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    • 1. 发明授权
    • Chambered doctor blade inker system
    • 芝麻刀片刀片系统
    • US5111747A
    • 1992-05-12
    • US584249
    • 1990-09-18
    • Ingo KoblerThomas JohnFranz X. GollingerGeorg Bock
    • Ingo KoblerThomas JohnFranz X. GollingerGeorg Bock
    • B41F31/02B41F31/04B41F31/06B41F31/08B41F31/30
    • B41F31/02B41F31/04
    • The chambered doctor blade unit has an anilox roller against which a doctor blade can be engaged. An ink trough, and an arrangement to transport ink from the ink trough to a chambered doctor blade unit or an ink application roller is provided, the chambered doctor blade unit or the ink application roller being, respectively, operatively coupled with the anilox roller. The ink supply trough, the ink application device, the doctor blade and the ink trough form a single structural unit which is located on a carrier structure on the printing machine, to be removable as a unit. A plurality of units are severably coupled to a common ink pump shaft on the printing machine. The printing machine carrier structure may be pivotable so that the entire unit can be pivoted away from an ink application roller of the printing machine, or away from the anilox roller; or, alternatively, the anilox roller and the support structure therefor may also form part of the single structural unit so that the entire inker can be removed as a unit, for example for exchange with inkers having different colors or different inks, and requiring anilox rollers of different surface configuration.
    • 腔室刮刀单元具有网纹辊,刮刀可以与其接合。 墨水槽和将油墨从油墨槽输送到室内刮刀单元或油墨施加辊的布置被提供,腔室刮刀单元或油墨施加辊分别与网纹辊可操作地联接。 墨水供应槽,墨水应用装置,刮墨刀和墨槽形成位于印刷机上的载体结构上的单个结构单元,作为可移除的单元。 多个单元可分离地联接到印刷机上的公共墨水泵轴上。 印刷机承载结构可以是可枢转的,使得整个单元可以远离印刷机的油墨施加辊或远离网纹辊枢转; 或者,网纹辊和其支撑结构也可以形成单个结构单元的一部分,使得整个墨水可以作为一个单元被去除,例如用于与具有不同颜色或不同墨水的墨水器交换,并且需要网纹辊 的不同表面配置。
    • 2. 发明授权
    • Printing machine with separable compact inker including a chambered
doctor blade unit
    • 印刷机具有可分离的紧凑型上墨机,包括一个腔室刮刀单元
    • US4964336A
    • 1990-10-23
    • US403620
    • 1989-09-06
    • Georg BockFranz X. GollingerThomas John
    • Georg BockFranz X. GollingerThomas John
    • B41F31/08B41F31/02
    • B41F31/027
    • A chambered doctor blade unit (1) has at least one doctor blade (7, 8; 32) projecting from leading edges of a generally U-shaped or channel-shaped rail element, closed off at the lateral ends by side walls (4) to form the unit so that it can be inexpensively made by extrusion, rolling or other simple profiled rail forming machinery. A rear wall of the unit is formed with an elongated slit (12), preferably narrower in the middle. The unit (1) can be releasably coupled to a carrier (2) by interlocking rotatable pins (22) formed with projecting locking cams (23) with grooves or recesses (25) formed in bolts projecting from a rear surface (10) of the chambered doctor blade unit (1). The chambered doctor blade unit (1) thus can be readily removed by rotating the pins by handles (26), not requiring tools, and maximum ink distribution is ensured by the elongated slit which receives ink via a flattened funnel-shaped distribution duct (16) coupled to the holder unit (2).
