WO2017016345A1 - 一种空调基座 - Google Patents

一种空调基座 Download PDF

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Publication number
WO2017016345A1
WO2017016345A1 PCT/CN2016/086664 CN2016086664W WO2017016345A1 WO 2017016345 A1 WO2017016345 A1 WO 2017016345A1 CN 2016086664 W CN2016086664 W CN 2016086664W WO 2017016345 A1 WO2017016345 A1 WO 2017016345A1
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WO
WIPO (PCT)
Prior art keywords
air
air outlet
base
outlet frame
frame
Prior art date
Application number
PCT/CN2016/086664
Other languages
English (en)
French (fr)
Inventor
郝本华
耿宝寒
成汝振
张千
冯兴建
孙婷
Original Assignee
青岛海尔空调器有限总公司
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 青岛海尔空调器有限总公司 filed Critical 青岛海尔空调器有限总公司
Priority to KR1020177008722A priority Critical patent/KR20170061136A/ko
Priority to EP16829712.5A priority patent/EP3193098B1/en
Publication of WO2017016345A1 publication Critical patent/WO2017016345A1/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
    • 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
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/40Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by ozonisation
    • 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
    • F24F13/02Ducting arrangements
    • F24F13/06Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser
    • 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
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification

Definitions

  • the present invention relates to the field of air conditioning technology, and in particular to an air conditioning base.
  • the air conditioner realizes humidification and purification of indoor air.
  • the usual treatment method is to change the structure of the original air conditioner, and an additional air processing module such as a humidifying module and a purifying module is added to the original air duct of the air conditioner.
  • these additional air handling modules are also working to achieve humidification, purification and other treatment of indoor air.
  • the above processing methods have the following disadvantages: First, the implementation of the additional air handling function is dependent on the original structure and operation of the air conditioner, and the operation cannot be controlled separately. Second, once the air conditioner is shipped, the additional air handling function has been determined, and the user cannot change it, making it difficult to achieve individualized requirements. Thirdly, due to the increase of the additional air handling module, it occupies the original space and air duct of the air conditioner, affecting the original normal air conditioning performance of the air conditioner; in order to achieve the coordinated matching of the normal air conditioning and additional air conditioning of the air conditioner, a lot of research and development is required. The cost is designed for air conditioning structure and electronic control.
  • An object of the present invention is to provide an air conditioning base that can be detachably assembled with an air conditioner, and an independent air supply system and an air processing module are disposed in the base to implement air treatment, thereby solving the existing
  • the air conditioner achieves at least one of the above disadvantages of the additional air handling function.
  • An air conditioning base includes a base body, the base body has a fitting portion detachably assembled with the air conditioning body, and the base body is formed with a body air inlet and a body air outlet, the base Inside the body A cavity is formed in which a fan and an air treatment module are formed.
  • the mounting portion on the base body to enable the base to be detachably assembled with the air conditioning body; forming a fan and an air handling module inside the base body by forming an air inlet and an air outlet on the base body , the pedestal itself forms a separate air supply system, and the air is processed by the air treatment module based on the air supply system. Therefore, after the air-conditioning base is assembled with the air-conditioning main body, the additional air-processing function realized by the pedestal is independent of the air-conditioning main body, does not affect the structure of the original air-conditioning main body, and can be independently operated without being attached to the operation of the original air-conditioning main body.
  • an air outlet assembly is formed in the cavity, the air outlet assembly includes an air outlet frame, and the fan is formed in the air outlet frame
  • An air outlet of the air outlet frame and a first air outlet of the air outlet frame are formed on the air outlet frame, and the first air outlet of the air outlet frame is located between the air inlet of the air outlet frame and the assembly portion.
  • the air inlet of the wind frame is communicated with the air inlet of the main body, and the first air outlet of the air outlet frame communicates with the air outlet of the main body.
  • the first air outlet of the air outlet frame is formed on a side surface of the air outlet frame with a structure that the air outlet angle is greater than 180°, so as to increase the range of the air outlet of the base.
