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    • 12. 发明申请
    • DEVICE RELATING TO AN ENGRAVING MACHINE
    • 与雕刻机相关的装置
    • WO1993004876A1
    • 1993-03-18
    • PCT/SE1992000625
    • 1992-09-10
    • AUTOENGRAVING ABANDERSSON, Morgan
    • AUTOENGRAVING AB
    • B44B03/00
    • B44B3/065B44B3/009B44B3/04B44B3/061
    • A computer-controlled engraving machine for objects in the form of rings, bracelets, medallions, etc., incorporates various types of securing elements to enable engraving by means of rotary movements in the elements supporting the object and longitudinal displacement movements and tilting movements in an engraving tool (26). A computer (44) is fed information on the required engraving and signals (i1, i2, i3) are generated in order to control the said rotary, longitudinal displacement and tilting movements. The longitudinal displacement function for the engraving tool is essentially play-free. Various types of objects are made possible. A rotary movements-effecting element includes a rotary movement-transforming element which transmits the rotary movement to a receiving element.
    • 用于环,手镯,纪念章等形式的物体的计算机控制的雕刻机结合了各种类型的固定元件,以通过在支撑物体的元件中的旋转运动和纵向位移运动和倾斜运动 雕刻工具(26)。 计算机(44)被馈送关于所需雕刻的信息,并且生成信号(i1,i2,i3),以便控制所述旋转,纵向位移和倾斜运动。 雕刻工具的纵向位移功能基本上是无间隙的。 可以使各种类型的对象成为可能。 旋转运动影响元件包括将旋转运动传递到接收元件的旋转运动变换元件。
    • 14. 发明申请
    • METHOD AND APPARATUS FOR ENGRAVING A MARK ON PLANE OR SLIGHTLY CURVED SURFACES
    • 用于雕刻平面或轻微曲面的标记的方法和装置
    • WO1986007015A1
    • 1986-12-04
    • PCT/IT1986000038
    • 1986-05-23
    • GRANDI SERVIZI S.P.A.CACCIOTTI, Angelo
    • GRANDI SERVIZI S.P.A.
    • B44B03/02
    • B44B3/009B44B3/02B44B3/061Y10T409/300896Y10T409/30112
    • Method and apparatus for engraving on a surface (7) by a rotating mill a mark, a wording or the like formed of a series of numbers and/or letters and/or symbols and set in a computer or controller (1) provided with a keyboard (5) and a display (8). The method provides means for transmitting in a sequence electrical signals containing the information of the form and size of each letter, number or symbol forming the mark, and signals controlling the operation of an electro-mechanical engraving apparatus (2) including a moving assembly supporting a little, motor driven rotating mill (3, 3a) and being installed within a case by supporting means causing it to be moved in two directions (X-X) and (Y-Y) perpendicular to each other and to the axis (Z-Z) of rotation of the tool (3, 3a) that is able to shift with respect to its axis of rotation (Z-Z) so as to allow said mark to be engraved type by type.
    • 用于通过旋转磨机在表面(7)上雕刻的方法和装置由一系列数字和/或字母和/或符号形成的标记,措辞等设置在设置有计算机或控制器(1)的计算机或控制器(1)中, 键盘(5)和显示器(8)。 该方法提供了用于按顺序发送包含形成标记的每个字母,数字或符号的形式和尺寸的信息的电信号的装置,以及控制机电雕刻装置(2)的操作的信号,所述机电雕刻装置(2)包括移动组件支撑 一个小的电机驱动的旋转铣刀(3,3a),并且通过支撑装置安装在壳体内,该装置使其沿彼此垂直的两个方向(XX)和(YY)移动,并且相对于轴线(ZZ)的旋转轴线 能够相对于其旋转轴线(ZZ)移动的工具(3,3a),以便允许所述标记按类型被雕刻。
    • 17. 发明申请
    • A CARVING MACHINE AND A METHOD OF OPERATING A CARVING MACHINE
    • 雕刻机和操作雕刻机的方法
    • WO2018063066A1
    • 2018-04-05
    • PCT/SE2017/050942
    • 2017-09-27
    • TILEMARK SWEDEN AB
    • CEDERBERG, Erik
    • B44B3/00B26D3/06B26D5/00B26D5/08B44C1/22
    • B26D3/06B26D5/00B26D5/086B44B3/009B44C1/225
    • Disclosed herein is computer controlled carving machine comprising a working area (6), a motion platform (4), a tool head (2) coupled to the motion platform (4) and a carving tool (8) coupled to the tool head (2), wherein the carving tool (8) defines a longitudinal axis (a) and wherein the carving tool (8)can be moved and oriented in any direction in the three-dimensional space and any orientation via the motion platform (4) and the tool head (2), the working area (6) being configured to receive a dried clay tile (16) to be carved, said working area (6) being arranged so that the dried clay tile (16) is within the reach of the carving tool (8),where in the motion platform (4) is configured, in order to perform a first cut (12, 12', 12'', 12'''), to steer the carving tool (8) so that the carving tool (8) is brought into a surface of the clay tile (16) at a first angle (α) relative to a plane defined by the dried clay tile (16) at a point of contact and removed from the object to be carved (16) at a second angle (β) relative to the plane defined by the dried clay tile (16), wherein the first angle (α) is chosen of a range of 0° to 85° and wherein the second angle (β) is chosen of a range of 1° to 179° minus the value of the first angle (α)whereby the carving tool (8) is not rotating around the longitudinal axis (a) during the first cut (12, 12', 12'', 12''') or any subsequent cut.