    • 腔室刮刀单元(1)具有至少一个从大致U形或槽形轨道元件的前缘突出的刮刀(7,8; 32),其侧壁由侧壁(4)封闭, 以形成该单元,从而可以通过挤出,轧制或其它简单的成型轨道成形机械廉价地制造。 该单元的后壁形成有细长的狭缝(12),优选地在中间较窄。 单元(1)可以通过将形成有突出的锁定凸轮(23)的可旋转销(22)可互锁地联接到托架(2),该凹槽或凹槽(25)形成在从 腔室刮刀单元(1)。 因此,可以通过不需要工具的手柄(26)旋转销来容易地移除室式刮刀单元(1),并且通过经扁平的漏斗形分配管道(16)接收墨水的细长狭缝确保最大的墨水分布 )连接到保持器单元(2)。
    • 3. 发明授权
    • Printing machine having chambered doctor blade unit inker
    • 印刷机具有腔室刮刀单元上墨机
    • US4938133A
    • 1990-07-03
    • US403760
    • 1989-09-06
    • Georg BockFranz X. GollingerThomas John
    • Georg BockFranz X. GollingerThomas John
    • B41F31/06B41F31/02B41F31/08
    • B41F31/027
    • To permit easy removal and/or engagement and disengagement of a chambered doctor blade unit (1) from an anilox roller (2), the chambered doctor blade unit is attached to a holder (4) which has axially extending projecting pins or bolts (6, 7). The pins or bolts (6, 7) engage in hook-like extensions (12, 13) depending from a cross member (9) extending between the side walls (8) of the printing machine. An eccentric clamping cam disk (10) is rotatable about the cross member (9) and bears, in dependence on the rotary position thereof, against an upper surface of the holder for the chambered doctor blade unit (1) to thereby ensure interengagement of the projecting pins or bolts (6, 7) in the hook-like extensions (12, 13) and on support as well as locating surfaces (14, 16; 17, 18) thereof, while permitting quick release of this interengagement permitting movement and easy removal of the chambered doctor blade unit (1).
    • 为了容易地将腔室刮刀单元(1)从网纹辊(2)移除和/或接合和脱离,腔室刮刀单元附接到具有轴向延伸的突出销或螺栓(6)的保持器(4) ,7)。 销或螺栓(6,7)与从打印机的侧壁(8)之间延伸的横向构件(9)悬挂在钩状的延伸部分(12,13)中。 偏心夹紧凸轮盘(10)能够围绕横向构件(9)旋转,并且根据其旋转位置而靠在用于腔室刮刀单元(1)的保持器的上表面上,从而确保 突出的销或螺栓(6,7)位于钩状延伸部分(12,13)中,以及支撑件以及定位表面(14,16; 17,18)上,同时允许快速释放这种相互接合的允许运动 去除腔室刮刀单元(1)。
    • 4. 发明授权
    • Compact printing machine inker system
    • 紧凑型印刷机上墨机系统
    • US4998475A
    • 1991-03-12
    • US403754
    • 1989-09-06
    • Thomas JohnGeorg BockRainer BurgerFranz X. Gollinger
    • Thomas JohnGeorg BockRainer BurgerFranz X. Gollinger
    • B41F31/02
    • B41F31/027B41F31/02
    • The inker includes a chambered doctor blade unit (1) which defines an ink retention chamber. The ink retention chamber has an ink retaining ridge or strip (33) which extends from an upper surface towards the lower surface leaving a narrow ink passage gap (1') between the lower surface and the lower edge of the ridge or strip so that, upon selective connection of the unit (1) through a releasable coupling connection (5) of ink from a primary ink supply (3) or from a secondary ink supply (24, 40) of ink capacity substantially less than the ink capacity of the primary ink supply, ink within the ink retention chamber can be expelled under pressure being applied into said chamber, for example by compressed air, or sucked back into the cartridge. The cartridge permits application of a small quantity of ink, for example of different color than that of the primary ink supply, without disassembly of the entire inker. The compact inker formed by the doctor blade unit and the ink supply unit can readily be severed from the printing machine as a unitary group by disengaging a severable clutch (20), for example a claw clutch, provided to drive pumps (22) in the ink supply from a drive shaft (16, 531) common to a plurality of ink supply units and chambered doctor blade units, for example located axially adjacent each other along the anilox roller (6). The ink supply units have upwardly open troughs to catch ink being stripped off the anilox roller.
