Air conditioning purification component and air conditioner component
By setting up electrical contact plates between the frame structure of the air-conditioning purification components, the simultaneous power supply of the two purification components is solved, and the problems of complex wiring and safety hazards in the prior art are simplified, and the wiring structure is improved.
Patent Information
- Application Number
- CN201911417015.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-12-31
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2039-12-31
AI Technical Summary
In existing air-conditioning cabinets, the purification components at the upper air inlet and the lower air inlet need to be powered separately, resulting in a complex wiring structure and safety hazards.
An air conditioning purification component is designed, and by providing two electrical contact sheets between the first frame structure and the second frame structure, the conductive sheets in these frame structures are used to realize power supply to the two purification components, thereby simplifying the wiring structure.
The simultaneous power supply of two purification components is achieved, simplifying the routing structure, ease of operation, and improving safety.
Smart Images

Figure CN111089336B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioning, and in particular to an air conditioning purification component and an air conditioner component. Background Art
[0002] Some air conditioner cabinets include upper and lower air inlets. In order to purify the air at the air inlets, IFD purification components, i.e., strong field dielectric purification components, are installed at the upper and lower air inlets of the air conditioner cabinet. The FD purification components include a frame structure, which is generally installed at the upper and lower air inlets through the frame structure during assembly. In the prior art, the purification components at the upper and lower air inlets are powered separately, which requires the design of two sets of wiring, which is not only inconvenient, but also poses a safety hazard. Summary of the invention
[0003] The problem solved by the present invention is how to realize powering two purification components at the same time, thereby simplifying the wiring structure and facilitating operation.
[0004] To solve the above problems, the present invention provides an air conditioning purification component, comprising a first frame structure, a second frame structure and two electric contact pieces arranged between the first frame structure and the second frame structure; the first frame structure and the second frame structure both comprise a first conductive piece and a second conductive piece; one of the electric contact pieces contacts with the first conductive piece of the first frame structure and the second frame structure respectively; the other electric contact piece contacts with the second conductive piece of the first frame structure and the second frame structure respectively.
[0005] In this way, two electric contacts are arranged between the first frame structure and the second frame structure. Since the first frame structure and the second frame structure both include a first conductive sheet and a second conductive sheet, after the two electric contacts are installed in place, one of the electric contacts contacts with the first conductive sheet of the first frame structure and the second frame structure respectively; the other electric contact contacts with the second conductive sheet of the first frame structure and the second frame structure respectively. Thus, the two electric contacts can realize power supply to the first frame structure and the second frame structure, thereby simplifying the wiring structure and facilitating operation.
[0006] Furthermore, the first frame structure and the second frame structure both include a cover plate and a bottom plate; the cover plate is provided with a snap button, and the bottom plate is provided with a slot that cooperates with the snap button; the first frame structure and the second frame structure both also include a surrounding edge structure, the surrounding edge structure and the bottom plate form a accommodating cavity that communicates with the slot, and the snap button extends into the accommodating cavity and is snap-engaged with the slot.
[0007] The buckle extends into the accommodating cavity and rests on the notch, and the surrounding structure encloses the buckle and the notch in the accommodating cavity. The notch is doubly blocked by the buckle and the surrounding structure, so that condensed water attached to the outer surfaces of the first frame structure and the second frame structure is not easy to enter the interior of the first frame structure and the second frame structure.
[0008] Furthermore, the accommodating cavity is provided with an entrance for the buckle to extend into, and the surrounding edge structure is provided with a notch at one end facing the entrance.
[0009] In order to insert the buckle into the accommodating cavity, the accommodating cavity is provided with an entrance. The setting of the notch can reduce the strength of the surrounding structure at the entrance. Therefore, when the buckle is inserted, the entrance of the surrounding structure can produce a certain deformation, which is conducive to the insertion of the buckle.
[0010] Furthermore, a limiting member is provided on a side of the surrounding structure facing the accommodating cavity, and the limiting member is used to guide the movement of the buckle in the accommodating cavity.
[0011] When the buckle is extended into the accommodating cavity, under the action of the limiter, when the buckle is not matched with the slot, the limiter contacts the buckle during the process of the buckle extending, and the limiter guides it to slide downward. When the buckle moves to the position of the slot, the buckle matches with the slot, and the buckle no longer contacts the limiter, thereby finally realizing the assembly of the cover plate and the bottom plate.
[0012] Furthermore, the limiting member is a convex rib, and the convex rib extends from one end of the surrounding edge structure toward the inlet toward the other end opposite thereto.
[0013] The convex rib has a simple structure, is easy to manufacture, and has a low cost. The convex rib is extended from the entrance to the bottom of the accommodating cavity and does not form an obstacle to the insertion of the buckle. Therefore, the limiting member is a convex rib, which can simplify the production cost, facilitate the insertion of the buckle, and improve the clamping effect and waterproof effect of the buckle.
[0014] Furthermore, the convex ribs are arranged on both sides of the notch, and the convex ribs extend from one end of the inlet to the edge of one end of the surrounding structure facing the inlet.
[0015] The notch reduces the strength of the surrounding structure at the entrance, and both sides of the notch can produce a certain deformation under the pressure of external force. The convex rib is arranged on both sides of the notch, and one end extends to the plane where the entrance is located, thereby facilitating the buckle to smoothly enter the accommodating cavity.
