WO2019174200A1 - 室内机及具有其的空调器 - Google Patents

室内机及具有其的空调器 Download PDF

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Publication number
WO2019174200A1
WO2019174200A1 PCT/CN2018/103559 CN2018103559W WO2019174200A1 WO 2019174200 A1 WO2019174200 A1 WO 2019174200A1 CN 2018103559 W CN2018103559 W CN 2018103559W WO 2019174200 A1 WO2019174200 A1 WO 2019174200A1
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WO
WIPO (PCT)
Prior art keywords
mounting surface
base
indoor unit
assembly
evaporator
Prior art date
Application number
PCT/CN2018/103559
Other languages
English (en)
French (fr)
Inventor
邓益明
王富安
张银银
Original Assignee
格力电器(武汉)有限公司
珠海格力电器股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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
Priority to EP18901801.3A priority Critical patent/EP3567325A4/en
Publication of WO2019174200A1 publication Critical patent/WO2019174200A1/zh

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Classifications

    • 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
    • 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
    • F24F1/0059Indoor units, e.g. fan coil units characterised by heat exchangers
    • F24F1/0063Indoor units, e.g. fan coil units characterised by heat exchangers by the mounting or arrangement of the heat exchangers
    • 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
    • F24F1/0068Indoor units, e.g. fan coil units characterised by the arrangement of refrigerant piping outside the heat exchanger within the unit casing
    • 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
    • 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
    • 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
    • F24F13/30Arrangement or mounting of heat-exchangers
    • 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
    • F24F13/32Supports for air-conditioning, air-humidification or ventilation units

Definitions

  • the present invention relates to the field of air conditioner equipment, and in particular to an indoor unit and an air conditioner having the same.
  • the design of the evaporator of the air conditioner is mainly to use the tube in the back of the bottom case to extend the position of the tube in the lower part of the bottom shell, and finally the tube can be discharged from both sides of the air conditioner.
  • This design can prevent the escape pipe from affecting the design of the air conditioner to a certain extent, and protect the pipeline from collision damage during transportation.
  • the evaporator component in the production assembly, the evaporator component must first lift the bottom casing component as a whole when assembling the bottom casing component, so that the pipe longitudinally passes through the retaining groove on the back of the bottom casing, and then the pipe is hidden along the lower casing of the bottom casing. Below the air conditioner.
  • the main object of the present invention is to provide an indoor unit and an air conditioner having the same, which solves the problem that the prior art evaporator is inconvenient to install and is not conducive to mechanization.
  • an indoor unit includes: a housing including a base having a first mounting surface and a second mounting surface opposite to the first mounting surface, The first mounting surface has a first side and a second side opposite the first side; an evaporator assembly, the evaporator assembly is coupled to the first mounting surface, the second mounting surface is mounted to the base to be installed; the piping assembly, a first end of the tubing assembly is in communication with the evaporator assembly, the second end of the tubing assembly extending toward the second side, passing from the second side of the first mounting surface and extending to a side of the second mounting surface And communicating with the outdoor unit, wherein when the indoor unit is installed on the installation base, the first side is located above the second side.
  • a part of the pipeline assembly is connected to the outdoor unit after passing through the second mounting surface from the first mounting surface and extending a predetermined distance along the length of the base.
  • the evaporator assembly includes: an evaporator; an angle bracket assembly, the angle bracket assembly is mounted to an end of the evaporator, and the evaporator is detachably disposed on the base through the angle bracket assembly.
  • the angle frame assembly includes: an angle bracket connected to the first end of the evaporator, the angle bracket is provided with a first hook connected to the base, and the base is provided with a first hook A connecting hole.
  • the angle frame assembly further includes: a pressure plate connected to the second end of the evaporator, the pressure plate is provided with a second hook connected to the base, and the base is provided with a second connection matched with the second hook A hole, a portion of the pipe assembly extending along one side of the pressure plate.
  • the second mounting surface is provided with a first limiting plane, and the hook portion of the first hook cooperates with the first limiting plane.
  • first limiting plane is parallel to the plane in which the second mounting surface is located.
  • the second mounting surface is provided with a second limiting plane, and the hook portion of the second hook and the second limiting plane cooperate with each other.
  • the second limiting plane has an angle with a plane where the second mounting surface is located.
  • the pressure plate is provided with a first positioning hole for connection with the base.
  • angle bracket is provided with a second positioning hole for connecting to the base.
  • the indoor unit further includes: a motor seat, the motor seat is disposed on the base, and the top of the motor seat is provided with a pipe slot through which the pipe assembly passes.
  • the housing further includes: a duct assembly, the duct assembly is detachably disposed on the base, and the second end of the duct assembly extends from the first mounting surface to a side where the second mounting surface is located.
  • one side of the base is provided with a shield, and the outer surface of the shield is provided with a pipe groove for accommodating the pipe assembly.
  • the inner surface of the shield is provided with a guiding structure, and the distance from the surface of the guiding structure to the plane of the second mounting surface of the base gradually increases along the width direction of the base.
  • the pipeline assembly includes: a first component section, the first end of the first component section is in communication with the second end of the evaporator and is adjacent to the first side
  • the second end of the first component segment extends from the first side toward the second side and gradually away from the first mounting surface;
  • the second component segment the first end of the second component segment is connected to the second end of the first component segment
  • the axis of the first component segment has an angle with the axis of the second component segment, and the second end of the second component segment extends from the first side toward the second side;
  • the third component segment, the first component of the third component segment The end is in communication with the second end of the second component segment, the axis of the third component segment has an angle with the axis of the second component segment, and the second end of the third component segment passes through the second side of the first mounting surface and
  • the side extending to the second mounting surface is in communication with the outdoor unit.
  • the second end of the third component segment passes through the first mounting surface and extends to the side where the second mounting surface is located, the second end of the third component segment continues to extend along the longitudinal direction of the base.
  • At least a portion of the first component segment is located within the tube slot.
  • an air conditioner including an indoor unit, and the indoor unit is the indoor unit described above.
