WO2017152598A1 - 高油漆扑捉率的喷房系统 - Google Patents

高油漆扑捉率的喷房系统 Download PDF

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Publication number
WO2017152598A1
WO2017152598A1 PCT/CN2016/097612 CN2016097612W WO2017152598A1 WO 2017152598 A1 WO2017152598 A1 WO 2017152598A1 CN 2016097612 W CN2016097612 W CN 2016097612W WO 2017152598 A1 WO2017152598 A1 WO 2017152598A1
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Prior art keywords
chamber
spray booth
liquid
paint
venturi
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PCT/CN2016/097612
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English (en)
French (fr)
Inventor
孟杰
李林荣
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四维尔丸井(广州)汽车零部件有限公司
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Publication of WO2017152598A1 publication Critical patent/WO2017152598A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B16/00Spray booths

Definitions

  • the invention relates to the field of automobile spraying, in particular to a spray booth system with high paint capture rate.
  • the traditional water curtain cabinet type spray booth has a relatively low catch rate of paint mist when spraying, and the exhaust gas discharge under low paint mist capture rate has a large pollution to the air.
  • a spray booth system with high paint capture rate comprising a spray booth, a Venturi component, a liquid inlet device, a first separating plate, a wind supply device and a suction device, the Venturi component having a Venturi mouth;
  • the spray booth has a spray booth, a first chamber, a second chamber, and a support plate for supporting the object to be sprayed; the spray booth is used for spraying the object; the first chamber and the spray booth pass through The support plate is connected, the support plate has a plurality of ventilation holes, and the air supply device is located in the painting booth for conveying the paint mist generated in the paint booth to the first by wind pressure generated by the air supply a chamber; the liquid inlet device is connected to the first chamber for feeding liquid into the first chamber; the second chamber has a liquid outlet and an air outlet, and the air outlet is covered Said first separating plate;
  • the first chamber is in communication with the second chamber through the Venturi component, and the Venturi section of the Venturi component is used to input the liquid inlet device into the liquid and chamber of the first chamber
  • the paint mist is mixed to form a spray paint stream
  • the air suction device is connected to the air outlet for sucking the paint flow in the second chamber through the air outlet; the paint flow is subjected to gas-liquid separation through the first separation plate The separated gas enters the suction device, and the separated liquid is discharged through the liquid outlet.
  • a second separating plate is further included, and the spray booth further has a third chamber.
  • the third chamber is communicated with the second chamber through the second separating plate, and a part of the gas is separated from the second separating plate by gas-liquid separation. Entering the third chamber.
  • the first chamber is located above the second chamber and the third chamber, and the second chamber and the third chamber are sequentially arranged side by side in a lateral direction.
  • the second separating plate is vertically disposed.
  • the water baffle is located in the second chamber, the water baffle is spaced apart from the first separating plate, and the water baffle is In parallel with the first separating plate, the top of the water deflecting plate is lower than the top of the first separating plate.
  • the liquid outlet is disposed at a bottom of the second chamber, and the air outlet is disposed at a sidewall of the second chamber.
  • the air supply means is located at the top of the spray booth.
  • a liquid circulation device having a circulation component and a purification component
  • the purifying member and the circulating member are sequentially sequentially connected between the liquid outlet and the first chamber for purifying and circulating the liquid discharged from the liquid outlet into the liquid inlet device .
  • the liquid circulation device further includes an overflow tank communicating between the circulation member and the liquid inlet device, the overflow tank being introduced into the liquid through the overflow Said in the liquid inlet device.
  • a gas circulation device connected between the air outlet and the air supply device for circulating gas discharged from the air outlet to the air supply Inside the device.
  • the spray booth system with high paint capture rate is provided with a spray booth, a Venturi component having a Venturi mouth, a liquid circulation device, a first separation plate, a supply air device, and a suction device.
  • the air supply device mixes the airflow in the painting booth with the paint mist generated by the spraying, and the gas containing the paint mist in the painting booth is uniformly delivered into the first chamber.
  • the liquid inlet device is introduced into the first chamber of the spray booth.
  • the air suction device causes the airflow and the paint mist to not spread to the surroundings, and the liquid mixed by the suction, compression and liquid inlet device flows into the Venturi mouth; and the liquid of the liquid inlet device is sucked by the gravity and the suction device.