[0016] Furthermore, a guide slope is provided at one end of the convex rib facing the inlet, and the guide slope is inclined along the direction from the surrounding edge structure to the notch.
[0017] Therefore, providing the guide sliding slope can reduce friction and make it more convenient for the buckle to enter the accommodating cavity.
[0018] Furthermore, the cover plate and the bottom plate are both frame-shaped, and a mounting groove is formed between the cover plate and the bottom plate, and the mounting groove is suitable for mounting a filter screen.
[0019] The cover plate and the bottom plate are both frame-shaped, which is convenient for placing the filter net. The installation groove is simple in design and the installation operation is also simple, thereby facilitating the installation and removal of the filter net.
[0020] Another object of the present invention is to provide an air conditioner component to solve the problem of how to power two purification components at the same time, thereby simplifying the wiring structure and facilitating operation.
[0021] To solve the above problems, the technical solution of the present invention is achieved as follows:
[0022] An air conditioner component comprises the air conditioner purification component as described above.
[0023] The advantages of the air conditioner assembly and the air conditioning purification assembly described above over the prior art are the same and will not be described in detail here.
[0024] Furthermore, the air conditioner further comprises a filter, and the mounting grooves of the first frame structure and the second frame structure of the air conditioning purification component respectively fix one of the filter.
[0025] The filter is clamped on the first frame structure and the second frame structure by the mounting groove, so that the filter does not directly contact other components, which can prevent the charged filter from causing leakage and improve the safety of the air conditioner.
[0026] Furthermore, the air conditioner also includes a wiring structure, which includes a wiring trough structure, and a first mounting plate and a second mounting plate arranged in the wiring trough structure; a wiring channel is formed between the first mounting plate and / or the second mounting plate and the wiring trough structure; the first mounting plate and the second mounting plate both include a second mounting surface and a first mounting surface suitable for mounting an electric contact, and the second mounting surface faces the bottom wall of the wiring channel, and the first mounting surface faces away from the bottom wall of the wiring channel.
[0027] In this way, when the wires are routed, the wires pass through the routing channel. Since the routing channel is formed by the first mounting plate and / or the second mounting plate and the routing groove structure, and the electric contacts are mounted on the first mounting surfaces of the first mounting plate and the second mounting plate, the wires and the electric contacts are separated from each other, and the two will not interfere with each other, thereby avoiding the occurrence of wire wear or the wire blocking the power supply of the electric contacts.
[0028] Furthermore, the wiring structure includes a first plate, which is located in the wiring channel and connected to the first mounting plate or the second mounting plate, and the first plate is provided with a wire clamping structure, which is used to fix the wire.
[0029] In this way, when the wire passes through the wiring channel, the wire clamping structure of the first plate can fix the wire, thereby preventing the wire from escaping from the wiring channel when the air conditioner is running.
[0030] Furthermore, the routing structure also includes a second plate, which is located in the routing channel and connected to the first mounting plate or the second mounting plate, and the second plate includes a supporting portion, and a gap is left between the supporting portion and the first mounting plate and / or the second mounting plate.
[0031] In this way, when the wire passes through the wiring channel, the gap can support the wire, and when the air conditioner is running, the wire is easily fixed in the wire clamping structure of the first plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 It is a schematic diagram of assembling the first frame structure and the second frame structure of the present invention on the air conditioner;
[0033] Figure 2 for Figure 1 A partial enlarged view of point D in the middle;
[0034] Figure 3 is a schematic diagram of the assembly position of the first frame structure in the air conditioner according to an embodiment of the present invention;
[0035] Figure 4 is a front view of a first frame structure in an embodiment of the present invention;
[0036] Figure 5 is a side view of a first frame structure in an embodiment of the present invention;
[0037] Figure 6 In the embodiment of the present invention Figure 5 Enlarged view of point A in the middle;
[0038] Figure 7 In the embodiment of the present invention Figure 5Cross-sectional view in the middle BB direction;
[0039] Figure 8 In the embodiment of the present invention Figure 5 Another cross-sectional view in the BB direction;
[0040] Fig. 9 Schematic diagram of the surrounding structure and the accommodating cavity structure in an embodiment of the present invention;
[0041] Fig.10 Schematic diagram of the enclosure structure and buckle structure in an embodiment of the present invention;
[0042] Fig.11 A schematic diagram of the structure of an embodiment of the present invention;
[0043] Fig.12 It is a structural schematic diagram of the second mounting plate of the present invention;
[0044] Fig.13 A schematic diagram of the positions of a supporting structure, a first plate, and a second plate in one embodiment;
[0045] Fig.14 for Fig.13 Another perspective of the location diagram;
[0046] Fig.15 It is a schematic diagram of the structure of the electric contact;
[0047] Description of reference numerals:
[0048] 1-cover plate, 2-bottom plate, 3-edge structure, 4-accommodating cavity, 5-convex rib, 6-installation groove, 7-wiring structure, 8-first frame structure, 9-second frame structure;
[0049] 11- buckle, 12- triangular reinforcement plate, 21- notch, 22- protrusion, 31- first enclosure, 32- second enclosure, 33- third enclosure, 34- notch, 41- inlet, 51- guide slope, 71- wiring groove structure, 72- first mounting plate, 73- second mounting plate, 74- wiring channel, 75- baffle, 76- electric contact sheet;
[0050] 111-clip head, 100-filter screen, 200-rear panel, 201-mounting seat, 300-first conductive sheet, 400-second conductive sheet, 731-first plate, 732-second plate, 733-first connecting member, 734-first positioning member, 761-second connecting member, 762-second positioning member, 763-spring;
[0051] 7311-cable clamping structure, 7321-supporting part. DETAILED DESCRIPTION
[0052] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0053] In the description of the present invention, it should be understood that the positive direction of "X" in the drawings represents the right, and correspondingly, the reverse direction of "X" represents the left; the positive direction of "Y" represents the rear, and correspondingly, the reverse direction of "Y" represents the front; the positive direction of "Z" represents the top, and correspondingly, the reverse direction of "Z" represents the bottom. The orientation or position relationship indicated by the terms "X", "Y", "Z", etc. is based on the orientation or position relationship shown in the drawings of the specification, which is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0054] like Figure 1 , 2 As shown, an air conditioning purification component includes a first frame structure 8, a second frame structure 9, and two electric contacts 76 arranged between the first frame structure 8 and the second frame structure 9; the first frame structure 8 and the second frame structure 9 both include a first conductive sheet 300 and a second conductive sheet 400; one of the electric contacts 76 is in contact with the first conductive sheet 300 of the first frame 8 structure and the second frame 9 structure respectively; the other electric contact 76 is in contact with the second conductive sheet 400 of the first frame 8 structure and the second frame 9 structure respectively.