  • the first end of the pipeline assembly is in communication with the evaporator assembly, and the second end of the pipeline assembly is gradually formed from the first side of the first mounting surface of the base toward the second side of the base Extending the arrangement, and connecting the second end of the pipeline assembly to the outdoor unit through a side from the second side of the first mounting surface to the second mounting surface, when the indoor unit is installed on the installation base, One side is above the second side.
  • This arrangement enables the pipe assembly that communicates with the external machine to be routed from the front toward the base of the indoor unit, avoiding the use of the conventional pipe routing method in which the pipe groove is provided from the rear of the indoor casing.
  • the line layout of the pipeline component in the application makes the pipeline layout of the indoor unit more reasonable, and the pipeline walking mode of the present application can avoid the provision of the pipe groove at the rear of the casing, thereby effectively improving
  • the overall strength of the housing of the indoor unit reduces the difficulty in mounting the evaporator assembly, enabling the indoor unit to be mechanized.
  • Figure 1 is a schematic view showing the structure of a first embodiment of an indoor unit according to the present invention
  • Figure 2 is a cross-sectional structural view showing a second embodiment of the indoor unit according to the present invention.
  • Figure 3 is a cross-sectional structural view showing a third embodiment of the indoor unit according to the present invention.
  • Figure 4 is a view showing the structure of an embodiment of an angular frame and an evaporator assembly of an indoor unit according to the present invention
  • Figure 5 is a view showing the structure of an embodiment of a press plate and an evaporator assembly of an indoor unit according to the present invention
  • Figure 6 is a schematic view showing the structure of an embodiment of an evaporator assembly of an indoor unit according to the present invention.
  • Figure 7 is a schematic exploded view showing an embodiment of an evaporator assembly and a base of an indoor unit according to the present invention
  • Figure 8 is a view showing an exploded structure of an embodiment of an indoor unit of an indoor unit according to the present invention.
  • Figure 9 is a schematic view showing the structure of a first positioning hole on the angle frame assembly according to the present invention.
  • spatially relative terms such as “above”, “above”, “on top”, “above”, etc., may be used herein to describe as in the drawings.
  • the exemplary term “above” can include both “over” and "under”.
  • the device can also be positioned in other different ways (rotated 90 degrees or at other orientations) and the corresponding description of the space used herein is interpreted accordingly.
  • an indoor unit is provided.
  • the indoor unit includes a housing 10, an evaporator assembly 20, and a line assembly 30.
  • the housing 10 includes a base 11 having a first mounting surface and a second mounting surface opposite the first mounting surface, the first mounting surface having a first side and a second side opposite the first side.
  • the evaporator assembly 20 is coupled to the first mounting surface and the second mounting surface is mounted to the base to be installed.
  • the tubing assembly 30, the first end of the tubing assembly 30 is in communication with the evaporator assembly 20, and the second end of the tubing assembly 30 extends toward the second side and extends through and extends from the second side of the first mounting surface to The side where the second mounting surface is located is in communication with the outdoor unit, wherein the first side is located above the second side when the indoor unit is mounted on the mounting base.
  • the first end of the tubing assembly is in communication with the evaporator assembly, and the second end of the tubing assembly extends from the first side of the first mounting surface of the base toward the second side of the base Providing, and connecting the second end of the pipeline assembly through the first mounting surface to the side of the second mounting surface to communicate with the outdoor unit, when the indoor unit is mounted on the mounting base, the first side is located on the second side Above.
  • This arrangement enables the pipe assembly that communicates with the external machine to be routed from the front toward the base of the indoor unit, avoiding the use of the conventional pipe routing method in which the pipe groove is provided from the rear of the indoor casing.
  • the line layout of the pipeline component in the application makes the pipeline layout of the indoor unit more reasonable, and the pipeline walking mode of the present application can avoid the provision of the pipe groove at the rear of the casing, thereby effectively improving
  • the overall strength of the housing of the indoor unit reduces the difficulty in mounting the evaporator assembly, enabling the indoor unit to be mechanized.
  • part of the pipeline assembly 30 extends from the first mounting surface through the second mounting surface and extends along the length direction of the base 11 by a predetermined distance to communicate with the outdoor unit.
  • This arrangement can reduce the assembly difficulty with the outdoor unit and improve the assembly efficiency of the air conditioner.
  • the extension distance is the extension length of the pipeline assembly of the portion, and the length may be less than the length of the base.
  • the evaporator assembly 20 includes an evaporator 21 and an angle bracket assembly 22.
  • the gusset assembly 22 is mounted to the end of the evaporator 21.
  • the evaporator 21 is detachably disposed on the base 11 via the gusset assembly 22.
  • the second end of the tubing assembly 30 is from a first side of the first mounting surface of the base 11 (shown as A1 in Figures 2 and 7) toward a second side of the first mounting surface of the base 11 (as shown 2 and A2 in Fig. 7) gradually extend to the preset position.
  • This arrangement can effectively improve the connection stability and reliability of the indoor unit.
  • a notch may be provided on the pedestal 11 at the edge of the through-hole train base for the pipeline assembly 30 to pass through.
  • the horn assembly 22 includes an angle bracket 221 and a pressure plate 223.
  • the angle bracket 221 is coupled to the first end of the evaporator 21.
  • the angle bracket 221 is provided with a first hook 222 connected to the base 11, and the base 11 is provided with a first connecting hole 12 that cooperates with the first hook 222.
  • the pressing plate 223 is connected to the second end of the evaporator 21, and the pressing plate 223 is provided with a second hook 224 connected to the base 11.
  • the base 11 is provided with a second connecting hole 112 corresponding to the second hook 224, and a part
  • the tubing assembly 30 extends from one side of the pressure plate 223. Such an arrangement can effectively improve the connection reliability of the gusset assembly and the housing 10.
  • the second mounting surface of the base 11 is provided with a first limiting plane 13.
  • the first limiting plane 13 is parallel to the plane of the second mounting surface of the base 11.
  • the first limiting plane 13 is disposed adjacent to the first connecting hole 12, and the hook of the first hook 222 cooperates with the first limiting plane 13 That is, the hook surface of the first hook 222 is brought into contact with the first limiting plane 13 .
  • the second mounting surface of the base 11 is provided with a second limiting plane 14 having an angle with the plane of the bottom of the base 11, and the second limiting plane 14 is close to
  • the second connecting hole 112 is disposed, and the hook portion of the second hook 224 and the second limiting plane 14 cooperate with each other.
