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    • 92. 发明授权
    • ROOF TILES
    • 屋顶瓦片
    • EP0148886B1
    • 1987-11-19
    • EP84902528.3
    • 1984-06-21
    • Marley Tile AG
    • BURT, Peter
    • B28B13/02B28B5/02E04D1/16
    • B28B13/02B28B5/028
    • A process for manufacturing roof tiles includes introducing tile forming material into a hopper (1) for subsequent discharge onto a succession of moving pallets (8) to form a base ribbon (11) which is cut into individual tiles (12). One or more body colouring pigments are added to the material prior to its introduction into the hopper (1), for example in a screw conveyer (2) leading to te hopper, and a secondary colouring pigment or pigments is added to the material in the hopper (1) to provide the tiles with streaked surfaces.
    • 一种制造屋顶瓦片的方法包括将瓦片形成材料引入料斗(1)中,随后排放到一系列移动托板(8)上以形成被切割成单个瓦片(12)的基带(11)。 在将材料引入料斗(1)之前,例如在通向料斗的螺旋输送机(2)中,将一种或多种体色颜料添加到材料中,并将第二着色颜料或颜料添加到材料中 料斗(1)为瓷砖提供条纹表面。
    • 93. 发明公开
    • Improvements in and relating to tile making machines
    • Maschinen zum Herstellen von Dachziegeln。
    • EP0063039A2
    • 1982-10-20
    • EP82301872.6
    • 1982-04-08
    • POWEL INTERNATIONAL LIMITED
    • Hutchinson, William
    • B28B11/16
    • B28B5/028B28B11/165
    • A cutting mechanism for a tile making machine comprises a pair of knives (10, 11) mounted by pivots (20, 21) on a cutter carriage (12). The actual position of the leading face (32) of a web (33) of each tile pallet is sensed by a sensor (28) which drives a Bourdon cable (31) to set the position of the knives (10, 11) relative to the carriage (12) for the next cut. Thus, the cuts are always made at the correct position relative to the ends of the pallets (3). The sensor (28) is mounted on a sensor carriage (24) secured to the knife carriage (12), and the sensor carriage (24) is movable along tracks (26) by a ram (25) to move the sensor out of engagement with the pallets (3) between each cutting cycle.
    • 瓦片制造机的切割机构包括通过在托架(12)上的枢轴(20,21)安装的一对刀(10,11)。 每个瓦片托盘的腹板(33)的前表面(32)的实际位置由传感器(28)感测,所述传感器驱动布尔登电缆(31)以将刀具(10,11)的位置相对于 用于下一切割的托架(12)。 因此,切口总是相对于托盘(3)的端部在正确的位置进行。 传感器(28)安装在固定在刀架(12)上的传感器滑架(24)上,传感器滑架(24)可通过冲头(25)沿轨道(26)移动,以使传感器脱离接合 每个切割循环之间的托盘(3)。
    • 95. 发明公开
    • 표면 장식 무기보드 및 이의 제조방법
    • 具有表面装饰的无机板及其制备方法
    • KR1020080098186A
    • 2008-11-07
    • KR1020070043544
    • 2007-05-04
    • (주)엘지하우시스
    • 강길호김광민손범구이용규
    • B32B3/20
    • B32B13/14B28B5/028B28B7/0082B28B11/04B28B23/0006B32B13/02B32B37/24B32B38/06B32B2315/085B32B2607/00E04C2/043
    • An inorganic board with surface decoration and a method of manufacturing the same are provided to obtain the surface decoration layer which is excellent in durability. An inorganic board with surface decoration comprises: an embossed layer(1) in which embossing and/or the color is given; a fabric reinforcing layer(2); a core layer(3); and a glass fiber strengthen layer(4). In the case of the embossed layer, it is reinforced with the glass fiber. The manufacturing method comprises that low viscous inorganic materials are mixed with pigment of desired color; the mixture is applied on the embossed board in which pattern is formed; a consolation fabric reinforcing layer is laminated; low viscous inorganic compound is evenly filled in the embossed pattern valley; applying the inorganic compound of the desired thickness using the inorganic material mixed layer hopper; and the fabric reinforcing layer is laminated and the top surface is finished.
    • 提供具有表面装饰的无机基板及其制造方法,以获得耐久性优异的表面装饰层。 具有表面装饰的无机基板包括:压印层和/或颜色赋予的压纹层(1); 织物加强层(2); 芯层(3); 和玻璃纤维增​​强层(4)。 在浮雕层的情况下,用玻璃纤维增​​强。 制造方法包括将低粘度无机材料与所需颜色的颜料混合; 将混合物施加到形成图案的压花板上; 叠层织物加强层; 低粘度无机化合物均匀地填充在压花图案谷中; 使用无机材料混合料斗施加所需厚度的无机化合物; 并且织物加强层被层压并且顶表面被完成。
    • 97. 发明授权
    • MACHINE FOR MANUFACTURING OF FLAT PRODUCTS
    • 制造平板产品的机器
    • EP0305395B1
    • 1990-12-27
    • EP87903456.9
    • 1987-04-24
    • ABECE AKTIEBOLAG
    • JIDELL, Bernt
    • B28B5/02
    • B65G17/18B28B3/123B28B5/025B28B5/028B65G2201/02
    • A machine for manufacturing of flat concrete products on separate moulding trays (10), which are moved in close succession upon an endless conveyor (8) passing a concrete extruding station (3), where a concrete mass is deposited, compacted and shaped upon the moulding trays (10), and further passing a severing device (5), whereby the conveyor (8) comprises a plurality of inter-connected bed plates (15) for carrying the moulding trays (10), which at least at the passing of the concrete extruding station move over a supporting bed (21), whereby the bed plates (15) are arranged between a pair of endless, parallel and in synchrony operated conveyor chains (12), which are passing over a front pair of chain wheels (14) at the inlet portion (2) of the machine and a rear pair of chain wheels (13) at the outlet portion (6) of the machine, whereby each bed plate (15) is arranged in that way that its rear part is turned down between the conveyor chains (12) after the rear part has left the supporting bed (21) during its front part are to pass or passes over the rear chain wheels (13).