  • the compressed gas stream is mixed into the Venturi mouth.
  • the mixed paint mist is cleaned and dissolved by the Venturi crepe, and the paint mist is thoroughly dissolved and cleaned by the liquid, and the generated paint flow is separated by gas and liquid through the first separation plate to generate a clean airflow to complete the entire high paint capture process.
  • the spray booth system with high paint capture rate of the invention has high paint fog capture rate, and the paint mist capture rate is above 97%, reducing paint fog rebound to produce poor production, improving production efficiency, and reducing production cost. Wait.
  • FIG. 1 is a schematic view of a spray booth system with a high paint capture rate according to an embodiment of the present invention.
  • Spray booth system with high paint capture rate 100, spray booth; 110, first chamber; 120, second chamber; 121, air outlet; 122, liquid outlet; 130, third chamber; , spray booth; 150, support plate; 200, Venturi components; 300, liquid inlet device; 400, overflow trough; 510, first separation plate; 520, second separation plate; 600, water retaining plate; Wind device; 800, suction device.
  • this embodiment discloses a spray booth system 10 having a high paint capture rate.
  • the spray booth system 10 of the high paint capture rate includes a spray booth 100, a Venturi component 200, a liquid inlet device 300, and a first The separating plate 510, the second separating plate 520, the air supply device 700, and the suction device 800.
  • the Venturi component 200 uses the Venturi effect.
  • the principle of the Venturi effect is that when the wind blows over the barrier, the air pressure is relatively low near the port above the leeward side of the barrier, thereby causing adsorption and causing air flow.
  • the Venturi component 200 is similar to a venturi, and the Venturi component 200 has a Venturi mouth.
  • the principle of the venturi is to make the gas flow from coarse to fine to speed up the gas flow, so that the gas forms a "vacuum" zone on the back side of the venturi outlet.
  • the Venturi component 200 is a component.
  • the spray booth 100 has a first chamber 110, a second chamber 120, a third chamber 130, a spray booth 140, and a support plate 150.
  • the first chamber 110 is located above the second chamber 120 and the third chamber 130.
  • the spray booth 140 is located above the first chamber 110.
  • the second chamber 120 and the third chamber 130 are sequentially arranged side by side in the lateral direction.
  • the spray booth 140 is in communication with the first chamber 110 through a support plate 150.
  • a plurality of vent holes are evenly distributed on the support plate.
  • the support plate 150 is horizontally disposed, and the upper surface of the support plate 150 (the side facing the spray booth 140) is used for placing the object to be sprayed, that is, the spray booth 140 is used for spraying the object to be sprayed, such as an automobile, a jig, or the like that requires painting.
  • the air supply device 700 is located at the top of the spray booth 140 for conveying the paint mist in the spray booth 140 into the first chamber 110 through the vent holes on the support plate 150 by generating wind pressure.
  • the liquid inlet device 300 is in communication with the first chamber 110 for infusion into the first chamber 110.
  • the feed source of the liquid inlet device 300 can be water or other liquid capable of dissolving the paint.
  • the Venturi component 200 is located within the spray booth 100 and the first chamber 110 is in communication with the second chamber 120 through the Venturi component 200.
  • the Venturi port 200 of the Venturi component is used to mix the liquid introduced into the first chamber 110 by the liquid inlet device 300 with the paint mist to form a paint flow.
  • the second chamber 120 has a liquid outlet 122 and an air outlet 121.
  • the liquid outlet 122 is disposed at the bottom of the second chamber 120.
  • the air outlet 121 is disposed on the side wall of the second chamber 120.
  • the air outlet 121 is covered with a first separating plate 510.
  • the first separating plate 510 is vertically disposed within the second chamber 120 such that the air outlet 121 is spaced apart from the Venturi component 200.
  • the suction device 800 is connected to the spray booth 100 and communicates with the air outlet 121 for sucking the paint flow in the second chamber 120 through the air outlet 121.
  • the paint flow is gas-liquid separated by the first separation plate 510, and the separated gas enters the suction device 800 through the air outlet 121, and the separated liquid is discharged through the liquid outlet 122.
