WO2019007279A1 - 室内机壳体结构及具有其的空调室内机 - Google Patents

室内机壳体结构及具有其的空调室内机 Download PDF

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Publication number
WO2019007279A1
WO2019007279A1 PCT/CN2018/093642 CN2018093642W WO2019007279A1 WO 2019007279 A1 WO2019007279 A1 WO 2019007279A1 CN 2018093642 W CN2018093642 W CN 2018093642W WO 2019007279 A1 WO2019007279 A1 WO 2019007279A1
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WO
WIPO (PCT)
Prior art keywords
indoor unit
panel body
casing structure
unit casing
panel
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Application number
PCT/CN2018/093642
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English (en)
French (fr)
Inventor
冯绍广
朱伟明
蒙立醒
Original Assignee
格力电器(武汉)有限公司
珠海格力电器股份有限公司
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Application filed by 格力电器(武汉)有限公司, 珠海格力电器股份有限公司 filed Critical 格力电器(武汉)有限公司
Publication of WO2019007279A1 publication Critical patent/WO2019007279A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/20Casings or covers

Definitions

  • the present invention relates to the field of air conditioning equipment, and in particular to an indoor unit housing structure and an air conditioning indoor unit having the same.
  • the fully-closed air deflector realizes the full sealing of the air conditioner in a standby state, and the air deflector driving box of the existing air conditioner indoor unit is assembled to the bottom shell and located at both ends of the panel body, the air deflector Cooperating with the panel body to achieve the sealing of the air outlet, the connecting line of the air guiding plate driving box is connected with the electrical box on the bottom case, so that the connecting line needs to be pulled out for the disassembly of the panel body.
  • the patent application with the publication number CN106051928A discloses an air conditioner indoor unit and an air conditioner, the panel and the panel body of the indoor unit of the air conditioner are integrally designed, and the panel and the panel body can be connected upside down and upside down.
  • the chassis On the chassis, and the free ends of the panel and the panel body are connected to the lower chassis by a snap screw structure.
  • the main object of the present invention is to provide an indoor unit casing structure and an air conditioning indoor unit having the same, so as to at least solve the problem of complicated disassembly of the air conditioning indoor unit in the prior art.
  • an indoor unit casing structure including an upper chassis, a lower chassis, and a panel body, the upper chassis and the lower chassis are detachably coupled, and a panel body and a lower chassis are formed.
  • the air outlet, the panel body is slidably disposed to shield the interior of the upper chassis and/or the lower chassis, or to expose at least a portion of the interior of the upper chassis and the lower chassis.
  • the panel body is slidably mounted on the upper chassis in a direction toward or away from the bottom end of the lower chassis.
  • the upper chassis includes a horizontal plate and an end plate disposed at an end of the horizontal plate
  • the panel body includes a side panel slidably coupled to the end plate to slidably disposed the panel body along the upper chassis.
  • the opposite ends of the panel body are respectively provided with side panels, and opposite ends of the upper chassis are respectively provided with end plates, and the two side panels are respectively slidably connected with the corresponding end plates.
  • the end plate is provided with a sliding slot
  • the side plate is provided with a slider matched with the sliding slot, and the slider is slidably disposed in the sliding slot to slide the panel body relative to the upper chassis.
  • two sliding slots are disposed on the end plate, and the two sliding slots are disposed in parallel; the side panel is provided with two sliders corresponding to the two sliding slots on the end plate.
  • the end plate is provided with a dismounting port for inserting the slider, and the dismounting port communicates with the chute so that the slider is inserted into the chute through the dismounting port.
  • the chute extends from an end of the end plate away from the air outlet to an end of the end plate near the air outlet; the disassembly port is disposed at an end of the chute near the air outlet, and the slider is disposed at the bottom end of the side panel.
  • the end plate is provided with a positioning groove extending along the moving direction of the panel body, and the inner wall of the side panel is correspondingly provided with a sliding bar matched with the positioning groove, and the sliding bar is slidably engaged with the positioning groove.
  • the end plate is provided with a positioning hole;
  • the panel body is provided with a positioning protrusion matched with the positioning hole; wherein the panel body has a shielding position for shielding the inside of the upper chassis and the lower chassis and is used for making the upper chassis and the lower chassis The escape position of at least part of the inner portion of the chassis; when the panel body slides to the blocking position, the positioning protrusion is caught in the positioning hole.
  • the end plate is provided with a plurality of positioning holes spaced apart along the moving direction of the panel body; the panel body is provided with a plurality of positioning protrusions corresponding to the plurality of positioning holes on the end plate.
  • the panel body further includes a main panel, and the side panels are two, the two side panels are arranged in parallel, and the main panel is connected between the two side panels.
  • a plurality of staggered reinforcing ribs are disposed on the inner side wall of the panel body, and the plurality of reinforcing ribs form a grid shape.
  • the lower end of the panel body is provided with a limit buckle
  • the lower chassis is provided with a card slot matched with the limit buckle; wherein, when the panel body slides to the blocking position, the limit buckle is inserted into the card slot to The panel body and the lower chassis are locked to each other.
  • the lower end of the panel body is provided with a stopping portion
  • the indoor casing structure includes an air guiding plate, and the air guiding plate can be opened or closed at the air outlet; when the air guiding plate is in a closed state, the stopping portion is The inner wall of the air deflector is in contact with the limit.
  • the bottom of the lower chassis is provided with a positioning groove, and the bottom edge of the side panel is matched with the positioning groove.