    • 墨水器包括限定墨水保持室的腔室刮刀单元(1)。 墨水保持室具有从上表面向下表面延伸的墨水保持脊或条带(33),在脊或条带的下表面和下边缘之间留下窄的墨水通道间隙(1'), 当单元(1)通过来自初级墨水供应源(3)的墨水的可释放的联接连接(5)或从基本上小于初级墨水供应源的墨水容量的二次墨水供应(24,40)选择性地连接 墨水供应中,墨水保持室内的墨水可以在压力下排出,例如通过压缩空气被施加到所述室中,或者被吸回到墨盒中。 墨盒允许在不拆卸整个墨水器的情况下施加少量墨水,例如不同于主墨水的墨水。 由刮刀单元和供墨单元形成的紧凑型上墨机可以容易地从作为一体组的印刷机中分离,通过分离设置在驱动泵(22)中的可分离离合器(20),例如爪式离合器 从多个供墨单元和多个刮刀单元共同的驱动轴(16,531)供墨,例如沿着网纹辊(6)彼此轴向相邻。 供墨单元具有向上开口的槽,以捕捉从网纹辊剥离的油墨。
    • 5. 发明授权
    • Holder system for a printing machine doctor blade
    • 一种印刷机械刀片支架系统
    • US5101725A
    • 1992-04-07
    • US498086
    • 1990-03-22
    • Ingo KoblerThomas John
    • Ingo KoblerThomas John
    • B41F9/08B41F9/10
    • B41F9/1072
    • A doctor blade holder has two holder parts (4, 5) to clamp a doctor blade (3) with a straight edge therebetween. The holder parts define opposed holder surfaces (6, 7), which, at least in part, form surfaces of an elliptical cylinder which has a cross-sectional form in the shape of an ellipse (Z) which has a longitudinal axis (B--B) which intersects the longitudinal axis (A--A) of the cylinder by an angle of inclination (.alpha.) which, customarily, is in the order of between 0.1.degree. to 1.degree., but may be substantially larger. The minor half-axis of the ellipse (Z) is equal to the radius (r) of the printing machine cylinder (1) and the major half-axis of the ellipse (Z) is longer than the length (1) of the printing machine cylinder against which the doctor blade edge is engaged.
    • 刮刀架具有两个保持器部分(4,5),用于将刮刀(3)夹在其间具有直边。 保持器部分限定相对的保持器表面(6,7),其至少部分地形成具有椭圆形(Z)形状的横截面形状的椭圆柱体的表面,所述椭圆形具有纵向轴线(BB) 其与气缸的纵向轴线(AA)相交,倾斜角度(α)通常为0.1°至1°之间,但可大致较大。 椭圆(Z)的次半轴等于印刷机筒(1)的半径(r),椭圆(Z)的主半轴长于印刷长度(1) 刮刀刀片边缘与其接合的机筒。
    • 6. 发明授权
    • Offset printing machine system
    • 胶印机系统
    • US5009158A
    • 1991-04-23
    • US542879
    • 1990-06-25
    • Thomas JohnGeorg Bock
    • Thomas JohnGeorg Bock
    • B41F31/14B41F7/02B41F13/00B41F31/00B41F33/00
    • B41F31/004
    • To permit use of a yielding surface covering (19, 48) on an ink application cylinder (7, 32) in an offset printing machine, without slippage or rubbing between the ink application cylinder and an adjacent plate cylinder (5, 31), a drive is arranged between the plate cylinder and the ink application cylinder which provides for corresponding linear circumferential speed by, either, placing an auxiliary idler gear train (17, 18) between the plate cylinder gear (15) and the drive gear (16) for the ink application cylinder, or independently driving the ink application cylinder (7) by an electric motor.