[0055] After adopting the air conditioning purification component of this embodiment, two electric contacts 76 are arranged between the first frame structure 8 and the second frame structure 9. Since the first frame structure 8 and the second frame structure 9 both include a first conductive sheet 300 and a second conductive sheet 400, after the two electric contacts 76 are installed in place, one of the electric contacts 76 contacts the first conductive sheet 300 of the first frame structure 8 and the second frame structure 9 respectively; the other electric contact 76 contacts the second conductive sheet 400 of the first frame structure 8 and the second frame structure 9 respectively. Thus, the two electric contacts 76 can realize power supply to the first frame structure 8 and the second frame structure 9, thereby simplifying the wiring structure and facilitating operation.
[0056] like Figures 5 to 10 As shown, the first frame and the second frame both include a cover plate 1 and a bottom plate 2; a buckle 11 is provided on the cover plate 1, and a slot 21 cooperating with the buckle 11 is provided on the bottom plate 2; the first frame structure 8 and the second frame structure 9 both further include a surrounding structure 3, the surrounding structure 3 and the bottom plate 2 form a receiving cavity 4 communicating with the slot 21, and the buckle 11 extends into the receiving cavity 4 and is engaged with the slot 21.
[0057] When the air conditioner is cooling, the surface temperature of the evaporator is much lower than the "dew point" temperature of the room temperature due to the evaporation heat absorption of the refrigerant. The water vapor in the air condenses into liquid water, which is easy to gather on the outer surface of the frame structure of the air conditioning filter near the condenser. The frame structure for fixing the filter is assembled by inserting the buckle 11 connected to the cover plate 1 into the slot set on the base plate 2. Therefore, there is a notch 21 on the base 2, which easily causes the water gathered on the outer surface of the frame structure to enter the interior of the frame structure from the notch 21.
[0058] like Figures 5 to 10 As shown, the cover plate 1 is provided with a buckle 11, and there are multiple buckles 11. The multiple buckles 11 are distributed on the lower bottom surface of the cover plate 1 and are fixedly connected to the lower bottom surface of the cover plate 1. The buckle 11 and the lower bottom surface of the cover plate 1 can be connected at a right angle or connected at other angles with a certain inclination. The buckle 11 can be flat, cylindrical or a combination of them. Preferably, in this embodiment, the buckle 11 is flat and the root of the buckle is fixedly connected to the lower bottom surface of the cover plate 1 at a right angle. A clamping head 111 is provided at the end of the buckle 11, and a notch 21 cooperating with the buckle 11 is provided on the bottom plate 2. There are also multiple notches 21, and the positions of the multiple notches 21 on the bottom plate 2 are consistent with the positions of the buckle The positions of the buckle 11 on the cover plate 1 correspond one by one, the head 111 of the buckle 11 faces the notch 21, the bottom plate 2 is also connected with a peripheral structure 3, and there are multiple peripheral structures 3, and the multiple peripheral structures 3 correspond one by one to the multiple notches 21, and the peripheral structure 3 is connected to the bottom plate 2 to surround the notch 21 and communicate with the notch 21 to form a receiving cavity 4, the buckle 11 extends into the receiving cavity 4, the head 111 of the buckle 11 passes through the notch 21 and hooks the upper edge of the notch 21 to install the cover plate 1 on the bottom plate 2. The buckle 11 extends into the receiving cavity 4 and abuts against the notch 21, and the peripheral structure 3 encloses the buckle 11 and the notch 21 in the receiving cavity 4, and the notch 21 is doubly blocked by the buckle 11 and the peripheral structure 3, so that external water is not easy to enter the first frame structure 8 and the second frame structure 9.
