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    • 11. 发明专利
    • Coating system and coating system operation method
    • 涂装系统和涂装系统操作方法
    • JP2010137204A
    • 2010-06-24
    • JP2008318682
    • 2008-12-15
    • Taikisha Ltd株式会社大気社
    • MANABE KEIJI
    • B05B13/02B05B12/00B05B15/12B05D1/02
    • PROBLEM TO BE SOLVED: To decrease an equipment cost and an operating cost of a coating system, and at the same time to attain effectively an energy-saving and a decrease in carbon dioxide emission.
      SOLUTION: In an automatic coating by a control means 12, in a state that an coated object W is moved closer to a paint robot La, Lb of one side among painting robots 8 of both sides by a moving means 11, and is moved to a paint position Ls going to one side away from paint robots Ra, Rb of the other sides, a paint process KL going to one side in which each of painting robots 8 of one side and the other side paint-operates to the coated object W is practiced, and thereafter, in a state that the coated object W is moved closer to the paint robot Ra, Rb of the other side by the moving means 11, and is moved to a paint position Rs going to the other side away from the paint robot La, Lb of one side, a paint process KR going to the other side in which each of painting robots 8 of one side and the other side paint-operates to the coated object W is practiced.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:降低涂装系统的设备成本和运行成本,同时有效地实现二氧化碳排放的节能减排。 解决方案:在通过控制装置12进行的自动涂覆中,通过移动装置11,涂覆对象W在两侧的涂装机器人8中靠近油漆机器人La,Lb的一侧移动,并且 被移动到油漆位置Ls离开油漆机器人Ra,Rb的另一侧,油漆过程KL到一侧,其中一侧的涂漆机器人8和另一面的每个涂漆操作到 然后,在被涂物W靠移动装置11的另一侧的涂料机器人Ra,Rb移动到移动到另一侧的涂装位置Rs的状态下, 远离一侧的涂漆机器人La,Lb,进行到另一侧的涂漆工艺KR,其中一面的涂漆机器人8和另一面的涂漆机器人8对涂布的对象W进行涂漆。 版权所有(C)2010,JPO&INPIT
    • 12. 发明专利
    • Coating supply facilities and their operating method
    • 涂料供应设备及其操作方法
    • JP2009154042A
    • 2009-07-16
    • JP2007331849
    • 2007-12-25
    • Taikisha Ltd株式会社大気社
    • NONOMURA HIROMI
    • B05C11/10B05B12/04B05D3/00
    • PROBLEM TO BE SOLVED: To provide coating supply facilities which are satisfactorily self-contained as a whole, as their operating system is rational and perfect in terms of function.
      SOLUTION: Coating supply pumps P are each of a different type by the coating material category, and also, of the variable velocity type enabling their respective discharge flow L to be adjustable. In addition, a control means 24 is provided which automatically switches a coating circulation operation by coating category to a regular operation mode or a "save" operation mode, in compliance with the operating status of a coating gun equipment part 2. The coating circulation operation is meant for circulating the coating material T from a coating forward path 4 to a coating material return path 5 by the coating supply pump P. In the regular operation mode, the target pressure "ps" for adjusting the coating forward path pressure by back pressure adjusting means R, 22 and 23, is set to a preset regular pressure value "psa", and at the same time, the coating supply pump P is controlled through speed change so as to allow the discharge flow L to coincide with the preset regular flow value La of the pump P. On the other hand, in the "save" operation, the target pressure "ps" for adjusting the coating forward path pressure by the back pressure adjusting means R, 22 and 23, is set to the preset "save" pressure value "psb". Further, the coating supply pump P is controlled through speed change so as to allow the discharge flow L of the pump P to coincide with the preset "save" flow value Lb which is lower than the preset regular flow value La.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供令人满意的自包含整体的涂料供应设备,因为它们的操作系统在功能上是合理的和完美的。