  • the second limiting plane 14 gradually extends obliquely toward the surface side of the second mounting surface of the base 11, such that the connection stability of the angle bracket assembly and the housing 10 can be further improved.
  • the pressure plate 223 is provided with a first positioning hole 225 for connection with the susceptor 11.
  • the angle bracket 221 is provided with a second positioning hole 226 for connection with the base 11.
  • the indoor unit further includes a motor base 40.
  • the motor base 40 is disposed on the base 11, and the top of the motor base 40 is provided with a through-tube groove through which the pipe assembly 30 passes. This arrangement makes it possible to make the components of the pipeline between the components more reasonable, making the structure of the entire indoor unit more compact.
  • the housing 10 also includes a duct assembly 15.
  • the air duct assembly 15 is detachably disposed on the base 11.
  • the second end of the duct assembly 30 extends from the first mounting surface to the side where the second mounting surface is located and is located at one side of the air duct assembly 15 (eg As shown in FIG. 3, when the installation base is an indoor wall, the second mounting surface of the base is attached to the wall surface, and the pipe assembly 30 is located between the air duct assembly 15 and the wall. This arrangement can effectively facilitate the disassembly and assembly of the air duct assembly.
  • the air duct assembly 15 includes a bottom case.
  • the bottom case is detachably disposed on the base 11, and the bottom case is provided with a duct, and the vane 50 is disposed in the air duct.
  • a guard 16 is disposed at a side of one side of the base 11.
  • a second side of the first mounting surface of the base 11 is provided with a shield 16 on which an outer surface of the shield 16 is disposed for receiving the pipe assembly 30.
  • the accommodating space of the second end, the inner surface of the shield 16 is provided with a guiding structure, and the distance from the surface of the guiding structure to the plane of the first mounting surface of the susceptor 11 gradually increases along the width direction of the susceptor 11.
  • the first side and the second side are both sides along the length direction of the susceptor 11. This arrangement can effectively facilitate the installation of the air duct assembly while effectively protecting the pipeline assembly.
  • the tubing assembly 30 includes a first component segment 31, a second component segment 32, and a third component segment 33.
  • the first end of the first component segment 31 is in communication with the second end of the evaporator 21 and disposed adjacent to the first side, and the second end of the first component segment 31 extends from the first side toward the second side and is gradually away from the first installation. surface.
  • the first end of the second component segment 32 is in communication with the second end of the first component segment 31.
  • the axis of the first component segment 31 has an angle with the axis of the second component segment 32, and the second end of the second component segment 32 Extending from the first side toward the second side and gradually away from the first mounting surface.
  • the first end of the third component segment 33 is in communication with the second end of the second component segment 32, the axis of the third component segment 33 has an angle with the axis of the second component segment 32, and the second end of the third component segment 33
  • the first mounting surface is gradually extended until the second end of the third component section 33 passes through the first mounting surface and extends to the side where the second mounting surface is located.
  • the second end of the third component segment 33 extends to the bottom of the base of the base 11 on which the evaporator 21 is mounted, and passes through from the second side of the first mounting surface and extends to the second mounting surface.
  • the side is connected to the outdoor unit.
  • the preset position is located at the accommodating space below the shield 16 . This arrangement facilitates the pipe run of the pipe assembly and facilitates the installation of the evaporator.
  • the line assembly 30 includes a gas pipe 34 and a liquid pipe 35, and the gas pipe 34 and the liquid pipe 35 are disposed in parallel.
  • a screw post (2211, 2213) for connecting to the evaporator assembly is disposed on the base 11, as shown in FIG. 3, and two screw holes 2212 are provided on the angle bracket.
  • a screw mounting hole 42 is further provided at the top of the motor base.
  • the indoor unit in the above embodiment can also be used in the technical field of air conditioner equipment, that is, according to another aspect of the present invention, an air conditioner is provided.
  • the air conditioner includes an indoor unit, and the indoor unit is the indoor unit in the above embodiment.
  • the indoor unit includes a housing 10, an evaporator assembly 20, and a line assembly 30.
  • the housing 10 includes a base 11 having a first mounting surface and a second mounting surface opposite the first mounting surface.
  • the evaporator assembly 20 is coupled to the first mounting surface and the second mounting surface is mounted to the base to be installed.
  • a first end of the tubing assembly 30 is in communication with the evaporator assembly 20, the second end of the tubing assembly 30 extending from a first side of the first mounting surface toward a second side of the first mounting surface opposite the first side After the preset distance, the side that passes through the first mounting surface and extends to the second mounting surface communicates with the outdoor unit.
  • the first end of the tubing assembly is in communication with the evaporator assembly, and the second end of the tubing assembly extends from the first side of the first mounting surface of the base toward the second side of the base And connecting the second end of the pipeline assembly through the first mounting surface to the side of the second mounting surface to communicate with the outdoor unit.
  • the line layout of the pipeline component in the application makes the pipeline layout of the indoor unit more reasonable, and the pipeline walking mode of the present application can avoid the provision of the pipe groove at the rear of the casing, thereby effectively improving
  • the overall strength of the housing of the indoor unit reduces the difficulty in mounting the evaporator assembly, enabling the indoor unit to be mechanized.
  • the left and right sides of the evaporator component are respectively designed with an angle frame and a pressure plate with screws and hooks, and the pipeline is designed to be lifted forward and upward, and the motor seat of the base is fixed and the pipe is fixed.
  • the groove structure allows the evaporator components to be assembled directly from the front without the need to flip the entire machine. This setting not only improves the assembly efficiency of the whole machine, but also facilitates the disassembly and maintenance work after the sale.
  • the structure of the pedestal front elevation raises the position of the pipe, which realizes the unobstructed disassembly and assembly of the bottom shell component, and satisfies the requirement of convenient disassembly and assembly of the bottom shell component.
  • the motor block components are first assembled to the base components and then the pre-assembled evaporator components are assembled to the base components.
  • the left side of the evaporator part is designed with an angled frame structure (the angle frame is assembled with the evaporator by two screws), the front end of the angle frame is designed with a hook and a screw column structure that cooperates with the base, and the rear part has a screw for fixing the bottom case.