  • the third chamber 130 and the second chamber 120 communicate with each other through the second separating plate 520 for recovering the exhaust gas in the second chamber 120, that is, a part of the paint flow in the second chamber 120 passes through the second separating plate. After the gas-liquid separation of 520, a portion of the gas enters the third chamber 130, and the gas entering the third chamber 130 can be used in other gas circulation devices.
  • a liquid circulation device is further included, and the liquid circulation device has a circulation member and a purification member.
  • the purifying member and the circulating member are sequentially connected between the liquid outlet 122 and the first chamber 110 in order to purify and circulate the liquid discharged from the liquid outlet 122 into the liquid inlet device 300.
  • the liquid circulation device also includes an overflow tank 400 that communicates between the circulation member and the liquid inlet device 300. The overflow tank 400 is introduced into the liquid inlet device by overflow.
  • a water deflector 600 is further included.
  • the water deflector 600 is located within the second chamber 120. There is a gap between the water deflector 600 and the first separating plate 510, and the water blocking plate 600 is parallel to the first separating plate 510.
  • the top of the flap 600 is lower than the top of the first separating plate 510.
  • a gas circulation device is also included.
  • the gas circulation device is connected between the air outlet 121 and the air supply device 700 for circulating the gas discharged from the air outlet 121 into the air supply device 700.
  • the spray booth system 10 of the high paint capture rate is provided with a spray booth 100, a Venturi component 200, a liquid circulation device, a first separation plate 510, a air supply device 700, and a suction device 800.
  • the air supply device 700 mixes the airflow in the painting booth 140 with the paint mist generated by the spraying, and the gas containing the paint mist in the painting booth 140 is uniformly delivered into the first chamber 110.
  • the liquid inlet device 300 is introduced into the first chamber 110 of the spray booth 100.