      解决方案:涂料供应泵P各自为不同类型的涂料类别,并且还具有使其各自的排出流L可调的变速类型。 此外,提供控制装置24,其根据喷枪设备部件2的操作状态自动地通过涂层类别将涂布循环操作切换到常规操作模式或“保存”操作模式。涂布循环操作 是指通过涂料供给泵P将涂料T从涂布前进路径4向涂布材料返回路径5循环。在常规操作模式中,用于通过背压调节涂布前进路径压力的目标压力“ps” 调整装置R,22和23被设定为预设的常规压力值“psa”,同时通过变速控制涂料供给泵P,以使排出流L与预定的规则 另一方面,在“保存”操作中,通过背压调节装置R,22和23将用于调节涂布前进路径压力的目标压力“ps”设定为 预设“保存”压力值“psb”。 此外,通过变速控制涂料供给泵P,以使泵P的排出流L与预先设定的规定流量值La相比预先设定的“保存”流量值Lb一致。 (C)2009,JPO&INPIT

    • 13. 发明专利
    • Damper device
    • 阻尼器装置
    • JP2009150595A
    • 2009-07-09
    • JP2007328104
    • 2007-12-20
    • Panasonic Environmental Systems & Engineering Co LtdTaikisha Ltdパナソニック環境エンジニアリング株式会社株式会社大気社
    • KAKUMAE YASUSHITANAKA SHINPEI
    • F23L13/08F23G7/06
    • PROBLEM TO BE SOLVED: To provide a damper device for always being smoothly opened and closed even when being arranged in a gas passage through which high temperature gas including a component condensed and exhibiting adhesiveness when being cooled flows. SOLUTION: The damper device 20 arranged in the gas passage 21 includes a cutoff damper 22 cutting off the gas passage 21 or between the gas passage 21 and the outside; a control damper 23 arranged in the upper side of the flowing direction of the gas than the cutoff damper 22 or the side facing the gas passage 21 while having a space 24 therebetween, and opened or closed by an optional opening; and a high temperature gas supply means 25 for supplying the high temperature gas to the space 24 between the cutoff damper 22 and the control damper 23. The control damper 23 is maintained in the high temperature state. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决问题的方案为了提供一种阻尼器装置,即使在布置在气体通道中时也始终平滑地打开和关闭,通过该气体通道,包括被冷凝的组分的高温气体在被冷却时呈现粘合性流动。 解决方案:设置在气体通道21中的阻尼器装置20包括:切断阻尼器22,切断气体通道21或气体通道21与外部; 控制阻尼器23,其布置在比截止阻尼器22或面向气体通道21的气体流动方向的上侧,同时在其间具有空间24,并且通过可选开口打开或关闭; 以及用于将高温气体供给到切断挡板22和控制阻尼器23之间的空间24的高温气体供给装置25.控制阻尼器23保持在高温状态。 版权所有(C)2009,JPO&INPIT
    • 15. 发明专利
    • Paint feeding facility
    • 涂料进料设备
    • JP2008086998A
    • 2008-04-17
    • JP2007334155
    • 2007-12-26
    • Taikisha Ltd株式会社大気社
    • NONOMURA HIROMI
    • B05C11/10
    • PROBLEM TO BE SOLVED: To effectively decrease a pump driving power consumption in a paint feeding facility.
      SOLUTION: The paint feeding facility is provided with each of a paint feeding pump P, a paint outward path 4 connected to a delivery side of the paint feeding pump P, and a paint homeward path 5 of a suction side of the paint feeding pump P for every paint T of a plurality of kinds of paints, the path 4 and the path 5 for the every paint extended across a plurality of painting gun mounting sections 2, a paint by-passing path 12 that short-circuits the path 4 and the path 5 for the every paint provided in each of the sections 2 to branch a paint take-out path 13 from the path 12, and a paint take-out valve 15 that opens/closes the path 13, wherein a run operating section 25 that controls the outputs of each of the paint feeding pumps P provided for the every paint is provided, and the outputs of each of the paint feeding pumps P are automatically controlled in response to variations in operating conditions of the section 2 based on detected information or set schedules.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:有效降低涂料供给设备中的泵驱动功率消耗。

      解决方案:涂料供给装置设置有涂料供给泵P,连接到涂料供给泵P的排出侧的涂料向外通路4和涂料的吸入侧的涂料回流路径5 对于多种涂料的每种涂料T,供给泵P,用于每个涂料的路径4和路径5延伸穿过多个喷漆枪安装部分2,使得路径短路的涂漆旁路路径12 4和每个部分2中设置的每个涂料的路径5从路径12分支涂料取出路径13以及打开/关闭路径13的涂料取出阀15,其中运行操作 提供控制为每种涂料提供的每个涂料供给泵P的输出的部分25,并且根据检测到的各部分2的操作条件的变化来自动控制每个涂料供给泵P的输出 信息或设定时间表。 版权所有(C)2008,JPO&INPIT

    • 16. 发明专利
    • Heat storage type gas treatment equipment
    • 热存储式气体处理设备
    • JP2008002716A
    • 2008-01-10
    • JP2006170723
    • 2006-06-20
    • Taikisha Ltd株式会社大気社
    • MIWA TOMOTAKA
    • F23G7/06
    • PROBLEM TO BE SOLVED: To provide heat storage type gas treatment equipment capable of achieving high sealing function while simplifying an equipment structure.