  • the column, the peripheral structure is a protective tube structure 227 for protecting the U tube of the evaporator and a screw column 228.
  • the right side of the evaporator part is designed with a right pressure plate structure (the right pressure plate is connected to the evaporator by the evaporator buckle of the edge), the front part of the right pressure plate is designed with a hook structure for the base, and the rear part is assembled with the motor base.
  • the screw holes, and the piping is designed to lift the bend above the front side, then go straight to the front of the evaporator part and bend to the bottom of the evaporator.
  • the inner side of the hook matches the platform surface of the base hanging hole. This side is parallel to the bottom surface of the base, ensuring that the assembled evaporator components are smoothly attached to the base.
  • a and B in the figure are the right platen evaporator buckles.
  • the evaporator component is hung on the base component to realize the pre-positioning and preliminary assembly of the evaporator component.
  • the evaporator component can be initially stabilized on the base, and the fixing screw hole of the left angle bracket and the base is already Medium, and the right pressure plate fixing screw hole is aligned with the right pressure plate fixing screw column hole on the top of the motor base, and then the two fastening screws can directly fix the evaporator component on the base component to complete the fixed assembly of the evaporator component.
  • the entire assembly process only needs to be hooked from the front of the base member, and all the assembly operations can be completed by screwing, and the assembly process is simple and quick.
  • the pipe-out mode of FIG. 5 After the evaporator component and the base are fixed, according to the pipe-out mode of FIG. 5, only the pipe which needs to be slightly corrected and deformed can make the pipe run along the pipe groove structure at the top of the motor seat, and then pass down the motor seat.
  • the pipe reserved along the pedestal allows the bottom of the front edge of the notch channel base, and finally bends to the left to the bottom of the pedestal to protrude the bottom of the shield.
  • the structure of the guard plate provided on the base is raised and raised, so that the space at the bottom of the front edge of the base is convenient for the pipe.
  • the disassembly process of the bottom shell member always slides along the inclined surface generated by the front edge of the base to lift the pipe, and the front edge of the base lifts and protrudes to protect the gas-liquid pipeline, so that the bottom casing can be avoided.
  • the part is bumped during the pull-out and loading process.
  • the utility model facilitates the disassembly and assembly operation of the bottom shell component, effectively improves the production assembly efficiency, and can also realize the free disassembly and assembly when the user cleans the bottom shell component after the sale.
