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    • 12. 发明申请
    • APPARATUS FOR FILLING PAINT CARTRIDGES
    • 填充涂料的装置
    • US20120298257A1
    • 2012-11-29
    • US13503334
    • 2010-10-19
    • Atsuo NabeshimaShinji TaniTakanobu MoriIsamu YamasakiShinichi NakaneKoji FukuzawaTomohiro Hasuike
    • Atsuo NabeshimaShinji TaniTakanobu MoriIsamu YamasakiShinichi NakaneKoji FukuzawaTomohiro Hasuike
    • B65B3/04
    • B05B12/1463
    • A paint filling apparatus has a plurality of header portions, and one common manifold portion that is capable of supplying a cleaning liquid to each header portion. One side of each header portion is attachable to and detachable from a paint cartridge, and another side of each header portion is attachable to and detachable from the common manifold portion. Each header portion has a paint supply channel for filling a paint into the paint cartridge. The paint supply channel of each header portion is constructed of a piping member and a paint channel. An end portion of each header portion is linkable in communication with the inside of the paint cartridge, and another end portion thereof is linked in communication with a corresponding one of paint tanks that are provided separately for each of the paint colors. An intermediate portion of each paint supply channel is provided with a paint valve that controls the open-closed state of the upstream side of the paint supply channel.
    • 油漆填充设备具有多个集管部分,以及能够向每个集管部分供应清洁液体的一个公共歧管部分。 每个集管部分的一侧可附接到涂料盒并可从其拆卸,并且每个集管部分的另一侧能够连接到公共歧管部分并从该歧管部分拆卸。 每个头部具有用于将油漆填充到油漆盒中的涂料供应通道。 每个集管部分的涂料供应通道由管道部件和涂料通道构成。 每个集管部分的端部可与油漆筒的内部连通,并且其另一端部与为每种涂料颜色分开设置的对应的一个油漆罐连接。 每个涂料供应通道的中间部分设置有控制涂料供应通道的上游侧的打开关闭状态的涂料阀。
    • 14. 发明授权
    • Power tool charging system having battery reconditioning and battery capacity data updating functions
    • 具有电池修复和电池容量数据更新功能的电动工具充电系统
    • US06191554B1
    • 2001-02-20
    • US09345010
    • 1999-07-02
    • Shinichi NakaneYutaka MatsunagaTomoo MuramatsuKazuyoshi Horikawa
    • Shinichi NakaneYutaka MatsunagaTomoo MuramatsuKazuyoshi Horikawa
    • H02J700
    • H02J7/0057
    • An improved charging system for preventing battery deterioration and for accurate indication of the remaining battery charge level includes an electric power tool (2) and a charger (1). The electric power tool (2) is provided with an internal rechargeable batteries (6) and a second controller (9). The charger (1) is provided with circuitry for charging, a microcomputer (19), and discharge circuitry which is comprised of a manually-operated battery refreshing button (25), a discharge relay (23) and a discharge resistor (24). Upon depression of the battery refreshing button (25), the microcomputer (19) causes the batteries (6) of the electric power tool (2) to be charged to a full level and discharged to a predetermined level twice. When the two-cycle operation of full charge and discharge is completed, the second controller (9) of the electric power tool (2) updates the remaining charge level of the batteries (6).
    • 改进的用于防止电池劣化并且用于准确指示剩余电池电量的充电系统包括电动工具(2)和充电器(1)。 电动工具(2)设置有内部可再充电电池(6)和第二控制器(9)。 充电器(1)设置有用于充电的电路,微计算机(19)和由手动操作的电池更新按钮(25),放电继电器(23)和放电电阻(24)组成的放电电路。 在按下电池刷新按钮(25)的同时,微型计算机(19)使电动工具(2)的电池(6)充满电并将其放电到预定水平两次。 当完全充放电的两周期操作完成时,电动工具(2)的第二控制器(9)更新电池(6)的剩余电量。
    • 15. 发明授权
    • Conveyor device
    • 输送装置
    • US5603769A
    • 1997-02-18
    • US329853
    • 1994-10-27
    • Masaru OkuboShinichi NakaneHitoshi YanoNoriyuki AchiwaSigeki Fujiwara
    • Masaru OkuboShinichi NakaneHitoshi YanoNoriyuki AchiwaSigeki Fujiwara
    • B62D65/00B05B5/08B05D7/14B65G43/00B05C5/02
    • B05B5/084
    • A conveyor device for applying a high voltage to a work transported in a coating booth includes a conveyor device main body having a running base running in the coating booth and an electrode attachment attached to the running base being insulated therefrom for carrying the work and applying a high voltage to the work, an electromagnetic wave transmitter disposed in the coating booth for transmitting electromagnetic waves to the running base during running in a high voltage application zone and a low voltage generator means for receiving electromagnetic waves from the electromagnetic transmitter means and a high voltage generator for stepping-up a low voltage outputted from the low voltage generator and supplying a high voltage to the electrode attachment, mounted on the running base.