[0059] like Fig. 9As shown, the edge structure 3 is arranged on the base plate 2 and protrudes from the upper bottom surface of the base plate 2. The cross-section of the edge structure 3 on a plane perpendicular to the Y-axis can be U-shaped, arc-shaped or a combination thereof. Preferably, in this embodiment, the cross-section of the edge structure 3 on a plane perpendicular to the Y-axis is U-shaped. The edge structure 3 includes a first enclosure 31, a second enclosure 32 and a third enclosure 33; the first enclosure 31 and the second enclosure 32 are arranged opposite to each other, and the third enclosure 33 is respectively connected to the first enclosure 31 and the second enclosure 32, the first side edge of the first enclosure and the first side edge of the second enclosure are respectively fixedly connected to the base plate 2, the first side edge of the third enclosure is fixedly connected to the second side edge of the first enclosure, the second side edge of the third enclosure is fixedly connected to the second side edge of the second enclosure, and the third side edge of the third enclosure is fixedly connected to the base plate 2, so that the first enclosure 31, the second enclosure 32, the third enclosure 33 and the base plate 2 form a accommodating cavity 4. The shape of the accommodating cavity 4 is consistent with the buckle 11 , so that the surrounding structure 3 and the buckle 11 as well as the buckle 11 and the bottom plate 2 fit more closely, and the surrounding structure 3 and the buckle 11 seal the notch 21 more tightly.
[0060] Among them, the plane perpendicular to the Y axis refers to: Figure 7 As shown in , the plane is parallel to the X-axis direction and perpendicular to the dotted line γ.
[0061] In other embodiments, the surrounding edge structure 3 is an arc-shaped plate, which is fixed as a whole on the bottom plate 2, and it and the bottom plate form a receiving cavity 4. Therefore, the surrounding edge structure 3 is an integral body, which is formed by injection molding, and the process is simple and more convenient to process.
[0062] like Figures 5 to 10 As shown, the accommodating cavity 4 is provided with an inlet 41 for the buckle 11 to extend into, and a notch 34 is provided on one side of the surrounding structure 3 facing the inlet 41. Specifically, the third surrounding plate 31 is provided with a notch 34 on one side of the inlet 41. The inlet 41 of the accommodating cavity 4 is set at a position slightly higher than the upper edge of the notch 21, and the size of the inlet 41 of the accommodating cavity 4 is slightly larger than the cross section of the buckle 11, so that the buckle 11 can be smoothly inserted without causing the buckle 11 to shake greatly. The shape of the notch 34 can be an arc, a groove, a serrated shape or other shapes combined therefrom, and the width and depth of the notch 34 can also be adjusted as needed. Preferably, in this embodiment, the notch 34 is a groove, the width of the notch is slightly smaller than the width of the buckle 11, and the depth of the notch is preferably not lower than the upper edge of the notch 21. The notch is simple to make and is also more beautiful, and it can also play a role in reducing strength. In order to insert the buckle 11 into the accommodating cavity 4, the accommodating cavity 4 is provided with an entrance 41. The setting of the notch 34 can reduce the strength of the third enclosure 33 at the entrance 41. Therefore, when the buckle 11 is inserted, the third enclosure 33 can produce a certain deformation, which is conducive to the insertion of the buckle 11.
[0063] The width of the notch refers to: Figure 7 As shown, in the Z-axis direction, the distance from one side to the other side of the third enclosure plate 33 on the notch 34.
[0064] The depth of the notch refers to: Figure 7 As shown, in the Y-axis direction, the distance from the inlet 41 to the bottom of the accommodating chamber 4 on the notch 34 is.
[0065] The width of the buckle refers to: Figure 8 As shown, in the Z-axis direction, the distance from one side to the other side of the notch 31 on the buckle 11.
[0066] like Figures 5 to 10 As shown, a stopper is provided on one side of the surrounding structure 3 facing the accommodating cavity 4. Specifically, a stopper is provided on one side of the third enclosure 33 facing the accommodating cavity 4. The stopper is used to limit the movement of the buckle 11 from the notch 21 to the third enclosure 33. The stopper and the third enclosure 33 can be detachably connected or fixedly connected. Preferably, in this embodiment, the stopper is fixedly connected to the third enclosure 33. The space in the accommodating cavity 4 is limited. Such a connection method does not require more stoppers, occupies less space, is easy to manufacture, and is more cost-effective. When the buckle 11 extends into the accommodating cavity 4, under the action of the stopper, when the buckle 11 does not cooperate with the notch 21, during the process of the buckle 11 extending, the stopper contacts the buckle 11, and the stopper guides it to slide downward. When the buckle 11 moves to the position where the notch 21 is located, the buckle 11 cooperates with the notch 21, and the buckle 11 no longer contacts the stopper, and finally the assembly of the cover plate 1 and the bottom plate 2 is realized.
