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公开(公告)号:US20100243101A1
公开(公告)日:2010-09-30
申请号:US12377391
申请日:2007-09-07
Applicant: Tomohiro Matsumoto
Inventor: Tomohiro Matsumoto
CPC classification number: B05B12/1463 , B05B3/1064 , B05B5/0407 , B05B5/0415 , B05B5/0426 , B05B5/1616 , B05B5/1675 , B05B13/0431 , G01F11/023 , G01F11/029 , G01F11/06
Abstract: A quantitation setup mechanism (58) is composed of a piston (62) which is incorporated into a quantitation tank (61) to define therein a metering chamber (63), a quantitation setup portion (65) for presetting a quantity of paint replenishment, and a sensor (66) adapted to detect a displacement of the piston (62) preset by the quantitation setup portion (65). In this instance, paint is replenished into a paint chamber (19) of a cartridge (16) by means of a paint feed mechanism (32). In the course of the paint replenishment, an equivalent amount of an extruding liquid is displaced and discharged from an extruding liquid chamber (20). The displaced extruding liquid is introduced into the metering chamber (63) of the quantitation setup mechanism (58), detecting a quantity of displacement of the extruding liquid by replenished paint by the sensor (66) through the piston (62) to exactly quantitate the paint replenishment.
Abstract translation: 定量装置机构(58)由活塞(62)组成,该活塞(62)被结合到定量罐(61)中以在其中限定计量室(63),定量设置部分(65)用于预设一定量的涂料补充, 以及适于检测由所述定量设定部分(65)预设的活塞(62)的位移的传感器(66)。 在这种情况下,油漆通过涂料供给机构(32)补充到料盒(16)的油漆室(19)中。 在补充涂料的过程中,等量的挤出液从挤压液体室(20)中移出并排出。 移出的挤出液被引入到定量设定机构(58)的计量室(63)中,通过传感器(66)通过活塞(62)补充涂料来检测挤压液体的位移量,以精确定量 油漆补充。
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公开(公告)号:US20100230511A1
公开(公告)日:2010-09-16
申请号:US12161249
申请日:2007-02-06
Applicant: Tokuo Umezawa , Hidetsugu Matsuda , Masaharu Kuromoto , Yutaka Sakata
Inventor: Tokuo Umezawa , Hidetsugu Matsuda , Masaharu Kuromoto , Yutaka Sakata
CPC classification number: B05B12/1463 , B05B5/0407 , B05B5/0426 , B05B5/1625 , B05B5/1675 , B05B13/0431 , B05B13/0452 , B05B15/555 , B05B15/62 , B05B16/95 , B25J9/0084 , B25J9/0093 , B25J15/0491
Abstract: A common body (15) of a coater unit (14) is mounted on a robot device (13). A common body gripper (33) is fixedly mounted on a fixed plate (32) of an atomizing head changing and washing device (31). At the time of replacing a used atomizing head (19′) and a used paint cartridge (24′) by a washed atomizing head (19) and a replenished paint cartridge (24), respectively, the common body (15) is gripped and located in a predetermined position by the common body gripper (33). When the common body (15) is gripped by the common body gripper (33), the robot device (13) is put in a reduced power mode attenuating driving forces to leave said common body (15) in a freely movable state by application of an external force.
Abstract translation: 涂布机单元(14)的共同体(15)安装在机器人装置(13)上。 普通人体夹持器(33)固定地安装在雾化头更换和清洗装置(31)的固定板(32)上。 在通过洗涤的雾化头(19)和补充的涂料盒(24)分别更换用过的雾化头(19')和使用的涂料盒(24')时,共同体(15)被夹持, 通过公共体夹持器(33)位于预定位置。 当公共体(15)被公共体夹持器(33)夹持时,机器人装置(13)被置于减弱驱动力的减小功率模式中,以使所述共同体(15)通过应用 外力。
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公开(公告)号:US20090020635A1
公开(公告)日:2009-01-22
申请号:US11814090
申请日:2006-03-09
Applicant: Shinichi Yasuda
Inventor: Shinichi Yasuda
CPC classification number: B05B5/04 , B05B3/001 , B05B3/1064 , B05B5/001 , B05B5/0407 , B05B5/0415 , B05B5/0426 , B05B13/0431
Abstract: A rotary atomizing-head type coating machine, wherein a paint passage for flowing a paint to a rotary atomizing-head, a turbine air passage flowing a turbine air to the turbine of an air motor, a discharge air passage for flowing the turbine air after driving the turbine to the outside in the form of a discharge air, and a heat insulating air discharge passage of a heat insulated air passage axially extending while surrounding the discharge air passage and allowing hot heat insulated air to flow therein are formed in the bottom part of a housing body forming a housing. Thus, even if the turbine air expanded in a heat insulated state and reduced in temperature flows in the discharge air passage, the housing can be prevented from being cooled by the discharge air by flowing a heat insulated air with a temperature higher than that of the discharge air in the heat insulated air discharge passage.