  • the indoor unit casing structure further includes an air guiding plate, the air guiding plate can be opened or closed at the air outlet; the upper chassis is provided with a wind deflecting plate driving box, and the air guiding plate is provided with the air guiding plate driving The box matches the drive connection.
  • an air conditioning indoor unit including an indoor unit housing structure, and the indoor unit housing structure is an indoor unit housing structure in the above content.
  • the indoor unit casing structure to which the technical solution of the present invention is applied includes: an upper chassis, a lower chassis and a panel body, the upper chassis and the lower chassis are detachably connected, and an air outlet is formed between the panel body and the lower chassis, and the panel body is slidably disposed
  • the inside of the indoor unit needs to be removed or cleaned without removing the air deflector, and the inner structure of the air conditioner indoor unit can be exposed by directly sliding the panel body upward, thereby facilitating maintenance or cleaning, and solving the prior art.
  • the problem of disassembly of the air conditioner indoor unit panel body is complicated.
  • FIG. 1 is a schematic view showing a split structure of an indoor unit casing structure according to an embodiment of the present invention
  • FIG. 2 is a schematic view showing the assembly structure of an upper chassis and an evaporator of an optional indoor unit casing structure according to an embodiment of the present invention
  • FIG. 3 is a schematic structural view of a first perspective view of a panel body of an optional indoor unit casing structure according to an embodiment of the present invention
  • FIG. 4 is a schematic structural view of a second view of a panel body of an indoor unit casing structure according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural view of an upper chassis of an optional indoor unit casing structure according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural view showing a third perspective view of a panel body of an indoor unit casing structure according to an embodiment of the present invention.
  • FIG. 7 is a schematic view showing an assembly structure of a first perspective view of a lower chassis and a wind deflector of an indoor unit casing structure according to an embodiment of the present invention
  • FIG. 8 is a schematic view showing an assembly structure of a second perspective view of a lower chassis and a wind deflector of an indoor unit casing structure according to an embodiment of the present invention
  • FIG. 9 is a cross-sectional structural view showing an optional indoor unit casing structure according to an embodiment of the present invention.
  • Figure 10 is an enlarged schematic view showing a structure of the indoor unit casing structure of Figure 9;
  • FIG. 11 is a schematic view showing the assembly structure of a first perspective view of a lower chassis and a fan of an indoor unit casing structure according to an embodiment of the present invention
  • FIG. 12 is a schematic view showing the assembly structure of a second chassis of a lower chassis and a fan of an optional indoor unit casing structure according to an embodiment of the present invention.
  • An indoor unit casing structure includes an upper chassis 10, a lower chassis 20, and a panel body 30.
  • the upper chassis 10 and the lower chassis 20 are detachably coupled, and the panel body 30 and the lower chassis 20 are detachably connected.
  • the panel body 30 is slidably disposed to shield the interior of the upper chassis 10 and/or the lower chassis 20, or to expose at least a portion of the interior of the upper chassis 10 and the lower chassis 20.
  • the indoor unit casing structure to which the technical solution of the present invention is applied includes an upper chassis 10, a lower chassis 20 and a panel body 30.
  • the upper chassis 10 and the lower chassis 20 are detachably connected, and an air outlet is formed between the panel body 30 and the lower chassis 20.
  • the panel body 30 is slidably disposed on the upper chassis 10 for shielding electrical components mounted on the upper chassis 10 and/or the lower chassis 20, or at least portions of electrical components mounted on the upper chassis 10 and the lower chassis 20. Exposed.
  • the panel body 30 when the panel body 30 needs to be disassembled to inspect or clean the interior of the indoor unit, it is not necessary to remove the air deflector, and the panel body 30 can be directly slid upward to expose the internal structure of the air conditioner indoor unit, thereby facilitating maintenance or cleaning, and solving the problem.
  • the problem of disassembly of the air conditioner indoor unit panel body in the prior art is complicated.
  • the upper chassis 10 is provided with an evaporator 50
  • the lower chassis 20 is provided with a fan 60
  • the lower portion of the lower chassis 20 is an air outlet; the upper chassis 10 and the lower chassis 20 are detachably connected.
  • the panel body 30 is slidably mounted on the upper chassis 10 in a direction toward or away from the bottom end of the lower chassis 20, and the panel body 30 is opened in a direction away from the bottom end of the lower chassis 20 to open the air conditioner indoor unit to make the upper chassis 10 and the lower chassis At least a portion of the interior of the panel 20 is exposed; the panel body 30 is closed in the direction of approaching the lower chassis 20 to shield the interior of the upper chassis 10 and/or the lower chassis 20 from dust.
  • the bottom end of the lower chassis 20 is located at one end of the lower chassis 20 under normal installation of the air conditioner indoor unit.
  • the evaporator 50 and the electrical box portion can be partially exposed by sliding the panel body 30 in a direction away from the bottom end of the lower chassis 20, and need to be repaired or cleaned.
  • the fan 60 on the lower chassis 20 is lowered, the lower chassis 20 needs to be detached from the upper chassis 10.
  • the panel body 30 includes a side panel 31 and a main panel 34.
  • the side panel 31 is two.
  • the main panel 34 is connected between the two side panels 31.
  • Parallel and the main panel 34 and the two side panels 31 are perpendicular to each other;
  • the upper chassis 10 includes a transverse plate 11 and an end plate 12 disposed at an end of the transverse plate 11 , the two end plates 12 being parallel to each other and to the panel body 30
  • each of the end plates 12 is provided with a sliding slot 13
  • each of the side panels 31 is provided with a slider 32 matching the sliding slot 13
  • the slider 32 is slidably disposed in the sliding slot 13 is for sliding the panel body 30 relative to the upper chassis 10.