[0067] like Figure 8 , Fig. 9 and Fig.10 As shown, the limiting member is a convex rib 5 , and the convex rib 5 is extended from the inlet 41 to the bottom of the accommodating cavity 4 . The limiting member may be in the shape of a block, a strip, or other shapes combined thereof, and the arrangement of the limiting member may also be diverse, such as arranging block limiting members at multiple points on the side of the third enclosure 33 facing the accommodating cavity 4, arranging strip limiting members from one side of the third enclosure 33 to the other side, arranging strip limiting members diagonally along the third enclosure 33, or arranging strip limiting members extending from the entrance 41 to the bottom of the accommodating cavity 4. Preferably, in this embodiment, the limiting member is a convex rib 5, and the convex rib 5 is strip-shaped. The strip-shaped convex rib 5 has a larger coverage range, the convex rib 5 has a simple structure, is easy to manufacture, and has low cost. Moreover, the convex rib 5 extending from the entrance 41 to the bottom of the accommodating cavity 4 will not form an obstacle to the insertion of the buckle 11, and the insertion of the buckle 11 will not cause jamming. Therefore, the limiting member is a convex rib 5, which can save production costs, facilitate the insertion of the buckle 11, and improve the clamping effect and waterproof effect of the buckle 11.
[0068] like Figure 8 , Fig. 9 and Fig.10 As shown, the convex rib 5 can be arranged on the third enclosure 33 between the lower edge of the notch 34 and the bottom of the accommodating cavity 4, or can be arranged on the third enclosure 33 at both sides of the notch 34. The convex rib 5 can extend to the plane where the inlet 41 is located, and the convex rib 5 can also end inside the accommodating cavity 4. Preferably, in this embodiment, the convex rib 5 is arranged on both sides of the notch 34, and one end of the convex rib 5 extends to the plane where the inlet 41 is located. The notch 34 reduces the strength of the third enclosure 33 at the inlet 41, and both sides of the notch 34 can produce a certain deformation under the pressure of external force. The convex rib 5 is arranged on both sides of the notch 34, and one end extends to the plane where the inlet 41 is located, thereby facilitating the buckle 11 to smoothly enter the accommodating cavity 4.
[0069] The plane where the inlet 41 is located is: Figure 7 As shown, it is a plane perpendicular to the Y-axis direction and passing through the upper edges of the first enclosure panel 31 , the second enclosure panel 32 and the third enclosure panel 33 .
[0070] like Figure 8 , Fig. 9 and Fig.10 As shown, the upper end of the rib 5 is provided with a guide slope 51, which is arranged obliquely along the direction from the surrounding structure 3 to the notch 21; specifically, the guide slope 51 is arranged obliquely along the direction from the third enclosure plate 33 to the notch 21. The depth of the guide slope 51 can also be adjusted as needed. Preferably, in this embodiment, the depth of the guide slope 51 is preferably not lower than the upper edge of the notch 21. Therefore, the provision of the guide slope 51 can reduce friction and make it more convenient for the buckle 11 to enter the accommodating cavity 4.
[0071] The depth of the guide slope 51 is: Figure 7 As shown, in the Y-axis direction, the vertical distance between the guide slope 51 and the edge line of the rib 5 facing the notch 21 to the plane where the inlet 41 is located.
[0072] The plane where the inlet 41 is located is: Figure 7 As shown, it is a plane perpendicular to the Y-axis direction and passing through the upper edges of the first enclosure panel 31 , the second enclosure panel 32 and the third enclosure panel 33 .
[0073] like Figure 7 and Figure 8As shown, a reinforcement structure is also provided on the cover plate 1, and the reinforcement structure is used to increase the connection strength of the buckle 11 on the cover plate 1. One end of the reinforcement structure is connected to the cover plate 1, and the other end of the reinforcement structure is connected to the buckle 11. The reinforcement structure is provided so that there are multiple connection points between the buckle 11 and the cover plate 1, and the connection is more stable. Therefore, the position of the buckle 11 on the cover plate 1 is more stable, the buckle 11 is not easy to shake, and the buckle 11 and the notch 21 are more closely matched, thereby improving the clamping effect and waterproof effect of the buckle 11.
[0074] like Figure 7 and Figure 8 As shown, the reinforcement structure is a reinforcement plate or reinforcement rib, and the reinforcement structure is fixedly connected to the buckle 11. There are multiple reinforcement plates or reinforcement ribs, and the multiple reinforcement plates or reinforcement ribs are symmetrically arranged and supported at the root of the buckle 11. The reinforcement rib can be a long rib with one end connected to the cover plate 1 and the other end connected to the buckle 11. The reinforcement plate can be a triangle, rectangle or arc shape and other shapes. One side of the reinforcement plate is connected to the cover plate 1, and the other side is connected to the buckle 11. Preferably, in this embodiment, the reinforcement structure is a triangular reinforcement plate 12. The triangular reinforcement plate 12 has a stable shape and is not easy to deform, has a good reinforcement effect, uses less materials, has a simple structure, is easy to manufacture, and can save costs.
[0075] like Figure 3 , Figure 4 and Figure 5 As shown, the cover plate 1 and the bottom plate 2 are both frame-shaped, and a mounting groove 6 is formed between the cover plate 1 and the bottom plate 2, and the mounting groove 6 is suitable for mounting the filter 100. The cover plate 1 and the bottom plate 2 are both frame-shaped, and each frame of the frame can be on the same plane or on the same curved surface. In this embodiment, each frame of the cover plate 1 and the bottom plate 2 constituting the frame-shaped structure is respectively on the curved surface where the outer surface of the two concentric cylinders is located. Such a shape is more beautiful and can also increase the area for placing the filter 7. The end of the cover plate 1 away from the buckle 11 is folded toward the bottom plate 2, and the end of the bottom plate 2 away from the notch 21 is folded toward the cover plate 1 to form a mounting groove 6 that is circumferentially oriented to the center of the first frame structure 8 or the second frame structure 9. The mounting groove 6 formed by assembling the frame-shaped cover plate 1 and the bottom plate 2 is convenient for placing the filter 100, and the mounting groove 6 has a simple structure, thereby facilitating the installation and removal of the filter 100.