      SOLUTION: In this heat storage type gas treatment equipment where a gas to be treated G and a treated gas G' are allowed to successively pass through a plurality of heat storage chambers communicated with a combustion chamber at one end side by successively opposing and communicating a supply port 33 for the gas to be treated, formed at a switching valve element 11 side and a discharge port 35 for the treated gas, to each of supply/discharge ports 16 formed at a distributer 10 side in accompany with the rotation of the switching valve element 11, the switching valve element 11 is supported in a state that it can be displaced in the separating and approaching direction to the distributor 10, an energizing means 44 for the switching valve element, is disposed for energizing the switching valve element 11 to a side of the distributor 10 in a non-action state to an air chamber unit 13, the air chamber unit 13 is divided into a slide contact portion 53 to the switching valve element 11 and an air chamber unit main body 52, the slide contact portion 53 and the air chamber unit main body 52 are connected by an expanding and contracting air channel 55 in a state that the slide contact portion 53 can be displaced to the air chamber unit main body 52 in the separating and approaching direction to the switching valve element 11, and an energizing means 51 for the slide contact portion, is disposed to energize the slide contact portion 53 to a side of the switching valve element 11.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够实现高密封功能同时简化设备结构的蓄热式气体处理设备。 解决方案:在这种蓄热式气体处理设备中,待处理气体G和处理气体G'被允许连续地通过与一端侧的燃烧室连通的多个蓄热室, 并将形成在切换阀元件11侧的处理用气体供给口33与处理气体的排出口35连通,形成在分配器10侧的各排出口16伴随着旋转 在切换阀体11的切换阀体11的分离和接近方向被支撑的状态下,切换阀体11被配置成用于切换阀体的供能装置44, 元件11以非动作状态连接到分配器10的一侧到空气室单元13,空气室单元13被分成与切换阀元件11a的滑动接触部分53 在空气室单元主体52中,滑动接触部53和气室单元主体52通过膨胀和收缩空气通道55连接,滑动接触部53可以移动到空气室单元主体 主体52在切换阀体11的分离和接近方向上,以及用于滑动接触部分的激励装置51设置成使滑动接触部分53向切换阀芯11的一侧通电。版权所有: (C)2008,JPO&INPIT
    • 18. 发明专利
    • Exhaust apparatus
    • 排气装置
    • JP2007100978A
    • 2007-04-19
    • JP2005287343
    • 2005-09-30
    • Taikisha Ltd株式会社大気社
    • HINOHARA MASANOBUYOSHIDA TAKASHI
    • F24F7/06
    • PROBLEM TO BE SOLVED: To provide an exhaust apparatus capable of surely and properly exerting a concentrated exhausting function.
      SOLUTION: In this exhaust apparatus provided with an air outlet 2 for sucking an intra-regional gas Az in an exhausted zone 1, and auxiliary exhaust nozzles 11 for jetting an auxiliary gas As to the exhausted zone 1 outward with respect to the air outlet 2 from the neighborhood of a peripheral edge of the air outlet 2 in the direction along an opening face of the air outlet 2, the auxiliary exhaust nozzles 11 are continuously or dispersively arranged in the entire circumferential direction of the air outlet 2, and the auxiliary gas jetting directions of the auxiliary exhaust nozzles 11 are inclined to the same side to the opening face of the air outlet 2 with respect to the entire circumferential direction of the air outlet 2.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够可靠且适当地发挥浓缩排气功能的排气装置。 解决方案:在具有用于吸入排气区域1内的区域内气体Az的排气口2的排气装置中,以及辅助排气喷嘴11,用于向排气区域1向外喷射辅助气体。 空气出口2沿着空气出口2的开口面的方向从空气出口2的周缘附近,辅助排气喷嘴11在排气口2的整个圆周方向上连续或分散地布置,并且 辅助排气喷嘴11的辅助气体喷射方向相对于空气出口2的整个圆周方向倾斜于与出气口2的开口面相同的一侧。(C)2007年,JPO&INPIT
    • 19. 发明专利
    • Air duct structure of wind tunnel system
    • 风道隧道系统的空气导管结构
    • JP2006162310A
    • 2006-06-22
    • JP2004350868
    • 2004-12-03
    • Taikisha Ltd株式会社大気社
    • YOSHIDA TAKASHIYAMAMOTO YOSHITSUGUKATSUYA SATOSHIOHIRA HIROSHIYANASE TOMOYUKIOGAWA MASAHIRO
    • G01M9/04
    • PROBLEM TO BE SOLVED: To reduce the effects of the occurrence of background noise in a wind tunnel system, and to improve the performance of the wind tunnel.
