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    • 1. 发明申请
    • CYCLONIC SEPARATING APPARATUS
    • 循环分离装置
    • WO2006125945A1
    • 2006-11-30
    • PCT/GB2006/001673
    • 2006-05-09
    • DYSON TECHNOLOGY LIMITEDCOURTNEY, Stephen, BenjaminDYSON, JamesGOMICIAGA-PEREDA, Ricardo
    • COURTNEY, Stephen, BenjaminDYSON, JamesGOMICIAGA-PEREDA, Ricardo
    • A47L9/16B04C5/24
    • A47L9/1625A47L9/1633A47L9/1641B04C5/24B04C5/26Y10S55/03
    • Cyclonic separating apparatus according to the invention comprises a first cyclonic separating unit (310, 410; 510) including at least one first cyclone (102; 202; 312; 412; 512), a second cyclonic separating unit (320; 420; 520) located downstream of the first cyclonic separating unit (310, 410; 510) and including a plurality of second cyclones (130; 230; 322; 422; 522) arranged in parallel, and a third cyclonic separating unit (330; 430; 530) located downstream of the second cyclonic separating unit (320; 420; 520) and including a plurality of third cyclones (148; 248; 332; 432; 532) arranged in parallel. The number of second cyclones (130; 230; 322; 422; 522) is higher than the number of first cyclones (102; 202; 312; 412; 512) and the number of third cyclones (148; 248; 332; 432; 532) is higher than the number of second cyclones (130; 230; 322; 422; 522). This provides an apparatus which achieves a higher separation efficiency than known separation apparatus.
    • 根据本发明的旋风分离装置包括包括至少一个第一旋风分离器(102; 202; 312; 412; 512)的第一旋风分离单元(310,410; 510),第二旋风分离单元(320; 420; 520) 位于所述第一旋风分离单元(310,410; 510)的下游并且包括平行设置的多个第二旋风分离器(130; 230; 322; 422; 522)和第三旋风分离单元(330; 430; 530) 位于所述第二旋风分离单元(320; 420; 520)的下游,并且包括并列布置的多个第三旋风分离器(148; 248; 332; 432; 532)。 第二旋风分离器(130; 230; 322; 422; 522)的数量高于第一旋风分离器(102; 202; 312; 412; 512)的数量和第三旋风分离器(148; 248; 332; 432; 532)高于第二旋风分离器(130; 230; 322; 422; 522)的数量。 这提供了一种实现比已知分离装置更高分离效率的装置。
    • 2. 发明申请
    • CYCLONIC SEPARATING APPARATUS
    • 循环分离装置
    • WO2006125944A1
    • 2006-11-30
    • PCT/GB2006/001661
    • 2006-05-08
    • DYSON TECHNOLOGY LIMITEDCOURTNEY, Stephen BenjaminDYSON, JamesGOMICIAGA-PEREDA, Ricardo
    • COURTNEY, Stephen BenjaminDYSON, JamesGOMICIAGA-PEREDA, Ricardo
    • A47L9/16
    • B04C5/26A47L9/1625A47L9/1633A47L9/1641B04C5/28
    • Cyclonic separating apparatus according to the invention comprises a first cyclonic separating unit (310, 410; 510) including at least one first cyclone (102; 202; 312; 412; 512), a second cyclonic separating unit (320; 420; 520) located downstream of the first cyclonic separating unit (310, 410; 510) and including at least one second cyclone (130; 230; 322; 422; 522), and a third cyclonic separating unit (330; 430; 530) located downstream of the second cyclonic separating unit (320; 420; 520) and including a plurality of third cyclones arranged in parallel (148; 248; 332; 432; 532). The separation efficiency of the first cyclonic separating unit (310, 410; 510) is lower than the separation efficiency of the second cyclonic separating unit (320; 420; 520) and the separation efficiency of the second cyclonic separating unit (320; 420; 520) is lower than the separation efficiency of the third separating unit (330; 430; 530). This provides an apparatus which achieves a higher separation efficiency than known separation apparatus.