  • the bottom case member is fastened to the base frame fixing screw column of the yoke upper case and the bottom plate fixing screw column of the right pressure plate, respectively, because the bottom case member is slid into the base by the guide rail.
  • the seat is screwed into the base and integrated into the base.
  • the front part of the evaporator part is only connected to the bottom part, which also causes the evaporator part to have a screw at each of the four opposite corners.
  • the hook is symmetrically fastened, and the whole body is firmly connected with the base, and the sloshing collision is avoided during the fall, thereby improving the stability of the structure.
  • the air conditioner of the mechanism is used to realize the modularization and integration of the structural design of the air conditioner.
  • the traditional evaporator back pipe and the left and right asymmetric evaporator fixed structure not only consume time in the production assembly, but also have poor stability of the final assembly structure, and it is inconvenient for after-sales disassembly and maintenance work.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)
  • Other Air-Conditioning Systems (AREA)

Abstract

一种室内机,包括壳体(10),壳体(10)的基座(11)具有第一安装面和与第一安装面相对的第二安装面,第一安装面具有第一侧和与第一侧相对的第二侧;蒸发器组件(20)与第一安装面相连接,第二安装面用于安装在待安装基础上;管路组件(30)的第一端与蒸发器组件(20)相连通,管路组件(30)的第二端朝向第二侧延伸后,从第一安装面的第二侧穿过并延伸至第二安装面所在的一侧并与室外机相连通,其中,当室内机安装于安装基础上使用时,第一侧位于第二侧的上方。还公开了一种空调器。

Description

室内机及具有其的空调器 技术领域
本发明涉及空调器设备技术领域,具体而言,涉及一种室内机及具有其的空调器。
背景技术
现有技术中,空调的蒸发器走管设计主要是采用底壳背后开让位槽走管,顺延到底壳下部的过管让位区域,最后安装时可从空调器两侧出管。这种设计能在一定程度上防止走管影响空调器的外观设计,且起到保护管路不受到运输中的碰撞损害。但是在生产装配中,蒸发器部件在装配到底壳部件时必须先将底壳部件整体抬起,让管路纵向通过底壳背部的让位槽走管,然后再沿底壳下部走管隐藏在空调器的下方。这在很大程度上限制了生产效率的提升,且增加了管路的长度,不利于生产和成本的控制。由于底壳这种背部开槽的设计结构,底壳长度方向被纵向产生的走管槽切断,造成整体强度降低的问题。同时,现有技术中蒸发器部件的固定则采用左右不对称的螺钉连接和卡扣卡接,造成整机跌落中蒸发器部件晃动较大易于拉坏和碰伤局部结构的问题。
发明内容
本发明的主要目的在于提供一种室内机及具有其的空调器,以解决现有技术中蒸发器安装不便,不利于实现机械化的问题。
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,包括:壳体,壳体包括基座,基座具有第一安装面和与第一安装面相对的第二安装面,第一安装面具有第一侧和与第一侧相对的第二侧;蒸发器组件,蒸发器组件与第一安装面相连接,第二安装面用于安装在待安装基础上;管路组件,管路组件的第一端与蒸发器组件相连通,管路组件的第二端朝向第二侧延伸后,从第一安装面的第二侧穿过并延伸至第二安装面所在的一侧并与室外机相连通,其中,当室内机安装于安装基础上使用时,第一侧位于第二侧的上方。
进一步地,部分的管路组件从第一安装面穿过第二安装面后沿着基座的长度方向延伸预设距离后与室外机相连通。
进一步地,蒸发器组件包括:蒸发器;角形架组件,角形架组件安装于蒸发器的端部,蒸发器通过角形架组件可拆卸地设置于基座上。
进一步地,角形架组件包括:角形架,角形架与蒸发器的第一端相连接,角形架设置有与基座相连接的第一挂钩,基座上设置有与第一挂钩相配合的第一连接孔。
进一步地,角形架组件还包括:压板,压板与蒸发器的第二端相连接,压板设置有与基座相连接的第二挂钩,基座上设置有与第二挂钩相配合的第二连接孔,部分的管路组件沿压板的一侧延伸设置。
进一步地,第二安装面上设置有第一限位平面,第一挂钩的钩部与第一限位平面相互配合。
进一步地,第一限位平面与第二安装面所在的平面平行。
进一步地,第二安装面设置有第二限位平面,第二挂钩的钩部与第二限位平面相互配合。
进一步地,第二限位平面与第二安装面所在的平面具有夹角。
进一步地,压板设置有用于与基座相连接的第一定位孔。
进一步地,角形架设置有用于与基座相连接的第二定位孔。
进一步地,室内机还包括:电机座,电机座设置于基座上,电机座的顶部设置有供管路组件穿过的过管槽。
进一步地,壳体还包括:风道组件,风道组件可拆卸地设置于基座上,管路组件的第二端从第一安装面穿过延伸至第二安装面所在的一侧。
进一步地,基座的一侧设置有护板,护板的外表面设置有用于容纳管路组件的走管槽。
进一步地,护板的内表面上设置有导向结构,导向结构的表面至基座的第二安装面所在的平面的距离沿基座的宽度方向逐渐增加。
进一步地,沿基座的长度方向具有第一侧和第二侧,管路组件包括:第一组成段,第一组成段的第一端与蒸发器的第二端相连通并靠近第一侧设置,第一组成段的第二端从第一侧朝向第二侧延伸并逐渐远离第一安装面;第二组成段,第二组成段的第一端与第一组成段的第二端相连通,第一组成段的轴线与第二组成段的轴线具有夹角,第二组成段的第二端从第一侧朝向第二侧延伸设置;第三组成段,第三组成段的第一端与第二组成段的第二端相连通,第三组成段的轴线与第二组成段的轴线具有夹角,第三组成段的第二端从第一安装面的第二侧穿过并延伸至第二安装面所在的一侧与室外机相连通。
