downward, and thus causing the second side wall 123 of the filter net 120 to have a tendency to fall downward. At this time, since the first side wall 122 of the filter net 120 has been fixed to the first side plate 113 of the rear enclosure 110 through the cooperation of the first buckle 124 and the second buckle 115, the lower side wall 142 of the insertion hole 140 will not move downward, but only abut more tightly against the bottom surface 132 of the insertion piece 130. In this way, the insertion piece 130 locks the insertion hole 140 at the limit position of the downward movement of the filter net 120, so that the filter net 120 can neither move downward nor move upward, thereby preventing the filter net 120 from moving up and down in the vertical direction. Further, there is a second gap between the top surface 131 of the insertion piece 130 and the upper side wall 141 of the insertion hole 140 for easy installation, enabling the insertion piece 130 to be easily inserted into the insertion hole 140 and improving the assembly efficiency.
[0045] In this embodiment, one side of the end surface 134 is connected to the bottom surface 132 through a transition inclined surface 133, and the other side is connected to the top surface 131. The transition inclined surface 133 can facilitate the staff to slide the insertion piece 130 into the insertion hole 140, playing a role in saving effort. During the process of inserting the insertion piece 130 into the insertion hole 140, the transition inclined surface 133 slides relative to the lower side wall 142 of the insertion hole 140. During this process, the transition inclined surface 133 continuously exerts an abutting force on the lower side wall 142 of the insertion hole 140, and the abutting force becomes larger and larger. When the abutting force reaches the maximum, the transition inclined surface 133 separates from the lower side wall 142 of the insertion hole 140. At this time, the bottom surface 132 of the insertion piece 130 abuts against the lower side wall 142 of the insertion hole 140, and the bottom surface 132 of the insertion piece 130 exerts an abutting force on the lower side wall 142 of the insertion hole 140 to prevent the filter net 120 from moving up and down in the vertical direction.
[0046] It should be noted that during the installation process of the filter net 120, first insert the insertion piece 130 into the insertion hole 140 so that the bottom surface 132 of the insertion piece 130 abuts against the lower side wall 142 of the insertion hole 140, that is, the rear enclosure 110 exerts a downward abutting force on the filter net 120. Subsequently, snap the first buckle 124 and the second buckle 115 together to fix the relative positions of the rear enclosure 110 and the filter net 120, thereby preventing the filter net 120 from moving up and down in the vertical direction.
[0047] The beneficial effects of the air conditioner housing 100 described in the embodiments of the present invention are the same as those of the first embodiment and will not be elaborated here.
[0048] Third Embodiment
[0049] An embodiment of the present invention provides an air conditioner housing 100. Compared with the first embodiment, the difference in this embodiment is that the first abutting structure 121 is an insertion piece 130, the second abutting structure 112 is a jack 140, and the insertion piece 130 is inserted into the jack 140 and cooperates with the jack 140.
[0050] In this embodiment, the bottom surface 132 of the insertion piece 130 abuts against the lower side wall 142 of the jack 140, and the lower side wall 142 of the jack 140 exerts an upward abutting force on the bottom surface 132 of the insertion piece 130, so that the bottom surface 132 of the insertion piece 130 has a tendency to lift upward, thereby making the second side wall 123 of the filter net 120 have a tendency to lift upward. At this time, since the first side wall 122 of the filter net 120 has been fixed to the first side plate 113 of the rear enclosure 110 through the cooperation of the first buckle 124 and the second buckle 115, the bottom surface 132 of the insertion piece 130 will not move upward, but only abut more closely against the lower side wall 142 of the jack 140. In this way, the jack 140 locks the insertion piece 130 at the limit position where the filter net 120 moves downward, so that the filter net 120 can neither move downward nor move upward, thereby preventing the filter net 120 from moving up and down in the vertical direction. Further, there is a third gap between the top surface 131 of the insertion piece 130 and the upper side wall 141 of the jack 140 for easy installation, so that the insertion piece 130 can be easily inserted into the jack 140, improving the assembly efficiency.