[0076] like Figure 3 , Figure 4 and Figure 5 As shown, the outer surface of the bottom plate 2 is also provided with a protrusion 22, which is suitable for being detachably connected to the rear panel 200 of the air conditioner. The protrusion 22 has a simple structure, is easy to manufacture, and is convenient to connect with the rear panel 200, thereby facilitating the installation of the first frame structure 8 and the second frame structure 9 on the rear panel 200 of the air conditioner.
[0077] like Figure 1 As shown, the rear panel 200 includes an upper air inlet and a lower air inlet, and the upper air inlet and the lower air inlet are respectively provided with mounting positions for matching the first frame structure 8 and the second frame structure 9. The first frame structure 8 is installed at the mounting position of the upper air inlet, and the second frame structure 9 is installed at the mounting position of the lower air inlet.
[0078] Another embodiment of the present invention provides an air conditioner assembly, comprising any of the above air conditioner purification assemblies.
[0079] like Figure 3 , Figure 4 and Figure 5 As shown, the air conditioner assembly further includes a filter 100, and the mounting groove 6 of the first frame structure 8 and the second frame structure 9 of the air conditioner purification assembly are both fixed with a filter 100. The filter 100 is clamped on the first frame structure 8 or the second frame structure 9 by the mounting groove 6, so that the filter 100 does not directly contact other components, which can prevent the charged filter 100 from causing leakage, thereby improving the safety of the air conditioner.
[0080] like Figure 3 , Figure 4 and Figure 5 As shown, the air conditioner assembly further includes a rear panel 200, on which a mounting seat 201 is provided, and the protrusions 22 on the first frame structure 8 and the second frame structure 9 are detachably connected to the mounting seat 201. As a result, the first frame structure 8 and the second frame structure 9 are more convenient to install and remove from the rear panel 200, and the filter 100 is convenient to clean or replace.
[0081] like Fig.11 , 12 As shown, the air conditioner assembly also includes a wiring structure, which includes a wiring trough structure 71, and a first mounting plate 72 and a second mounting plate 73 arranged in the wiring trough structure 71; a wiring channel 74 is formed between the first mounting plate 72 and / or the second mounting plate 73 and the wiring trough structure 71; the first mounting plate 72 and the second mounting plate 73 both include a second mounting surface and a first mounting surface suitable for mounting an electric contact 76; and the second mounting surface faces the bottom wall of the wiring channel 74, and the first mounting surface faces away from the bottom wall of the wiring channel 74.
[0082] After adopting the wiring structure of this embodiment, when the wires are routed, the wires pass through the wiring channel 74. Since the wiring channel 74 is formed by the first mounting plate 72 and / or the second mounting plate 73 and the wiring groove structure, and the electric contact piece 76 is mounted on the first mounting surface of the first mounting plate 72 and the second mounting plate 73, the wires and the electric contact piece 76 are separated from each other, and the two will not interfere with each other, thereby avoiding the occurrence of the wire wear or the wire blocking the power supply of the electric contact piece 76.
[0083] Among them, the wiring trough structure 71 is arranged between the upper air inlet and the lower air inlet of the rear panel 200, and is formed by a plate structure arranged on the rear panel 200. Since the rear panel 200 is arc-shaped, the wiring trough is also designed to be arc-shaped. At the same time, in order to better match the structure of the rear panel 200, the wiring trough structure 71 is formed with multiple notches in the upper and lower directions. The existence of the notch can facilitate the contact between the spring piece 763 of the contact piece and the metal contact piece of the IFD frame after the electric contact piece 76 is installed, thereby supplying power to the filter.
[0084] The plate structure constituting the wiring trough structure 1 can be detachably connected to the rear panel 200 or can be integrally formed with the rear panel 200, depending on actual needs. For molding considerations, it is preferred that the plate structure is integrally formed with the rear panel 200.
[0085] like Fig.11 As shown, the first mounting plate 72 and the second mounting plate 73 are extended in the vertical direction, the first mounting surfaces of the first mounting plate 72 and the second mounting plate 73 face forward, and the second mounting surfaces of the first mounting plate 72 and the second mounting plate 73 face backward, and the part of the rear panel 200 that constitutes the wiring groove structure 71 forms a wiring channel 74 with the second mounting surface in the Z-axis direction.
[0086] Preferably, the wiring structure includes a first plate 731, which is located in the wiring channel 74 and connected to the first mounting plate 72 or the second mounting plate 73, and the first plate 731 is provided with a wire clamping structure 7311, which is used to fix the wire. In this way, when the wire passes through the wiring channel 74, the wire clamping structure 7311 of the first plate 731 can fix the wire, and prevent the wire from escaping from the wiring channel 74 when the air conditioner is running.