    • 根据本发明的旋风分离装置包括包括至少一个第一旋风分离器(102; 202; 312; 412; 512)的第一旋风分离单元(310,410; 510),第二旋风分离单元(320; 420; 520) 位于所述第一旋风分离单元(310,410; 510)的下游并且包括至少一个第二旋风分离器(130; 230; 322; 422; 522)和位于所述第一旋风分离单元下游的第三旋风分离单元(330; 430; 第二旋风分离单元(320; 420; 520)并且包括平行布置的多个第三旋风分离器(148; 248; 332; 432; 532)。 第一旋风分离单元(310,410; 510)的分离效率低于第二旋风分离单元(320; 420; 520)的分离效率和第二旋风分离单元(320; 420; 520)的分离效率。 520)比第三分离单元(330; 430; 530)的分离效率低。 这提供了一种实现比已知分离装置更高分离效率的装置。
    • 3. 发明申请
    • CYCLONIC SEPARATING APPARATUS
    • 循环分离装置
    • WO2009004286A1
    • 2009-01-08
    • PCT/GB2008/002107
    • 2008-06-20
    • DYSON TECHNOLOGY LIMITEDGOMICIAGA-PEREDA, RicardoDYSON, JamesORMEROD, Edward, CharlesGRUENIG, John, Lee
    • GOMICIAGA-PEREDA, RicardoDYSON, JamesORMEROD, Edward, CharlesGRUENIG, John, Lee
    • A47L9/16
    • A47L9/1666A47L9/1633B04C5/10B04C5/13B04C5/26Y10S55/03
    • There is provided cyclonic separating apparatus (100) comprising a chamber (112) for separating dirt and dust from an airflow, an inlet (110) to the chamber (112) and a shroud (200). The shroud (200) comprises a wall (200) having a multiplicity of through-holes (208) forming an outlet from the chamber (112), each through-hole (208) having a width and a height, wherein the through-holes (208) have substantially rectangular cross-sections with width to height ratios in the range of 1.5:1 to 1:1.5. The rectangular cross section of the through-holes (208) maximises the available through-hole (208) area in the shroud (200). This results in a low pressure drop across the shroud (200) and reduces the amount of material required for manufacture. Further, this ratio allows the cross-sectional area of the through-holes (208) to be dimensioned to prevent larger particles of dirt and dust from passing through the through-holes (208) in the shroud (200), whilst still providing the required structural integrity.
    • 提供的旋风分离装置(100)包括用于从空气流中分离污垢和灰尘的腔室(112),到腔室的入口(110)和护罩(200)。 护罩(200)包括具有形成从腔室(112)的出口的多个通孔(208)的壁(200),每个通孔(208)具有宽度和高度,其中通孔 (208)具有基本上矩形的横截面,其宽高比在1.5:1至1:1.5的范围内。 通孔(208)的矩形横截面使护罩(200)中的可用通孔(208)区域最大化。 这导致穿过护罩(200)的低压降并且减少制造所需的材料的量。 此外,该比例允许通孔208的横截面面积的尺寸被设计成防止灰尘和灰尘的较大颗粒穿过罩(200)中的通孔208,同时仍然提供 要求结构完整。
    • 4. 发明申请
    • CYCLONIC SEPARATING APPARATUS
    • 循环分离装置
    • WO2009004285A1
    • 2009-01-08
    • PCT/GB2008/002100
    • 2008-06-20
    • DYSON TECHNOLOGY LIMITEDGOMICIAGA-PEREDA, RicardoDYSON, JamesORMEROD, Edward, CharlesGRUENIG, John, Lee
    • GOMICIAGA-PEREDA, RicardoDYSON, JamesORMEROD, Edward, CharlesGRUENIG, John, Lee
    • A47L9/16
    • A47L9/1633A47L9/1666B01D45/06B01D45/12B01D2279/55B04C5/10B04C5/13B04C5/26Y10S55/03
    • The invention provides cyclonic separating apparatus (100) comprising a chamber (112) for separating dirt and dust from an airflow, an inlet (110) to the chamber (112) and a shroud (200). The shroud (200) comprises a wall (202) having an inner surface (206), an outer surface (204) and a multiplicity of through-holes (208) forming an outlet from the chamber (112). Each through-hole (208) has an axis (Z 1 -Z 1 , Z 2 -Z 2 , Z 3 -Z 3 , Z 4 -Z 4 ). The inner surface (206) of the wall (202) has a serrated profile comprising a plurality of serrations (210) arranged around at least a part of the circumference of the wall (202), each serration having a first face (212) and a second face (214). At least one through- hole (208) passes through the first face (212) of at least one serration (210). By providing a plurality of serrations (210) around the inner circumference of the wall (202), the airflow is forced to follow a longer path through each through-hole (208) for when compared to conventional arrangements. This reduces the amount of dirt and dust which is able to pass through the shroud (200).