  • two sliding slots 13 are defined on the outer sidewall of each end plate 12 of the upper chassis 10, and the two sliding slots 13 are arranged in parallel along the sliding direction of the panel body 30;
  • the inner wall of each side panel 31 of the panel body 30 is provided with two sliders 32 corresponding to the two chutes 13 on the end plate 12.
  • the two sliders 32 are correspondingly slidably embedded in the two chutes 13, thereby ensuring that the panel body 30 slides on the upper chassis 10 in a direction approaching or away from the bottom end of the lower chassis 20.
  • Each of the sliders 32 has a rib protruding toward the outside thereof, and the slider 32 is caught in the sliding groove 13 by the rib.
  • the ribs on the slider 32 make the overall width of the slider 32 larger than the width of the slot of the chute 13, and therefore, in the initial assembly, in order to enable the slider 32 to be engaged in the chute 13, the end plate 12 is disposed.
  • the dismounting port 14 is located at one end of the chute 13 and communicates with the chute 13 so that the slider 32 is inserted into the chute 13 through the dismounting port 14.
  • the chute 13 extends from one end of the end plate 12 away from the air outlet to one end of the end plate 12 near the air outlet, that is, the chute 13 opens along the upper and lower directions of the upper chassis 10; the dismounting port 14 is disposed near the chute 13 At one end of the bottom end of the lower chassis 20, a slider 32 is disposed at the bottom end of the side panel 31.
  • the bottom end of the side panel 31 is located at one end of the lower portion of the side panel 31 in the case where the air conditioner indoor unit is normally mounted.
  • a positioning groove 15 extending along the sliding direction of the panel body 30 is also formed on each end plate 12, and the positioning groove 15 is also located on the outer side wall of the end plate 12 and parallel to the sliding groove 13.
  • the positioning slots 15 are two, and the two positioning slots 15 are respectively located on two sides of the two sliding slots 13 of the end plate 12; correspondingly, the inner walls of each side panel 31 are correspondingly provided with two positioning slots. 15 matching two sliders 33, the slider 33 is slidably disposed in the positioning groove 15.
  • the cross-section of the slider 33 is "L"-shaped, and the "L"-shaped ports of the two sliders 33 are away from each other.
  • the slot of the positioning slot 15 has a rib that limits the slider 33 in the positioning slot 15.
  • the ribs on the two positioning slots 15 are oppositely disposed, thereby limiting the two sliders 33 in the positioning slot 15, and the positioning slot 15 can ensure the sliding of the slider along the direction away from or near the bottom end of the lower chassis 20.
  • the restricting slider moves in a direction perpendicular to the chute 13, that is, restricts the panel body 30 from moving in the front-rear direction of the upper chassis 10, so that the panel body 30 does not sway back and forth during opening or closing.
  • the panel body 30 In order to close the air-conditioning indoor unit in the panel body 30, the panel body 30 can be caught to prevent the panel body 30 from vibrating during the operation of the air-conditioning indoor unit, and further, as shown in FIGS. 4 and 5, on the end plate 12.
  • a positioning hole 16 is further defined, and the positioning hole 16 is located on the front end wall of the end plate 12.
  • the inner side wall of the main panel 34 is provided with a positioning protrusion 35 matching the positioning hole 16; wherein the panel body 30 has a
  • the blocking position inside the upper chassis 10 and the lower chassis 20 and the avoiding position for avoiding the inside of the upper chassis 10 and the lower chassis 20 are two moving positions in which the air conditioner indoor unit is turned off and opened.
  • each of the end plates 12 is provided with a plurality of positioning holes 16 disposed at intervals along the moving direction of the panel body 30 on the front end wall of the end plate 12; the inner walls of the two ends of the main panel 34 are respectively disposed There are a plurality of positioning projections 35 corresponding to the plurality of positioning holes 16 on each of the end plates 12.
  • the panel body 30 can be fully clamped to prevent the panel body 30 from loosening, thereby avoiding vibration during operation.
  • a plurality of staggered reinforcing ribs 36 are disposed on the inner side wall of the main panel 34, and the plurality of reinforcing ribs 36 are formed in a grid shape.
  • the lower end of the main panel 34 is provided with a limit buckle 37, optionally, a limit buckle.
  • a plurality of 37 are provided.
  • the lower chassis 20 is provided with a card slot matched with the limit buckle 37. The card slot is opened on the fixing plate below the lower chassis 20; wherein, when the panel body 30 slides to the blocking position, When moving to the position where the air conditioner indoor unit is closed, the limit buckle 37 is snapped into the card slot to lock the panel body 30 and the lower chassis 20 to each other.
  • the indoor unit casing structure further includes: an air deflector 40.
  • a wind deflector is respectively disposed at two ends of the lower portion of the upper chassis 10.
  • the driving box 70 as shown in FIG. 7 and FIG. 9, is provided with a driving connecting portion 41 on the wind deflector 40, and the wind deflecting plate 40 is connected to the wind deflector driving box 70 through the driving connecting portion 41, and the wind deflector driving box 70 passes
  • the driving connection portion 41 drives the wind deflector 40 to rotate, so that the air guiding plate 40 is opened or closed at the air outlet below the lower chassis 20.
  • the limiting buckle 37 is located inside the air guiding plate 40.