进一步地,第三组成段的第二端从第一安装面穿过并延伸至第二安装面所在的一侧后,第三组成段的第二端继续沿基座的长边方向延伸设置。
进一步地,至少部分的第一组成段位于过管槽内。
根据本发明的另一方面,提供了一种空调器,包括室内机,室内机为上述的室内机。
应用本发明的技术方案,将管路组件的第一端与蒸发器组件相连通,将管路组件的第二端从基座的第一安装面的第一侧朝向基座的第二侧逐渐延伸设置,且将管路组件的第二端穿过从第一安装面的第二侧至第二安装面所在的一侧与室外机相连通,当室内机安装于安装基 础上使用时,第一侧位于第二侧的上方。这样设置能够使得与外机相连通的管路组件从朝向室内机基座的前方走管,避免了采用现有技术中从室内机壳体的后部设置走管槽的走管布管方式。采用本申请中的管路组件的走线方式使得该室内机的管线布局更加合理,而且采用本申请的管路走管方式,能够避免在壳体的后部设置走管槽,从而有效地提高了该室内机的壳体的整体强度,降低了蒸发器组件的安装难度,使得该室内机能够实现机械化装配。
附图说明
构成本申请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示出了根据本发明的室内机的第一实施例的结构示意图;
图2示出了根据本发明的室内机的第二实施例的剖视结构示意图;
图3示出了根据本发明的室内机的第三实施例的剖视结构示意图;
图4示出了根据本发明的室内机的角形架与蒸发器装配的实施例的结构示意图;
图5示出了根据本发明的室内机的压板与蒸发器装配的实施例的结构示意图;
图6示出了根据本发明的室内机的蒸发器组件的实施例的结构示意图;
图7示出了根据本发明的室内机的蒸发器组件与基座的实施例的爆炸结构示意图;
图8示出了根据本发明的室内机的室内机的实施例的爆炸结构示意图;
图9示出了根据本发明的角形架组件上的第一定位孔的结构示意图。
其中,上述附图包括以下附图标记:
10、壳体;11、基座;12、第一连接孔;112、第二连接孔;13、第一限位平面;14、第二限位平面;15、风道组件;16、护板;
20、蒸发器组件;21、蒸发器;22、角形架组件;221、角形架;2211、螺钉柱;2212、螺钉孔;2213、螺钉柱;
222、第一挂钩;223、压板;224、第二挂钩;225、第一定位孔;226、第二定位孔;
227、护管结构;228、螺钉柱;
30、管路组件;31、第一组成段;32、第二组成段;33、第三组成段;34、气管;35、液管;
40、电机座;41、过管槽;42、螺钉安装孔;
50、风叶。
具体实施方式
需要说明的是,在不冲突的情况下,本申请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。
需要注意的是,这里所使用的术语仅是为了描述具体实施方式,而非意图限制根据本申请的示例性实施方式。如在这里所使用的,除非上下文另外明确指出,否则单数形式也意图包括复数形式,此外,还应当理解的是,当在本说明书中使用术语“包含”和/或“包括”时,其指明存在特征、步骤、操作、器件、组件和/或它们的组合。
需要说明的是,本申请的说明书和权利要求书及附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便这里描述的本申请的实施方式例如能够以除了在这里图示或描述的那些以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
为了便于描述,在这里可以使用空间相对术语,如“在……之上”、“在……上方”、“在……上表面”、“上面的”等,用来描述如在图中所示的一个器件或特征与其他器件或特征的空间位置关系。应当理解的是,空间相对术语旨在包含除了器件在图中所描述的方位之外的在使用或操作中的不同方位。例如,如果附图中的器件被倒置,则描述为“在其他器件或构造上方”或“在其他器件或构造之上”的器件之后将被定位为“在其他器件或构造下方”或“在其他器件或构造之下”。因而,示例性术语“在……上方”可以包括“在……上方”和“在……下方”两种方位。该器件也可以其他不同方式定位(旋转90度或处于其他方位),并且对这里所使用的空间相对描述作出相应解释。
现在,将参照附图更详细地描述根据本申请的示例性实施方式。然而,这些示例性实施方式可以由多种不同的形式来实施,并且不应当被解释为只限于这里所阐述的实施方式。应当理解的是,提供这些实施方式是为了使得本申请的公开彻底且完整,并且将这些示例性实施方式的构思充分传达给本领域普通技术人员,在附图中,为了清楚起见,有可能扩大了层和区域的厚度,并且使用相同的附图标记表示相同的器件,因而将省略对它们的描述。
结合图1至图9所示,提供了一种室内机。
具体地,如图1和图2所示,该室内机包括壳体10、蒸发器组件20和管路组件30。壳体10包括基座11,基座11具有第一安装面和与第一安装面相对的第二安装面,第一安装面具有第一侧和与第一侧相对的第二侧。蒸发器组件20与第一安装面相连接,第二安装面用于安装在待安装基础上。管路组件30,管路组件30的第一端与蒸发器组件20相连通,管路组件30的第二端朝向第二侧延伸后,从第一安装面的第二侧穿过并延伸至第二安装面所在的一侧并与室外机相连通,其中,当室内机安装于安装基础上使用时,第一侧位于第二侧的上方。
在本实施例中,将管路组件的第一端与蒸发器组件相连通,将管路组件的第二端从基座的第一安装面的第一侧朝向基座的第二侧逐渐延伸设置,且将管路组件的第二端穿过第一安装面至第二安装面所在的一侧与室外机相连通,当室内机安装于安装基础上使用时,第一侧位于第二侧的上方。这样设置能够使得与外机相连通的管路组件从朝向室内机基座的前方走管,避免了采用现有技术中从室内机壳体的后部设置走管槽的走管布管方式。采用本申请中的管路组件的走线方式使得该室内机的管线布局更加合理,而且采用本申请的管路走管方式,能够避免在壳体的后部设置走管槽,从而有效地提高了该室内机的壳体的整体强度,降低了蒸发器组件的安装难度,使得该室内机能够实现机械化装配。
其中,部分的管路组件30从第一安装面穿过第二安装面后沿着基座11的长度方向延伸预设距离后与室外机相连通。这样设置能够降低与室外机的装配难度,提高空调器的装配效率。其中,延伸距离即为该部分的管路组件的延伸长度,该长度可以小于基座的长度方向的长度。
其中,蒸发器组件20包括蒸发器21和角形架组件22。角形架组件22安装于蒸发器21的端部。蒸发器21通过角形架组件22可拆卸地设置于基座11上。管路组件30的第二端从基座11的第一安装面的第一侧(如图2和图7中的A1所示)朝向基座11的第一安装面的第二侧(如图2和图7中的A2所示)逐渐延伸至预设位置。这样设置能够有效地提高室内机的连接稳定性和可靠性。当然,基座11上可以设置通孔火车基座的边沿处设置缺口供管路组件30穿过。
具体地,如图1和图4所示,角形架组件22包括角形架221和压板223。角形架221与蒸发器21的第一端相连接。角形架221设置有与基座11相连接的第一挂钩222,基座11上设置有与第一挂钩222相配合的第一连接孔12。压板223与蒸发器21的第二端相连接,压板223设置有与基座11相连接的第二挂钩224,基座11上设置有与第二挂钩224相配合的第二连接孔112,部分的管路组件30从压板223的一侧延伸设置。这样设置能够有效地提高角形架组件与壳体10的连接可靠性。