    • 本发明提供了一种旋风分离装置(100),其包括用于从空气流中分离污垢和灰尘的腔室(112),到室(112)的入口(110)和护罩(200)。 护罩(200)包括具有内表面(206),外表面(204)和形成从腔室(112)的出口的多个通孔(208)的壁(202)。 每个通孔(208)具有轴(Z1-Z1,Z2-Z2,Z3-Z3,Z4-Z4)。 壁(202)的内表面(206)具有锯齿状轮廓,其包括围绕壁(202)的圆周的至少一部分布置的多个锯齿(210),每个锯齿具有第一面(212)和 第二面(214)。 至少一个通孔(208)穿过至少一个锯齿(210)的第一面(212)。 通过围绕壁(202)的内圆周设置多个锯齿(210),当与常规布置相比时,气流被迫沿着穿过每个通孔(208)的较长路径。 这减少了能够穿过护罩(200)的污垢和灰尘的量。
    • 5. 发明申请
    • DIRT AND DUST CYCLONIC SEPARATING APPARATUS
    • DIRT和DUST CYCLONIC分离装置
    • WO2006125946A1
    • 2006-11-30
    • PCT/GB2006/001678
    • 2006-05-09
    • DYSON TECHNOLOGY LIMITEDCOURTNEY, StephenDYSON, JamesGOMICIAGA-PEREDA, Ricardo
    • COURTNEY, StephenDYSON, JamesGOMICIAGA-PEREDA, Ricardo
    • A47L9/16B04C5/28B01D45/16
    • B04C5/26A47L9/1625A47L9/1641B01D45/16B04C5/28Y10S55/03
    • Cyclonic separating apparatus according to the invention comprises a first cyclonic separating unit (310, 410; 510) including at least one first cyclone (102; 202; 312; 412; 512), a second cyclonic separating unit (320; 420; 520) located downstream of the first cyclonic separating unit (310, 410; 510) and including at least one second cyclone (130; 230; 322; 422; 522), and a third cyclonic separating unit (330; 430; 530) located downstream of the second cyclonic separating unit (320; 420; 520) and including at least one third cyclone (148; 248; 332; 432; 532). The separation efficiency of the second cyclonic separating unit (320; 420; 520) is substantially the same as the separation efficiency of either the first cyclonic separating unit (310; 410; 510) or the third separating unit (330; 430; 530). This provides an apparatus which achieves a higher separation efficiency than known separation apparatus.
    • 根据本发明的旋风分离装置包括包括至少一个第一旋风分离器(102; 202; 312; 412; 512)的第一旋风分离单元(310,410; 510),第二旋风分离单元(320; 420; 520) 位于所述第一旋风分离单元(310,410; 510)的下游并且包括至少一个第二旋风分离器(130; 230; 322; 422; 522)和位于所述第一旋风分离单元下游的第三旋风分离单元(330; 430; 第二旋风分离单元(320; 420; 520)并且包括至少一个第三旋风分离器(148; 248; 332; 432; 532)。 第二旋风分离单元(320; 420; 520)的分离效率与第一旋风分离单元(310; 410; 510)或第三分离单元(330; 430; 530)的分离效率基本相同, 。 这提供了一种实现比已知分离装置更高分离效率的装置。
    • 8. 发明申请
    • AUTONOMOUS VACUUM CLEANER
    • 自动真空清洁器
    • WO2012104596A1
    • 2012-08-09
    • PCT/GB2012/050065
    • 2012-01-13
    • DYSON TECHNOLOGY LIMITEDDYSON, JamesGAMMACK, Peter
    • DYSON, JamesGAMMACK, Peter
    • A47L9/16
    • A47L9/1625A47L9/1633A47L9/1641A47L2201/00A47L2201/04
    • An autonomous vacuum cleaner (10) comprising a chassis (12), traction means (14) for supporting the vacuum cleaner on a surface, drive means for driving the traction means and a control system configured to control the drive means to guide the vacuum cleaner across a surface to be cleaned. The vacuum cleaner further includes a cleaner head (22) 50 having a dirty air inlet facing the surface to be cleaned and a separating apparatus (51) carried by the chassis and communicating with the cleaner head in order to separate debris from an airflow entering the separating apparatus via the dirty air inlet. The separating apparatus (51) comprises a first upstream cyclone (74) and a plurality of second cyclones (72) arranged in parallel with one another and located downstream of the first cyclone.
    • 一种自主真空吸尘器(10),包括底盘(12),用于在表面上支撑真空吸尘器的牵引装置(14),用于驱动牵引装置的驱动装置和被配置为控制驱动装置以引导真空吸尘器 穿过待清洁的表面。 真空吸尘器还包括具有面向待清洁表面的脏空气入口的清洁器头部(22)和由底盘承载并与清洁器头部连通的分离设备(51),以便将碎屑与进入 分离装置通过脏空气入口。 分离装置(51)包括第一上游旋风分离器(74)和彼此平行设置并位于第一旋风分离器下游的多个第二旋流器(72)。