  • the assembly portion in order to further increase the air outlet range and the air outlet mode of the base, the assembly portion is formed with an assembly portion air outlet, and the air outlet frame is formed with the air outlet frame a second air outlet of the air outlet frame between the first air outlet and the air outlet of the assembly portion, and the second air outlet of the air outlet frame communicates with the air outlet of the assembly portion.
  • the air processing module is formed between the air outlet frame, the air outlet of the air outlet frame, and the first air outlet of the air outlet frame.
  • the air conditioning base as described above, the air processing module is formed on the air outlet frame in a pullable structure
  • the electrical box body in order to ensure smooth air intake and outflow of the base, the electrical box body is away from the main body air inlet, the electrical box body, the main body air inlet and the air Processing module encircles the air inlet chamber [0016]
  • the air base as described above, the fitting portion is further formed with a connecting pipe mouth for the air conditioner to pass through the pipe
  • the base body includes a detachably connected base and a base body, and the mounting portion is formed on the base body at the other end opposite to the base, A base support is formed between the base and the mounting portion, and an outer casing surrounding the base body is formed on an outer circumference of the base body, and the body air inlet and the body air outlet are formed in the outer casing on.
  • the present invention enables the detachable assembly of the pedestal with the air conditioning body by providing an assembly on the base body;
  • the air inlet and the air outlet are formed, and a fan and an air processing module are formed inside the base body, so that the base itself forms an independent air supply system, and the air is processed by the air processing module based on the air supply system. Therefore, after the air conditioning base is assembled with the air conditioning body, the additional air handling function of the base is independent of the air conditioning body, does not affect the structure of the original air conditioning body, and can operate independently without depending on the operation of the original air conditioning body.
  • FIG. 1 is a perspective view of an embodiment of an air conditioning base of the present invention
  • FIG. 2 is an exploded view of the structure of FIG. 1.
  • FIG. 1 is a perspective view of the embodiment
  • FIG. 2 is an exploded perspective view of the embodiment.
  • the air conditioning base 1 of this embodiment has a cylindrical shape as a whole.
  • the air conditioning body to be assembled is a rectangular parallelepiped
  • the air conditioning base as a whole is also a rectangular parallelepiped, or a cube, or the like.
  • the air-conditioning base 1 includes a base body 11 having a fitting portion 1121 on the base body 11, by which the base 1 can be detachably assembled with the air-conditioning body. Therefore, the susceptor 1 has a structure that is substantially independent of the air conditioning body.
  • a body air inlet 1141 and a body air outlet 1151 are formed in the base body 11.
  • a cavity is formed inside the base body 11, and a fan 122 and an air processing module 13 are formed in the cavity.
  • the base air inlet 1141 and the body air outlet 1151 are formed on the base body 11, a fan 122 and an air processing module 13 are formed inside the base body 11, so that the base 1 itself forms an independent air supply. system.
  • the fan 122 is operated, and the external wind is sucked into the base body 11 through the body air inlet 141, processed by the air processing module 13, and then blown out from the body air outlet 1151 to realize air treatment.
  • Module 13 handles the air.
  • the air treatment module 13 is a humidification module that humidifies the air in the environment; if the air treatment module 13 is a purification module, the air in the environment is purified; if the air treatment module 13 is an aromatherapy odor removal module, Aromatherapy and odor removal will be applied to the air in the environment, and so on.
  • the base 1 since the base 1 is substantially independent from the air conditioning body, it can be separately controlled to realize independent operation of the additional air processing function and the original function of the air conditioner; since the base 1 does not depend on the original space and the air duct structure of the air conditioning body, it does not affect The original air conditioning performance of the air conditioner eliminates the need for special design of the air conditioning duct structure, simplifying the structure and design of the multi-air conditioning function.
  • the base body 11 includes a base 111, a base body 112, a base support 1 13 , a rear case 114, and a front case 115.
  • the base 111 serves as a chassis structure of the entire base 1, and is detachably coupled to the base body 112. For example, detachable connections are made by screws, snaps, and the like.
  • the fitting portion 1121 of the entire base 1 is formed on the top end of the base body 112 opposite to the base 111, and thus, the fitting portion 1121 is located at the top of the entire base 1.