[0087] The first plate 731 is integrally formed with the first mounting plate 72 and / or the second mounting plate 73, thereby facilitating production and processing. The design of the two electric contacts 76 connects the positive and negative electrodes of the IFD frame respectively, thereby forming a loop to supply power to the filter. Generally, when routing, only one wire of the electric contact 76 needs to pass through another contact sheet. Therefore, in most cases, only one of the first mounting plate 72 and the second mounting plate 73 is provided with the first plate 731. As shown in the figure, the second mounting plate 73 is provided with the first plate 731, thereby, the wire of the electric contact 76 on the first mounting plate 72 is routed in the direction of the second mounting plate 73.
[0088] Specifically, the wire clamping structure 7311 is a notch provided on the first plate 731. Therefore, when the wire passes through the notch, the wire is clamped in the notch. The wire clamping structure 7311 is designed in this way, and the structure is simple and easy to produce.
[0089] Among them, Fig.13 , 14 As shown, the notch is set at the downward end of the first plate 731. The shape of the notch is not limited, as long as it can clamp the wire. In order to prevent the notch from cutting the outer skin of the wire, the edge of the notch is rounded.
[0090] In other embodiments, the wire clamping structure 7311 is an elastic clamp. Since the elastic clamp can undergo elastic deformation, the elastic clamp can clamp the wire onto the first plate 731 .
[0091] Optionally, the wire passing structure further includes a second plate 732, which is located in the wiring channel 74 and connected to the first mounting plate 72 or the second mounting plate 73, and the second plate 732 includes a support portion 7321, and a gap is left between the support portion 7321 and the first mounting plate 72 and / or the second mounting plate 73. In this way, when the wire passes through the wiring channel 74, the gap can support the wire, and when the air conditioner is running, the wire is conveniently fixed in the wire clamping structure 7311 of the first plate 731.
[0092] Among them, the second plate 732 is integrally formed with the first mounting plate 72 and / or the second mounting plate 73, thereby facilitating production and processing. The existence of the support portion 7321 of the second plate 732 can buffer the bending amplitude of the wire near the first plate 731. Therefore, in the routing direction of the wire, the second plate 732 is provided on both sides of the first plate 731. When the wire is routed, it first passes through a second plate 732, then passes through the first plate 731, and finally is led out from another second plate 732.
[0093] Preferably, it further comprises a plurality of baffles 75 arranged in the wiring trough structure 1, and the plurality of baffles 75 are arranged in a staggered manner. The baffles 75 in the wiring trough are arranged in a staggered manner; the combination of the plurality of baffles 75 can play a role in fixing the wires, facilitating the fixing of the wires in the wire trough, and preventing the wires from being separated from the wiring channel 74 when the air conditioner is running.
[0094] like Fig.11 As shown, baffles 75 are provided in the wiring trough structure 71 between the first mounting plate 72 and the second mounting plate 73, and in the wiring trough structure 71 between the second mounting plate 73 and the edge of the rear panel 200. Thus, the wires led out from the first mounting plate 72 pass through a plurality of baffles 75, pass through the wiring channel 74 of the first mounting plate 72, and then pass through a plurality of baffles 75 and are led out to the edge of the rear panel 200 for clamping.
[0095] Preferably, the first mounting plate 72 and the second mounting plate 73 are both provided with a first connecting member 733, and the first connecting member 733 is suitable for connecting the electric contact sheet 76. Since the first mounting plate 72 and the second mounting plate 73 are provided with the first connecting member 733, under the action of the first connecting member 733, the purpose of installing the electric contact sheet 76 on the first mounting plate 72 and the second mounting plate 73 can be achieved.
[0096] Preferably, the first mounting plate 72 and the second mounting plate 73 are both provided with a first positioning member 734, and the first positioning member 734 is suitable for plugging with the electric contact sheet 76. Since the first mounting plate 72 and the second mounting plate 73 are provided with the first positioning member 734, under the action of the first positioning member 734, when the electric contact sheet 76 is installed, the first mounting plate 72 and the second mounting plate 73 can achieve the purpose of positioning the electric contact sheet 76.
[0097] Preferably, the electric contact piece 76 is provided with a second connector 761, and the first connector 733 of the wiring structure is detachably connected to the second connector 761. Under the action of the first connector 733 and the second connector 761, the electric contact piece 76 can be installed on the wiring structure.
[0098] Specifically, the first connecting member 733 is a protruding structure with a threaded hole, and the second connecting member 761 is a threaded connecting member, and the first connecting member 733 is threadedly connected to the second connecting member 761. The first connecting member 733 and the second connecting member 761 are designed in this way, and the two are connected by the threaded connecting member, which has a simple structure and is firmly fixed.
[0099] The shape of the protruding structure can be various, such as a cylinder, a square, etc. At the same time, in order to increase the strength of the protruding structure, a reinforcing plate or reinforcing ribs can be provided on the outer surface of the protruding structure to prevent the protruding structure from cracking at the threaded hole.
[0100] Among them, since the electric contact piece 76 is mostly a thin sheet structure, it is not suitable for processing threaded holes. Therefore, the second connecting member 761 is a through hole; the threaded connecting member is a screw, which passes through the through hole and is detachably connected to the screw column, and the nut of the screw presses the electric contact piece 76, thereby fixing the electric contact piece 76 on the first mounting plate 72 or the second mounting plate 73.