  • the air deflector 40 can be restrained by abutting against the inner wall of the wind deflector 40.
  • a plurality of stoppers 38 are further provided at the lower end of the main panel 34. As shown in FIG. 9 and FIG. 10, when the air deflector 40 is in the closed state, the stopper portion 38 is also located inside the wind deflector 40 and abuts against the inner wall of the wind deflector 40, and can be used for the wind deflector 40. Limit function.
  • a positioning groove 21 is provided at the bottom of the lower chassis 20, and the bottom edge of the side panel 31 and the positioning groove are provided. 21 matches.
  • the bottom edge of the side panel 31 is an arc edge.
  • the positioning slot 21 is an arcuate slot.
  • the indoor unit casing structure of the embodiment of the present invention adopts a slider structure on the panel body 30 to cooperate with the rail structure on the upper chassis 10 to realize a direct push-in engagement form of the panel body 30 with respect to the air conditioner. Thereby simplifying the cooperation of the overall structure, facilitating the maintenance of the electrical box and the cleaning of the evaporator.
  • the indoor unit casing structure includes an upper chassis 10 and an lower chassis 20, and the upper chassis 10 is equipped with an evaporator 50, an electrical box structure and a wind deflector drive box 70; the lower chassis 20 includes a fan 60, and the panel body 30 The main panel 34 is integrated with the side panel 31.
  • Two sliding blocks are disposed on the inner wall of the side panel 31 near the inner portion of the air conditioner, and the protruding slider structure cooperates with the side rail structure on the upper chassis 10 to realize the panel body 30 relative to the upper chassis 10. Slide up and down.
  • the lower portion of the front panel of the main panel 34 includes a series of limiting structures, which cooperate with the lower chassis 20 and the air guiding plate 40, and the shielding of the air guiding plate 40 is used to achieve the limit and the full sealing of the air conditioner.
  • the main panel 34 is in contact with the air deflector 40, and the limiting structure in the main panel 34 is blocked by the wind deflector 40 and is limited.
  • the back side of the main panel 34 includes a series of reinforcing ribs 36 for reinforcing the panel body 30 and the strength of the whole machine to meet the needs of testing and transportation.
  • the structure of the air conditioner of the whole machine is obtained. If the evaporator 50 needs to be cleaned or the electrical box is inspected, the panel body 30 only needs to be pushed up, so that the panel body 30 The slider structure slides upward in the rail structure of the upper chassis 10 to expose internal structures such as the evaporator 50 and the electrical box.