  • a cavity is formed inside the base body 112 for accommodating the structure of the fan 122, the air processing module 13, and the like to be assembled.
  • a base support 113 is formed between the base 111 and the base body 112, specifically between the base 111 and the fitting portion 1121.
  • An outer casing enclosing the base body 112 is formed on the outer circumference of the base body 112.
  • the outer casing enclosing the base body 112 includes a rear case 114 and a front case 115, and the front case 115 is divided into left and right portions.
  • the rear case 114 and the front case 115 are respectively connected to the base 111,
  • the base body 112 and the base support 113 are fixedly connected by snaps, screws, or the like.
  • the body air inlet 1141 is formed on the rear case 114 for introducing external air; the body air outlet 1151 is formed on the front case 115 for sending out the air treated by the air treatment module 13.
  • An air outlet assembly 12 is formed in the cavity formed by the base body 112.
  • the air outlet assembly 12 includes an air outlet frame 121, and the fan 122 is formed in the air outlet frame 121.
  • the air outlet unit 12 and the base body 112 are fixed by snaps, screws, and the like;
  • the fan 122 is a centrifugal fan and is fixed in the air outlet frame 121.
  • the outlet frame 121 has two end ports, one end facing the base 111 and the other end facing the fitting portion 1121.
  • the air outlet frame 121 forms an air frame air inlet 1211 toward the end of the base 111, and communicates with the body air inlet 1141 of the base body 11;
  • the air outlet frame 121 forms an air frame second air outlet 1213 toward one end of the mounting portion 1121.
  • a first air outlet 1212 of the air outlet frame is formed between the air outlet frame 121 and the air outlet 1211 of the air outlet frame and the second air outlet 1213 of the air outlet frame.
  • the first air outlet 1212 of the air outlet frame communicates with the main body air outlet 1131 of the base body 11.
  • the first air outlet 1212 of the air outlet frame is formed on the side of the air outlet frame 121 with a wind angle greater than 180°, thereby increasing the wind output range.
  • the first air outlet 1212 of the air outlet frame includes three air outlets spaced apart on the side of the air outlet frame 121, and can form a blowing angle of about 270°.
  • the air treatment module 13 is also formed on the air outlet frame 121.
  • the air treatment module 13 is formed between the air outlet frame air inlet 1211 and the air outlet frame first air outlet port 1212.
  • the air processing module 13 is formed on the air outlet frame 121 in a pullable structure, which facilitates replacement of the same type of air processing module by the user after the sale, and installation of an air processing module that realizes different air processing functions as needed, which is convenient to use. And to meet the individual needs of users.
  • An electric box body 14 is formed in the cavity formed by the base body 112 below the air outlet unit 12. Specifically, the electrical box body 14 is inserted into the cavity and fixed to the base body 112 by screws.
  • the control panel of the base 1 can be placed in the electrical box body 14, and the control panel of the air conditioner body assembled with the base 1 can be placed.
  • the base 1 and the control panel of the air conditioner body are placed in the electrical box body 14. .
  • the electrical box 14 is away from the main body air inlet 1141 of the base body 11, and the air inlet chamber 15 can be formed between the electrical box body 14, the main body air inlet 1141 and the air processing module 13, thereby ensuring the smooth entry of the base 1 And the wind.
  • the mounting portion 1121 is formed with a fitting portion air outlet (not shown), a wire opening 11211, and a connecting machine port 11212.
  • the air outlet of the assembly part communicates with the second air outlet 1213 of the air outlet frame on the air outlet assembly 12.
  • the air processed by the air treatment module 13 can be blown out from the first air outlet 1212 and the main air outlet 1151 of the air outlet frame, and can also pass through the second air outlet 1213 of the air outlet frame and the air outlet of the assembly portion.
  • the air is blown from the top of the base 1 to realize multi-angle and multi-height air supply, and the air outlet range and the air outlet mode of the base 1 are increased.