如图3所示,基座11的第二安装面上设置有第一限位平面13。第一限位平面13与基座11的第二安装面所在的平面平行,第一限位平面13靠近第一连接孔12设置,第一挂钩222的钩部与第一限位平面13相互配合,即第一挂钩222的钩部表面与第一限位平面13实现贴合。如图2所示,基座11的第二安装面上设置有第二限位平面14,第二限位平面14与基座11的底部所在的平面具有夹角,第二限位平面14靠近第二连接孔112设置,第二挂钩224的钩部与第二限位平面14相互配合。从图2可以看出,第二限位平面14逐渐朝向基座11的第二安装面的表面一侧倾斜延伸,这样设置能够进一步地提高角形架组件与壳体10的连接稳定性。
如图9所示,为了进一步地提高角形架组件与壳体10的连接稳定性,压板223设置有用于与基座11相连接的第一定位孔225。角形架221设置有用于与基座11相连接的第二定位孔226。
如图1、图7和图8所示,室内机还包括电机座40。电机座40设置于基座11上,电机座40的顶部设置有供管路组件30穿过的过管槽。这样设置能够使得管线在各部件之间的走线的部件更加合理,使得整个室内机的结构更加紧凑。
其中,壳体10还包括风道组件15。风道组件15可拆卸地设置于基座11上,管路组件30的第二端从第一安装面穿过延伸至第二安装面所在的一侧并位于风道组件15的一侧(如图3所示,当安装基础为室内墙壁时,基座的第二安装面贴合在墙面上,管路组件30位于风道组件15与墙壁之间)。这样设置能够有效地方便风道组件的拆装。
进一步地,风道组件15包括底壳。底壳可拆卸地设置于基座11上,底壳上设置有风道,风叶50设置于风道内。基座11的一侧的边沿处设置有护板16,优选地,基座11的第一安装面的第二侧设置有护板16,护板16的外表面设置有用于容纳管路组件30的第二端的容纳空间,护板16的内表面上设置有导向结构,导向结构的表面至基座11的第一安装面的所在的平面的距离沿基座11的宽度方向逐渐增加。其中,第一侧和与第二侧为沿基座11的长度方向的两侧,。这样设置能够有效地方便风道组件的安装,同时能够起到有效地保护管路组件的作用。
具体地,管路组件30包括第一组成段31、第二组成段32和第三组成段33。第一组成段31的第一端与蒸发器21的第二端相连通并靠近第一侧设置,第一组成段31的第二端从第一侧朝向第二侧延伸并逐渐远离第一安装面。第二组成段32的第一端与第一组成段31的第二端相连通,第一组成段31的轴线与第二组成段32的轴线具有夹角,第二组成段32的第二端从第一侧朝向第二侧延伸并逐渐远离第一安装面。第三组成段33的第一端与第二组成段32的第二端相连通,第三组成段33的轴线与第二组成段32的轴线具有夹角,第三组成段33的第二端朝向第一安装面逐渐延伸直至第三组成段33的第二端从第一安装面穿过并延伸至第二安装面所在的一侧。第三组成段33的第二端延伸至基座11的安装有蒸发器21一侧的基座的底部后,从第一安装面的第二侧穿过并延伸至第二安装面所在的一侧与室外机相连通。其中,在本实施例中,预设位置位于护板16下方的容纳空间处。这样设置能够方便管道组件的走管,方便了蒸发器的安装作业。
为了进一步地使得管道组件走线更加合理、紧凑,可以将至少部分的第一组成段31设置于过管槽41内。在本实施例中,管路组件30包括气管34和液管35,气管34和液管35并行地设置。具体地,在基座11上设置有用于与蒸发器组件相连接的螺钉柱(2211、2213)如图3所示,角形架上设置有两个螺钉孔2212。优选地,为了提高该室内机的整体稳定性,在电机座的顶部还设置有螺钉安装孔42。
上述实施例中的室内机还可以用于空调器设备技术领域,即根据本发明的另一方面,提供了一种空调器。该空调器包括室内机,室内机为上述实施例中的室内机。该室内机包括壳体10、蒸发器组件20和管路组件30。壳体10包括基座11,基座11具有第一安装面和与第一安装面相对的第二安装面。蒸发器组件20与第一安装面相连接,第二安装面用于安装在待安装基础上。管路组件30的第一端与蒸发器组件20相连通,管路组件30的第二端从第一安装面的第一侧朝向第一安装面的与第一侧相对的第二侧逐渐延伸预设距离后,从第一安装面穿过并延伸至第二安装面所在的一侧与室外机相连通。
在本实施例中,将管路组件的第一端与蒸发器组件相连通,将管路组件的第二端从基座的第一安装面的第一侧朝向基座的第二侧逐渐延伸设置,且将管路组件的第二端穿过第一安装面至第二安装面所在的一侧与室外机相连通。这样设置能够使得与外机相连通的管路组件从朝向室内机基座的前方走管,避免了采用现有技术中从室内机壳体的后部设置走管槽的走管布管方式。采用本申请中的管路组件的走线方式使得该室内机的管线布局更加合理,而且采用本申请的管路走管方式,能够避免在壳体的后部设置走管槽,从而有效地提高了该室内机的壳体的整体强度,降低了蒸发器组件的安装难度,使得该室内机能够实现机械化装配。
在本实施例中,蒸发器部件的左右两侧分别设计有带螺钉与挂钩的角形架和压板,管路设计为向前向上抬起折弯,配合基座上的电机座的固定和走管槽结构,使得蒸发器部件可直接从正面装配,无需翻转整机。这样设置不但提高了整机装配效率,同时也方便了售后的拆装维护工作。其中基座前沿抬高让位走管的结构,实现了底壳部件的无障碍拆装,满足了对底壳部件便捷拆装的要求。
如图7所示,首先将电机座部件装配到基座部件上,然后再将预装好的蒸发器部件装配到基座部件上。蒸发器部件左侧设计有角形架结构(角形架通过两颗螺钉与蒸发器装配在一起),角形架前端设计有与基座配合的挂钩和螺钉柱结构,后部有一个固定底壳的螺钉柱,周边结构为保护蒸发器U管的护管结构227以及螺钉柱228。蒸发器部件的右侧设计有右压板结构(右压板通过边缘的蒸发器卡扣与蒸发器装配连接),右压板前部设计有与基座配合的挂钩结构,后部有一个与电机座装配的螺钉孔,而且管路设计为向前侧上方抬起折弯,然后直走到蒸发器部件前部后折弯向蒸发器底部走管。装配时手握蒸发器部件两侧,将左右两侧的挂钩快速插入基座上设计的左右挂钩装配孔,完成预定位装配,此时,挂钩的内侧面与基座挂孔的平台面配合,此面与基座底面平行,保证了装配好的蒸发器部件平稳的挂接在基座上。如图2所示,图中A和B为右压板蒸发器卡扣。
将蒸发器部件挂接在基座部件上,实现蒸发器部件的预定位和初步装配,此时蒸发器部件能够初步稳定在基座上,左侧角形架与基座配合的固定螺钉孔已经对中,而且右压板固定螺钉孔与电机座顶部的右压板固定螺钉柱孔位对中,然后采用两颗紧固螺钉可直接将蒸发器部件固定在基座部件上,完成蒸发器部件的固定装配。整个装配过程只需从基座部件正面挂接,打螺钉即可完成全部装配操作,装配过程简单快捷。