  • the lower chassis 20 needs to be removed and cleaned, only the mating connection between the air deflector 40 and the wind deflector drive box 70 on the upper chassis 10 is removed, and then the constraint between the lower chassis 20 and the upper chassis 10 is cancelled.
  • the lower chassis 20 can be removed for cleaning.
  • an air conditioner indoor unit including an indoor unit casing structure, and the indoor unit casing structure is the indoor unit casing structure in the above embodiment.
  • the indoor unit casing knot of the above embodiment is applied, when the interior of the indoor unit needs to be removed or cleaned, the air deflector is not required to be removed, and the panel body 30 is directly slid upward to adjust the internal structure of the air conditioner indoor unit. It is exposed, easy to be repaired or cleaned, and solves the problem of complicated disassembly of the air conditioner indoor unit panel in the prior art.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)
  • Air-Flow Control Members (AREA)

Abstract

一种室内机壳体结构,包括:上底盘(10)、下底盘(20)和面板体(30),上底盘(10)和下底盘(20)可拆卸地连接,面板体(30)与下底盘(20)之间形成出风口,面板体(30)可滑动地设置在上底盘(10)上,以用于遮挡安装在上底盘(10)和/或下底盘(20)的电器部件,或使安装在上底盘(10)和下底盘(20)的电器部件的至少部分露出。在需拆卸面板体(30)对室内机内部进行检修或清洁时,将面板体(30)向上滑动即可将空调室内机的内部结构露出。还公开了具有该室内机壳体结构的空调室内机。

Description

室内机壳体结构及具有其的空调室内机 技术领域
本发明涉及空调设备领域,具体而言,涉及一种室内机壳体结构及具有其的空调室内机。
背景技术
随着空调器的发展,全闭合导风板实现了空调器待机状态的全密封,现有空调器室内机的导风板驱动盒装配于底壳并位于面板体的两端,导风板与面板体配合以实现出风口的密封,导风板驱动盒的连接线与底壳上的电器盒连接,使得对面板体的拆卸需拔出连接线。
在此种情况下,若需拆卸面板体对室内机内部进行检修或清洁,需先拆出导风板结构,然后拔出导风板驱动盒的连接线才能拆卸面板体并进行检修或清洁,操作过程复杂。
例如,申请公开号为CN106051928A的专利申请公开了一种空调器室内机及空调器,该空调器室内机的面板和面板体为一体化设计,面板和面板体可上、下翻转地连接在上底盘上,且面板和面板体的自由端以卡扣螺钉结构可打开或关闭地连接在下底盘上。
此种配合形式,由于导风板与面板整体之间存在干涉,在需要对室内机内部进行检修或清洁时需拆出导风板后才能将面板整体打开,操作过程复杂。
发明内容
本发明的主要目的在于提供一种室内机壳体结构及具有其的空调室内机,以至少解决现有技术中的空调室内机拆卸复杂的问题。
为了实现上述目的,根据本发明的一个方面,提供了一种室内机壳体结构,包括上底盘、下底盘和面板体,上底盘和下底盘可拆卸地连接,面板体与下底盘之间形成出风口,面板体可滑动地设置,以用于遮挡上底盘和/或下底盘的内部,或使上底盘和下底盘的至少部分内部露出。
进一步地,面板体沿靠近或远离下底盘底端的方向可滑动地安装在上底盘上。
进一步地,上底盘包括横板以及设置在横板端部的端板,面板体包括:侧面板,侧面板与端板可滑动地连接,以使面板体沿上底盘可滑动地设置。
进一步地,面板体的相对两端均设置有侧面板,上底盘的相对两端均设置有端板,两个侧面板分别与相应的端板可滑动地连接。
进一步地,端板上开设有滑槽,侧面板上设置有与滑槽相匹配的滑块,滑块可滑动地设置在滑槽内,以使面板体相对于上底盘滑动。
进一步地,端板上设置有两条滑槽,两条滑槽平行设置;侧面板上设置有与端板上的两条滑槽一一对应的两个滑块。
进一步地,端板上设置有用于供滑块插入的拆装口,拆装口与滑槽连通,以使滑块通过拆装口插入滑槽内。
进一步地,滑槽从端板远离出风口的一端延伸至端板靠近出风口的一端;拆装口设置在的滑槽靠近出风口的一端,滑块设置在侧面板的底端。
进一步地,端板上开设有沿面板体的移动方向延伸的定位槽,侧面板的内壁上对应设置有与定位槽匹配的滑条,滑条可滑动地与定位槽配合。
进一步地,端板上开设有定位孔;面板体上设置有与定位孔匹配的定位凸起;其中,面板体具有用于遮挡上底盘和下底盘内部的遮挡位置和用于使上底盘和下底盘的至少部分内部露出的避让位置;当面板体滑动至遮挡位置时,定位凸起卡入定位孔内。
进一步地,端板上设置有沿面板体的运动方向间隔设置的多个定位孔;面板体上设置有与端板上的多个定位孔相对应的多个定位凸起。
