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    • 2. 发明授权
    • Viscous material warming device
    • 粘性材料升温装置
    • US09358570B2
    • 2016-06-07
    • US14450504
    • 2014-08-04
    • Philip Hickman
    • Philip Hickman
    • B67D7/80B05C5/00
    • B05C5/001B05C5/002B05C11/1042B05C17/001
    • A viscous material warming device comprising a housing, where the housing is surrounded with an insulated wall; a lid atop the housing; an upper plate mounted within the housing, where the upper plate includes a plurality of upper receiving holes each to accept a material tube, and where the upper plate includes spacer holes; a lower plate mounted within the housing below the upper plate, where the lower plate includes a plurality of lower receiving holes each to accept a tip of the material tube, and where the lower plate includes spacer holes; at least three spacers positioned between the upper plate and the lower plate, where the spacers are positioned within the spacer holes of each the upper plate and the lower plate; and a heater positioned within the lower plate, where the heater includes a thermometer to maintain the housing at a constant temperature.
    • 一种粘性材料加温装置,包括壳体,其中壳体被绝缘壁包围; 在屋顶上盖子; 安装在所述壳体内的上板,其中所述上板包括多个上接纳孔,每个上容纳孔用于容纳材料管,并且其中所述上板包括间隔孔; 下板安装在上板下方的壳体内,下板包括多个下接收孔,每个下接收孔用于接纳材料管的尖端,并且其中下板包括间隔孔; 位于上板和下板之间的至少三个间隔件,其中间隔件位于每个上板和下板的间隔孔内; 以及位于所述下板内的加热器,其中所述加热器包括用于将所述壳体保持在恒定温度的温度计。
    • 3. 发明申请
    • MACHINE FOR PAINTING AND LINE FOR FINISHING SMALL THREE-DIMENSIONAL OBJECTS AND RELATED METHODS
    • 用于完成小三维物体的绘画和线条及相关方法
    • US20140034482A1
    • 2014-02-06
    • US13731047
    • 2012-12-30
    • TAPEMATIC S.P.A.
    • LUCIANO PEREGO
    • C23C14/34B05C5/00
    • C23C14/34B05B13/0221B05B13/0228B05B13/0242B05B16/20B05C5/002C23C14/566
    • A machine (12, 13) for painting small three-dimensional objects (2) comprises a plurality of spindles (9) equipped with holders (10) for objects (2) to be painted. A unit (15) able to rotate about an axis (16) is equipped with a plurality of seats (17) structured to receive a spindle (9). The spindle (9) is removably associable with said seat (17). An airless painting device (25) is operatively positioned at a painting station (26) designed to receive said seats (17) in sequence. First actuator means (27) drive the rotation about a painting axis (18) at least of the holder (10) when the seat is positioned at the painting station (26). Means (29) for transferring the objects (2) grip a spindle (9) positioned along a transfer line (3) and place it in one of the seats (17) and/or vice versa.
    • 用于喷涂小三维物体(2)的机器(12,13)包括多个主轴(9),其配备有用于待涂漆的物体(2)的保持器(10)。 能够围绕轴线(16)旋转的单元(15)配备有构造成接收主轴(9)的多个座(17)。 主轴(9)可拆卸地与所述座(17)相关联。 无气喷涂装置(25)可操作地定位在设计成依次接纳所述座(17)的涂装站(26)上。 当座椅位于喷涂站(26)时,第一致动器装置(27)至少围绕保持器(10)围绕着绘制轴线(18)旋转。 用于传送物体(2)的装置(29)夹持沿着传送线(3)定位的主轴(9)并将其放置在一个座椅(17)中和/或反之亦然。
    • 4. 发明申请
    • METHOD OF MANUFACTURING CYLINDRICAL PRINTING SUBSTRATE AND MANUFACTURING DEVICE
    • 制造圆柱印刷基板和制造装置的方法
    • US20100189916A1
    • 2010-07-29
    • US12376906
    • 2007-08-09
    • Miyoshi Watanabe
    • Miyoshi Watanabe
    • C08F2/48B05C9/12B05C11/04
    • B05C5/002B05C11/04B05C11/10B41N1/12B41N1/22G03F7/18Y02P20/582
    • The present invention has an object to provide a cylindrical printing substrate having a highly accurate thickness and surface smoothness suitable for printing. The present invention is a method of manufacturing a cylindrical printing substrate containing a photosensitive resin cured layer, comprising the steps of: (i) forming a spiral coating layer by applying the photosensitive resin on a cylindrical support body by a spiral coating method; (ii) forming an application layer made of the spiral coating layer having a uniform surface by bringing a doctor blade into contact with the spiral coating layer and having the spiral coating layer pass through a gap formed by the doctor blade and the cylindrical support body outer circumferential surface and then, of separating the doctor blade from the application layer; and (iii) forming the photosensitive resin cured layer by light-curing the application layer, in which the doctor blade is brought into contact with the spiral coating layer from below the cylindrical support layer and then, the doctor blade is separated downward, a manufacturing device for use in the manufacturing method.