    • 一种用于向在涂装室中运送的工件施加高电压的输送装置包括:输送装置主体,具有在涂装室中运行的运行基座;以及附接到运行基座的电极附件,用于承载工作并施加 设置在涂层室中的电磁波发射器,用于在高压施加区域中运行期间将电磁波传送到运行基座;以及低电压发生器装置,用于接收来自电磁发射装置的电磁波,以及高电压 发电机,用于升压从低压发生器输出的低电压,并向安装在运行基座上的电极附件提供高电压。
    • 18. 发明申请
    • HOPPER FOR CLEANING COATING MACHINE
    • 用于清洁涂布机
    • US20090038660A1
    • 2009-02-12
    • US11814864
    • 2005-12-15
    • Shinichi NakaneTakao UenoKoji Sakuraba
    • Shinichi NakaneTakao UenoKoji Sakuraba
    • B08B3/08
    • B05B15/55B05B3/1014B05B12/18B05B12/36B05B15/50Y10S118/05
    • Upward whirling of a coating material through a gap between a coating machine and an opening is prevented without using a shaping air upon cleaning a coating machine in a cleaning hopper by supplying a thinner to the coating machine and rotating a rotary atomizing head at a high speed.To the inside of a hopper (1) used for cleaning a coating machine in which a rotary atomizing head (B) is entered through an opening (3) formed to the upper surface of a hopper housing (2) upon supplying a thinner for cleaning to the rotary atomizing coating machine (T) and a residual coating material and a thinner are sprayed to the inside thereof, an airstream control member for shutting a flow ascending from the inside of the housing to the outside of the housing passing through a gap between the coating machine and the opening by the rotation of the rotary atomizing head is disposed so as to situate below the rotary atomizing head corresponding to the gap between the coating machine and the opening, and the control member is formed with an air vent hole for supplying air to a negative pressure zone formed just below the rotary atomizing head.
    • 通过向涂布机供给较薄的涂布机并以高速旋转旋转雾化头,可以防止在涂布机和开口之间的间隙向涂层材料的向上旋转而不用成形空气清洁清洗料斗中的涂布机 。 在用于清洁其中旋转雾化头(B)的进料口(1)的料斗(1)的内部通过形成在料斗外壳(2)的上表面上的开口(3) 向旋转雾化涂布机(T)喷射残留涂布材料和稀释剂的气流控制部件,用于关闭通过壳体的内部通过壳体的外部上升的流动的气流控制部件, 涂布机和通过旋转雾化头的旋转的开口被布置成位于与涂布机和开口之间的间隙相对应的旋转雾化头的下方,并且控制构件形成有用于供应的通气孔 空气到位于旋转雾化头正下方的负压区。
    • 19. 发明申请
    • Non-Adhered Paint Calculation Method and Solvent Weight Calculation Method
    • 非附着油漆计算方法和溶剂重量计算方法
    • US20080234985A1
    • 2008-09-25
    • US10586039
    • 2005-01-31
    • Takayuki KuwashimaShinichi NakaneAnhui Cai
    • Takayuki KuwashimaShinichi NakaneAnhui Cai
    • G06F17/10G06F17/50
    • F26B25/00F26B21/00
    • Appropriate performance design of various mechanisms, e.g. a mist removing filter, employed in post-paint treatment of various mechanisms, e.g. a deodorizer, employed in post-dry treatment is realized. Paint weight calculation is executed. Firstly, the amount of dry adhered paint is calculated by multiplying the work area by a coating thickness distribution value and stored, and the weight of dry adhering paint is calculated by multiplying the amount of dry adhering paint by the specific gravity of the dry paint and stored. Meanwhile, the weight of dry paint or the weight of dry paint sprayed from a paint machine is calculated by multiplying the weight of sprayed paint by a paint NV and stored, the weight of dry non-adhered paint is calculated by subtracting the weight of dry adhering paint from the weight of dry sprayed paint and stored, and then capacities of various mechanisms are designed using it. Furthermore, the amount of dry adhered paint or the volume of dry paint adhered to a work is determined and multiplied by the specific gravity of dry paint to determine the weight of dry adhered paint, which is then divided by the paint NV to determine the solvent weight of adhered paint. Lastly, the VOC weight is determined as the solvent weight of adhered paint by subtracting the weight of dry adhered paint from the weight of adhered paint containing the solvent and employed in designing the capacities of various mechanisms.
    • 各种机制的适当性能设计,例如 用于各种机构的后漆处理的除雾过滤器,例如。 实现了干燥后处理的除臭剂。 执行油漆重量计算。 首先,通过将工作面积乘以涂层厚度分布值并计算出干燥附着涂料的量,并且通过将干燥粘合涂料的量乘以干涂料的比重和干涂料的比重来计算干粘附涂料的重量, 存储。 同时,通过将喷涂油漆的重量乘以涂料NV并储存来计算干漆的重量或由涂料机喷涂的干漆的重量,干燥不粘附涂料的重量通过减去干重的重量来计算 将涂料从干燥喷涂油漆中重新储存起来,然后利用其设计各种机构的能力。 此外,确定干燥附着涂料的量或附着在工件上的干漆的体积,并将其乘以干漆的比重,以确定干燥附着涂料的重量,然后将其除以油漆NV以确定溶剂 附着漆重量。 最后,通过从包含溶剂的附着涂料的重量中减去干粘附涂料的重量,将VOC重量确定为粘附涂料的溶剂重量,并用于设计各种机理的能力。