进一步地,面板体还包括主面板,侧面板为两个,两个侧面板平行设置,主面板连接在两个侧面板之间。
进一步地,面板体的内侧壁上设置有多条交错设置的加强筋条,多条加强筋条形成网格状。
进一步地,面板体的下端设置有限位卡扣,下底盘上设置有与限位卡扣匹配的卡槽;其中,面板体滑动至遮挡位置时,限位卡扣卡入卡槽内,以将面板体与下底盘相互锁紧。
进一步地,面板体的下端设置有止挡部,室内机壳体结构包括导风板,导风板可打开或闭合地设置在出风口处;当导风板处于闭合状态时,止挡部与导风板的内壁限位接触。
进一步地,下底盘的底部设置有定位槽,侧面板的底边与定位槽相匹配,当面板体滑动至遮挡位置时,侧面板的底边插入定位槽内。
进一步地,室内机壳体结构还包括导风板,导风板可打开或闭合地设置在出风口处;上底盘上设置有导风板驱动盒,导风板上设置有与导风板驱动盒相匹配的驱动连接部。
根据本发明的另一个方面,提供了一种空调室内机,包括室内机壳体结构,室内机壳体结构为上述内容中的室内机壳体结构。
应用本发明技术方案的室内机壳体结构,包括:上底盘、下底盘和面板体,上底盘和下底盘可拆卸地连接,面板体与下底盘之间形成出风口,面板体可滑动地设置,以用于遮挡上底盘和/或下底盘的内部,或使上底盘和下底盘的至少部分内部露出。从而在需拆卸面板体对室内机内部进行检修或清洁,无需拆出导风板,直接将面板体向上滑动即可将空调室内机的 内部结构露出,便于进行检修或清洁,解决了现有技术中的空调室内机面板体拆卸复杂的问题。
除了上面所描述的目的、特征和优点之外,本发明还有其它的目的、特征和优点。下面将参照图,对本发明作进一步详细的说明。
附图说明
构成本发明的一部分的说明书附图用来提供对本发明的进一步理解,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1是根据本发明实施例可选的室内机壳体结构的拆分结构示意图;
图2是根据本发明实施例可选的室内机壳体结构的上底盘与蒸发器的装配结构示意图;
图3是根据本发明实施例可选的室内机壳体结构的面板体的第一视角的结构示意图;
图4是根据本发明实施例可选的室内机壳体结构的面板体的第二视角的结构示意图;
图5是根据本发明实施例可选的室内机壳体结构的上底盘的结构示意图;
图6是根据本发明实施例可选的室内机壳体结构的面板体的第三视角的结构示意图;
图7是根据本发明实施例可选的室内机壳体结构的下底盘与导风板的第一视角的装配结构示意图;
图8是根据本发明实施例可选的室内机壳体结构的下底盘与导风板的第二视角的装配结构示意图;
图9是根据本发明实施例可选的室内机壳体结构的剖面结构示意图;
图10是图9中的室内机壳体结构的A处的放大结构示意图。
图11是根据本发明实施例可选的室内机壳体结构的下底盘与风机的第一视角的装配结构示意图;以及
图12是根据本发明实施例可选的室内机壳体结构的下底盘与风机的第二角度的装配结构示意图。
其中,上述附图包括以下附图标记:
10、上底盘;11、横板;12、端板;13、滑槽;14、拆装口;15、定位槽;16、定位孔;20、下底盘;21、定位槽;30、面板体;31、侧面板;32、滑块;33、滑条;34、主面板;35、定位凸起;36、加强筋条;37、限位卡扣;38、止挡部;40、导风板;41、驱动连接部;50、蒸发器;60、风机;70、导风板驱动盒。
具体实施方式
需要说明的是,在不冲突的情况下,本发明中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本发明。
为了使本技术领域的人员更好地理解本发明方案,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分的实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都应当属于本发明保护的范围。
根据本发明实施例的室内机壳体结构,如图1所示,包括上底盘10、下底盘20和面板体30,上底盘10和下底盘20可拆卸地连接,面板体30与下底盘20之间形成出风口,面板体30可滑动地设置,以用于遮挡上底盘10和/或下底盘20的内部,或使上底盘10和下底盘20的至少部分内部露出。
应用本发明技术方案的室内机壳体结构,包括:上底盘10、下底盘20和面板体30,上底盘10和下底盘20可拆卸地连接,面板体30与下底盘20之间形成出风口,面板体30可滑动地设置在上底盘10上,以用于遮挡安装在上底盘10和/或下底盘20的电器部件,或使安装在上底盘10和下底盘20的电器部件的至少部分露出。从而在需拆卸面板体30对室内机内部进行检修或清洁时,无需拆出导风板,直接将面板体30向上滑动即可将空调室内机的内部结构露出,便于进行检修或清洁,解决了现有技术中的空调室内机面板体拆卸复杂的问题。
具体实施时,上底盘10上设置有蒸发器50,下底盘20上设置有风机60,下底盘20的下部为出风口;上底盘10与下底盘20之间为可拆卸地连接。
面板体30沿靠近或远离下底盘20底端的方向可滑动地安装在上底盘10上,面板体30沿远离下底盘20的底端的方向滑动时将空调室内机打开以使上底盘10和下底盘20的至少部分内部露出;面板体30沿靠近下底盘20的方向滑动时将空调室内机关闭,以将安装在上底盘10和/或下底盘20的内部遮挡,防止灰尘进入。下底盘20的底端为空调室内机正常安装情况下,位于下底盘20的下方的一端。
在需要对蒸发器50或者电器盒等部件进行检修或清洁时,只需通过沿远离下底盘20的底端的方向滑动面板体30即可将蒸发器50和电器盒部分露出,而需要检修或清洁下底盘20上的风机60时,需要将下底盘20从上底盘10上拆下。
如图2至图5所示,面板体30包括:侧面板31和主面板34,侧面板31为两个,主面板34连接在两个侧面板31之间,两个侧面板31之间相互平行且主面板34与两个侧面板31之间均相互垂直;上底盘10包括横板11以及设置在横板11端部的端板12,两个端板12相互平行并与面板体30的两个侧面板31相对应,每块端板12上均开设有滑槽13,每块侧面板31上设置有与滑槽13相匹配的滑块32,滑块32可滑动地设置在滑槽13内,以使面板体30相对于上底盘10滑动。