[0101] Preferably, the electric contact 76 is provided with a second positioning member 762, and the first positioning member 734 of the wiring structure is plugged into the second positioning member 762. Under the action of the first positioning member 734 and the second positioning member 762, the electric contact 76 can be positioned on the wiring structure, thereby facilitating the installation of the electric contact 76 on the wiring structure.
[0102] Specifically, the first positioning member 734 is a pin shaft, and the second positioning member 762 is a pin hole, and the pin shaft and the pin hole are plugged in. The first positioning member 734 and the second positioning member 762 are designed in this way, and the two are matched together by plugging, which is convenient for pre-positioning the electric contact piece 76 on the wiring structure, and it is convenient to fix the electric contact piece 76 on the wiring structure later.
[0103] The following is an example of installing the electric contact piece 76 on the first mounting plate 72. First, the pin hole of the electric contact piece 76 is inserted into the pin shaft on the first mounting plate 72, and then the electric contact piece 76 is rotated to align the through hole of the electric contact piece 76 and the screw column of the first mounting plate 72. Finally, the electric contact piece 76 is fixed to the first mounting plate 72 by screws.
[0104] 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 shall be subject to the scope defined by the claims.
Claims
1. An air conditioner assembly, characterized in that: The invention comprises an air conditioning purification component and a wiring structure (7), wherein the air conditioning purification component comprises a first frame structure (8), a second frame structure (9), and two electric contacts (76) arranged between the first frame structure (8) and the second frame structure (9); the first frame structure (8) and the second frame structure (9) both comprise a first conductive sheet (300) and a second conductive sheet (400); one of the electric contacts (76) contacts the first conductive sheet (300) of the first frame structure (8) and the second frame structure (9) respectively; the other electric contact (76) contacts the second conductive sheet (400) of the first frame structure (8) and the second frame structure (9) respectively; the wiring structure (7) comprises a wiring trough structure (71), a first plate (731), a second plate (732), and a first mounting plate (72) and a second mounting plate (73) arranged in the wiring trough structure (71); the first mounting plate (72) and the second mounting plate (73) A wiring channel (74) is formed between the first mounting plate (72) and the wiring trough structure (71); the first mounting plate (72) and the second mounting plate (73) both include a second mounting surface and a first mounting surface suitable for mounting an electric contact sheet (76), and the second mounting surface faces the bottom wall of the wiring channel (74), and the first mounting surface faces away from the bottom wall of the wiring channel (74); the first plate (731) is located in the wiring channel (74) and is connected to the first mounting plate (72) or the second mounting plate (73). The first plate (731) is connected with the first mounting plate (72) or the second mounting plate (73), and the first plate (731) is provided with a wire clamping structure (7311), and the wire clamping structure (7311) is used to fix the wire; the second plate (732) is located in the wiring channel (74) and is connected with the first mounting plate (72) or the second mounting plate (73), and the second plate (732) includes a supporting portion (7321), and a gap is left between the supporting portion (7321) and the first mounting plate (72) or the second mounting plate (73).
2. The air conditioner assembly according to claim 1, characterized in that: The first frame structure (8) and the second frame structure (9) both comprise a cover plate (1) and a bottom plate (2); the cover plate (1) is provided with a buckle (11), and the bottom plate (2) is provided with a notch (21) that cooperates with the buckle (11); the first frame structure (8) and the second frame structure (9) both further comprise a peripheral structure (3), the peripheral structure (3) and the bottom plate (2) forming a receiving cavity (4) that communicates with the notch (21), and the buckle (11) extends into the receiving cavity (4) and is engaged with the notch (21).
3. The air conditioner assembly according to claim 2, characterized in that: The accommodating cavity (4) is provided with an entrance (41) for the buckle (11) to extend into, and a notch (34) is provided at one end of the surrounding edge structure (3) facing the entrance (41).
4. The air conditioner assembly according to claim 3, characterized in that: A limiting member is provided on a side of the surrounding structure (3) facing the accommodating cavity (4), and the limiting member is used to guide the movement of the buckle (11) in the accommodating cavity (4).
5. The air conditioner assembly according to claim 4, characterized in that: The limiting member is a convex rib (5), and the convex rib (5) is extended from one end of the surrounding edge structure (3) toward the inlet (41) toward the other end opposite thereto.
6. The air conditioner assembly according to claim 5, characterized in that: The convex rib (5) is arranged on both sides of the notch (34), and one end of the convex rib (5) facing the inlet (41) extends to the edge of one end of the surrounding structure (3) facing the inlet (41).
7. The air conditioner assembly according to claim 5, characterized in that: A guide slope (51) is provided at one end of the convex rib (5) facing the inlet (41), and the guide slope (51) is arranged obliquely along the direction from the surrounding edge structure (3) to the notch (21).
8. The air conditioner assembly according to claim 2, characterized in that: The cover plate (1) and the bottom plate (2) are both frame-shaped, and a mounting groove (6) is formed between the cover plate (1) and the bottom plate (2), wherein the mounting groove (6) is suitable for mounting a filter screen (100).
9. The air conditioner assembly according to claim 1, characterized in that: The air conditioner further comprises a filter (100), and the mounting grooves (6) of the first frame structure (8) and the second frame structure (9) of the air conditioning purification component are respectively fixed with one filter (100).
Citation Information
Patent Citations
Conductive device and air conditioner
CN110277664A
Air conditioner purification assembly and air conditioner assembly
CN211667910U