    • 本发明的目的是提供一种圆柱形印刷基材,其具有适于印刷的高精度的厚度和表面平滑度。 本发明是一种制造含有感光性树脂固化层的圆筒状印刷基板的方法,其特征在于,包括以下步骤:(i)通过螺旋涂布法将感光性树脂涂布在圆筒状的支撑体上,形成螺旋状涂布层; (ii)通过使刮刀与螺旋涂层接触而形成具有均匀表面的螺旋涂层的涂布层,并且使螺旋涂层通过由刮刀和圆柱形支撑体外部形成的间隙 圆周表面,然后将刮刀与施加层分离; 和(iii)通过光刻固化涂布层来形成感光树脂固化层,其中刮刀从圆筒形支撑层的下方与螺旋涂层接触,然后将刮刀向下分离,制造 用于制造方法的装置。
    • 5. 发明申请
    • Solution treatment apparatus
    • 溶液处理装置
    • US20020026896A1
    • 2002-03-07
    • US09908889
    • 2001-07-20
    • Takashi Takekuma
    • B05C005/00
    • H01L21/67126B05B1/20B05C5/002B05C11/025B05C11/08
    • In a solution treatment apparatus, a nozzle for discharging a treatment solution toward a substrate held by a spin chuck includes a discharge opening for discharging the treatment solution on a surface of the substrate. A collision body against which the treatment solution discharged from the nozzle collides is disposed between the discharge opening of the nozzle and the substrate. Since the collision body is disposed between the discharge opening and the substrate, even when the discharge pressure of the treatment solution is high, the discharged treatment solution once collides against the collision body so that the discharge speed on reaching the substrate is reduced, damage to the substrate is eased, and the amount of air entering into the discharged treatment solution is decreased. Accordingly, no micro-bubble occurs.
    • 在固溶处理装置中,将处理液朝向由旋转卡盘保持的基板排出的喷嘴包括用于将处理液排出到基板的表面上的排出口。 从喷嘴排出的处理液碰撞的碰撞体配置在喷嘴的排出口与基板之间。 由于碰撞体设置在排出口和基板之间,所以即使处理液的排出压力高,排出的处理液一旦与碰撞体碰撞,使得到达基板的排出速度降低, 使基板松弛,进入排出的处理液的空气量减少。 因此,不会发生微气泡。
    • 7. 发明授权
    • Packaging machine
    • US3823053A
    • 1974-07-09
    • US30602872
    • 1972-11-10
    • POSSIS CORP
    • STRAUB MSCHUETTE T
    • B05C5/00B29C47/00B29C47/14B65B33/00B29C17/04
    • B65B33/00B05C5/002B05C5/005B29C47/0021B29C47/0066B29C47/14
    • A packaging machine wherein a web of paperboard is continuously drawn along a defined path, under a loading device by which articles or products to be packaged are successively deposited upon the web to be carried thereby through a certain or sheet of molten thermoplastic resin which debouches for downwardly opening nozzle, to lay itself onto and form a covering film on the web and over any articles or products thereon. The mouth of the nozzle is a slit which extends transversely across a vacuum chamber by which any space between the close to the web while its mid-portion is spaced much farther from the web. The film covered web then travels across a vacuum chamber by which any space between the covering film and the web is evacuated and the film drawn tightly over the articles or products and against the web. A series of closely spaced parallel rollers across the top of the vacuum chamber with their axes transverse to the web supports the web, and certain of the rollers are driven to draw the web through the machine. Beyond the vacuum chamber, the web with the covered articles or products thereon enters a guillotine type cutoff station where it is cut into discrete units each of which is a complete package.