蒸发器部件与基座固定完成后,按照图5的走管方式,只需要微微矫正变形的管路就可以使管路沿着电机座顶部的走管槽结构走管,然后向下经过电机座前方,顺沿着基座预留的走管让位缺口通道基座前沿下部,最后折弯向左走管到基座前沿突出护板的底部。此处基座上设置的护板结构突出抬起,让出基座前沿底部的空间方便走管。底壳部件的拆卸过程始终沿着基座前沿让位出管抬起产生的斜面滑动,基座前沿抬起和突出的护板结构很好的保护了气液管路,使其能够避免底壳部件在拉出与装入的过程中被碰撞到。方便了底壳部件的拆装操作,有力的提高了生产装配效率,也能实现售后用户清洗底壳部件时的自由拆装。在底壳部件与基座部件等总装示意图中,底壳部件会与角形架上底壳固定螺钉柱和右压板的底壳固定螺钉柱分别通过螺钉紧固,由于底壳部件由导轨滑入基座后采用螺钉紧固与基座成为一体, 此时完全装配好的总装结构中,蒸发器部件前部又与底壳部件仅仅连接,这也使得蒸发器部件在四个对角分别有一螺钉与挂钩对称紧固,整体牢牢与基座连接,跌落中避免产生晃动碰撞,提高了结构的稳定性。
采用本机构的空调器,实现了空调器结构设计的模块化与集成化。而采用传统的蒸发器背部走管,和左右非对称式蒸发器固定结构,不仅生产装配中翻机消耗时间,且总装结构的稳定性差,更不便于售后的拆装维护工作。
除上述以外,还需要说明的是在本说明书中所谈到的“一个实施例”、“另一个实施例”、“实施例”等,指的是结合该实施例描述的具体特征、结构或者特点包括在本申请概括性描述的至少一个实施例中。在说明书中多个地方出现同种表述不是一定指的是同一个实施例。进一步来说,结合任一实施例描述一个具体特征、结构或者特点时,所要主张的是结合其他实施例来实现这种特征、结构或者特点也落在本发明的范围内。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
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 (19)

  1. 一种室内机,其特征在于,包括:
    壳体(10),所述壳体(10)包括基座(11),所述基座(11)具有第一安装面和与所述第一安装面相对的第二安装面,所述第一安装面具有第一侧和与所述第一侧相对的第二侧;
    蒸发器组件(20),所述蒸发器组件(20)与所述第一安装面相连接,所述第二安装面用于安装在待安装基础上;
    管路组件(30),所述管路组件(30)的第一端与所述蒸发器组件(20)相连通,所述管路组件(30)的第二端朝向所述第二侧延伸后,从所述第一安装面的所述第二侧穿过并延伸至所述第二安装面所在的一侧并与室外机相连通,其中,当所述室内机安装于所述安装基础上使用时,所述第一侧位于所述第二侧的上方。
  2. 根据权利要求1所述的室内机,其特征在于,部分的所述管路组件(30)从所述第一安装面穿过所述第二安装面后沿着所述基座(11)的长度方向延伸预设距离后与所述室外机相连通。
  3. 根据权利要求1所述的室内机,其特征在于,所述蒸发器组件(20)包括:
    蒸发器(21);
    角形架组件(22),所述角形架组件(22)安装于所述蒸发器(21)的端部,所述蒸发器(21)通过所述角形架组件(22)可拆卸地设置于所述基座(11)上。
  4. 根据权利要求3所述的室内机,其特征在于,所述角形架组件(22)包括:
    角形架(221),所述角形架(221)与所述蒸发器(21)的第一端相连接,所述角形架(221)设置有与所述基座(11)相连接的第一挂钩(222),所述基座(11)上设置有与所述第一挂钩(222)相配合的第一连接孔(12)。
  5. 根据权利要求3所述的室内机,其特征在于,所述角形架组件(22)还包括:
    压板(223),所述压板(223)与所述蒸发器(21)的第二端相连接,所述压板(223)设置有与所述基座(11)相连接的第二挂钩(224),所述基座(11)上设置有与所述第二挂钩(224)相配合的第二连接孔(112),部分的所述管路组件(30)沿所述压板(223)的一侧延伸设置。
  6. 根据权利要求4所述的室内机,其特征在于,所述第二安装面上设置有第一限位平面(13),所述第一挂钩(222)的钩部与所述第一限位平面(13)相互配合。
  7. 根据权利要求6所述的室内机,其特征在于,所述第一限位平面(13)与所述第二安装面所在的平面平行。
  8. 根据权利要求5所述的室内机,其特征在于,所述第二安装面设置有第二限位平面(14),所述第二挂钩(224)的钩部与所述第二限位平面(14)相互配合。
  9. 根据权利要求8所述的室内机,其特征在于,所述第二限位平面(14)与所述第二安装面所在的平面具有夹角。
  10. 根据权利要求5所述的室内机,其特征在于,所述压板(223)设置有用于与所述基座(11)相连接的第一定位孔(225)。
  11. 根据权利要求4所述的室内机,其特征在于,所述角形架(221)设置有用于与所述基座(11)相连接的第二定位孔(226)。
  12. 根据权利要求1所述的室内机,其特征在于,所述室内机还包括:
    电机座(40),所述电机座(40)设置于所述基座(11)上,所述电机座(40)的顶部设置有供所述管路组件(30)穿过的过管槽。
  13. 根据权利要求3所述的室内机,其特征在于,所述壳体(10)还包括:
    风道组件(15),所述风道组件(15)可拆卸地设置于所述基座(11)上,所述管路组件(30)的第二端从所述第一安装面穿过延伸至所述第二安装面所在的一侧。
  14. 根据权利要求1所述的室内机,其特征在于,所述基座(11)的一侧设置有护板(16),所述护板(16)的外表面设置有用于容纳所述管路组件(30)的走管槽。
  15. 根据权利要求14所述的室内机,其特征在于,所述护板(16)的内表面上设置有导向结构,所述导向结构的表面至所述基座(11)的第二安装面所在的平面的距离沿所述基座(11)的宽度方向逐渐增加。
  16. 根据权利要求3所述的室内机,其特征在于,沿所述基座(11)的长度方向具有所述第一侧和所述第二侧,所述管路组件(30)包括:
    第一组成段(31),所述第一组成段(31)的第一端与所述蒸发器(21)的第二端相连通并靠近所述第一侧设置,所述第一组成段(31)的第二端从所述第一侧朝向所述第二侧延伸并逐渐远离所述第一安装面;
    第二组成段(32),所述第二组成段(32)的第一端与所述第一组成段(31)的第二端相连通,所述第一组成段(31)的轴线与所述第二组成段(32)的轴线具有夹角,所述第二组成段(32)的第二端从所述第一侧朝向所述第二侧延伸设置;
    第三组成段(33),所述第三组成段(33)的第一端与所述第二组成段(32)的第二端相连通,所述第三组成段(33)的轴线与所述第二组成段(32)的轴线具有夹角,所述第三组成段(33)的第二端从所述第一安装面的所述第二侧穿过并延伸至所述第二安装面所在的一侧与所述室外机相连通。
  17. 根据权利要求16所述的室内机,其特征在于,所述第三组成段(33)的第二端从所述第一安装面穿过并延伸至所述第二安装面所在的一侧后,所述第三组成段(33)的第二端继续沿所述基座(11)的长边方向延伸设置。
  18. 根据权利要求17所述的室内机,其特征在于,至少部分的所述第一组成段(31)位于过管槽内。
  19. 一种空调器,包括室内机,其特征在于,所述室内机为权利要求1至18中任一项所述的室内机。
PCT/CN2018/103559 2018-03-15 2018-08-31 室内机及具有其的空调器 WO2019174200A1 (zh)

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