[0051] In this embodiment, one side of the end surface 134 is connected to the bottom surface 132 through a transition slope 133, and the other side is connected to the top surface 131. The transition slope 133 can facilitate the staff to slide the insertion piece 130 into the jack 140, playing a labor-saving role. During the process of inserting the insertion piece 130 into the jack 140, the transition slope 133 slides relative to the lower side wall 142 of the jack 140. During this process, the lower side wall 142 of the jack 140 continuously exerts an abutting force on the transition slope 133, and the abutting force becomes larger and larger. When the abutting force reaches the maximum, the lower side wall 142 of the jack 140 separates from the transition slope 133. At this time, the lower side wall 142 of the jack 140 abuts against the bottom surface 132 of the insertion piece 130, and the lower side wall 142 of the jack 140 exerts an abutting force on the bottom surface 132 of the insertion piece 130 to prevent the filter net 120 from moving up and down in the vertical direction.
[0052] It should be noted that during the installation process of the filter net 120, first insert the insertion piece 130 into the jack 140 so that the lower side wall 142 of the jack 140 abuts against the bottom surface 132 of the insertion piece 130, that is, the rear enclosure 110 exerts an upward abutting force on the filter net 120. Subsequently, snap the first buckle 124 and the second buckle 115 together to fix the relative positions of the rear enclosure 110 and the filter net 120, thereby preventing the filter net 120 from moving up and down in the vertical direction.
[0053] The beneficial effects of the air conditioner housing 100 described in the embodiments of the present invention are the same as those of the first embodiment, and will not be elaborated here.
[0054] Fourth Embodiment
[0055] An embodiment of the present invention provides an air conditioner housing 100. Compared with the third embodiment, the difference in this embodiment is that the top surface 131 of the insertion piece 130 abuts against the upper side wall 141 of the insertion hole 140, and there is a fourth gap between the bottom surface 132 of the insertion piece 130 and the lower side wall 142 of the insertion hole 140.
[0056] In this embodiment, the top surface 131 of the insertion piece 130 abuts against the upper side wall 141 of the insertion hole 140. The upper side wall 141 of the insertion hole 140 exerts a downward abutting force on the top surface 131 of the insertion piece 130, causing the top surface 131 of the insertion piece 130 to have a tendency to fall downward, and thus causing the second side wall 123 of the filter net 120 to have a tendency to fall downward. At this time, since the first side wall 122 of the filter net 120 is already fixed to the first side plate 113 of the rear enclosure 110 through the cooperation of the first buckle 124 and the second buckle 115, the top surface 131 of the insertion piece 130 will not move downward, but only abut more closely against the upper side wall 141 of the insertion hole 140. In this way, the insertion hole 140 locks the insertion piece 130 at the extreme upward position of the filter net 120, making the filter net 120 unable to move upward or downward, thereby preventing the filter net 120 from moving up and down in the vertical direction. Further, there is a fourth gap between the bottom surface 132 of the insertion piece 130 and the lower side wall 142 of the insertion hole 140 for easy installation, enabling the insertion piece 130 to be easily inserted into the insertion hole 140 and improving the assembly efficiency.
[0057] In this embodiment, one side of the end face 134 is connected to the top surface 131 through a transition inclined surface 133, and the other side is connected to the bottom surface 132. The transition inclined surface 133 can facilitate the staff to slide the insertion piece 130 into the insertion hole 140, playing a role of saving effort. During the process of inserting the insertion piece 130 into the insertion hole 140, the transition inclined surface 133 slides relative to the upper side wall 141 of the insertion hole 140. During this process, the upper side wall 141 of the insertion hole 140 continuously exerts an abutting force on the transition inclined surface 133, and the abutting force becomes larger and larger. When the abutting force reaches the maximum, the upper side wall 141 of the insertion hole 140 separates from the transition inclined surface 133. At this time, the upper side wall 141 of the insertion hole 140 abuts against the top surface 131 of the insertion piece 130, and the upper side wall 141 of the insertion hole 140 exerts an abutting force on the top surface 131 of the insertion piece 130 to prevent the filter net 120 from moving up and down in the vertical direction.