  • the wire opening 11211 provides a passage for each of the wires electrically connected to the electrical box 14, and the wire connected to the electrical box 14 can be extended out of the base body 11 through the wire opening 11211.
  • the machine tube port 11212 provides a passage for connecting the connecting tube of the air conditioner indoor unit and the outdoor unit.
  • the pedestal 1 formed by the above structure has a reasonable structure, a large air outlet range, and many air outlet modes, and can realize modular production and assembly, and is convenient for individualized selection.

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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-Conditioning Room Units, And Self-Contained Units In General (AREA)

Abstract

一种空调基座(1),包括基座本体(11),基座本体(11)具有与空调本体可拆卸式装配的装配部(1121),基座本体(11)上形成有本体进风口(1141)和本体出风口(1151),基座本体(11)内部形成有空腔,在空腔内形成有风机(122)和空气处理模块(13)。该基座能够与空调本体进行可拆卸式装配,实现对空气的附加处理功能与空调本体彼此独立。

Description

一种空调基座 技术领域
[0001] 本发明属于空气调节技术领域, 具体地说, 是涉及一种空调基座。
背景技术
[0002] 随着技术的进步和人们对生活环境质量要求的提升, 家庭、 办公等环境常用的 空调的功能日趋增加, 不再仅是单纯提供对室内空气的制冷、 制热, 还增加了 对室内空气进行加湿、 净化等功能。
[0003] 目前, 空调实现对室内空气的加湿、 净化等, 通常的处理方式是不改变原有空 调的结构, 在空调原有的风道中增设加湿模块、 净化模块等附加空气处理模块 。 在空调上电运行制冷或制热吋, 这些额外增设的附加空气处理模块也工作, 实现对室内空气的加湿、 净化等处理。
[0004] 上述处理方式存在如下的缺点: 第一, 附加空气处理功能的实现依附于空调原 有结构和运行, 不能单独控制运行。 第二, 空调一旦出厂, 附加空气处理功能 已经确定, 用户无法更改, 难以实现个性化需求。 第三, 由于附加空气处理模 块的增加, 占据了空调原有的空间和风道, 影响空调原有的正常空气调节性能 ; 为实现空调正常空气调节和附加空气调节的协调匹配, 需要付出大量的研发 成本进行空调结构及电控上的设计。
技术问题
[0005] 本发明的目的是提供一种空调基座, 该基座能够与空调进行可拆卸式装配, 在 基座中设置独立的送风系统及空气处理模块实现对空气的处理, 解决现有空调 实现附加空气处理功能所存在的上述至少一个缺点。
问题的解决方案
技术解决方案
[0006] 为实现上述发明目的, 本发明采用下述技术方案予以实现:
[0007] 一种空调基座, 包括基座本体, 所述基座本体具有与空调本体可拆卸式装配的 装配部, 所述基座本体上形成有本体进风口和本体出风口, 所述基座本体内部 形成有空腔, 在所述空腔内形成有风机和空气处理模块。