具体地,如图2所示,上底盘10的每块端板12的外侧壁上均开设有两条滑槽13,两条滑槽13沿面板体30的滑动方向平行设置;如图3和图4所示,面板体30的每块侧面板31的内壁上设置有与端板12上的两条滑槽13一一对应的两个滑块32。两个滑块32对应可滑动地嵌设在两条滑槽13内,从而保证面板体30沿靠近或远离下底盘20底端的方向在上底盘10上滑动。
每个滑块32两侧具有向其外侧突出的凸条,滑块32通过凸条卡入滑槽13内。滑块32上的凸条使滑块32的整体宽度大于滑槽13的槽口的宽度,因此,在进行初始装配时,为了使滑块32能够卡入滑槽13内,端板12上设置有用于供滑块32插入滑槽13的拆装口14,拆装口14位于滑槽13的一端并与滑槽13连通,以使滑块32通过拆装口14插入滑槽13内。
具体地,滑槽13从端板12远离出风口的一端延伸至端板12靠近出风口的一端,即滑槽13沿上底盘10的上下方向开设;拆装口14设置在的滑槽13靠近下底盘20底端的一端,滑块32设置在侧面板31的底端。侧面板31的底端为空调室内机正常安装情况下,位于侧面板31的下部的一端。
为了保证面板体30在上底盘10上滑动时的顺畅性,滑块32与滑槽13之间留有一定的间隙,因此,面板体30在沿上底盘10滑动时会有一定的前后晃动。为此,在每块端板12上还开设有沿面板体30的滑动方向延伸的定位槽15,定位槽15也位于端板12的外侧壁上并与滑槽13相互平行。
可选地,定位槽15为两条,两条定位槽15分别位于端板12的两条滑槽13的两侧;相应地,每块侧面板31的内壁上对应设置有与两条定位槽15匹配的两根滑条33,滑条33可滑动地设置在定位槽15内。
具体地,滑条33的横断面为“L”形,两根滑条33的“L”形口相互背离,定位槽15的槽口上具有将滑条33限位在定位槽15内的挡边,两条定位槽15上的挡边相对设置,从而将两条滑条33限位在定位槽15内,定位槽15在保证滑条沿远离或靠近下底盘20底端的方向滑动的同时,能够限制滑条沿垂直于滑槽13的方向活动,即限制面板体30沿上底盘10的前后方向活动,从而使面板体30在打开或闭合的过程中不会前后晃动。
为了在面板体30将空调室内机闭合后,能够将面板体30卡住,防止在空调室内机工作过程中面板体30振动,进一步地,如图4和图5所示,在端板12上还开设有定位孔16,定位孔16位于端板12的前端壁上,相应地,主面板34的内侧壁上设置有与定位孔16匹配的定位凸起35;其中,面板体30具有用于遮挡上底盘10和下底盘20内部的遮挡位置和用于避让上底盘10和下底盘20内部的避让位置,即将空调室内机关闭和打开的两个移动位置。当面板体30滑动至遮挡位置时,即将空调室内机关闭时,定位凸起35卡入定位孔16内,从而能够限制面板体30在上底盘10上活动。
具体地,每块端板12上设置有多个定位孔16,多个定位孔16沿面板体30的运动方向间隔设置在端板12的前端壁上;主面板34的两端的内壁上分别设置有与每块端板12上的多个定位孔16相对应的多个定位凸起35。通过在端板12上设置多个定位孔16以及在主面板34 上设置多个定位凸起35,能够将面板体30完全卡紧,防止面板体30松动,从而避免在工作中振动。具体地,各个端板12上的定位孔16为两个,两个所述定位孔16沿上底盘10的上下方向对应设置。
为了增强面板体30的结构强度,进一步地,如图4所示,主面板34的内侧壁上设置有多条交错设置的加强筋条36,多条加强筋条36形成网格状。
为了在面板体30将空调室内机闭合后,能够将面板体30进一步锁紧,如图4和图6所示,主面板34的下端设置有限位卡扣37,可选地,限位卡扣37设置有多个,相应地,下底盘20上设置有与限位卡扣37匹配的卡槽,卡槽开设在下底盘20下方的固定板上;其中,面板体30滑动至遮挡位置时,即移动至将空调室内机关闭的位置时,限位卡扣37卡入卡槽内,以将面板体30与下底盘20相互锁紧。
进一步地,如图7和图8所示,室内机壳体结构还包括:导风板40,如图1和图2所示,在上底盘10的下部的两端分别设置有一个导风板驱动盒70,如图7和图9所示,导风板40上设置有驱动连接部41,导风板40通过驱动连接部41与导风板驱动盒70连接,导风板驱动盒70通过驱动连接部41驱动导风板40转动,从而使导风板40在下底盘20下方出风口处打开或闭合,当导风板40处于闭合状态时,限位卡扣37位于导风板40的内侧并与导风板40的内壁抵接,能够对导风板40进行限位。
进一步地,如图4和图6所示,在主面板34的下端还设置有多个止挡部38。如图9和图10所示,当导风板40处于闭合状态时,止挡部38也位于导风板40的内侧并与导风板40的内壁抵接,能够对导风板40起到限位作用。
当面板体30将空调室内机关闭后,为了保证空调出风口处的密封性,如图11和图12所示,在下底盘20的底部设置有定位槽21,侧面板31的底边与定位槽21相匹配。可选地,侧面板31的底边为弧形边,相应地,定位槽21为弧形槽,当面板体30滑动至遮挡位置时,侧面板31的底边插入定位槽21内,使面板体30与下底盘20侧面密封卡紧,防止空调出风由侧面漏出。
本发明实施例的室内机壳体结构,采用面板体30上的滑块结构与上底盘10上的导轨结构配合,实现面板体30相对于空调器的直接推出推入的配合形式。从而简化了整体结构的配合,方便了电器盒的检修及蒸发器的清洁等工作的进行。
具体地,该室内机壳体结构包含上底盘10和下底盘20,上底盘10上装配有蒸发器50、电器盒结构及导风板驱动盒70;下底盘20包含有风机60,面板体30采用主面板34与侧面板31一体化设计。
侧面板31的靠近空调器内部的内壁上设置有两个滑块结构,通过此凸起的滑块结构与上底盘10上的侧边导轨结构配合,实现了面板体30相对于上底盘10的上下滑动。
另外,主面板34的正面位置的下方包含有一系列的限位结构,与下底盘20及导风板40进行配合,利用导风板40的遮挡,实现其限位及空调器的全密封。主面板34与导风板40相 抵接触,主面板34内的限位结构受导风板40的遮挡并对其进行限位。主面板34的背面包含有一系列的加强筋条36,加强筋条36用于加强面板体30及整机强度,满足测试及运输的需要。
采用此种结构形式的室内机壳体结构,得到整机空调器结构,若需对蒸发器50进行清洁,或者电器盒进行检修的过程中,只需将面板体30向上推,使得面板体30的滑块结构在上底盘10的导轨结构中向上滑动露出蒸发器50与电器盒等内部结构。
若需要对下底盘20进行拆卸清洁,则只需拆出导风板40与上底盘10上的导风板驱动盒70的配合连接,然后取消下底盘20与上底盘10之间的约束,即可将下底盘20拆出清洁。