Abstract translation: 一种旋转雾化头型涂布机,其特征在于,将涂料流向旋转雾化头,将涡轮空气流向空气马达的涡轮的涡轮空气通道,用于使涡轮空气流过的排气通道, 将涡轮机以排气的形式驱动到外部,并且在包围排气通道并且允许热绝热空气流动的同时轴向延伸的绝热空气通道的隔热空气排出通道形成在底部 形成壳体的壳体。 因此,即使在绝热状态膨胀并且温度降低的涡轮机空气在排出空气通道中流动,也可以通过使隔热空气的温度高于 在绝热空气排出通道中排出空气。
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公开(公告)号:US6164561A
公开(公告)日:2000-12-26
申请号:US380586
申请日:1999-09-09
Applicant: Osamu Yoshida , Hidetsugu Matsuda , Toshio Hosoda
Inventor: Osamu Yoshida , Hidetsugu Matsuda , Toshio Hosoda
CPC classification number: B05B3/10 , B05B3/1092 , B05B5/0415 , B05B5/0426 , B05B5/1625 , B05B5/1691 , B05B9/047 , B05B12/1463
Abstract: By provision of paint cartridges of different colors which are detachably mounted on a coating system, the paint can be changed from one color to another in a multi-color coating operation without necessitating to discharge residues of a previous color. The paint cartridge of each color is replaceably mounted on a housing. Each cartridge is provided with a paint valve (46) which functions to communicate and shut off a paint supply passage in a feed tube. In addition, a thinner valve which serves to communicate and shut off a thinner passage on the housing is provided either on the side of the housing or on the side of the cartridge. These arrangements make it possible to cope with multiple color changes on one coating system. Since both of the paint valve and thinner valve are opened and closed by spray-on and spray-off command signals, respectively, the paint spray can be turned on and off immediately in response to these command signals.
Abstract translation: PCT No.PCT / JP98 / 05993 Sec。 371 1999年9月9日第 102(e)1999年9月9日PCT PCT 1998年12月28日PCT公布。 公开号WO99 / 36182 日期1999年7月22日通过提供可拆卸地安装在涂料体系上的不同颜色的油漆盒,油漆可以在多色涂布操作中从一种颜色变为另一种颜色,而不需要排出先前颜色的残留物。 每种颜色的油漆盒可更换地安装在外壳上。 每个墨盒都设有一个喷漆阀(46),用于连通和关闭进料管中的涂料供应通道。 此外,用于连通和切断壳体上的较薄通道的更薄的阀门设置在壳体的侧面或者在盒的侧面上。 这些布置使得可以在一个涂层系统上应对多种颜色变化。 由于分别通过喷雾和喷雾指令信号打开和关闭涂料阀和较薄的阀,因此可以根据这些命令信号立即打开和关闭喷漆。
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公开(公告)号:US11154883B2
公开(公告)日:2021-10-26
申请号:US16335341
申请日:2018-08-16
Applicant: ABB K.K.
Inventor: Yukio Yamada
Abstract: A shield member (14) is provided on an outer peripheral side of a front surface section (9D) of a shaping air spurting member (9) and is formed of an annular body radially extending to shield electric flux lines traveling toward rotary atomizing head (4) from each of electrodes (6C) in an external electrode member (6). A tubular insulating member (15) formed of an insulating material covering an outer peripheral surface (9B) of the shaping air spurting member (9) is provided on an outer peripheral side of the shaping air spurting member (9). Further, a discharge buffering member (16) formed of an annular self-returning insulator or semi-conductive material is provided in a position where the shield member (14) is separated from the insulating member (15) between the shield member (14) and the insulating member (15).
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公开(公告)号:US09808814B2
公开(公告)日:2017-11-07
申请号:US14402770
申请日:2013-05-15
Applicant: ABB K.K.
Inventor: Yukio Yamada
CPC classification number: B05B5/057 , B05B5/025 , B05B5/0403 , B05B5/0407 , B05B5/0426 , B05B12/20 , H01B13/0026
Abstract: A rotary atomizing head (4) is mounted on a front end side of an air motor (3). A shaping air ring (9) with air spout holes (10, 11) formed therein is provided on the rear side of the rotary atomizing head (4). The shaping air ring (9) is formed of a conductive material and is connected to ground. External electrode units (13) are provided in the periphery of the rotary atomizing head (4). A film cover (17) made of an insulating material is provided to cover an outer peripheral side of the air motor (3). A semi conductive member (21) is replaceably mounted to an adaptor (16) provided on an outer peripheral side of the shaping air ring (9). A rear end part (21B) of the semi conductive member (21) is made in contact with a front end part (19D) of the film cover (17). A front end part (21C) of the semi conductive member (21) is made in contact with the shaping air ring (9).
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公开(公告)号:US09687865B2
公开(公告)日:2017-06-27
申请号:US14608580
申请日:2015-01-29
Applicant: ABB K.K.