[0058] It should be noted that during the installation of the filter net 120, first insert the insertion piece 130 into the jack 140 so that the upper side wall 141 of the jack 140 abuts against the top surface 131 of the insertion piece 130, that is, the rear enclosure 110 applies a downward abutting force to the filter net 120. Subsequently, snap the first buckle 124 and the second buckle 115 together to fix the relative positions of the rear enclosure 110 and the filter net 120, thereby preventing the filter net 120 from moving up and down in the vertical direction.
[0059] The beneficial effects of the air conditioner housing 100 described in the embodiments of the present invention are the same as those of the first embodiment and will not be elaborated here.
[0060] Fifth Embodiment
[0061] The present invention provides an air conditioner (not shown in the figure) for regulating the indoor air temperature. The air conditioner includes an air conditioner housing 100 and a blower (not shown in the figure). Among them, the basic structure, principle, and technical effects generated by the air conditioner housing 100 are the same as those of the first embodiment. For a brief description, for the parts not mentioned in this embodiment, reference can be made to the corresponding content in the first embodiment.
[0062] In this embodiment, the air conditioner is an air conditioner cabinet, and the blower is installed inside the air conditioner housing 100. The blower is used to draw external air into the air conditioner housing 100 when the air conditioner is operating, so that the external air enters the air inlet 111 through the filter net 120. During this process, the air flow will exert a force on the filter net 120, causing the filter net 120 to have a tendency to move up and down. At this time, since the first abutting structure 121 of the filter net 120 abuts against the second abutting structure 112 of the rear enclosure 110, the rear enclosure 110 can limit the filter net 120 to prevent the filter net 120 from moving up and down in the vertical direction.
[0063] The beneficial effects of the air conditioner described in the embodiments of the present invention are the same as those of the first embodiment and will not be elaborated here.
[0064] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention should be determined by the scope defined by the claims.
Claims
1. An air conditioner housing, characterized in that, It includes a rear bulkhead (110) and a filter screen (120). An air inlet (111) is formed in the rear bulkhead (110). The filter screen (120) is disposed outside the air inlet (111). One side of the filter screen (120) is clamped to the rear bulkhead (110), and a first abutting structure (121) is provided on the other side. The rear bulkhead (110) is provided with a second abutting structure (112), and the second abutting structure (112) can abut against the first abutting structure (121) to limit the filter screen (120) in the vertical direction. The first abutting structure (121) is a jack (140), and the second abutting structure (112) is a plug (130). The plug (130) is inserted into the jack (140) and cooperates with the jack (140); or the first abutting structure (121) is a plug (130), and the second abutting structure (112) is a jack (140). The plug (130) is inserted into the jack (140) and cooperates with the jack (140). The rear bulkhead (110) includes a plate body (116) and a bending part (117). The plate body (116) is arranged in an arc shape. The bending part (117) is fixedly connected to the inner side of the plate body (116) and extends along the radial direction of the plate body (116). The second abutting structure (112) is disposed at one end of the bending part (117) away from the plate body (116).
2. The air conditioner housing according to claim 1, characterized in that, The top surface (131) of the plug (130) abuts against the upper side wall (141) of the jack (140), and there is a first gap between the bottom surface (132) of the plug (130) and the lower side wall (142) of the jack (140).
3. The air conditioner housing according to claim 2, characterized in that, The plug (130) is provided with an end face (134) and a transition inclined surface (133). One side of the end face (134) is connected to the top surface (131) through the transition inclined surface (133), and the other side is connected to the bottom surface (132).
4. The air conditioner housing according to claim 3, characterized in that, The top surface (131) and the transition inclined surface (133) are in arc transition, the transition inclined surface (133) and the end face (134) are in arc transition, and the end face (134) and the bottom surface (132) are in arc transition.
5. The air conditioner housing according to claim 3, characterized in that, The included angle range between the transition inclined surface (133) and the end face (134) is from 30 degrees to 75 degrees.
6. The air conditioner housing according to claim 1, characterized in that, The bottom surface (132) of the plug (130) abuts against the lower side wall (142) of the jack (140), and there is a second gap between the top surface (131) of the plug (130) and the upper side wall (141) of the jack (140).
7. An air conditioner, characterized in that, It includes an air conditioner housing according to any one of claims 1 to 6.
Citation Information
Patent Citations
Air conditioner shell and air conditioner
CN211451337U