[0008] 通过在基座本体上设置装配部, 使得基座能够与空调本体进行可拆卸式装配; 通过在基座本体上形成进风口和出风口、 在基座本体内部形成风机和空气处理 模块, 使得基座自身形成一个独立的送风系统, 并基于送风系统、 利用空气处 理模块对空气进行处理。 因而, 空调基座与空调本体装配在一起后, 基座实现 的对空气的附加处理功能与空调本体彼此独立, 不影响原空调本体的结构, 不 依附于原空调本体的运行而可独立运行。
[0009] 如上所述的空调基座, 为实现模块化结构, 在所述空腔内形成有出风组件, 所 述出风组件包括有出风框, 所述风机形成在所述出风框内, 所述出风框上形成 有出风框进风口和出风框第一出风口, 所述出风框第一出风口位于所述出风框 进风口与所述装配部之间, 所述出风框进风口与所述本体进风口相通, 所述出 风框第一出风口与所述本体出风口相通。
[0010] 如上所述的空调基座, 所述出风框第一出风口以出风角度大于 180°的结构形成 在所述出风框的侧面, 以增加基座出风的范围。
[0011] 如上所述的空调基座, 为进一步增加基座出风范围和出风方式, 所述装配部上 形成有装配部出风口, 所述出风框上形成有位于所述出风框第一出风口与所述 装配部出风口之间的出风框第二出风口, 所述出风框第二出风口与所述装配部 出风口相通。
[0012] 如上所述的空调基座, 所述空气处理模块形成在所述出风框上、 所述出风框进 风口与所述出风框第一出风口之间。
[0013] 如上所述的空调基座, 所述空气处理模块以可抽拉式结构形成在所述出风框上
, 方便空气处理模块的更换, 满足用户个性化需求。
[0014] 如上所述的空调基座, 所述空腔内还形成有电器箱体, 所述装配部上形成有供 导线通过的导线幵口, 所述电器箱体上连接的导线通过所述导线幵口伸出所述 基座本体。
[0015] 如上所述的空调基座, 为保证基座顺畅地进风和出风, 所述电器箱体远离所述 本体进风口, 所述电器箱体、 所述本体进风口及所述空气处理模块围成进风腔 [0016] 如上所述的空气基座, 所述装配部上还形成有供空调连机管通过的连机管幵口
[0017] 如上所述的空调基座, 所述基座本体包括可拆卸式连接的底座和基座主体, 所 述装配部形成在所述基座主体上、 与所述底座相对的另一端, 所述底座和所述 装配部之间形成有基座支撑, 所述基座主体外周形成有包裹所述基座主体的外 壳, 所述本体进风口和所述本体出风口均形成在所述外壳上。
发明的有益效果
有益效果
[0018] 与现有技术相比, 本发明的优点和积极效果是: 本发明通过在基座本体上设置 装配部, 使得基座能够与空调本体进行可拆卸式装配; 通过在基座本体上形成 进风口和出风口、 在基座本体内部形成风机和空气处理模块, 使得基座自身形 成一个独立的送风系统, 并基于送风系统、 利用空气处理模块对空气进行处理 。 因而, 空调基座与空调本体装配在一起后, 基座实现的对空气的附加处理功 能与空调本体彼此独立, 不影响原空调本体的结构, 不依附于原空调本体的运 行而可独立运行。
[0019] 结合附图阅读本发明的具体实施方式后, 本发明的其他特点和优点将变得更加 清楚。
对附图的简要说明
附图说明
[0020] 图 1是本发明空调基座一个实施例的立体图;
[0021] 图 2是图 1的结构分解图。
本发明的实施方式
[0022] 为了使本发明的目的、 技术方案及优点更加清楚明白, 以下将结合附图和实施 例, 对本发明作进一步详细说明。
[0023] 请参见图 1和图 2示出的本发明空调基座的一个实施例。 其中, 图 1是该实施例 的立体图, 图 2是该实施例的结构分解图。 [0024] 如图 1和图 2所示, 该实施例的空调基座 1整体呈圆柱体。 但并不局限于该圆柱 体结构, 可以根据要装配的空调本体的结构进行选择。 例如, 要装配的空调本 体为长方体, 则空调基座整体也呈长方体, 或者正方体, 等。 空调基座 1包括基 座本体 11, 在基座本体 11上具有装配部 1121, 利用该装配部 1121, 使得基座 1能 够与空调本体进行可拆卸式装配。 从而, 基座 1成为与空调本体基本独立的结构 。 在基座本体 11上形成有本体进风口 1141和本体出风口 1151, 在基座本体 11内 部形成有空腔, 在空腔内形成有风机 122和空气处理模块 13。