Inventor: Yukio Yamada
CPC classification number: B05B5/0535 , B05B3/1064 , B05B5/0403 , B05B5/0407 , B05B5/0426 , B05B5/0533 , B05B5/057 , B05B15/50
Abstract: A rotary atomizing head (4) is mounted on a fore end side of a motor (3). A shaping air ring (9) having a plurality of air outlet holes (10) at fixed intervals is provided on a rear side of the rotary atomizing head (4). Outer surfaces of the air motor (3) and outer surfaces of the shaping air ring (9) are enshrouded over the entire circumference by a cover member (7) formed of an electrically insulating material. An external electrode assembly (13) is provided radially outwardly of the cover member (7). An annular projecting portion (16) which projects forward is provided on the shaping air ring (9) over the entire circumference. The air outlet holes (10) are open in a fore distal end of this annular projecting portion (16). As a result, a corona discharge can be generated by allowing an electric field to be concentrated at the fore distal end of the annular protecting portion (16).
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公开(公告)号:US20160067724A1
公开(公告)日:2016-03-10
申请号:US14944794
申请日:2015-11-18
Applicant: ABB K.K.
Inventor: Kuniharu YAMAUCHI
IPC: B05B3/10
CPC classification number: B05B3/1092 , B05B3/001 , B05B3/1014 , B05B3/1035 , B05B3/1064 , B05B5/001 , B05B5/0415 , B05B5/0426
Abstract: A bearing air passage through which bearing air is supplied toward an air bearing of an air motor and a turbine air passage through which driving air is supplied toward a turbine are provided in a housing. An annular space surrounding the air motor is provided between the housing and a cover. A bearing air branch passage connecting the annular space and the bearing air passage to each other and a turbine air branch passage for connecting the annular space and the turbine air passage to each other are provided. The air branch passages lead a part of the compressed air to the annular space and keep the cover in a heated state.
Abstract translation: 轴承空气通道,通过该轴承空气通道朝向气动马达的空气轴承供应轴承空气通道,并且在壳体中设置有向涡轮机供应驱动空气的涡轮空气通道。 围绕空气马达的环形空间设置在壳体和盖之间。 提供将环状空间与轴承空气通路相互连接的轴承空气支路,以及将环状空间与涡轮空气通路相互连接的涡轮空气支路。 空气分支通道将一部分压缩空气引导到环形空间并将盖保持在加热状态。
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公开(公告)号:US20160059248A1
公开(公告)日:2016-03-03
申请号:US14784059
申请日:2014-08-11
Applicant: ABB K.K.
Inventor: Kuniharu YAMAUCHI
CPC classification number: B05B3/1092 , B05B3/1035 , B05B3/1064 , B05B5/0415 , B05B5/0426 , B05B5/043
Abstract: A shaping air ring (10) is configured of a body (11), a cover (13) and a nozzle (15). A tapered conical protrusion (17) is provided in a front end of the nozzle (15) to abut on the cover (13) in contact therewith without a clearance therebetween. Numerous inclined recessed grooves (20) are provided on a forward tapered surfaces (17C) of the conical protrusion (17) over the entire periphery. Further, a first shaping air ejecting hole (23) is formed between each of the inclined recessed grooves (20) and an inner peripheral surface (13B2) of the cover (13) to eject shaping air toward a releasing edge (9E) of a rotary atomizing head (9). Second shaping air ejecting holes (24) are provided on an inner peripheral surface (16A) of the nozzle (15) to eject shaping air along an outer peripheral surface (9C) of the rotary atomizing head (9).
Abstract translation: 成形气环(10)由主体(11),盖(13)和喷嘴(15)构成。 锥形突起(17)设置在喷嘴(15)的前端,以抵接在盖子(13)上而与其间没有间隙。 在圆锥形突起(17)的整个周边的前锥形表面(17C)上设置有许多倾斜凹槽(20)。 此外,在每个倾斜凹槽(20)和盖(13)的内周表面(13B2)之间形成有第一成形气体喷射孔(23),以朝向(C)的释放边缘(9E)喷射成形空气 旋转雾化头(9)。 在喷嘴(15)的内周面(16A)上设置有第二成形喷气孔(24),沿着旋转雾化头(9)的外周面(9C)排出成形空气。
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公开(公告)号:US20150136023A1
公开(公告)日:2015-05-21
申请号:US14608580
申请日:2015-01-29
Applicant: ABB K.K.
Inventor: Yukio YAMADA
CPC classification number: B05B5/0535 , B05B3/1064 , B05B5/0403 , B05B5/0407 , B05B5/0426 , B05B5/0533 , B05B5/057 , B05B15/50
Abstract: A rotary atomizing head (4) is mounted on a fore end side of a motor (3). A shaping air ring (9) having a plurality of air outlet holes (10) at fixed intervals is provided on a rear side of the rotary atomizing head (4). Outer surfaces of the air motor (3) and outer surfaces of the shaping air ring (9) are enshrouded over the entire circumference by a cover member (7) formed of an electrically insulating material. An external electrode assembly (13) is provided radially outwardly of the cover member (7). An annular projecting portion (16) which projects forward is provided on the shaping air ring (9) over the entire circumference. The air outlet holes (10) are open in a fore distal end of this annular projecting portion (16). As a result, a corona discharge can be generated by allowing an electric field to be concentrated at the fore distal end of the annular protecting portion (16).
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