  • the suction device 800 causes the airflow and the paint mist to not spread to the surroundings, and the liquid mixed by the suction and compression and the liquid inlet device 300 is mixed into the Venturi mouth of the venturi component 200; and the liquid of the liquid inlet device 300 is gravity and sucked.
  • the wind device 800 is pumped into the Venturi mouth of the Wen's component 200 in combination with the paint mist and compressed air flow.
  • the mixed paint mist is cleaned and dissolved by the Venturi mouth of the Venturi component 200, and the paint mist is thoroughly dissolved and cleaned by the liquid, and the generated paint flow is separated by gas and liquid through the first separation plate 510, thereby generating a clean airflow discharge, completing the entire height. Paint capture process.
  • the spray booth system 10 with high paint capture rate according to the invention has a high paint fog capture rate, and the paint mist capture rate is above 97%, which reduces paint fog rebound and produces poor production, improves production efficiency, and reduces production. Cost, etc.

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  • Details Or Accessories Of Spraying Plant Or Apparatus (AREA)

Abstract

一种高油漆扑捉率的喷房系统。该系统包括喷房(100)、文氏部件(200)、进液装置(300)、第一分离板(510)、供风装置(700)以及吸风装置(800),文氏部件(200)具有文氏吼口。喷房(100)具有喷漆室(140)、第一腔室(110)、第二腔室(120)以及用于支撑待喷物件的支撑板(150);喷漆室(140)用于喷涂物件;第一腔室(110)与喷漆室(140)通过支撑板(150)连通,支撑板(150)具有多个通风孔,供风装置(700) 用于将喷漆室(140)内产生的漆雾输送至第一腔室(110)内;进液装置(300)用于进液至第一腔室(110)内;第二腔室(120)具有出液口(122)以及出风口(121),出风口(121)覆盖有第一分离板(510);文氏吼口用于将进液装置(300)进入的液体与漆雾混合形成喷漆流;吸风装置(700)用于通过出风口(121)对第二腔室(120)内的喷漆流进行抽吸;喷漆流通过第一分离板(510)进行气液分离。该喷房系统漆雾扑捉率高。

Description

高油漆扑捉率的喷房系统 技术领域
本发明涉及汽车喷涂领域,特别是涉及一种高油漆扑捉率的喷房系统。
背景技术
目前在汽车零部件自动化涂装领域中,传统的水帘柜式喷房对喷涂时的漆雾的捕捉率相对较差,同时低漆雾捕捉率下的废气排放对空气有较大的污染。
发明内容
基于此,有必要提供一种漆雾扑捉率高、对空气污染小的高油漆扑捉率的喷房系统。
一种高油漆扑捉率的喷房系统,包括喷房、文氏部件、进液装置、第一分离板、供风装置以及吸风装置,所述文氏部件带有文氏吼口;
所述喷房具有喷漆室、第一腔室、第二腔室以及用于支撑待喷物件的支撑板;所述喷漆室用于喷涂物件;所述第一腔室与所述喷漆室通过所述支撑板连通,所述支撑板上具有多个通风孔,所述供风装置位于所述喷漆室内以用于通过供风产生风压将所述喷漆室内产生的漆雾输送至所述第一腔室内;所述进液装置连通于所述第一腔室以用于进液至所述第一腔室内;所述第二腔室具有出液口以及出风口,所述出风口覆盖有所述第一分离板;
所述第一腔室与所述第二腔室通过所述文氏部件连通,所述文氏部件的文氏吼口用于将所述进液装置输入所述第一腔室内的液体与所述漆雾混合形成喷漆流;
所述吸风装置连通于所述出风口以用于通过所述出风口对所述第二腔室内的所述喷漆流进行抽吸;所述喷漆流通过所述第一分离板进行气液分离,分离后的气体进入所述吸风装置内,分离后的液体通过所述出液口排出。
在其中一个实施例中,还包括第二分离板,所述喷房还具有第三腔室, 所述第三腔室与所述第二腔室之间通过所述第二分离板连通,所述第二腔室内的部分喷漆流通过所述第二分离板的气液分离后,其中部分气体进入所述第三腔室内。