[0025] 由于基座本体 11上形成有本体进风口 1141和本体出风口 1151, 在基座本体 11内 部形成有风机 122和空气处理模块 13, 从而, 基座 1自身形成了一个独立的送风 系统。 通过合理的结构设计, 使得风机 122工作吋, 将外部的风经本体进风口 11 41吸入到基座本体 11内部, 经过空气处理模块 13处理, 然后从本体出风口 1151 吹出, 实现了利用空气处理模块 13对空气的处理。 例如, 空气处理模块 13为加 湿模块, 将对环境中的空气进行加湿; 若空气处理模块 13为净化模块, 则将对 环境中的空气进行净化; 若空气处理模块 13为香薰除异味模块, 则将对环境中 的空气进行香薰除异味处理, 等等。 而且, 由于该基座 1与空调本体基本独立, 可以单独控制, 实现附加空气处理功能与空调原有功能的独立运行; 由于基座 1 不依赖空调本体的原有空间和风道结构, 不会影响空调原有的空气调节性能, 无需对空调风道结构做特殊设计, 简化了实现多空气调节功能的结构和设计。
[0026] 具体来说, 如图 1所示, 基座本体 11包括有底座 111、 基座主体 112、 基座支撑 1 13、 后壳 114和前壳 115。 底座 111作为整个基座 1的底盘结构, 与基座主体 112可 拆卸式连接。 例如, 通过螺钉、 卡扣等实现可拆卸式连接。 基座主体 112上、 与 底座 111相对的顶端上形成整个基座 1的装配部 1121, 因而, 装配部 1121位于整 个基座 1的顶部。 基座主体 112内部形成有空腔, 用来容纳要装配的风机 122、 空 气处理模块 13等结构。 这样一来, 势必会使得基座主体 112的支撑强度变差。 为 增加整个基座 1的支撑强度和支撑稳固性, 在底座 111和基座主体 112之间、 具体 来说是在底座 111和装配部 1121之间形成有基座支撑 113。 基座主体 112外周形成 有包裹基座主体 112的外壳。 具体而言, 包裹基座主体 112的外壳包括后壳 114和 前壳 115, 且前壳 115分为左、 右两部分。 后壳 114及前壳 115均分别与底座 111、 基座主体 112及基座支撑 113通过卡扣、 螺钉等固定连接。 本体进风口 1141形成 在后壳 114上, 用来引入外部的空气; 本体出风口 1151形成在前壳 115上, 用来 送出经空气处理模块 13处理后的空气。
[0027] 在基座主体 112所形成的空腔中形成有出风组件 12, 该出风组件 12包括有出风 框 121, 风机 122形成在出风框 121内。 具体而言, 出风组件 12与基座主体 112通 过卡扣、 螺钉等固定; 风机 122为离心风机, 固定在出风框 121内。 出风框 121两 端幵口, 一端朝向底座 111, 另一端朝向装配部 1121。 出风框 121朝向底座 111的 一端形成出风框进风口 1211, 并与基座本体 11上的本体进风口 1141相通; 出风 框 121朝向装配部 1121的一端形成出风框第二出风口 1213。 在出风框 121上、 出 风框进风口 1211与出风框第二出风口 1213之间形成有出风框第一出风口 1212。 出风框第一出风口 1212与基座本体 11上的本体出风口 1131相通。 优选的, 出风 框第一出风口 1212以出风角度大于 180°的结构形成在出风框 121的侧面上, 从而 , 增大出风范围。 在该实施例中, 出风框第一出风口 1212包括有间隔分布在出 风框 121侧面上的三个出风口, 能够形成 270°左右的送风角度。 空气处理模块 13 也形成在出风框 121上, 具体来说, 空气处理模块 13形成在出风框进风口 1211和 出风框第一出风口 1212之间。 优选的, 空气处理模块 13以可抽拉式结构形成在 出风框 121上, 方便售后和用户更换同类型的空气处理模块, 以及根据需要安装 实现不同空气处理功能的空气处理模块, 方便使用, 并满足用户个性化需求。