    • 为了允许在胶版印刷机中的油墨涂布滚筒(7,32)上使用屈服表面覆盖物(19,48),而不会在油墨涂布滚筒和相邻印版滚筒(5,31)之间滑动或摩擦, 通过将辅助空转齿轮系(17,18)放置在印版滚筒齿轮(15)和驱动齿轮(16)之间,驱动器布置在印版滚筒和油墨施加筒之间,从而提供相应的线性圆周速度,用于 或者通过电动马达独立地驱动墨水涂敷筒(7)。
    • 7. 发明授权
    • Offset printing machine
    • 偏移式打印机
    • US5165341A
    • 1992-11-24
    • US542975
    • 1990-06-25
    • Thomas JohnGeorg Bock
    • Thomas JohnGeorg Bock
    • B41F31/06B41F31/00B41F31/26
    • B41F31/26B41F31/004
    • To permit use of a yielding surface covering (16) on an ink application cylinder (7, 12, 32) offset printing machine, without slippage or rubbing between the ink application cylinder and an adjacent plate cylinder (5, 31), a drive is arranged between the plate cylinder and the ink application cylinder which provides for corresponding linear circumferential speed by changing the profile of engaged drive gears (6, 13) driving the ink application cylinder and the plate cylinder; the drive gears have the same pitch circle diameter. The yielding surface (16) on the ink application cylinder has a thickness of between 2-3% of the diameter of the ink application cylinder (12) and a durometer value of between about 60-70 on the Shore A scale; the ink application cylinder (12) has a diameter of about 99% of the diameter of the plate cylinder and in operation is engaged against the plate cylinder over an engagement zone of about 7-9 mm in circumferential length (1).
    • 为了允许在油墨施加筒(7,12,32)上使用胶印机(6)在油墨施加筒和相邻印版滚筒(5,31)之间没有滑动或摩擦的情况下使用屈服表面(16),驱动器 布置在印版滚筒和油墨施加筒之间,通过改变驱动油墨涂布滚筒和印版滚筒的啮合驱动齿轮(6,13)的轮廓来提供相应的线性圆周速度; 驱动齿轮具有相同的节圆直径。 油墨施加圆筒上的屈服表面(16)的厚度在油墨涂抹圆筒(12)的直径的2-3%之间,硬度计值在肖氏A级的约60-70之间; 油墨施加圆筒(12)的直径为印版滚筒直径的约99%,并且在圆周长度(1)上约7-9mm的接合区域上操作与印版滚筒接合。
    • 9. 发明授权
    • Method for cutting a continuous glass sheet during the production of flat glass
    • 在制造平板玻璃期间切割连续玻璃板的方法
    • US08430289B2
    • 2013-04-30
    • US13335177
    • 2011-12-22
    • Thomas JohnAndreas Morstein
    • Thomas JohnAndreas Morstein
    • B65H35/10
    • C03B33/0235Y10T83/0333Y10T83/0341Y10T83/0348Y10T225/10Y10T225/12Y10T225/16Y10T225/30
    • In the method for cutting a continuously moving glass sheet with an inhomogeneous thickness distribution across the glass sheet, a cutting tool is moved across it at an angle to its travel direction to form a fissure and then the glass sheet is broken along the fissure. To avoid premature breakage in thin regions the applied cutting force is controlled by a controller based on control commands so that the cutting force is decreased when the glass sheet thickness decreases and is increased when it increases. In a preferred embodiment cutting force switchover points are based on an initial measurement of the thickness distribution. In another embodiment the thickness is continuously measured and the applied cutting force is automatically adjusted accordingly, so that the cutting force is greater when the thickness is greater, and vice versa.
    • 在用于切割玻璃板上具有不均匀厚度分布的连续移动的玻璃板的方法中,切割工具以与其行进方向成一定角度的方式移动,以形成裂缝,然后沿着裂缝破碎玻璃板。 为了避免在薄区域过早断裂,所施加的切削力由控制器基于控制命令控制,使得当玻璃板厚度减小时切削力降低,并且当其增加时其增加。 在优选实施例中,切割力切换点基于厚度分布的初始测量。 在另一个实施例中,连续地测量厚度并相应地自动调整所施加的切削力,使得当厚度较大时切削力更大,反之亦然。