根据本发明的另一个实施例,提供了一种空调室内机,包括室内机壳体结构,室内机壳体结构为上述实施例中的室内机壳体结构。应用上述实施例的室内机壳体结,在需拆卸面板体30对室内机内部进行检修或清洁时,无需拆出导风板,直接将面板体30向上滑动即可将空调室内机的内部结构露出,便于进行检修或清洁,解决了现有技术中的空调室内机面板体拆卸复杂的问题。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (18)

  1. 一种室内机壳体结构,包括上底盘(10)、下底盘(20)和面板体(30),所述上底盘(10)和所述下底盘(20)可拆卸地连接,所述面板体(30)与所述下底盘(20)之间形成出风口,其特征在于,
    所述面板体(30)可滑动地设置,以用于遮挡所述上底盘(10)和/或所述下底盘(20)的内部,或使所述上底盘(10)和所述下底盘(20)的至少部分内部露出。
  2. 根据权利要求1所述的室内机壳体结构,其特征在于,所述面板体(30)沿靠近或远离所述下底盘(20)底端的方向可滑动地安装在所述上底盘(10)上。
  3. 根据权利要求1所述的室内机壳体结构,其特征在于,所述上底盘(10)包括横板(11)以及设置在所述横板(11)端部的端板(12),所述面板体(30)包括:
    侧面板(31),所述侧面板(31)与所述端板(12)可滑动地连接,以使所述面板体(30)沿所述上底盘(10)可滑动地设置。
  4. 根据权利要求3所述的室内机壳体结构,其特征在于,所述面板体(30)的相对两端均设置有所述侧面板(31),所述上底盘(10)的相对两端均设置有所述端板(12),两个所述侧面板(31)分别与相应的所述端板(12)可滑动地连接。
  5. 根据权利要求3所述的室内机壳体结构,其特征在于,所述端板(12)上开设有滑槽(13),所述侧面板(31)上设置有与所述滑槽(13)相匹配的滑块(32),所述滑块(32)可滑动地设置在所述滑槽(13)内,以使所述面板体(30)相对于所述上底盘(10)滑动。
  6. 根据权利要求5所述的室内机壳体结构,其特征在于,所述端板(12)上设置有两条所述滑槽(13),两条所述滑槽(13)平行设置;所述侧面板(31)上设置有与所述端板(12)上的两条所述滑槽(13)一一对应的两个所述滑块(32)。
  7. 根据权利要求5所述的室内机壳体结构,其特征在于,所述端板(12)上设置有用于供所述滑块(32)插入的拆装口(14),所述拆装口(14)与所述滑槽(13)连通,以使所述滑块(32)通过所述拆装口(14)插入所述滑槽(13)内。
  8. 根据权利要求7所述的室内机壳体结构,其特征在于,所述滑槽(13)从所述端板(12)远离所述出风口的一端延伸至所述端板(12)靠近所述出风口的一端;所述拆装口(14)设置在所述的滑槽(13)靠近所述出风口的一端,所述滑块(32)设置在所述侧面板(31)的底端。
  9. 根据权利要求3所述的室内机壳体结构,其特征在于,所述端板(12)上开设有沿所述面板体(30)的移动方向延伸的定位槽(15),所述侧面板(31)的内壁上对应设置有与所述定位槽(15)匹配的滑条(33),所述滑条(33)可滑动地与所述定位槽(15)配合。
  10. 根据权利要求3所述的室内机壳体结构,其特征在于,所述端板(12)上开设有定位孔(16);所述面板体(30)上设置有与所述定位孔(16)匹配的定位凸起(35);
    其中,所述面板体(30)具有用于遮挡所述上底盘(10)和下底盘(20)内部的遮挡位置和用于使所述上底盘(10)和所述下底盘(20)的至少部分内部露出的避让位置;当所述面板体(30)滑动至所述遮挡位置时,所述定位凸起(35)卡入所述定位孔(16)内。
  11. 根据权利要求10所述的室内机壳体结构,其特征在于,所述端板(12)上设置有沿所述面板体(30)的运动方向间隔设置的多个所述定位孔(16);所述面板体(30)上设置有与所述端板(12)上的多个所述定位孔(16)相对应的多个所述定位凸起(35)。
  12. 根据权利要求10所述的室内机壳体结构,其特征在于,所述面板体(30)还包括主面板(34),所述侧面板(31)为两个,两个所述侧面板(31)平行设置,所述主面板(34)连接在两个所述侧面板(31)之间。
  13. 根据权利要求10所述的室内机壳体结构,其特征在于,所述面板体(30)的内侧壁上设置有多条交错设置的加强筋条(36),多条所述加强筋条(36)形成网格状。
  14. 根据权利要求10所述的室内机壳体结构,其特征在于,所述面板体(30)的下端设置有限位卡扣(37),所述下底盘(20)上设置有与所述限位卡扣(37)匹配的卡槽;
    其中,所述面板体(30)滑动至所述遮挡位置时,所述限位卡扣(37)卡入所述卡槽内,以将所述面板体(30)与所述下底盘(20)相互锁紧。
  15. 根据权利要求10所述的室内机壳体结构,其特征在于,所述面板体(30)的下端设置有止挡部(38),所述室内机壳体结构包括导风板(40),所述导风板(40)可打开或闭合地设置在所述出风口处;当所述导风板(40)处于闭合状态时,所述止挡部(38)与所述导风板(40)的内壁限位接触。
  16. 根据权利要求10所述的室内机壳体结构,其特征在于,所述下底盘(20)的底部设置有定位槽(21),所述侧面板(31)的底边与定位槽(21)相匹配,当所述面板体(30)滑动至所述遮挡位置时,所述侧面板(31)的底边插入所述定位槽(21)内。
  17. 根据权利要求1所述的室内机壳体结构,其特征在于,所述室内机壳体结构还包括导风板(40),所述导风板(40)可打开或闭合地设置在所述出风口处;所述上底盘(10)上设置有导风板驱动盒(70),所述导风板(40)上设置有与所述导风板驱动盒(70)相匹配的驱动连接部(41)。
  18. 一种空调室内机,包括室内机壳体结构,其特征在于,所述室内机壳体结构为权利要求1至17中任一项所述的室内机壳体结构。
PCT/CN2018/093642 2017-07-05 2018-06-29 室内机壳体结构及具有其的空调室内机 WO2019007279A1 (zh)

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