[0028] 在基座主体 112所形成的空腔中、 出风组件 12的下方形成有电器箱体 14。 具体 来说, 电器箱体 14插入到空腔中、 并与基座主体 112通过螺钉固定。 该电器箱体 14中可以放置基座 1的控制板, 还可以放置与基座 1装配的空调本体的控制板, 优选将基座 1及空调本体的控制板均放置于该电器箱体 14中。 而且, 电器箱体 14 远离基座本体 11上的本体进风口 1141, 能够在电器箱体 14、 本体进风口 1141及 空气处理模块 13之间形成进风腔 15, 保证基座 1顺畅地进风和出风。
[0029] 对于装配部 1121, 其上形成有装配部出风口 (图中未标注) 、 导线幵口 11211 和连机管幵口 11212。 其中, 装配部出风口与出风组件 12上的出风框第二出风口 1213相通。 经空气处理模块 13处理后的空气, 除了从出风框第一出风口 1212和 本体出风口 1151吹出之外, 还可以通过出风框第二出风口 1213及装配部出风口 而从基座 1的顶部吹出, 实现多角度、 多高度的全方位送风, 增加了基座 1的出 风范围和出风方式。 导线幵口 11211提供与电器箱体 14电连接的各导线的通道, 可以将电器箱体 14上连接的导线通过该导线幵口 11211伸出基座本体 11。 连机管 幵口 11212提供连接空调室内机、 室外机的连机管的通道。
[0030] 采用上述结构形成的基座 1, 结构合理, 出风范围大, 出风方式多, 能够实现 模块化生产、 装配, 方便进行个性化选择。
[0031] 以上实施例仅用以说明本发明的技术方案, 而非对其进行限制; 尽管参照前述 实施例对本发明进行了详细的说明, 对于本领域的普通技术人员来说, 依然可 以对前述实施例所记载的技术方案进行修改, 或者对其中部分技术特征进行等 同替换; 而这些修改或替换, 并不使相应技术方案的本质脱离本发明所要求保 护的技术方案的精神和范围。

Claims

权利要求书
一种空调基座, 其特征在于, 包括基座本体, 所述基座本体具有与空 调本体可拆卸式装配的装配部, 所述基座本体上形成有本体进风口和 本体出风口, 所述基座本体内部形成有空腔, 在所述空腔内形成有风 机和空气处理模块。
根据权利要求 1所述的空调基座, 其特征在于, 在所述空腔内形成有 出风组件, 所述出风组件包括有出风框, 所述风机形成在所述出风框 内, 所述出风框上形成有出风框进风口和出风框第一出风口, 所述出 风框第一出风口位于所述出风框进风口与所述装配部之间, 所述出风 框进风口与所述本体进风口相通, 所述出风框第一出风口与所述本体 出风口相通。
根据权利要求 2所述的空调基座, 其特征在于, 所述出风框第一出风 口以出风角度大于 180°的结构形成在所述出风框的侧面。
根据权利要求 2所述的空调基座, 其特征在于, 所述装配部上形成有 装配部出风口, 所述出风框上形成有位于所述出风框第一出风口与所 述装配部出风口之间的出风框第二出风口, 所述出风框第二出风口与 所述装配部出风口相通。
根据权利要求 2所述的空调基座, 其特征在于, 所述空气处理模块形 成在所述出风框上、 所述出风框进风口与所述出风框第一出风口之间
[权利要求 6] 根据权利要求 5所述的空调基座, 其特征在于, 所述空气处理模块以 可抽拉式结构形成在所述出风框上。
[权利要求 7] 根据权利要求 1所述的空调基座, 其特征在于, 所述空腔内还形成有 电器箱体, 所述装配部上形成有供导线通过的导线幵口, 所述电器箱 体上连接的导线通过所述导线幵口伸出所述基座本体。
[权利要求 8] 根据权利要求 7所述的空调基座, 其特征在于, 所述电器箱体远离所 述本体进风口, 所述电器箱体、 所述本体进风口及所述空气处理模块 围成进风腔。 [权利要求 9] 根据权利要求 7所述的空气基座, 其特征在于, 所述装配部上还形成 有供空调连机管通过的连机管幵口。
[权利要求 10] 根据权利要求 1至 9中任一项所述的空调基座, 其特征在于, 所述基座 本体包括可拆卸式连接的底座和基座主体, 所述装配部形成在所述基 座主体上、 与所述底座相对的另一端, 所述底座和所述装配部之间形 成有基座支撑, 所述基座主体外周形成有包裹所述基座主体的外壳, 所述本体进风口和所述本体出风口均形成在所述外壳上。
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