      SOLUTION: Air flow A, sent by a blower measure 3 provided in an air duct 1, is blown from an exit piece 7a of the air-blow portion 1A of the air duct 1 to a measuring room 2 and the air flow A, blown out to the measuring chamber 2, is introduced from a suction piece 8a with a rectangular shape or nearly rectangular shape at the suction portion 1B of the air duct 1 provided at the opposite position of the exit piece 7a in the measuring chamber 2 into the air duct 1 by the blower measure 3 in the air duct structure of the wind tunnel system W. An opening 11 for feeding back a part A' of the air flow A, introduced from the suction piece 8a of the air duct 1 to the measuring chamber 2, is formed at one end part or both end parts in the wall width direction at a location close to the suction piece of at least one wall part 1a among 4 wall parts 1a forming the suction portion 1B of the air duct 1, in a state leaving at least the middle part of the wall width direction.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:减少风洞系统中背景噪声的发生的影响,提高风洞的性能。 解决方案:设置在空气管道1中的鼓风机3送出的空气流A从空气管道1的吹风部1A的出口件7a吹送到测量室2,空气流 从设置在测量室2的出口件7a的相对位置处的空气管道1的吸引部分1B处,从吹出的测量室2的吸引件8a引入矩形或近似矩形的A 通过鼓风机3在风道系统W的风道结构中进入空气管道1中。用于将空气流A的部分A'从空气管道1的吸入片8a导入的开口11 测量室2形成在形成空气管道1的吸入部1B的4个壁部1a中的靠近至少一个壁部1a的吸引片的位置处的壁宽度方向的一个端部或两个端部 在至少留下壁宽方向的中间部分的状态下。 版权所有(C)2006,JPO&NCIPI
    • 20. 发明专利
    • Liquid feeding structure and separation apparatus using it
    • 液体进料结构和分离装置
    • JP2006130361A
    • 2006-05-25
    • JP2004318797
    • 2004-11-02
    • Taikisha Ltd株式会社大気社
    • TAKEDA MUNEHIROMATSUI YOSHIAKI
    • B01J4/00C02F1/00C02F1/58
    • PROBLEM TO BE SOLVED: To provide a liquid feeding structure capable of appropriately changing opening of a feeding port according to fluctuation of a liquid pressure at an upstream side of the feeding port of the liquid fed to a particulate layer.
      SOLUTION: In the liquid feeding structure, a feeding port formation part 8A is arranged in the state it is abutted on the particulate layer 3b or it is approximately abutted on it and the liquid W2 is fed from the feeding port 8a formed on the feeding port formation part 8A to the particulate layer 3b. The feeding port formation part 8A is constituted such that opening of the feeding port 8a is increased according to increase of the liquid pressure at the upstream side of the feeding port 8a and the opening of the feeding port 8a is reduced according to decrease/restoration of the liquid pressure at the upstream side of the feeding port 8a.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够根据供给到颗粒层的液体的供给口的上游侧的液压的波动来适当地改变供给口的开口的液体供给结构。 解决方案:在液体供给结构中,供给口形成部8A以与颗粒层3b抵接的状态或大致邻接的方式配置,液体W2从形成在上述供给口8a上的供给口8a 进料口形成部分8A到颗粒层3b。 供给口形成部8A构成为使得供给口8a的开口根据供给口8a的上游侧的液压的增加而增大,并且供给口8a的开口根据减少/恢复 进料口8a上游侧的液体压力。 版权所有(C)2006,JPO&NCIPI