在其中一个实施例中,所述第一腔室位于所述第二腔室以及所述第三腔室的上方,所述第二腔室以及所述第三腔室依次横向并排排列。
在其中一个实施例中,所述第二分离板竖直设置。
在其中一个实施例中,还包括挡水板,所述挡水板位于所述第二腔室内,所述挡水板与所述第一分离板之间具有间隔,且所述述挡水板与所述第一分离板平行,所述挡水板的顶部低于所述第一分离板的顶部。
在其中一个实施例中,所述出液口设置在所述第二腔室的底部,所述出风口设置在所述第二腔室的侧壁。
在其中一个实施例中,所述供风装置位于所述喷漆室的顶部。
在其中一个实施例中,还包括液体循环装置,所述液体循环装置具有循环部件及净化部件;
所述净化部件以及所述循环部件依次顺序连通在所述出液口以及所述第一腔室之间,以用于将所述出液口排出的液体净化并循环至所述进液装置内。
在其中一个实施例中,所述液体循环装置还包括溢流槽,所述溢流槽连通在所述循环部件与所述进液装置之间,所述溢流槽通过溢流进液至所述进液装置内。
在其中一个实施例中,还包括气体循环装置,所述气体循环装置连通在所述出风口与所述供风装置之间,以用于将所述出风口排出的气体循环至所述供风装置内。
本发明涉及的高油漆扑捉率的喷房系统,设置了喷房、具有文氏吼口的文氏部件、液体循环装置、第一分离板、供风装置以及吸风装置。供风装置使喷漆室内的气流与喷涂产生的漆雾混合,喷漆室内的包含有漆雾的气体均匀输送至第一腔室内。所述进液装置进液至喷房的第一腔室内。吸风装置使得气流与漆雾不向四周扩散,经过抽吸、压缩与进液装置输入的液体混合流向文氏吼口内;同时进液装置的液体在重力和吸风装置抽吸作用下与漆雾及 压缩气流混合一起流入文氏吼口内。通过文氏吼口把混合的漆雾经过清洗溶解,漆雾经过液体充分溶解清洗,产生的喷漆流通过第一分离板气液分离,产生较干净气流排出,完成整个高油漆扑捉过程。本发明涉及的高油漆扑捉率的喷房系统,具有高漆雾扑捉率,漆雾扑捉率在97%以上,减少漆雾反弹对涂装不良产生,提升生产效率,同时降低生产成本等。
附图说明
图1为本发明一实施例高油漆扑捉率的喷房系统示意图。
附图标记说明
10、高油漆扑捉率的喷房系统;100、喷房;110、第一腔室;120、第二腔室;121、出风口;122、出液口;130、第三腔室;140、喷漆室;150、支撑板;200、文氏部件;300、进液装置;400、溢流槽;510、第一分离板;520、第二分离板;600、挡水板;700、供风装置;800、吸风装置。
具体实施方式
为了便于理解本发明,下面将参照相关附图对本发明进行更全面的描述。附图中给出了本发明的较佳实施例。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施例。相反地,提供这些实施例的目的是使对本发明的公开内容的理解更加透彻全面。
需要说明的是,当元件被称为“固定于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。
除非另有定义,本文所使用的所有的技术和科学术语与属于本发明的技术领域的技术人员通常理解的含义相同。本文中在本发明的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本发明。本文所使用的术语“和/或”包括一个或多个相关的所列项目的任意的和所有的组合。
参见图1所示,本实施例公开了一种高油漆扑捉率的喷房系统10。该高油漆扑捉率的喷房系统10包括喷房100、文氏部件200、进液装置300、第一 分离板510、第二分离板520、供风装置700以及吸风装置800。文氏部件200采用的是文丘里效应,文丘里效应的原理则是当风吹过阻挡物时,在阻挡物的背风面上方端口附近气压相对较低,从而产生吸附作用并导致空气的流动。文氏部件200类似于文氏管,文氏部件200具有文氏吼口。文氏管的原理是把气流由粗变细,以加快气体流速,使气体在文氏管出口的后侧形成一个“真空”区。在本发明申请中,文氏部件200为一个部件。
喷房100具有第一腔室110、第二腔室120、第三腔室130、喷漆室140以及支撑板150。第一腔室110位于第二腔室120、第三腔室130的上方。喷漆室140位于第一腔室110的上方。第二腔室120、第三腔室130依次横向并排排列。喷漆室140与第一腔室110之间通过支撑板150连通。支撑板上均匀分布有多个通风孔。支撑板150水平设置,支撑板150的上表面(朝向喷漆室140的一面)用于放置待喷物件,也即喷漆室140用于待喷物件的喷涂,如汽车、夹具等需要喷漆的物件。
供风装置700位于喷漆室140的顶部,用于通过产生风压将喷漆室140内的漆雾通过支撑板150上的通风孔输送至第一腔室110内。
进液装置300连通于第一腔室110以用于进液至第一腔室110内。进液装置300进液来源可以是水或者是其他能够溶解油漆的液体。
文氏部件200位于喷房100内,且第一腔室110与第二腔室120通过文氏部件200连通。文氏部件的文氏吼口200用于将进液装置300输入第一腔室110内的液体与漆雾混合形成喷漆流。第二腔室120具有出液口122以及出风口121。出液口122设置在第二腔室120的底部。出风口121设置在第二腔室120侧壁。
出风口121覆盖有第一分离板510。在本实施例中,第一分离板510竖直设置在第二腔室120内,以使得出风口121与文氏部件200分隔开来。