    • 在此公开了一种计算机控制的雕刻机,其包括工作区域(6),运动平台(4),耦合到运动平台(4)的工具头(2)和雕刻工具(8) )连接到所述工具头(2),其中所述雕刻工具(8)限定纵向轴线(a),并且其中所述雕刻工具(8)可以在所述三维空间中以任何方向移动和取向, (4)和工具头(2)之间,工作区域(6)构造成接收待雕刻的干燥粘土砖(16),所述工作区域(6)布置成使得干燥的粘土砖 16)位于雕刻工具(8)的范围内,其中在运动平台(4)被构造成为了执行第一切割(12,12',12“,12”)以转向 所述雕刻工具(8)使得所述雕刻工具(8)相对于由干燥的粘土瓦片(16)限定的平面以第一角度(α)进入所述粘土瓦片(16)的表面, 接触并从ob上移除 (16)以相对于干燥粘土瓦(16)所限定的平面的第二角度(β)进行雕刻(16),其中所述第一角度(α)被选择为0°〜 到85° 并且其中所述第二角度(β)被选择为1°的范围。 到179度 减去第一角度(α)的值,由此在第一切割(12,12',12“,12”)或任何后续切割期间雕刻工具(8)不绕纵向轴线
    • 19. 发明申请
    • AUTOMATED ENGRAVING OF A CUSTOMIZED JEWELRY ITEM
    • 自动雕刻自定义的珠宝项目
    • WO2004053653A2
    • 2004-06-24
    • PCT/US2003/039272
    • 2003-12-10
    • JOSTENS, INC.
    • SAARELA, Timothy, D.CARBONERA, Carlos, D.FRISCH, Michael, J.MALININ, Yuriy
    • G06F
    • B44B3/009
    • A method for manufacturing a ring (i.e. class, championship, or affiliation) begins by receiving order data specifying a series of personalization elements, such as the addition of text and icon designs. A geometric model for each personalization item is constructed. To assemble text panels, the operating system provides font geometry for a desired TrueType font. Then a set of splines are created from the font geometry and are then tessellated to generate polyline sets of data, which are then spaced and mapped between two boundary curves. The personalization elements are then projected onto one of the model's 3D surfaces. A set of machining instructions for a milling machine is generated by obtaining a set of machining pattern strategies, generating a set of curves, projecting the toolpath onto the surface of the ring to calculate the 3D toolpath, and rotating it to a desired angle.
    • 用于制造戒指(即,类,冠军或隶属关系)的方法通过接收指定一系列个性化元素(例如添加文本和图标设计)的顺序数据开始。 构建每个个性化项目的几何模型。 要组装文本面板,操作系统提供所需TrueType字体的字体几何。 然后从字体几何形状创建一组样条,然后将其细分,以生成折线数据集,然后将其间隔并映射到两条边界曲线之间。 然后将个性化元素投影到模型的3D表面之一上。 通过获得一组加工图案策略,生成一组曲线,将刀具路径投影到环的表面上以计算3D刀具路径并将其旋转到所需角度,生成铣床的一组加工指令。
    • 20. 发明申请
    • AUTOMATED BOARD PROCESSING APPARATUS
    • 自动化板加工设备
    • WO02032635A1
    • 2002-04-25
    • PCT/US2000/028380
    • 2000-10-13
    • B23D59/00B27B31/00B44B3/00B27B5/06B27B27/00
    • B44B3/009B23D59/001B23D59/008B27B31/00
    • An automatic board processing system (20) including a transverse board conveyor (28), a board extrusion portion (22), a marking station (31.1), a sawing portion (24), one or more board feeding portions (26) and a process controller (29). One or more stack of boards are supported for serially feeding each board conveyor and are conveyed in a direction transverse to the length of the boards. The boards are individually deposited into an elongate receiver (42) of a board extrusion portion to be conveyed longitudinally. A carriage (73) in the receiver transports the boards past an end detection station past a marking station and to a sawing station. The carriage has a moveable clamping member which pinches the board between a wall of the receiver and the clamping member. The carriage moves down the receiver with the board clamped thereto conveying the board in a longitudinal direction to position the board in a desired position for sawing the board. The sawing station is located at a proximal end of the receiver with proximity sensors (332), such as optical sensors comprising the end detection station also positioned at said end. A clamping station (31.3) comprising a pair of gripping rollers secure the proximal end of the board adjacent the saw station for sawing. The marking station, also positioned at said end, prints desired indicia at selected positions on the board such as by an ink jet printer (310) without physical contact of the printing mechanism with the board and while the board is moving. All operations of the board processing system are automated by the process controller.
    • 一种自动板处理系统(20),包括横板输送机(28),板挤出部分(22),标记站(31.1),锯切部分(24),一个或多个板馈送部分(26)和 过程控制器(29)。 一个或多个堆叠的板被支撑用于串行地馈送每个板输送机,并且沿横向于板的长度的方向传送。 板被分别沉积到板挤出部分的细长接收器(42)中,以纵向输送。 接收器中的托架(73)将板通过结束检测站运送通过标记站和锯床。 滑架具有可移动的夹紧构件,该夹紧构件将接合板的壁与夹紧构件之间夹持该板。 托架沿着接收器向下移动,其中板被夹持在其上沿纵向方向传送板,以将板定位在用于锯切板的期望位置。 锯床位于具有接近传感器(332)的接收器的近端处,诸如包括位于所述端部处的末端检测站的光学传感器。 夹持站(31.3)包括一对夹紧辊,将板的近端固定在锯床附近用于锯切。 也位于所述端部的标记工位,例如通过喷墨打印机(310)在板上的选定位置打印所需的标记,而印刷机构与板的物理接触以及板正在移动时。 板处理系统的所有操作都由过程控制器自动进行。