吸风装置800连接于喷房100且连通于出风口121以用于通过出风口121对第二腔室120内的喷漆流进行抽吸。喷漆流通过第一分离板510进行气液分离,分离后的气体通过出风口121进入吸风装置800内,分离后的液体通过出液口122排出。
第三腔室130与第二腔室120之间通过第二分离板520连通,以用于回收第二腔室120内的废气,也即第二腔室内120的部分喷漆流通过第二分离板520的气液分离后,其中部分气体进入第三腔室130内,进入第三腔室130内的气体可用于其他气体循环设备中。
在本实施例中,还包括液体循环装置,液体循环装置具有循环部件及净化部件。净化部件以及循环部件依次顺序连通在出液口122以及第一腔室110之间,以用于将出液口122排出的液体净化并循环至进液装置300内。液体循环装置还包括溢流槽400,溢流槽400连通在循环部件与进液装置300之间。溢流槽400通过溢流进液至进液装置内。
在本实施例中,还包括挡水板600。挡水板600位于第二腔室120内。挡水板600与第一分离板510之间具有间隔,且述挡水板600与第一分离板510平行。挡水板600的顶部低于第一分离板510的顶部。
在本实施例中,还包括气体循环装置。气体循环装置连接在出风口121与供风装置700之间,以用于将出风口121排出的气体循环至供风装置700内。
本发明涉及的高油漆扑捉率的喷房系统10,设置了喷房100、文氏部件200、液体循环装置、第一分离板510、供风装置700以及吸风装置800。供风装置700使喷漆室140内的气流与喷涂产生的漆雾混合,喷漆室140内的包含有漆雾的气体均匀输送至第一腔室110内。所述进液装置300进液至喷房100的第一腔室110内。吸风装置800使得气流与漆雾不向四周扩散,经过抽吸、压缩与进液装置300输入的液体混合流向文氏部件200的文氏吼口内;同时进液装置300的液体在重力和吸风装置800抽吸作用下与漆雾及压缩气流混合一起流入文氏部件200的文氏吼口内。通过文氏部件200的文氏吼口把混合的漆雾经过清洗溶解,漆雾经过液体充分溶解清洗,产生的喷漆流通过第一分离板510气液分离,产生较干净气流排出,完成整个高油漆扑捉过程。本发明涉及的高油漆扑捉率的喷房系统10,具有高漆雾扑捉率,漆雾扑捉率在97%以上,减少漆雾反弹对涂装不良产生,提升生产效率,同时降低生产成本等。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种喷房系统,其特征在于,包括喷房、文氏部件、进液装置、第一分离板、供风装置以及吸风装置,所述文氏部件带有文氏吼口;
    所述喷房具有喷漆室、第一腔室、第二腔室以及用于支撑待喷物件的支撑板;所述喷漆室用于喷涂物件;所述第一腔室与所述喷漆室通过所述支撑板连通,所述支撑板上具有多个通风孔,所述供风装置位于所述喷漆室内以用于通过供风产生风压将所述喷漆室内产生的漆雾输送至所述第一腔室内;所述进液装置连通于所述第一腔室以用于进液至所述第一腔室内;所述第二腔室具有出液口以及出风口,所述出风口覆盖有所述第一分离板;
    所述第一腔室与所述第二腔室通过所述文氏部件连通,所述文氏部件的文氏吼口用于将所述进液装置输入所述第一腔室内的液体与所述漆雾混合形成喷漆流;
    所述吸风装置连通于所述出风口以用于通过所述出风口对所述第二腔室内的所述喷漆流进行抽吸;所述喷漆流通过所述第一分离板进行气液分离,分离后的气体进入所述吸风装置内,分离后的液体通过所述出液口排出。
  2. 根据权利要求1所述的喷房系统,其特征在于,还包括第二分离板,所述喷房还具有第三腔室,所述第三腔室与所述第二腔室之间通过所述第二分离板连通,所述第二腔室内的部分喷漆流通过所述第二分离板的气液分离后,其中部分气体进入所述第三腔室内。
  3. 根据权利要求2所述的喷房系统,其特征在于,所述第一腔室位于所述第二腔室以及所述第三腔室的上方,所述第二腔室以及所述第三腔室依次横向并排排列。
  4. 根据权利要求3所述的喷房系统,其特征在于,所述第二分离板竖直设置。
  5. 根据权利要求1所述的喷房系统,其特征在于,还包括挡水板,所述挡水板位于所述第二腔室内,所述挡水板与所述第一分离板之间具有间隔,且所述述挡水板与所述第一分离板平行,所述挡水板的顶部低于所述第一分离板的顶部。
  6. 根据权利要求1-5任意一项所述的喷房系统,其特征在于,所述出液口设置在所述第二腔室的底部,所述出风口设置在所述第二腔室的侧壁。
  7. 根据权利要求1-5任意一项所述的喷房系统,其特征在于,所述供风装置位于所述喷漆室的顶部。
  8. 根据权利要求1-5任意一项所述的喷房系统,其特征在于,还包括液体循环装置,所述液体循环装置具有循环部件及净化部件;
    所述净化部件以及所述循环部件依次顺序连通在所述出液口以及所述第一腔室之间,以用于将所述出液口排出的液体净化并循环至所述进液装置内。
  9. 根据权利要求8所述的喷房系统,其特征在于,所述液体循环装置还包括溢流槽,所述溢流槽连通在所述循环部件与所述进液装置之间,所述溢流槽通过溢流进液至所述进液装置内。
  10. 根据权利要求1-5任意一项所述的喷房系统,其特征在于,还包括气体循环装置,所述气体循环装置连通在所述出风口与所述供风装置之间,以用于将所述出风口排出的气体循环至所述供风装置内。
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